FUJITSU SEMICONDUCTOR
DATA SHEET
DS07-13747-1E
16-bit Proprietary Microcontroller
CMOS
F2MC-16LX MB90340E Series
MB90F342E(S), MB90F342CE(S), MB90F343E(S), MB90F343CE(S), MB90F345E(S), MB90F345CE(S), MB90F346E(S), MB90F346CE(S), MB90F347E(S), MB90F347CE(S), MB90F349E(S), MB90F349CE(S),
MB90341E(S), MB90341CE(S), MB90342E(S), MB90342CE(S), MB90346E(S), MB90346CE(S), MB90347E(S), MB90347CE(S), MB90348E(S), MB90348CE(S), MB90349E(S), MB90349CE(S), MB90V340E-101/102
■DESCRIPTION
The MB90340E-series with up to 2 FULL-CAN* interfaces and Flash ROM is especially designed for automotiveand other industrial applications. Its main feature are the on-board CAN Interfaces, which conform to V2.0 PartA and Part B, while supporting a very flexible message buffer scheme and so offering more functions than anormal full CAN approach. With the new 0.35 µm CMOS technology, Fujitsu now offers on-chip Flash ROMprogram memory up to 512 Kbytes.
The power to the MCU core (3V) is supplied by a built-in regulator circuit, giving these microcontrollers superiorperformance in terms of power consumption and tolerance to EMI.* : Controller Area Network (CAN) - License of Robert Bosch GmbHNote : F2MC is the abbreviation of FUJITSU Flexible Microcontroller.
Be sure to refer to the “Check Sheet” for the latest cautions on development.
“Check Sheet” is seen at the following support page
URL : http://www.fujitsu.com/global/services/microelectronics/product/micom/support/index.html
“Check Sheet” lists the minimal requirement items to be checked to prevent problems beforehand in system development.
Copyright©2006 FUJITSU LIMITED All rights reserved
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MB90340E Series
■FEATURES
• CPU
•Instruction system best suited to controller
- Wide choice of data types (bit, byte, word, and long word)- Wide choice of addressing modes (23 types)
- Enhanced functionality with signed multiply and divide instructions and the RETI instruction- Enhanced high-precision computing with 32-bit accumulator
•Instruction system compatible with high-level language (C language) and multitask- Employing system stack pointer
- Various enhanced pointer indirect instructions- Barrel shift instructions•Increased processing speed- 4-byte instruction queue• Serial interface
•UART (LIN/SCI) : up to 4 channels
- Equipped with full-duplex double buffer
- Clock-asynchronous or clock-synchronous serial transmission is available
•I2C interface*1 : up to 2 channels (only for devices with a C suffix in the part number)- Up to 400 Kbits/s transfer rate• Interrupt controller
•Powerful 8-level, 34-condition interrupt feature•Up to 16 external interrupts are supported
•Automatic data transfer function independent of CPU
- Expanded intelligent I/O service function (EI2OS) : up to 16 channels
• I/O ports
•General-purpose input/output port (CMOS output)
- 80 ports (for devices without an S suffix in the part number - i.e. devices that support the sub clock) - 82 ports (for devices with an S suffix in the part number - i.e. devices that do not support the sub clock)• 8/10-bit A/D converter : 16 channels
24 channels (only for devices with a C suffix in the part number)
•Resolution is selectable between 8-bit and 10-bit.•Activation by external trigger input is allowed.
•Conversion time : 3 µs (at 24-MHz machine clock, including sampling time)• Program patch function
•Detects address matches against 6 address pointers
• Timer
•Time-base timer, watch timer, watchdog timer : 1 channel
•8/16-bit PPG timer : 8-bit × 16 channels, or 16-bit × 8 channels•16-bit reload timer : 4 channels•16-bit input/output timer
- 16-bit free-run timer : 2 channels
(FRT0 : ICU 0/1/2/3, OCU 0/1/2/3, FRT1 : ICU 4/5/6/7, OCU 4/5/6/7)- 16-bit input capture: (ICU): 8 channels- 16-bit output compare: (OCU): 8 channels
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MB90340E Series
• Full-CAN controller*2
•Up to 2 channels
•Compliant with Ver2.0A and Ver2.0B CAN specifications•16 built-in message buffers•CAN wake-up function
• Low power consumption (standby) mode
•Sleep mode (a mode that halts CPU operating clock)
•Timebase timer mode (a mode where only the oscillation clock, sub clock, timebase timer and watch timeroperate)
•Watch mode (a mode that operates sub clock and clock timer only)•Stop mode (a mode that stops oscillation clock and sub clock)•CPU intermittent operation mode• Technology
•0.35 µm CMOS technology
*1 : I2C license :
Purchase of Fujitsu I2C components conveys a license under the Philips I2C Patent Rights to use, these com-ponents in an I2C system provided that the system conforms to the I2C Standard Specification as defined by Philips.*2 : Controller Area Network (CAN) - License of Robert Bosch GmbH.
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MB90340E Series
■PRODUCT LINEUP
Part Number
MB90V340E-101, MB90V340E-102
MB90F342E(S), MB90F342CE(S),MB90F343E(S)*1, MB90F343CE(S)*1,MB90F345E(S), MB90F345CE(S),MB90F346E(S), MB90F346CE(S),MB90F347E(S), MB90F347CE(S),MB90F349E(S), MB90F349CE(S)
MB90341E(S)*1, MB90341CE(S)*1,MB90342E(S)*1, MB90342CE(S)*1,MB90346E(S), MB90346CE(S),MB90347E(S), MB90347CE(S),MB90348E(S)*1, MB90348CE(S)*1,MB90349E(S)*1, MB90349CE(S)*1
ParameterTypeCPUSystem clock
Evaluation products
Flash memory products
F2MC-16LX CPU
MASK ROM products
On-chip PLL clock multiplier (×1, ×2, ×3, ×4, ×6, 1/2 when PLL stops) Minimum instruction execution time : 42 ns (4 MHz osc. PLL × 6)
256 Kbytes : 512 Kbytes :
MB90F345E(S), MB90F345CE(S)
384 Kbytes :
MB90F343E(S), MB90F343CE(S)256 Kbytes :
MB90F342E(S), MB90F342CE(S),MB90F349E(S), MB90F349CE(S)128 Kbytes :
MB90F347E(S), MB90F347CE(S)64 Kbytes :
MB90F346E(S), MB90F346CE(S)20 Kbytes :
MB90F343E(S), MB90F343CE(S),MB90F345E(S), MB90F345CE(S)16 Kbytes :
MB90F342E(S), MB90F342CE(S),MB90F349E(S), MB90F349CE(S)6 Kbytes :
MB90F347E(S), MB90F347CE(S)2 Kbytes :
MB90F346E(S), MB90F346CE(S)
MB90342E(S), MB90342CE(S),MB90349E(S), MB90349CE(S)128 Kbytes :
MB90341E(S), MB90341CE(S),MB90348E(S), MB90348CE(S),MB90347E(S), MB90347CE(S)64 Kbytes :
MB90346E(S), MB90346CE(S)
ROMExternal
RAM30 Kbytes
16 Kbytes :
MB90341E(S), MB90341CE(S), MB90342E(S), MB90342CE(S),MB90348E(S), MB90348CE(S),MB90349E(S), MB90349CE(S)6 Kbytes :
MB90347E(S), MB90347CE(S)2 Kbytes :
MB90346E(S), MB90346CE(S)
Emulator-specific power supply*2TechnologyOperating voltage rangeTemperature rangePackageUART
Yes⎯
0.35 µm CMOS with
0.35 µm CMOS with built-in power supply regulator +
regulator for built-in
Flash memory with Charge pump for programming voltage
power supply
5 V ± 10%
⎯PGA-2995 channels
3.5 V to 5.5 V : When normal operating (not using A/D converter)4.0 V to 5.5 V : When using the A/D converter/Flash programming4.5 V to 5.5 V : When using the external bus
−40 °C to +105 °CQFP-100, LQFP-100
4 channels
Wide range of baud rate settings using a dedicated reload timer
Special synchronous options for adapting to different synchronous serial protocolsLIN functionality working either as master or slave LIN device
2 channels
Devices with a C suffix in the part number : 2channelsDevices without a C suffix in the part number : ⎯
(Continued)
I2C (400 kbps)
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MB90340E Series
Part Number
MB90V340E-101, MB90V340E-102
MB90F342E(S), MB90F342CE(S),MB90F343E(S)*1, MB90F343CE(S)*1,MB90F345E(S), MB90F345CE(S),MB90F346E(S), MB90F346CE(S),MB90F347E(S), MB90F347CE(S),MB90F349E(S), MB90F349CE(S)
MB90341E(S)*1, MB90341CE(S)*1,MB90342E(S)*1, MB90342CE(S)*1,MB90346E(S), MB90346CE(S),MB90347E(S), MB90347CE(S),MB90348E(S)*1, MB90348CE(S)*1,MB90349E(S)*1, MB90349CE(S)*1
Parameter
24 input channels
A/D Converter
Devices with a C suffix in the part number : 24 channelsDevices without a C suffix in the part number : 16 channels
10-bit or 8-bit resolution
Conversion time : Min 3 µs include sample time (per one channel)
16-bit Reload TimerOperation clock frequency : fsys/21, fsys/23, fsys/25 (fsys = Machine clock frequency)
Supports External Event Count function (4 channels)
Generates an interrupt signal on overflow
Supports Timer Clear when the output compare finds a match
Operation clock freq. : fsys, fsys/21, fsys/22, fsys/23, fsys/24, fsys/25, fsys/26, fsys/27(fsys = Machine clock freq.)
I/O Timer 0 (clock input FRCK0) corresponds to ICU 0/1/2/3, OCU 0/1/2/3I/O Timer 1 (clock input FRCK1) corresponds to ICU 4/5/6/7, OCU 4/5/6/7
Generates an interrupt signal when one of the 16-bit I/O timer matches the output compare register
A pair of compare registers can be used to generate an output signal.
16-bit I/O Timer (2 channels)
16-bit Output Compare (8 channels)
16-bit Input CaptureRising edge, falling edge or rising & falling edge sensitive(8 channels)Signals an interrupt upon external event
8 channels (16-bit) /16 channels (8-bit)
Sixteen 8-bit reload counters
Sixteen 8-bit reload registers for L pulse widthSixteen 8-bit reload registers for H pulse width
Supports 8-bit and 16-bit operation modes
A pair of 8-bit reload counters can be configured as one 16-bit reload counter or as 8-bit prescaler plus 8-bit reload counter
Operating clock freq. : fsys, fsys/21, fsys/22, fsys/23, fsys/24 or 128 µs@fosc = 4 MHz (fsys = Machine clock frequency, fosc = Oscillation clock frequency)
2 channels :
MB90F342E(S), MB90F342CE(S),MB90F343E(S), MB90F343CE(S),MB90F345E(S), MB90F345CE(S)1 channel :
MB90F346E(S), MB90F346CE(S),MB90F347E(S), MB90F347CE(S),MB90F349E(S), MB90F349CE(S)
2 channels :
MB90341E(S), MB90341CE(S),MB90342E(S), MB90342CE(S)1 channel :
MB90346E(S), MB90346CE(S),MB90347E(S), MB90347CE(S),MB90348E(S), MB90348CE(S),MB90349E(S), MB90349CE(S)
8/16-bit
Programmable Pulse Generator
3 channels
CAN Interface
Conforms to CAN Specification Version 2.0 Part A and BAutomatic re-transmission in case of error
Automatic transmission in response to Remote FramesPrioritized 16 message buffers for data and ID’sSupports multiple messages
Flexible configuration of acceptance filtering :
Full bit compare/Full bit mask/Two partial bit masksSupports up to 1 Mbps
(Continued)
5
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MB90340E Series
(Continued)
Part Number
MB90V340E-101, MB90V340E-102
ParameterExternal Interrupt (16 channels) D/A converterSub clock
(maximum 100 kHz)
MB90F342E(S), MB90F342CE(S),MB90F343E(S)*1, MB90F343CE(S)*1,MB90F345E(S), MB90F345CE(S),MB90F346E(S), MB90F346CE(S),MB90F347E(S), MB90F347CE(S),MB90F349E(S), MB90F349CE(S)MB90341E(S)*1, MB90341CE(S)*1,MB90342E(S)*1, MB90342CE(S)*1,MB90346E(S), MB90346CE(S),MB90347E(S), MB90347CE(S),MB90348E(S)*1, MB90348CE(S)*1,MB90349E(S)*1, MB90349CE(S)*1
Can be used rising edge, falling edge, starting up by H/L level input, external interrupt, expanded intelligent I/O services (EI2OS) and DMA
2 channelsOnly for
MB90V340E-102
⎯
Devices with sub clock : devices without an S suffix in the part numberDevices without sub clock : devices with an S suffix in the part number
I/O Ports
Virtually all external pins can be used as general purpose I/O portAll ports are push-pull outputs
Bit-wise settable as input/output or peripheral signal
Can be configured 8 as CMOS schmitt trigger/ automotive inputs (in blocks of 8 pins) TTL input level settable for external bus (32-pin only for external bus)
Supports automatic programming, Embedded AlgorithmTM*3Write/Erase/Erase-Suspend/Resume commandsA flag indicating completion of the algorithmNumber of erase cycles : 10000 cyclesData retention time : 20 yearsBoot block configuration
Erase can be performed on each block
Block protection with external programming voltage
Flash Security Feature for protecting the content of the Flash (except for MB90F346E(S) and MB90F346CE (S) )
Flash Memory⎯
*1 : These devices are under development.
*2 : It is setting of Jumper switch (TOOL VCC) when Emulator (MB2147-01) is used.
Please refer to the Emulator hardware manual for details.*3 : Embedded Algorithm is a trade mark of Advanced Micro Devices Inc.
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MB90340E Series
■PIN ASSIGNMENTS
•MB90V340E-101/MB90V340E-102 (TOP VIEW)P04/AD04/INT12P05/AD05/INT13P06/AD06/INT14P07/AD07/INT15P10/AD08/TIN1P11/AD09/TOT1P12/AD10/SIN3/INT11RP13/AD11/SOT3P14/AD12/SCK3VccVssX1X0P15/AD13/SIN4P16/AD14/SOT4P17/AD15/SCK4P20/A16/PPG9(8)P21/A17/PPGB(A)P22/A18/PPGD(C)P23/A19/PPGF(E)8079787776757473727170696867666564636261605958575655545352515081824983488447854686458744884389429041QFP - 10091409239933894379536963597349833993210031123456789101112131415161718192021222324252627282930P31/RD/IN5P32/WRL/WR/RX2/INT10RP33/WRH/TX2P34/HRQ/OUT4P35/HAK/OUT5P36/RDY/OUT6P37/CLK/OUT7P40/X0A* P41/X1A* VccVssCP42/IN6/RX1/INT9RP43/IN7/TX1P44/SDA0/FRCK0P45/SCL0/FRCK1P46/SDA1P47/SCL1P50/AN8/SIN2P51/AN9/SOT2P52/AN10/SCK2P53/AN11/TIN3P54/AN12/TOT3P55/AN13P56/AN14/DA00P24/A20/IN0P25/A21/IN1P26/A22/IN2P27/A23/IN3P30/ALE/IN4P03/AD03/INT11P02/AD02/INT10P01/AD01/INT9P00/AD00/INT8PA1/TX0PA0/RX0/INT8RP97/OUT3P96/OUT2P95/OUT1P94/OUT0P93/PPG7(6)P92/PPG5(4)P91/PPG3(2)P90/PPG1(0)VssVccP87/SCK1P86/SOT1P85/SIN1P84/SCK0/INT15RP83/SOT0/TOT2P82/SIN0/TIN2/INT14RP81/TOT0/CKOT/INT13RP80/TIN0/ADTG/INT12RP77/AN23/INT7P76/AN22/INT6RSTMD0MD1MD2P75/AN21/INT5P74/AN20/INT4P73/AN19/INT3P72/AN18/INT2P71/AN17/INT1P70/AN16/INT0VssP67/AN7/PPGE(F)P66/AN6/PPGC(D)P65/AN5/PPGA(B)P64/AN4/PPG8(9)P63/AN3/PPG6(7)P62/AN2/PPG4(5)P61/AN1/PPG2(3)P60/AN0/PPG0(1)AVssAVRLAVRHAVccP57/AN15/DA01 (FPT-100P-M06) * : X0A, X1A : MB90V340E-102P40, P41 : MB90V340E-101(Continued)7
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MB90340E Series
(Continued)(TOP VIEW)P81/TOT0/CKOT/INT13RP80/TIN0/ADTG/INT12RP77/AN23/INT7P76/AN22/INT6P00/AD00/INT8PA1/TX0PA0/RX0/INT8RP97/OUT3P96/OUT2P95/OUT1P94/OUT0P93/PPG7(6)P92/PPG5(4)P91/PPG3(2)P90/PPG1(0)VssVccP87/SCK1P86/SOT1P85/SIN1P84/SCK0/INT15RP83/SOT0/TOT2P82/SIN0/TIN2/INT14RP01/AD01/INT9P02/AD02/INT10P03/AD03/INT11P04/AD04/INT12P05/AD05/INT13P06/AD06/INT14P07/AD07/INT15P10/AD08/TIN1P11/AD09/TOT1P12/AD10/SIN3/INT11RP13/AD11/SOT3P14/AD12/SCK3VccVssX1X0P15/AD13/SIN4P16/AD14/SOT4P17/AD15/SCK4P20/A16/PPG9(8)P21/A17/PPGB(A)P22/A18/PPGD(C)P23/A19/PPGF(E)P24/A20/IN0P25/A21/IN1757473727170696867666564636261605958575655545352515076497748784779468045814482438342844185408639873888LQFP - 100378936903591349233933294319530962997982899271002612345678910111213141516171819202122232425P26/A22/IN2P27/A23/IN3P30/ALE/IN4P31/RD/IN5P32/WRL/WR/RX2/INT10RP33/WRH/TX2P34/HRQ/OUT4P36/RDY/OUT6P37/CLK/OUT7P40/X0A* P41/X1A* VccVssCP42/IN6/RX1/INT9RP43/IN7/TX1P44/SDA0/FRCK0P45/SCL0/FRCK1P46/SDA1P47/SCL1P50/AN8/SIN2P51/AN9/SOT2P52/AN10/SCK2P53/AN11/TIN3P35/HAK/OUT5RSTMD0MD1MD2P75/AN21/INT5P74/AN20/INT4P73/AN19/INT3P72/AN18/INT2P71/AN17/INT1P70/AN16/INT0VssP67/AN7/PPGE(F)P66/AN6/PPGC(D)P65/AN5/PPGA(B)P64/AN4/PPG8(9)P63/AN3/PPG6(7)P62/AN2/PPG4(5)P61/AN1/PPG2(3)P60/AN0/PPG0(1)AVssAVRLAVRHAVccP57/AN15/DA01P56/AN14/DA00P55/AN13P54/AN12/TOT3 (FPT-100P-M05) * : X0A, X1A : MB90V340E-102P40, P41 : MB90V340E-1018
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MB90340E Series
•MB90F342E(S) / MB90F343E(S) / MB90F345E(S) / MB90F346E(S) / MB90F347E(S) / MB90F349E(S) /MB90341E(S) / MB90342E(S) /MB90346E(S) / MB90347E(S) / MB90348E(S) / MB90349E(S)(TOP VIEW) P03/AD03/INT11P02/AD02/INT10P01/AD01/INT9P00/AD00/INT8PA1/TX0PA0/RX0/INT8RP97/OUT3P96/OUT2P95/OUT1P94/OUT0P93/PPG7(6)P92/PPG5(4)P91/PPG3(2)P90/PPG1(0)VssVccP87/SCK1P86/SOT1P85/SIN1P84/SCK0/INT15RP83/SOT0/TOT2P82/SIN0/TIN2/INT14RP81/TOT0/CKOT/INT13RP80/TIN0/ADTG/INT12RP77/INT7P76/INT6MD0MD1P04/AD04/INT12P05/AD05/INT13P06/AD06/INT14P07/AD07/INT15P10/AD08/TIN1P11/AD09/TOT1P12/AD10/SIN3/INT11RP13/AD11/SOT3P14/AD12/SCK3VccVssX1X0P15/AD13P16/AD14P17/AD15P20/A16/PPG9(8)P21/A17/PPGB(A)P22/A18/PPGD(C)P23/A19/PPGF(E)80797877767574737271706968676665646362616059585756555453525150814982488347844685458644874388QFP - 1004289419040913992389337943695359634973398329931100123456789101112131415161718192021222324252627282930P32/WRLX/WRX/INT10RP33/WRHP36/RDY/OUT6P37/CLK/OUT7P40/X0A *P41/X1A *VccVssCP42/IN6/RX1/INT9RP43/IN7/TX1P44/FRCK0P45/FRCK1P46P47P50/AN8/SIN2P51/AN9/SOT2P52/AN10/SCK2P53/AN11/TIN3P54/AN12/TOT3P55/AN13P56/AN14P34/HRQ/OUT4P35/HAK/OUT5P24/A20/IN0P25/A21/IN1P26/A22/IN2P27/A23/IN3P30/ALE/IN4P31/RD/IN5RSTMD2P75/INT5P74/INT4P73/INT3P72/INT2P71/INT1P70/INT0VssP67/AN7/PPGE(F)P66/AN6/PPGC(D)P65/AN5/PPGA(B)P64/AN4/PPG8(9)P63/AN3/PPG6(7)P62/AN2/PPG4(5)P61/AN1/PPG2(3)P60/AN0/PPG0(1)AVssAVRLAVRHAVccP57/AN15 (FPT-100P-M06) * : X0A, X1A : devices without an S suffix in the part numberP40, P41 : devices with an S suffix in the part number(Continued)9
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MB90340E Series
(Continued)(TOP VIEW)P81/TOT0/CKOT/INT13RP80/TIN0/ADTG/INT12RP77/INT7P76/INT6P00/AD00/INT8PA1/TX0PA0/RX0/INT8RP97/OUT3P96/OUT2P95/OUT1P94/OUT0P93/PPG7(6)P92/PPG5(4)P91/PPG3(2)P90/PPG1(0)VssVccP87/SCK1P86/SOT1P85/SIN1P84/SCK0/INT15RP83/SOT0/TOT2P82/SIN0/TIN2/INT14RP01/AD01/INT9P02/AD02/INT10P03/AD03/INT11P04/AD04/INT12P05/AD05/INT13P06/AD06/INT14P07/AD07/INT15P10/AD08/TIN1P11/AD09/TOT1P12/AD10/SIN3/INT11RP13/AD11/SOT3P14/AD12/SCK3VccVssX1X0P15/AD13P16/AD14P17/AD15P20/A16/PPG9(8)P21/A17/PPGB(A)P22/A18/PPGD(C)P23/A19/PPGF(E)P24/A20/IN0P25/A21/IN175747372717069686766656463626160595857565554535251765049774878477980468145824483438442854186408739LQFP - 1008838893790369135923493339432953196309729982899271002612345678910111213141516171819202122232425P26/A22/IN2P27/A23/IN3P30/ALE/IN4P31/RD/IN5P32/WRL/WR/INT10RP33/WRHP34/HRQ/OUT4P35/HAK/OUT5P36/RDY/OUT6P37/CLK/OUT7P40/X0A* P41/X1A* VccVssCP42/IN6/RX1/INT9RP43/IN7/TX1P44/FRCK0P45/FRCK1P46P47P50/AN8/SIN2P51/AN9/SOT2P52/AN10/SCK2P53/AN11/TIN3RSTMD0MD1MD2P75/INT5P74/INT4P73/INT3P72/INT2P71/INT1P70/INT0VssP67/AN7/PPGE(F)P66/AN6/PPGC(D)P65/AN5/PPGA(B)P64/AN4/PPG8(9)P63/AN3/PPG6(7)P62/AN2/PPG4(5)P61/AN1/PPG2(3)P60/AN0/PPG0(1)AVssAVRLAVRHAVccP57/AN15P56/AN14P55/AN13P54/AN12/TOT3 (FPT-100P-M05) * : X0A, X1A : devices without an S suffix in the part numberP40, P41 : devices with an S suffix in the part number10
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MB90340E Series
•MB90F342CE(S) / MB90F343CE(S) / MB90F345CE(S) / MB90F346CE(S) / MB90F347CE(S) /
MB90F349CE(S) / MB90341CE(S) / MB90342CE(S) /MB90346CE(S) / MB90347CE(S) / MB90348CE(S) / MB90349CE(S)(TOP VIEW) P03/AD03/INT11P02/AD02/INT10P01/AD01/INT9P00/AD00/INT8PA1/TX0PA0/RX0/INT8RP97/OUT3P96/OUT2P95/OUT1P94/OUT0P93/PPG7(6)P92/PPG5(4)P91/PPG3(2)P90/PPG1(0)VssVccP87/SCK1P86/SOT1P85/SIN1P84/SCK0/INT15RP83/SOT0/TOT2P82/SIN0/TIN2/INT14RP81/TOT0/CKOT/INT13RP80/TIN0/ADTG/INT12RP77/AN23/INT7P76/AN22/INT6MD0MD1P04/AD04/INT12P05/AD05/INT13P06/AD06/INT14P07/AD07/INT15P10/AD08/TIN1P11/AD09/TOT1P12/AD10/SIN3/INT11RP13/AD11/SOT3P14/AD12/SCK3VccVssX1X0P15/AD13P16/AD14P17/AD15P20/A16/PPG9(8)P21/A17/PPGB(A)P22/A18/PPGD(C)P23/A19/PPGF(E)807978777675747372717069686766656463626160595857565554535251508182498348844785468645874488438942QFP - 100904191409239933894379536963597349833993210031123456789101112131415161718192021222324252627282930P31/RD/IN5P32/WRL/WR/INT10RP35/HAK/OUT5P36/RDY/OUT6P37/CLK/OUT7P40/X0A* P41/X1A* VccVssCP42/IN6/RX1/INT9RP43/IN7/TX1P44/SDA0/FRCK0P45/SCL0/FRCK1P46/SDA1P47/SCL1P50/AN8/SIN2P51/AN9/SOT2P52/AN10/SCK2P53/AN11/TIN3P54/AN12/TOT3P55/AN13P56/AN14P24/A20/IN0P25/A21/IN1P26/A22/IN2P27/A23/IN3P30/ALE/IN4P33/WRHP34/HRQ/OUT4MD2RSTP75/AN21/INT5P74/AN20/INT4P73/AN19/INT3P72/AN18/INT2P71/AN17/INT1P70/AN16/INT0VssP67/AN7/PPGE(F)P66/AN6/PPGC(D)P65/AN5/PPGA(B)P64/AN4/PPG8(9)P63/AN3/PPG6(7)P62/AN2/PPG4(5)P61/AN1/PPG2(3)P60/AN0/PPG0(1)AVssAVRLAVRHAVccP57/AN15 (FPT-100P-M06) * : X0A, X1A : devices without an S suffix in the part numberP40, P41 : devices with an S suffix in the part number(Continued)11
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MB90340E Series
(Continued)(TOP VIEW)P81/TOT0/CKOT/INT13RP80/TIN0/ADTG/INT12RP77/AN23/INT7P76/AN22/INT6P00/AD00/INT8PA1/TX0PA0/RX0/INT8RP97/OUT3P96/OUT2P95/OUT1P94/OUT0P93/PPG7(6)P92/PPG5(4)P91/PPG3(2)P90/PPG1(0)VssVccP87/SCK1P86/SOT1P85/SIN1P84/SCK0/INT15RP83/SOT0/TOT2P82/SIN0/TIN2/INT14RP01/AD01/INT9P02/AD02/INT10P03/AD03/INT11P04/AD04/INT12P05/AD05/INT13P06/AD06/INT14P07/AD07/INT15P10/AD08/TIN1P11/AD09/TOT1P12/AD10/SIN3/INT11RP13/AD11/SOT3P14/AD12/SCK3VccVssX1X0P15/AD13P16/AD14P17/AD15P20/A16/PPG9(8)P21/A17/PPGB(A)P22/A18/PPGD(C)P23/A19/PPGF(E)P24/A20/IN0P25/A21/IN175747372717069686766656463626160595857565554535251765077497848477946804581448243834284418540863987LQFP - 1003888378936903591349233933294319530962997982899271002612345678910111213141516171819202122232425P31/RD/IN5P32/WRL/WR/INT10RP35/HAK/OUT5P36/RDY/OUT6P37/CLK/OUT7P40/X0A*P41/X1A*VccVssCP42/IN6/RX1/INT9RP43/IN7/TX1P44/SDA0/FRCK0P45/SCL0/FRCK1P46/SDA1P47/SCL1P50/AN8/SIN2P51/AN9/SOT2P52/AN10/SCK2P53/AN11/TIN3P26/A22/IN2P27/A23/IN3P30/ALE/IN4P33/WRHP34/HRQ/OUT4MD0RSTMD1MD2P75/AN21/INT5P74/AN20/INT4P73/AN19/INT3P72/AN18/INT2P71/AN17/INT1P70/AN16/INT0VssP67/AN7/PPGE(F)P66/AN6/PPGC(D)P65/AN5/PPGA(B)P64/AN4/PPG8(9)P63/AN3/PPG6(7)P62/AN2/PPG4(5)P61/AN1/PPG2(3)P60/AN0/PPG0(1)AVssAVRLAVRHAVccP57/AN15P56/AN14P55/AN13P54/AN12/TOT3 (FPT-100P-M05) * : X0A, X1A : devices without an S suffix in the part numberP40, P41 : devices with an S suffix in the part number12
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MB90340E Series
■PIN DESCRIPTION
Pin No.
QFP100*1LQFP100*2
Pin name
I/O Circuit type*3
Function
General purpose I/O pins. The register can be set to select
whether to use a pull-up resistor.In external bus mode, the pin is enabled as a general-purpose I/O port when the corresponding bit in the external address output control register (HACR) is 1.Output pins of the external address bus. When the corresponding bit in the external address output control register (HACR) is 0, the pins are enabled as high address output pins (A20 to A23).Trigger input pins for input captures.
General purpose I/O pin.The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
Address latch enable output pin. This function is enabled when the external bus is enabled.Trigger input pin for input capture.
General purpose I/O pin.The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
External read strobe output pin. This function is enabled when the external bus is enabled.
Trigger input pin for input capture.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor. This function is enabled either in single-chip mode or when the WR/WRL pin output is disabled.G
WR / WRLWrite strobe output pin for the external data bus. This function is enabled when both the external bus and the WR/WRL pin output are enabled. WRL is used to write-strobe 8 lower bits of the data bus in 16-bit access while WR is used to write-strobe 8 bits of the data bus in 8-bit access.
External interrupt request input pin.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.This function is enabled either in single-chip mode or when the WRH pin output is disabled.G
WRHWrite strobe output pin for the upper 8 bits of the external data bus. This function is enabled when the external bus is enabled, when the external bus 16-bit mode is selected, and when the WRH output pin is enabled.(Continued)
P24 to P27
1 to 4
99 to 2
A20 to A23IN0 to IN3P30
5
3
ALEIN4P31
6
4
RDIN5P32
GGG
75
INT10RP33
8
6
13
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MB90340E Series
Pin No.
QFP100*1LQFP100*2
Pin name
I/O Circuit type*3
Function
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor. This function is enabled either in single-chip mode or when the hold function is disabled.Hold request input pin. This function is enabled when both the external bus and the hold function are enabled.Waveform output pin for output compare.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor. This function is enabled either in single-chip mode or when the hold function is disabled.Hold acknowledge output pin. This function is enabled when both the external bus and the hold function are enabled.Waveform output pin for output compare.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor. This function is enabled either in single-chip mode or when the external ready function is disabled.
External ready input pin. This function is enabled when both the external bus and the external ready function are enabled.Waveform output pin for output compare.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor. This function is enabled either in single-chip mode or when the clock output is disabled.Clock output pin. This function is enabled when both the external bus and clock output are enabled.Waveform output pin for output compare OCU7General purpose I/O pins.
(devices with an S suffix in the part number and or MB90V340E-101)
Oscillation pins for sub clock
(devices without an S suffix in the part number and or MB90V340E-102)
Power (3.5 V to 5.5 V) input pinGND pin
This is the power supply stabilization capacitor This pin should be connected to a ceramic capacitor with a capacitance greater than or equal to 0.1 µF. General purpose I/O pin.
Trigger input pin for input capture.
P34
9
7
HRQOUT4P35
10
8
HAKOUT5P36
11
9
RDYOUT6P37
12
10
CLKOUT7P40, P41
13, 14
11, 12
X0A , X1A
151617
131415
VCCVSSCP42IN6
18
16
RX1INT9R
FB⎯⎯KFGGGG
RX input pin for CAN1 Interface
(MB90F342E/F343E/F345E/341E/342E only)External interrupt request input pin
(Continued)
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MB90340E Series
Pin No.
QFP100*1LQFP100*2
Pin nameP43
19
17
IN7TX1P44
20
18
SDA0FRCK0P45
21
19
SCL0FRCK1P46
22
20
SDA1P47
23
21
SCL1P50
24
22
AN8SIN2P51
25
23
AN9SOT2P52
26
24
AN10SCK2P53
27
25
AN11TIN3P54
28
26
AN12TOT3
2930, 3132
2728, 2930
P55AN13P56, P57AN14, AN15
AVCC
I/O Circuit type*3
General purpose I/O pin.F
Function
Trigger input pin for input capture.
TX Output pin for CAN1
(MB90F342E/F343E/F345E/341E/342E only)General purpose I/O pin.
Serial data I/O pin for I2C (devices with a C suffix in the part number)
Input pin for the 16-bit I/O Timer 0General purpose I/O pin.
Serial clock I/O pin for I2C (devices with a C suffix in the part number)
Input pin for the 16-bit I/O TimerGeneral purpose I/O pin.
H
H
H
Serial data I/O pin for I2C (devices with a C suffix in the part number)
General purpose I/O pin.
Serial clock I/O pin for I2C (devices with a C suffix in the part number)
General purpose I/O pin.
Analog input pin for the A/D converterSerial data input pin for UART2General purpose I/O pin.
H
O
IAnalog input pin for the A/D converterSerial data output pin for UART2General purpose I/O pin.
IAnalog input pin for the A/D converterClock I/O pin for UART2General purpose I/O pin.
IAnalog input pin for the A/D converterEvent input pin for the reload timerGeneral purpose I/O pin.
IAnalog input pin for the A/D converterOutput pin for the reload timerGeneral purpose I/O pin.
Analog input pin for the A/D converterGeneral purpose I/O pins.
Analog input pins for the A/D converterAnalog power input pin for the A/D Converter
(Continued)
15
IJK
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MB90340E Series
Pin No.
QFP100*1LQFP100*2
333435
313233
Pin name
I/O Circuit type*3
LKK
Function
Reference voltage input pin for the A/D Converter. This power supply must be turned on or off while a voltage higher than or equal to AVRH is applied to AVCC.
Lower reference voltage input pin for the A/D ConverterAnalog GND pin for the A/D ConverterGeneral purpose I/O pins.
Analog input pins for the A/D converterOutput pins for PPGs
AVRHAVRLAVSSP60 to P67AN0 to AN7PPG0, 2, 4, 6, 8, A, C, E
VSSP70 to P75
36 to 4334 to 41I
4442⎯GND pin
General purpose I/O pins.
Analog input pins for the A/D converter (devices with a C suffix in the part number)
External interrupt request input pinsInput pin for specifying the operating mode.Input pins for specifying the operating mode.Reset input
General purpose I/O pins.
Analog input pins for the A/D converter (devices with a C suffix in the part number)
External interrupt request input pinsGeneral purpose I/O pin.
Event input pin for the reload timerTrigger input pin for the A/D converterExternal interrupt request input pinGeneral purpose I/O pin.Output pin for the reload timerOutput pin for the clock monitorExternal interrupt request input pinGeneral purpose I/O pin.Serial data input pin for UART0Event input pin for the reload timerExternal interrupt request input pinGeneral purpose I/O pin.
45 to 5043 to 48AN16 to AN21INT0 to INT5
I
5152, 5354
4950, 5152
MD2MD1, MD0RSTP76, P77
DCE
55, 5653, 54AN22, AN23INT6, INT7
P80TIN0ADTGINT12RP81TOT0CKOTINT13RP82SIN0TIN2INT14RP83
I
5755F
5856F
5957M
6058SOT0TOT2
FSerial data output pin for UART0Output pin for the reload timer
(Continued)
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MB90340E Series
Pin No.
QFP100*1LQFP100*2
Pin nameP84
61
59
SCK0INT15R
626364656667 to 70
606162636465 to 68
P85SIN1P86SOT1P87SCK1VCCVSSP90 to P93PPG1, 3, 5, 7P94 to P97
71 to 74
69 to 72
OUT0 to OUT3PA0
75
73
RX0INT8R
76
74
PA1TX0P00 to P07
77 to 84
75 to 82
AD00 to AD07INT8 to INT15
P10
85
83
AD08TIN1
I/O Circuit type*3
General purpose I/O pin.
F
Clock I/O pin for UART0
Function
External interrupt request input pin
MFF⎯⎯F
General purpose I/O pin.Serial data input pin for UART1General purpose I/O pin.Serial data output pin for UART1General purpose I/O pin.Clock I/O pin for UART1Power (3.5 V to 5.5 V) input pinGND pin
General purpose I/O pinOutput pins for PPGsGeneral purpose I/O pin
F
Waveform output pins for output compares. This function is enabled when the OCU enables waveform output.General purpose I/O pin.
F
RX input pin for CAN0 InterfaceExternal interrupt request input pin
F
General purpose I/O pin.TX Output pin for CAN0
General purpose I/O pins. The register can be set to select whether to use a pull-up resistor. This function is enabled in single-chip mode.
I/O pins for 8 lower bits of the external address/data bus. This function is enabled when the external bus is enabled.External interrupt request input pins.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
I/O pin for the external address/data bus.
This function is enabled when the external bus is enabled.Event input pin for the reload timer
(Continued)
G
G
17
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MB90340E Series
Pin No.
QFP100*1LQFP100*2
Pin name
I/O Circuit type*3
Function
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor. This function is enabled in single-chip mode.
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.Output pin for the reload timer
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
P11
86
84
AD09TOT1P12
87
85
AD10SIN3INT11RP13
88
86
AD11SOT3P14
89
87
AD12SCK3
90919293
88899091
VCCVSSX1X0P15
94
92
AD13P16
95
93
AD14
GG⎯⎯AGGNG
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.Serial data input pin for UART3External interrupt request input pin
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.Serial data output pin for UART3
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.Clock I/O pin for UART3Power (3.5 V to 5.5 V) input pinGND pin
Main clock output pinMain clock input pin
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.
(Continued)
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MB90340E Series
(Continued)
Pin No.QFP100*1LQFP100*2
Pin name
Circuit type*3
Function
General purpose I/O pin. The register can be set to select whether to use a pull-up resistor.
This function is enabled in single-chip mode.
I/O pin for the external address/data bus. This function is enabled when the external bus is enabled.
General purpose I/O pins. The register can be set to select whether to use a pull-up resistor.In external bus mode, the pin is enabled as a general-purpose I/O port when the
corresponding bit in the external address output control register (HACR) is 1.
P17
96
94
AD15
G
P20 to P23
97 to 10095 to 98
A16 to A19PPG9,PPGB,PPGD,PPGF
G
Output pins of the external address bus. When the
corresponding bit in the external address output control register (HACR) is 0, the pins are enabled as high address output pins (A16 to A19).Output pins for PPGs
*1 : FPT-100P-M06*2 : FPT-100P-M05
*3 : For I/O circuit type, refer to “■ I/O CIRCUIT TYPE”.
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MB90340E Series
■I/O CIRCUIT TYPE
TypeCircuitRemarksOscillation circuit•High-speed oscillation feedback resistor = approx. 1 MΩX1XoutAX0Standby control signalX1AXoutOscillation circuit•Low-speed oscillation feedback resistor = approx. 10 MΩBX0AStandby control signalRCCMOS hysteresisinputsMASK ROM and evaluation products:•CMOS hysteresis input pinFlash memory products:•CMOS input pinMASK ROM and evaluation products:•CMOS hysteresis input pin•Pull-down resistor value: approx. 50 kΩFlash memory products:•CMOS input pin•No pull-downRCMOS hysteresisinputsDPull-downResistorCMOS hysteresis input pin•Pull-up resistor value: approx. 50 kΩEPull-upResistorRCMOS hysteresisinputs(Continued)
20
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MB90340E Series
TypeCircuitRemarks•CMOS level output (IOL = 4 mA, IOH = −4 mA)•CMOS hysteresis input (with function todisconnect input during standby)•Automotive input (with function to disconnect input during standby)P-chPoutN-chNoutFRCMOS hysteresis inputAutomotive inputStandby control forinput shutdownPull-up controlP-chP-chPoutN-chNoutGRCMOS hysteresis inputAutomotive input•CMOS level output (IOL = 4 mA, IOH = −4 mA)•CMOS hysteresis input (with function todisconnect input during standby)•Automotive input (with function to disconnect input during standby)•TTL input (with function to disconnect input during standby)•Programmable pull-up resistor: 50 kΩ approx.TTL inputStandby control forinput shutdownP-chPoutN-chNoutHRCMOS hysteresis inputAutomotive inputStandby control forinput shutdown•CMOS level output (IOL = 3 mA, IOH = −3 mA)•CMOS hysteresis input (with function todisconnect input during standby)•Automotive input (with function to disconnect input during standby)(Continued)21
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MB90340E Series
TypeCircuitRemarks•CMOS level output (IOL = 4 mA, IOH = −4 mA)•CMOS hysteresis input (with function todisconnect input during standby)•Automotive input (with function to disconnect input during standby)•A/D converter analog input P-chPoutN-chRNoutICMOS hysteresis inputAutomotive inputStandby control forinput shutdownAnalog inputP-chPoutN-chRNoutJCMOS hysteresis inputAutomotive inputStandby control forinput shutdownAnalog inputAnalog output•CMOS level output (IOL = 4 mA, IOH = −4 mA)•D/A analog output•CMOS hysteresis input (with function todisconnect input during standby)•Automotive input (with function to disconnect input during standby)•A/D converter analog input •Power supply input protection circuitP-chKN-chP-chANEAVRLN-chANE•A/D converter reference voltage powersupply input pin, with the protection circuit•Flash memory devices do not have aprotection circuit against VCC for pin AVRH(Continued)22
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MB90340E Series
(Continued)TypeCircuitRemarks•CMOS level output (IOL = 4 mA, IOH = −4 mA)•CMOS input (with function to disconnectinput during standby)•Automotive input (with function to disconnect input during standby)P-chPoutN-chNoutMRCMOS inputAutomotive inputStandby control forinput shutdownPull-up controlP-chP-chPoutN-chNoutNRCMOS input•CMOS level output (IOL = 4 mA, IOH = −4 mA)•CMOS input (with function to disconnectinput during standby)•Automotive input (with function to disconnect input during standby)•TTL input (with function to disconnect input during standby)Programmable pull-up resistor: 50 kΩ approxAutomotive inputTTL inputStandby control forinput shutdownP-chPoutN-chRNoutO•CMOS level output (IOL = 4 mA, IOH = −4 mA)•CMOS input (with function to disconnectinput during standby)•Automotive input (with function to disconnect input during standby)•A/D converter analog input CMOS inputAutomotive inputStandby control forinput shutdownAnalog input23
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MB90340E Series
■HANDLING DEVICES
1.Preventing latch-up
CMOS IC chips may suffer latch-up under the following conditions:
•A voltage higher than VCC or lower than VSS is applied to an input or output pin.•A voltage higher than the rated voltage is applied between VCC and VSS pins.•TheAVCC power supply is applied before the VCC voltage.
Latch-up may increase the power supply current drastically, causing thermal damage to the device.
For the same reason, also be careful not to let the analog power-supply voltage (AVCC, AVRH) exceed the digitalpower-supply voltage.
2.Handling unused pins
Leaving unused input pins open may result in misbehavior or latch-up and possible permanent damage to thedevice. Therefore they must be pulled up or pulled down through resistors. In this case those resistors shouldbe more than 2 kΩ .
Unused bidirectional pins should be set to the output state and can be left open, or the input state with the abovedescribed connection.
3.Power supply pins (VCC/VSS)
•If there are multiple VCC and VSS pins, that are designed to be set to the same potential are connected theinside of the device to prevent malfunctions such as latch-up.
To reduce unnecessary radiation, prevent malfunctioning of the strobe signal due to the rise of ground level,and observe the standard for total output current, be sure to connect the VCC and VSS pins to the power supplyand ground externally. Connect VCC and VSS pins to the device from the current supply source at a low imped-ance.
•As a measure against power supply noise, connect a capacitor of about 0.1 µF as a bypass capacitor betweenVCC and VSS pins in the vicinity of VCC and VSS pins of the device
VccVss
VccVssVcc
Vss
MB90340ESeries
VccVss
VssVcc
4.Mode Pins (MD0 to MD2)
Connect the mode pins directly to VCC or VSS pins. To prevent the device unintentionally entering test mode dueto noise, lay out the printed circuit board so as to minimize the distance from the mode pins to VCC or VSS pinsand to provide a low-impedance connection.
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MB90340E Series
5.Sequence for Turning On the Power Supply to the A/D Converter and Analog Inputs
Make sure to turn on the A/D converter power supply (AVCC, AVRH, AVRL) and analog inputs (AN0 to AN23)after turning-on the digital power supply (VCC).
Turn-off the digital power after turning off the A/D converter supply and analog inputs. In this case, make surethat the voltage does not exceed AVRH or AVCC (turning on/off the analog and digital power supplies simulta-neously is acceptable).
6.Connection of Unused A/D Converter Pins when the A/D Converter is Used
Connect unused pins of A/D converter to AVCC = VCC, AVSS = AVRH = AVRL = VSS.
7.Crystal Oscillator Circuit
The X0, X1 pins and X0A, X1A pins may be possible causes of abnormal operation. Make sure to provide bypasscapacitors via the shortest distance from X0, X1 pins and X0A, X1A pins, crystal oscillator (or ceramic oscillator)and ground lines, and make sure, to the utmost effort, that the oscillation circuit lines do not cross the lines ofother circuits. It is highly recommended to provide a printed circuit board art work surrounding X0, X1 pins andX0A, X1A pins with a ground area for stabilizing the operation.
For each of the mass-production products, request an oscillator evaluation from the manufacturer of the oscillatoryou are using.
8.Pull-up/down resistors
The MB90340E Series does not support internal pull-up/down resistors (except for the pull-up resistors built intoports 0 to 3). Use external components where needed.
9.Using external clock
To use an external clock, drive the X0 pin and leave the X1 pin open.
MB90340E SeriesX0
Open
X1
10.Precautions when not using a sub clock signal
If you do not connect pins X0A and X1A to an oscillator, use pull-down handling on the X0A pin, and leave theX1A pin open.
11.Notes on operation in PLL clock mode
If PLL clock mode is selected, the microcontroller attempt to be working with the self-oscillating circuit even whenthere is no external oscillator or the external clock input is stopped. Performance of this operation, however,cannot be guaranteed.
12.Notes on Power-On
To prevent the internal regulator circuit from malfunctioning, set the voltage rise time during power-on to 50 µsor more (0.2 V to 2.7 V)
13.Stabilization of power supply voltage
A sudden change in the supply voltage may cause the device to malfunction even within the specified VCC supplyvoltage operating range. Therefore, the VCC supply voltage should be stabilized. Stabilize the power supply voltage as follows as a standard level of stabilization.
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MB90340E Series
•VCC ripple variations (peak-to-peak value) at commercial frequencies (50 Hz/60 Hz) fall below 10% of thestandard VCC supply voltage
•The coefficient of fluctuation does not exceed 0.1 V/ms at instantaneous power switching.
14.Initialization
In the device, there are internal registers which are initialized only by a power-on reset. To initialize these registers,turn on the power again.
15.Port 0 to Port 3 Output During Power-on (External-bus Mode)
As shown below, when the power is turned on in External-Bus mode, there is a possibility that output signal ofPort 0 to Port 3 might be unstable irrespective of the reset input.1/2VCCVCCPort0 to Port3Port0 to Port3 outputsmight be unstablePort0 to Port3 outputs = Hi-Z16.Notes on Using the CAN Function
To use the CAN function, please set the DIRECT bit of the CAN Direct Mode Register (CDMR) to 1.If the DIRECT bit is set to ’0’ (initial value), wait states will be performed when accessing CAN registers.Note : Please refer to the Hardware Manual of the MB90340E series for detail of CAN Direct Mode Register.
17.Flash Security Function (except for MB90F346E)
A security bit is located in the area of the flash memory.
If protection code 01H is written in the security bit, the flash memory is in the protected state by security.Therefore please do not write 01H in this address if you do not use the security function.Refer to following table for the address of the security bit.
Flash memory size
MB90F347EMB90F342EMB90F349EMB90F343EMB90F345E
Embedded 1 Mbit Flash MemoryEmbedded 2 Mbits Flash MemoryEmbedded 3 Mbits Flash MemoryEmbedded 4 Mbits Flash Memory
Address of the security bit
FE0001HFC0001HF90001HF80001H
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MB90340E Series
■BLOCK DIAGRAMS
MB90V340E-101/102
X0,X1X0A,X1A*RST
ClockController
16LXCPU
RAM 30 Kbytes
IO Timer 0InputCapture8 channelsOutputCompare8 channels
FRCK0
IN7 to IN0
OUT7 to OUT0
Prescaler5 channels
SOT4 to SOT0SCK4 to SCK0SIN4 to SIN0AVCCAVSS
AN23 to AN0AVRHAVRLADTG
IO Timer 1
FRCK1
UART5 channels
CANController3 channels
16-bit Reload
Timer 4 channels
RX2 to RX0TX2 to TX0
8/10-bit A/D converter24 channels
F2MC-16 BusTIN3 to TIN0TOT3 to TOT0AD15 to AD00A23 to A16
ALERDWR/WRLWRHHRQHAKRDYCLK
DA01, DA00
10-bitD/A converter2 channels8/16-bitPPG16 channelsI2CInterface2 channels
ExternalBusInterface
PPGF to PPG0
SDA1, SDA0SCL1, SCL0
ExternalInterrupt16 channelsClockMonitor
INT15 to INT8(INT15R to INT8R)
INT7 to INT0
DMACCKOT
* : Only for MB90V340E-102
27
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MB90340E Series
MB90F342E(S), MB90F342CE(S), MB90F343E(S), MB90F343CE(S), MB90F345E(S), MB90F345CE(S), , MB90F346E(S), MB90F346CE(S), MB90F347E(S), MB90F347CE(S), MB90F349E(S), MB90F349CE(S), MB90341E(S), MB90341CE(S), MB90342E(S), MB90342CE(S), MB90346E(S), MB90346CE(S), MB90347E(S), MB90347CE(S), MB90348E(S), MB90348CE(S), MB90349E(S), MB90349CE(S)
X0,X1
X0A,X1A*1RST
ClockController
16LXCPU
RAM 2 K/6 K/16 K/20 KbytesROM/Flash 64 K/128 K256 K/384 K/512 KbytesPrescaler4 channels
IO Timer 0InputCapture8 channelsOutputCompare8 channelsIO Timer 1
FRCK0
IN7 to IN0
OUT7 to OUT0
FRCK1
SOT3 to SOT0SCK3 to SCK0SIN3 to SIN0AVCCAVSS
AN15 to AN0AN23 to AN16*2AVRHAVRLADTG
UART4 channels
CANController
3 1/2 channels*
16-bit Reload
Timer 4 channels
RX0, RX1*3 TX0, TX1*3
8/10-bit A/D converter
16/24 channels
F2MC-16 BusTIN3 to TIN0TOT3 to TOT0AD15 to AD00A23 to A16
ALERDWR/WRLWRHHRQHAKRDYCLK
ExternalBusInterface
PPGF to PPG0
8/16-bitPPG16 channelsI2CInterface2 channels
SDA1, SDA0*2SCL1, SCL0*2ExternalInterrupt16 channelsClockMonitor
INT15 to INT8(INT15R to INT8R)
INT7 to INT0
DMAC*1 : Only for devices with an S suffix in the part number*2 : Only for devices with a C suffix in the part number
*3 : Only the MB90341E(S)/ 341CE(S)/ 342E(S)/ 342CE(S)/ F342E(S)/F342CE(S)/F343E(S)/F343CE(S)/ F345E(S)/F345CE(S) are equipped with 2 CAN channels
CKOT
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MB90340E Series
■MEMORY MAPMB90V340E-101/102000000H0000EFH000100HPeripheralExternal access areaMB90F345E(S)/F345CE(S)000000H0000EFH000100HPeripheralExternal access areaMB90F343E(S)/F343CE(S)000000H0000EFH000100HPeripheralExternal access areaRAM 20 KbytesRAM 30 Kbytes0050FFH0050FFHRAM 20 Kbytes0078FFH007900HPeripheral007FFFH008000H00FFFFHF80000HF8FFFFHF90000HF9FFFFHFA0000HFAFFFFHFB0000HFBFFFFHFC0000HFCFFFFHFD0000HFDFFFFHFE0000HFEFFFFHFF0000HFFFFFFHROM (F8 bank)ROM (F9 bank)ROM (FA bank)ROM (FB bank)ROM (FC bank)ROM (FD bank)ROM (FE bank)ROM (FF bank)ROM (image of FF bank)External access area007900H007FFFH008000H00FFFFHF80000HF8FFFFHF90000HF9FFFFHFA0000HFAFFFFHFB0000HFBFFFFHFC0000HFCFFFFHFD0000HFDFFFFHFE0000HFEFFFFHFF0000HFFFFFFHPeripheralROM (image of FF bank)External access areaROM (F8 bank)ROM (F9 bank)ROM (FA bank)ROM (FB bank)ROM (FC bank)ROM (FD bank)ROM (FE bank)ROM (FF bank)007900HPeripheral007FFFH008000HROM (image of FF bank)00FFFFHF80000HExternal access areaF8FFFFHF90000HF9FFFFHFA0000HFAFFFFHFB0000HFBFFFFHFC0000HFCFFFFHFD0000HFDFFFFHFE0000HFEFFFFHFF0000HFFFFFFHROM (F9 bank)ROM (FA bank)ROM (FB bank)ROM (FD bank)ROM (FE bank)ROM (FF bank): Not accessible29
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MB90340E Series
MB90349E(S)/349CE(S)MB90342E(S)/342CE(S)MB90F349E(S)/F349CE(S)MB90F342E(S)/F342CE(S)000000H0000EFH000100HPeripheralExternal access areaMB90348E(S)/348CE(S)MB90341E(S)/341CE(S)000000H0000EFH000100HMB90347E(S)/347CE(S)MB90F347E(S)/F347CE(S)000000H0000EFH000100HRAM 6 Kbytes0018FFHMB90346E(S)/346CE(S)MB90F346E(S)/F346CE(S)000000H0000EFH000100H0008FFHPeripheralExternal access areaPeripheralExternal access areaPeripheralExternal access areaRAM 2 KbytesRAM 16 KbytesRAM 16 Kbytes003FFFH003FFFH007900H007FFFH008000H00FFFFHPeripheralROM (image of FF bank)007900H007FFFH008000H00FFFFHPeripheralROM (image of FF bank)007900H007FFFH008000H00FFFFHPeripheralROM (image of FF bank)007900H007FFFH008000H00FFFFHPeripheralROM (image of FF bank)External access areaExternal access areaExternal access areaExternal access areaFC0000HFCFFFFHFD0000HFDFFFFHFE0000HFEFFFFHFF0000HFFFFFFHROM (FC bank)ROM (FD bank)FE0000HROM (FE bank)FEFFFFHFF0000HFFFFFFHROM (FE bank)FE0000HFEFFFFHFF0000HFFFFFFHROM (FE bank)FE0000HFEFFFFHFF0000HROM (FF bank)FFFFFFHROM (FF bank)ROM (FF bank)ROM (FF bank): Not accessibleNote:An image of the data in the FF bank of ROM is visible in the upper part of bank 00, which makes it possible
for the C compiler to use the small memory model. The lower 16 bits of addresses in the FF bank are the same as the lower 16 bits of addresses in the 00 bank so that tables stored in the ROM can be accessed without using the far specifier in the pointer declaration.
For example, when the address 00C000H is accessed, the data at FFC000H in ROM is actually accessed.The ROM area in bank FF exceeds 32 Kbytes, and its entire image cannot be shown in bank 00.
As a result, the image between FF8000H and FFFFFFH is visible in bank 00, while the image between FF0000H and FF7FFFH is visible only in bank FF.
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MB90340E Series
■I/O MAP
Address
Register
Abbreviation
PDR0PDR1PDR2PDR3PDR4PDR5PDR6PDR7PDR8PDR9PDRAADER5ADER6ADER7ILSR0ILSR1DDR0DDR1DDR2DDR3DDR4DDR5DDR6DDR7DDR8DDR9DDRAReservedPUCR0PUCR1PUCR2PUCR3
R/WR/WR/WW, R/W
Port 0Port 1Port 2Port 3
00000000B00000000B00000000B00000000B(Continued)
AccessR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/W
Resource name
Port 0Port 1Port 2Port 3Port 4Port 5Port 6Port 7Port 8Port 9Port APort 5, A/DPort 6, A/DPort 7, A/DPortsPortsPort 0Port 1Port 2Port 3Port 4Port 5Port 6Port 7Port 8Port 9Port A
Initial valueXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB11111111B11111111B11111111BXXXXXXXXBXXXX0XXXB00000000B00000000B00000000B00000000B00000000B00000000B00000000B00000000B00000000B00000000B00000100B
000000HPort 0 Data Register000001HPort 1 Data Register000002HPort 2 Data Register000003HPort 3 Data Register000004HPort 4 Data Register000005HPort 5 Data Register000006HPort 6 Data Register000007HPort 7 Data Register000008HPort 8 Data Register000009HPort 9 Data Register00000AHPort A Data Register
00000BHPort 5 Analog Input Enable Register00000CHPort 6 Analog Input Enable Register00000DHPort 7 Analog Input Enable Register00000EHInput Level Select Register 000000FHInput Level Select Register 1000010HPort 0 Direction Register000011HPort 1 Direction Register000012HPort 2 Direction Register000013HPort 3 Direction Register000014HPort 4 Direction Register000015HPort 5 Direction Register000016HPort 6 Direction Register000017HPort 7 Direction Register000018HPort 8 Direction Register000019HPort 9 Direction Register00001AHPort A Direction Register00001BH
00001CHPort 0 Pull-up Control Register00001DHPort 1 Pull-up Control Register00001EHPort 2 Pull-up Control Register00001FHPort 3 Pull-up Control Register
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MB90340E Series
AddressRegisterAbbreviationAccessResource nameInitial value
SMR0SCR0RDR0/TDR0
SSR0ECCR0ESCR0BGR00BGR01SMR1SCR1RDR1/TDR1
SSR1ECCR1ESCR1BGR10BGR11PPGC0PPGC1PPG01ReservedPPGC2PPGC3PPG23ReservedPPGC4PPGC5PPG45PACSR1PPGC6PPGC7PPG67Reserved
(Continued)
W,R/WW,R/WR/WR/WW,R/WW,R/WR/W
16-bit PPG 6/7Address Match Detection 116-bit PPG 4/5
0X000XX1B0X000001B000000X0B00000000B0X000XX1B0X000001B000000X0B
W,R/WW,R/WR/W
16-bit PPG 2/3
0X000XX1B0X000001B000000X0B
W,R/WW,R/WR/WR,R/WR,W,R/WR/WR/WR/WW,R/WW,R/WR/WR,R/WR,W,R/WR/WR/WR/WW,R/WW,R/WR/W
16-bit PPG 0/1
UART1UART0
00000000B00000000B00000000B00001000B000000XXB00000100B00000000B00000000B00000000B00000000B00000000B00001000B000000XXB00000100B00000000B00000000B0X000XX1B0X000001B000000X0B
000020HSerial Mode Register 0000021HSerial Control Register 0
000022HReception/Transmission Data Register 0000023HSerial Status Register 0000024H
Extended Communication Control Register 0
000025HExtended Status/Control Register 0000026HBaud Rate Generator Register 00000027HBaud Rate Generator Register 01000028HSerial Mode Register 1000029HSerial Control Register 1
00002AHReception/Transmission Data Register 100002BHSerial Status Register 100002CH
Extended Communication Control Register 1
00002DHExtended Status/Control Register 100002EHBaud Rate Generator Register 1000002FHBaud Rate Generator Register 11000030HPPG 0 Operation Mode Control Register000031HPPG 1 Operation Mode Control Register000032HPPG 0/PPG 1 Count Clock Select Register000033H
000034HPPG 2 Operation Mode Control Register000035HPPG 3 Operation Mode Control Register000036HPPG 2/PPG 3 Count Clock Select Register000037H
000038HPPG 4 Operation Mode Control Register000039HPPG 5 Operation Mode Control Register00003AHPPG 4/PPG 5 Clock Select Register00003BHAddress Detect Control Register 100003CHPPG 6 Operation Mode Control Register00003DHPPG 7 Operation Mode Control Register00003EHPPG 6/PPG 7 Count Clock Control Register00003FH
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MB90340E Series
AddressRegisterAbbreviationAccessPPGC8PPGC9PPG89ReservedPPGCAPPGCBPPGABReservedPPGCCPPGCDPPGCDReservedPPGCEPPGCFPPGEFReservedICS01ICE01ICS23ICE23ICS45ICE45ICS67ICE67OCS0OCS1OCS2OCS3OCS4OCS5OCS6OCS7
R/WR/W, RR/WRR/WRR/WR/W, RR/WR/WR/WR/WR/WR/WR/WR/WW,R/WW,R/WR/WW,R/WW,R/WR/WW,R/WW,R/WR/WW,R/WW,R/WR/W
Resource nameInitial value0X000XX1B0X000001B000000X0B
000040HPPG 8 Operation Mode Control Register000041HPPG 9 Operation Mode Control Register000042H000043H
000044HPPG A Operation Mode Control Register000045HPPG B Operation Mode Control Register000046H000047H
000048HPPG C Operation Mode Control Register000049HPPG D Operation Mode Control Register00004AH00004BH
00004CHPPG E Operation Mode Control Register00004DHPPG F Operation Mode Control Register00004EH00004FH
000050HInput Capture Control Status 0/1000051HInput Capture Edge 0/1
000052HInput Capture Control Status 2/3000053HInput Capture Edge 2/3
000054HInput Capture Control Status 4/5000055HInput Capture Edge 4/5
000056HInput Capture Control Status 6/7000057HInput Capture Edge 6/7
000058HOutput Compare Control Status 0000059HOutput Compare Control Status 100005AHOutput Compare Control Status 200005BHOutput Compare Control Status 300005CHOutput Compare Control Status 400005DHOutput Compare Control Status 500005EHOutput Compare Control Status 600005FHOutput Compare Control Status 7
PPG E/PPG F Count Clock Select Register
PPG C/PPG D Count Clock Select Register
PPG A/PPG B Count Clock Select Register
PPG 8/PPG 9 Count Clock Control Register
16-bit PPG 8/9
0X000XX1B
16-bit PPG A/B
0X000001B000000X0B
0X000XX1B
16-bit PPG C/D
0X000001B000000X0B
0X000XX1B
16-bit PPG E/F
0X000001B000000X0B
Input Capture 0/1Input Capture 2/3Input Capture 4/5Input Capture 6/7Output Compare 0/1Output Compare 2/3Output Compare 4/5Output Compare 6/7
00000000BXXX0X0XXB00000000BXXXXXXXXB00000000BXXXXXXXXB00000000BXXX000XXB0000XX00B0XX00000B0000XX00B0XX00000B0000XX00B0XX00000B0000XX00B0XX00000B(Continued)
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MB90340E Series
AddressRegisterAbbreviationTMCSR0TMCSR0TMCSR1TMCSR1TMCSR2TMCSR2TMCSR3TMCSR3ADCS0ADCS1ADCR0ADCR1ADSR0ADSR1ReservedROMM
AccessR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WRRR/WR/WW
Resource name16-bit Reload Timer 016-bit Reload Timer 116-bit Reload Timer 216-bit Reload Timer 3
Initial value00000000BXXXX0000B00000000BXXXX0000B00000000BXXXX0000B00000000BXXXX0000B000XXXX0B0000000XB00000000BXXXXXX00B00000000B00000000B
000060HTimer Control Status 0000061HTimer Control Status 0000062HTimer Control Status 1000063HTimer Control Status 1000064HTimer Control Status 2000065HTimer Control Status 2000066HTimer Control Status 3000067HTimer Control Status 3000068HA/D Control Status 0000069HA/D Control Status 100006AHA/D Data 000006BHA/D Data 100006CHADC Setting 000006DHADC Setting 100006EH
00006FHROM Mirror Function Select000070H
to 00008FH000090H
to 00009AH00009BH
DMA Descriptor Channel Specified Register
A/D Converter
ROM MirrorXXXXXXX1B
Reserved for CAN Controller 0/1. Refer to “■ CAN CONTROLLERS”
ReservedDCSRDSRLDSRHPACSR0DIRRLPMCRCKSCRReservedDSSR
R/W
DMA
00000000B(Continued)
R/WR/WR/WR/WR/WW,R/WR,R/W
Address Match Detection 0
DMA
00000000B00000000B00000000B00000000B
00009CHDMA Status L Register00009DHDMA Status H Register
00009EHAddress Detect Control Register 000009FH
Delayed Interrupt Trigger/Release Register
Delayed InterruptXXXXXXX0BLow Power Control CircuitLow Power Control Circuit
00011000B11111100B
0000A0HLow-power Mode Control Register0000A1HClock Selection Register0000A2H, 0000A3H
0000A4HDMA Stop Status Register
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MB90340E Series
Address0000A5H0000A6H
Register
Automatic Ready Function Select Register
External Address Output Control Register
Abbreviation
ARSRHACRECSRWDTCTBTCWTCReservedDERLDERHFMCSReservedICR00ICR01ICR02ICR03ICR04ICR05ICR06ICR07ICR08ICR09ICR10ICR11ICR12ICR13ICR14ICR15DAT0DAT1DACR0DACR1
W,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WW,R/WR/WR/WR/WR/W
D/A ConverterInterrupt Control
00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111B00000111BXXXXXXXXBXXXXXXXXBXXXXXXX0BXXXXXXX0B(Continued)R/WR/WR,R/W
DMA
00000000B00000000B000X0000B
AccessWWWR,WW,R/WR,R/W
Watchdog TimerTime Base TimerWatch TimerExternal Memory
AccessResource name
Initial value0011XX00B00000000B0000000XBXXXXX111B1XX00100B1X001000B
0000A7HBus Control Signal Selection Register0000A8HWatchdog Control Register0000A9HTime Base Timer Control Register0000AAHWatch Timer Control Register0000ABH
0000ACHDMA Enable L Register0000ADHDMA Enable H Register0000AEH0000AFH
0000B0HInterrupt Control Register 000000B1HInterrupt Control Register 010000B2HInterrupt Control Register 020000B3HInterrupt Control Register 030000B4HInterrupt Control Register 040000B5HInterrupt Control Register 050000B6HInterrupt Control Register 060000B7HInterrupt Control Register 070000B8HInterrupt Control Register 080000B9HInterrupt Control Register 090000BAHInterrupt Control Register 100000BBHInterrupt Control Register 110000BCHInterrupt Control Register 120000BDHInterrupt Control Register 130000BEHInterrupt Control Register 140000BFHInterrupt Control Register 150000C0HD/A Converter Data 00000C1HD/A Converter Data 10000C2HD/A Control 00000C3HD/A Control 1
Flash Control Status Register (Flash memory devices only.Otherwise reserved)
Flash Memory
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MB90340E Series
Address0000C4H, 0000C5H
RegisterAbbreviationAccess
ReservedENIR0EIRR0ELVR0ELVR0ENIR1EIRR1ELVR1ELVR1EISSRPSCCRBAPLBAPMBAPHDMACSIOALIOAHDCTLDCTHSMR2SCR2RDR2/TDR2
SSR2ECCR2ESCR2BGR20BGR21
R/WR/WR/WR/WR/WR/WR/WR/WR/WWR/WR/WR/WR/WR/WR/WR/WR/WW,R/WW,R/WR/WR,R/WR,W,R/WR/WR/WR/W
Resource nameInitial value
0000C6HExternal Interrupt Enable 00000C7HExternal Interrupt Source 00000C8HExternal Interrupt Level Setting 00000C9HExternal Interrupt Level Setting 00000CAHExternal Interrupt Enable 10000CBHExternal Interrupt Source 10000CCHExternal Interrupt Level Setting 10000CDHExternal Interrupt Level Setting 10000CEHExternal Interrupt Source Select0000CFHPLL/Sub clock Control Register0000D0HDMA Buffer Address Pointer L Register0000D1HDMA Buffer Address Pointer M Register0000D2HDMA Buffer Address Pointer H Register0000D3HDMA Control Register0000D4H0000D5H
I/O Register Address Pointer L Register
I/O Register Address Pointer H Register
00000000B
External Interrupt 0
XXXXXXXXB00000000B00000000B00000000BXXXXXXXXB
External Interrupt 1
00000000B00000000B00000000B
PLL
XXXX0000BXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB
DMA
XXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB00000000B00000000B00000000B
UART2
00001000B000000XXB00000100B00000000B00000000B
0000D6HData Counter L Register0000D7HData Counter H Register0000D8HSerial Mode Register 20000D9HSerial Control Register 20000DAH
Reception/Transmission Data Register 2
Extended Communication Control Register 2
0000DBHSerial Status Register 20000DCH
0000DDHExtended Status Control Register 20000DEHBaud Rate Generator Register 200000DFHBaud Rate Generator Register 210000E0H
to 0000EFH0000F0H
to 0000FFH
Reserved for CAN Controller 2. Refer to “■ CAN CONTROLLERS”
External
(Continued)
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MB90340E Series
Address007900H007901H007902H007903H007904H007905H007906H007907H007908H007909H00790AH00790BH
Register
Reload Register L0Reload Register H0Reload Register L1Reload Register H1Reload Register L2Reload Register H2Reload Register L3Reload Register H3Reload Register L4Reload Register H4Reload Register L5Reload Register H5
Abbreviation
PRLL0PRLH0PRLL1PRLH1PRLL2PRLH2PRLL3PRLH3PRLL4PRLH4PRLL5PRLH5PRLL6PRLH6PRLL7PRLH7PRLL8PRLH8PRLL9PRLH9PRLLAPRLHAPRLLBPRLHBPRLLCPRLHCPRLLDPRLHDPRLLEPRLHEPRLLFPRLHFIPCP0IPCP0IPCP1IPCP1
AccessR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WRRRR
Resource nameInitial valueXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB(Continued)
37
16-bit PPG 0/1
16-bit PPG 2/3
16-bit PPG 4/5
00790CHReload Register L600790DHReload Register H600790EH00790FH007910H007911H007912H007913H007914H007915H007916H007917H007918H007919H00791AH00791BH
Reload Register L7Reload Register H7Reload Register L8Reload Register H8Reload Register L9Reload Register H9Reload Register LAReload Register HAReload Register LBReload Register HBReload Register LCReload Register HCReload Register LDReload Register HD
16-bit PPG 6/7
16-bit PPG 8/9
16-bit PPG A/B
16-bit PPG C/D
00791CHReload Register LE00791DHReload Register HE00791EH00791FH007920H007921H007922H007923H
Reload Register LFReload Register HFInput Capture 0Input Capture 0Input Capture 1Input Capture 1
16-bit PPG E/F
Input Capture 0/1
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MB90340E Series
AddressRegisterAbbreviation
IPCP2IPCP2IPCP3IPCP3IPCP4IPCP4IPCP5IPCP5IPCP6IPCP6IPCP7IPCP7OCCP0OCCP0OCCP1OCCP1OCCP2OCCP2OCCP3OCCP3OCCP4OCCP4OCCP5OCCP5OCCP6OCCP6OCCP7OCCP7TCDT0TCDT0TCCSL0TCCSH0TCDT1TCDT1TCCSL1TCCSH1
AccessRRRRRRRRRRRRR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/W
Resource nameInitial valueXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB00000000B00000000B00000000B0XXXXXXXB00000000B00000000B00000000B0XXXXXXXB(Continued)
007924HInput Capture 2007925HInput Capture 2007926HInput Capture 3007927HInput Capture 3007928HInput Capture 4007929HInput Capture 400792AHInput Capture 500792BHInput Capture 500792CHInput Capture 600792DHInput Capture 600792EHInput Capture 700792FHInput Capture 7007930HOutput Compare 0007931HOutput Compare 0007932HOutput Compare 1007933HOutput Compare 1007934HOutput Compare 2007935HOutput Compare 2007936HOutput Compare 3007937HOutput Compare 3007938HOutput Compare 4007939HOutput Compare 400793AHOutput Compare 500793BHOutput Compare 500793CHOutput Compare 600793DHOutput Compare 600793EHOutput Compare 700793FHOutput Compare 7007940HTimer Data 0007941HTimer Data 0
007942HTimer Control Status 0007943HTimer Control Status 0007944HTimer Data 1007945HTimer Data 1
007946HTimer Control Status 1007947HTimer Control Status 1
Input Capture 2/3
Input Capture 4/5
Input Capture 6/7
Output Compare 0/1
Output Compare 2/3
Output Compare 4/5
Output Compare 6/7
I/O Timer 0
I/O Timer 1
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MB90340E Series
Address007948H007949H00794AH00794BH00794CH00794DH00794EH00794FH
Register
Timer 0/Reload 0Timer 1/Reload 1Timer 2/Reload 2Timer 3/Reload 3
AbbreviationAccessTMR0/TMRLR0TMR1/TMRLR1TMR2/TMRLR2TMR3/TMRLR3SMR3SCR3RDR3/TDR3
SSR3ECCR3ESCR3BGR30BGR31SMR4SCR4RDR4/TDR4
SSR4ECCR4ESCR4BGR40BGR41
ReservedCLKRReservedCDMRCANSWR
R/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WW,R/WW,R/WR/WR,R/WR,W,R/WR/WR/WR/WW,R/WW,R/WR/WR,R/WR,W,R/WR/WR/WR/W
Resource name16-bit Reload Timer 016-bit Reload Timer 116-bit Reload Timer 216-bit Reload Timer 3
Initial valueXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB00000000B00000000B00000000B
007950HSerial Mode Register 3007951HSerial Control Register 3007952H
Reception/Transmission Data Register 3
Extended Communication Control Register 3
007953HSerial Status Register 3007954H
UART3
00001000B000000XXB00000100B00000000B00000000B00000000B00000000B00000000B
007955HExtended Status Control Register007956HBaud Rate Generator Register 30007957HBaud Rate Generator Register 31007958HSerial Mode Register 4007959HSerial Control Register 400795AH
Reception/Transmission Data Register 4
Extended Communication Control Register 4
00795BHSerial Status Register 400795CH
UART4
00001000B000000XXB00000100B00000000B00000000B
00795DHExtended Status Control Register00795EHBaud Rate Generator Register 4000795FHBaud Rate Generator Register 41007960H
to 00796BH
00796CHClock Output Enable Register00796DH
00796EHCAN Direct Mode Register00796FHCAN Switch Register
Clock MonitorCAN clock sync
CAN 0/1
XXXX0000BXXXXXXX0BXXXXXX00B(Continued)
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MB90340E Series
AddressRegisterAbbreviation
IBSR0IBCR0ITBAL0ITBAH0ITMKL0ITMKH0ISBA0ISMK0IDAR0ReservedICCR0ReservedIBSR1IBCR1ITBAL1ITBAH1ITMKL1ITMKH1ISBA1ISMK1IDAR1ReservedICCR1Reserved
AccessRW,R/WR/WR/WR/WR/WR/WR/WR/W
Resource nameInitial value00000000B00000000B00000000B00000000B
007970HI2C Bus Status Register 0007971HI2C Bus Control Register 0007972H007973H
I2C 10-bit Slave Address Register 0
007974HI2C 10-bit Slave Address Mask 007975HRegister 0
007976HI2C 7-bit Slave Address Register 0007977HI2C 7-bit Slave Address Mask Register 0007978HI2C Data Register 0007979H, 00797AH
00797BHI2C Clock Control Register 000797CH
to 00797FH
007980HI2C Bus Status Register 1007981HI2C Bus Control Register 1007982H007983H
I2C 10-bit Slave Address Register 1
I2C Interface 011111111B00111111B00000000B01111111B00000000B
R/WI2C Interface 000011111B
RW,R/WR/WR/WR/WR/WR/WR/WR/W
I2C Interface 1
00000000B00000000B00000000B00000000B11111111B00111111B00000000B01111111B00000000B
007984HI2C 10-bit Slave Address Mask 007985HRegister 1
007986HI2C 7-bit Slave Address Register 1007987HI2C 7-bit Slave Address Mask Register 1007988HI2C Data Register 1007989H, 00798AH
00798BHI2C Clock Control Register 100798CH
to 0079C1H0079C2H0079C3H
to 0079DFH
R/WI2C Interface 100011111B
Clock Modulator Control Register
CMCR
Clock Modulator
Reserved
(Continued)
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MB90340E Series
(Continued)AddressRegisterAbbreviationAccessResource name
PADR0R/W0079E0HDetect Address Setting 0
0079E1HDetect Address Setting 0PADR0R/W0079E2HDetect Address Setting 0PADR0R/W0079E3HDetect Address Setting 1PADR1R/W
Address Match
0079E4HDetect Address Setting 1PADR1R/W
Detection 0
0079E5HDetect Address Setting 1PADR1R/W0079E6HDetect Address Setting 2PADR2R/W0079E7HDetect Address Setting 2PADR2R/W0079E8HDetect Address Setting 2PADR2R/W0079E9H
to Reserved0079EFH
0079F0HDetect Address Setting 3PADR3R/W0079F1HDetect Address Setting 3PADR3R/W0079F2HDetect Address Setting 3PADR3R/W0079F3HDetect Address Setting 4PADR4R/W
Address Match
0079F4HDetect Address Setting 4PADR4R/W
Detection 1
0079F5HDetect Address Setting 4PADR4R/W0079F6HDetect Address Setting 5PADR5R/W0079F7HDetect Address Setting 5PADR5R/W0079F8HDetect Address Setting 5PADR5R/W0079F9H
to Reserved0079FFH007A00H
to Reserved for CAN Controller 0. Refer to “■ CAN CONTROLLERS”007AFFH007B00H
to Reserved for CAN Controller 0. Refer to “■ CAN CONTROLLERS”007BFFH007C00H
to Reserved for CAN Controller 1. Refer to “■ CAN CONTROLLERS”007CFFH007D00H
to Reserved for CAN Controller 1. Refer to “■ CAN CONTROLLERS”007DFFH007E00H
to Reserved for CAN Controller 2. Refer to “■ CAN CONTROLLERS”007EFFH007F00H
to Reserved for CAN Controller 2. Refer to “■ CAN CONTROLLERS”007FFFH
Initial valueXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB
XXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB
Notes : • Initial value of “X” represents unknown value.
• Any write access to reserved addresses in I/O map should not be performed. A read access to reserved addresses results in reading “X”.
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MB90340E Series
■CAN CONTROLLERS
The CAN controller has the following features:
•Conforms to CAN Specification Version 2.0 Part A and B
• Supports transmission/reception in standard frame and extended frame formats•Supports transmission of data frames by receiving remote frames•16 transmission/reception message buffers• 29-bit ID and 8-byte data
• Multi-level message buffer configuration
•Provides full-bit comparison, full-bit mask, acceptance register 0/acceptance register 1 for each messagebuffer as ID acceptance mask
• Two acceptance mask registers in either standard frame format or extended frame formats•Bit rate programmable from 10 kbps to 2 Mbps (when input clock is at 16 MHz)
List of Control Registers (1)
Address
CAN0000070H000071H000072H000073H000074H000075H000076H000077H000078H000079H00007AH00007BH00007CH00007DH00007EH00007FH
CAN1000080H000081H000082H000083H000084H000085H000086H000087H000088H000089H00008AH00008BH00008CH00008DH00008EH00008FH
CAN20000E0H0000E1H0000E2H0000E3H0000E4H0000E5H0000E6H0000E7H0000E8H0000E9H0000EAH0000EBH0000ECH0000EDH0000EEH0000EFH
RegisterMessage BufferValid RegisterTransmit Request
RegisterTransmit Cancel
RegisterTransmission Complete RegisterReceive Complete
RegisterRemote Request Receiving RegisterReceive Overrun
RegisterReception Interrupt Enable Register
AbbreviationBVALRTREQRTCANRTCRRCRRRTRRROVRRRIER
AccessR/WR/WWR/WR/WR/WR/WR/W
Initial Value00000000B 00000000B00000000B 00000000B00000000B 00000000B00000000B 00000000B00000000B 00000000B00000000B 00000000B00000000B 00000000B00000000B 00000000B
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MB90340E Series
List of Control Registers (2)
Address
CAN0007B00H007B01H007B02H007B03H007B04H007B05H007B06H007B07H007B08H007B09H007B0AH007B0BH007B0CH007B0DH007B0EH007B0FH007B10H007B11H007B12H007B13H007B14H007B15H007B16H007B17H007B18H007B19H007B1AH007B1BH
CAN1007D00H007D01H007D02H007D03H007D04H007D05H007D06H007D07H007D08H007D09H007D0AH007D0BH007D0CH007D0DH007D0EH007D0FH007D10H007D11H007D12H007D13H007D14H007D15H007D16H007D17H007D18H007D19H007D1AH007D1BH
CAN2007F00H007F01H007F02H007F03H007F04H007F05H007F06H007F07H007F08H007F09H007F0AH007F0BH007F0CH007F0DH007F0EH007F0FH007F10H007F11H007F12H007F13H007F14H007F15H007F16H007F17H007F18H007F19H007F1AH007F1BH
Acceptance Mask
Register 1
AMR1
R/W
XXXXXXXXBXXXXXXXXB
Acceptance Mask
Register 0
AMR0
R/W
XXXXXXXXBXXXXXXXXBXXXXXXXXB XXXXXXXXB
Acceptance Mask Select Register
AMSR
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
RegisterControl StatusRegisterLast EventIndicator RegisterReceive And Transmit
Error Counter
Bit TimingRegisterIDE RegisterTransmit RTRRegisterRemote Frame Receive Waiting
RegisterTransmit Interrupt Enable Register
Abbreviation
CSRLEIRRTECBTRIDERTRTRR
AccessR/W, WR/W, RR/WRR/WR/WR/W
Initial Value0XXXX0X1B00XXX000B000X0000BXXXXXXXXB00000000B 00000000B11111111B X1111111BXXXXXXXXB XXXXXXXXB00000000B 00000000BXXXXXXXXB XXXXXXXXB00000000B 00000000BXXXXXXXXB XXXXXXXXB
RFWTRR/W
TIERR/W
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MB90340E Series
List of Message Buffers (ID Registers) (1)
Address
CAN0007A00H
to007A1FH007A20H007A21H007A22H007A23H007A24H007A25H007A26H007A27H007A28H007A29H007A2AH007A2BH007A2CH007A2DH007A2EH007A2FH007A30H007A31H007A32H007A33H007A34H007A35H007A36H007A37H007A38H007A39H007A3AH007A3BH007A3CH007A3DH007A3EH007A3FH
44
CAN1007C00H
to007C1FH007C20H007C21H007C22H007C23H007C24H007C25H007C26H007C27H007C28H007C29H007C2AH007C2BH007C2CH007C2DH007C2EH007C2FH007C30H007C31H007C32H007C33H007C34H007C35H007C36H007C37H007C38H007C39H007C3AH007C3BH007C3CH007C3DH007C3EH007C3FH
CAN2007E00H
to007E1FH007E20H007E21H007E22H007E23H007E24H007E25H007E26H007E27H007E28H007E29H007E2AH007E2BH007E2CH007E2DH007E2EH007E2FH007E30H007E31H007E32H007E33H007E34H007E35H007E36H007E37H007E38H007E39H007E3AH007E3BH007E3CH007E3DH007E3EH007E3FH
Id Register 7
IDR7
R/W
XXXXXXXXB XXXXXXXXB
Id Register 6
IDR6
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 5
IDR5
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 4
IDR4
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 3
IDR3
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 2
IDR2
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 1
IDR1
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 0
IDR0
R/W
XXXXXXXXBXXXXXXXXBXXXXXXXXB XXXXXXXXB
RegisterGeneral-Purpose Ram
Abbreviation
Access
Initial ValueXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB XXXXXXXXB
⎯R/W
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MB90340E Series
List of Message Buffers (ID Registers) (2)
Address
CAN0007A40H007A41H007A42H007A43H007A44H007A45H007A46H007A47H007A48H007A49H007A4AH007A4BH007A4CH007A4DH007A4EH007A4FH007A50H007A51H007A52H007A53H007A54H007A55H007A56H007A57H007A58H007A59H007A5AH007A5BH007A5CH007A5DH007A5EH007A5FH
CAN1007C40H007C41H007C42H007C43H007C44H007C45H007C46H007C47H007C48H007C49H007C4AH007C4BH007C4CH007C4DH007C4EH007C4FH007C50H007C51H007C52H007C53H007C54H007C55H007C56H007C57H007C58H007C59H007C5AH007C5BH007C5CH007C5DH007C5EH007C5FH
CAN2007E40H007E41H007E42H007E43H007E44H007E45H007E46H007E47H007E48H007E49H007E4AH007E4BH007E4CH007E4DH007E4EH007E4FH007E50H007E51H007E52H007E53H007E54H007E55H007E56H007E57H007E58H007E59H007E5AH007E5BH007E5CH007E5DH007E5EH007E5FH
Id Register 15
IDR15
R/W
XXXXXXXXB XXXXXXXXB
Id Register 14
IDR14
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 13
IDR13
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 12
IDR12
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 11
IDR11
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 10
IDR10
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 9
IDR9
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Id Register 8
IDR8
R/W
XXXXXXXXB XXXXXXXXBXXXXXXXXB XXXXXXXXB
Register
Abbreviation
Access
Initial ValueXXXXXXXXB XXXXXXXXB
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MB90340E Series
List of Message Buffers (DLC Registers and Data Registers) (1) Address
CAN0007A60H007A61H007A62H007A63H007A64H007A65H007A66H007A67H007A68H007A69H007A6AH007A6BH007A6CH007A6DH007A6EH007A6FH007A70H007A71H007A72H007A73H007A74H007A75H007A76H007A77H007A78H007A79H007A7AH007A7BH007A7CH007A7DH007A7EH007A7FH
CAN1007C60H007C61H007C62H007C63H007C64H007C65H007C66H007C67H007C68H007C69H007C6AH007C6BH007C6CH007C6DH007C6EH007C6FH007C70H007C71H007C72H007C73H007C74H007C75H007C76H007C77H007C78H007C79H007C7AH007C7BH007C7CH007C7DH007C7EH007C7FH
CAN2007E60H007E61H007E62H007E63H007E64H007E65H007E66H007E67H007E68H007E69H007E6AH007E6BH007E6CH007E6DH007E6EH007E6FH007E70H007E71H007E72H007E73H007E74H007E75H007E76H007E77H007E78H007E79H007E7AH007E7BH007E7CH007E7DH007E7EH007E7FH
RegisterDLC Register 0DLC Register 1DLC Register 2DLC Register 3DLC Register 4DLC Register 5DLC Register 6DLC Register 7DLC Register 8DLC Register 9DLC Register 10DLC Register 11DLC Register 12DLC Register 13DLC Register 14DLC Register 15
AbbreviationDLCR0DLCR1DLCR2DLCR3DLCR4DLCR5DLCR6DLCR7DLCR8DLCR9DLCR10DLCR11DLCR12DLCR13DLCR14DLCR15
AccessR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/WR/W
Initial ValueXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXBXXXXXXXXB
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MB90340E Series
List of Message Buffers (DLC Registers and Data Registers) (2) Address
CAN0007A80H
to 007A87H007A88H
to 007A8FH007A90H
to 007A97H007A98H
to 007A9FH007AA0H
to 007AA7H007AA8H
to 007AAFH007AB0H
to 007AB7H007AB8H
to 007ABFH007AC0H
to 007AC7H007AC8H
to 007ACFH007AD0H
to 007AD7H007AD8H
to 007ADFH007AE0H
to 007AE7H007AE8H
to 007AEFH
CAN1007C80H
to 007C87H007C88H
to 007C8FH007C90H
to 007C97H007C98H
to 007C9FH007CA0H
to 007CA7H007CA8H
to 007CAFH007CB0H
to 007CB7H007CB8H
to 007CBFH007CC0H
to 007CC7H007CC8H
to 007CCFH007CD0H
to 007CD7H007CD8H
to 007CDFH007CE0H
to 007CE7H007CE8H
to 007CEFH
CAN2007E80H
to 007E87H007E88H
to 007E8FH007E90H
to 007E97H007E98H
to 007E9FH007EA0H
to 007EA7H007EA8H
to 007EAFH007EB0H
to 007EB7H007EB8H
to 007EBFH007EC0H
to 007EC7H007EC8H
to 007ECFH007ED0H
to 007ED7H007ED8H
to 007EDFH007EE0H
to 007EE7H007EE8H
to 007EEFH
RegisterData Register 0 (8 bytes) Data Register 1 (8 bytes) Data Register 2 (8 bytes) Data Register 3 (8 bytes) Data Register 4 (8 bytes) Data Register 5 (8 bytes) Data Register 6 (8 bytes) Data Register 7 (8 bytes) Data Register 8 (8 bytes) Data Register 9 (8 bytes) Data Register 10
(8 bytes) Data Register 11
(8 bytes) Data Register 12
(8 bytes) Data Register 13
(8 bytes)
Abbreviation
Access
Initial ValueXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXB
DTR0R/W
DTR1R/W
DTR2R/W
DTR3R/W
DTR4R/W
DTR5R/W
DTR6R/W
DTR7R/W
DTR8R/W
DTR9R/W
DTR10R/W
DTR11R/W
DTR12R/W
DTR13R/W
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MB90340E Series
List of Message Buffers (DLC Registers and Data Registers) (3) Address
CAN0007AF0H
to 007AF7H007AF8H
to 007AFFH
CAN1007CF0H
to 007CF7H007CF8H
to 007CFFH
CAN2007EF0H
to 007EF7H007EF8H
to 007EFFH
RegisterData Register 14
(8 bytes) Data Register 15
(8 bytes)
Abbreviation
Access
Initial ValueXXXXXXXXB
to
XXXXXXXXBXXXXXXXXB
to
XXXXXXXXB
DTR14R/W
DTR15R/W
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MB90340E Series
■INTERRUPT FACTORS, INTERRUPT VECTORS, INTERRUPT CONTROL REGISTER
Interrupt cause
Reset
INT9 instructionExceptionCAN 0 RXCAN 0 TX/NS
CAN 1 RX / Input Capture 6CAN 1 TX/NS / Input Capture 7CAN 2 RX / I2C0CAN 2 TX/NS16-bit Reload Timer 016-bit Reload Timer 116-bit Reload Timer 216-bit Reload Timer 3PPG 0/1/4/5PPG 2/3/6/7PPG 8/9/C/DPPG A/B/E/FTime Base Timer
External Interrupt 0 to 3, 8 to 11Watch Timer
External Interrupt 4 to 7, 12 to 15A/D Converter
I/O Timer 0 / I/O Timer 1Input Capture 4/5 / I2C1Output Compare 0/1/4/5Input Capture 0 to 3Output Compare 2/3/6/7UART 0 RXUART 0 TX
UART 1 RX / UART 3 RXUART 1 TX / UART 3 TX
EI2OS Support
NNNNNY1Y1NNY1Y1Y1Y1NNNNNY1NY1Y1NY1Y1Y1Y1Y2Y1Y2Y1
DMA channel number⎯⎯⎯⎯⎯⎯⎯⎯⎯012⎯⎯⎯⎯⎯⎯3⎯45⎯678910111213
Interrupt vectorNumber#08#09#10#11#12#13#14#15#16#17#18#19#20#21#22#23#24#25#26#27#28#29#30#31#32#33#34#35#36#37#38
AddressFFFFDCHFFFFD8HFFFFD4HFFFFD0HFFFFCCHFFFFC8HFFFFC4HFFFFC0HFFFFBCHFFFFB8HFFFFB4HFFFFB0HFFFFACHFFFFA8HFFFFA4HFFFFA0HFFFF9CHFFFF98HFFFF94HFFFF90HFFFF8CHFFFF88HFFFF84HFFFF80HFFFF7CHFFFF78HFFFF74HFFFF70HFFFF6CHFFFF68HFFFF64H
Interrupt control
registerNumber⎯⎯⎯ICR00ICR01ICR02ICR03ICR04ICR05ICR06ICR07ICR08ICR09ICR10ICR11ICR12ICR13
Address⎯⎯⎯0000B0H0000B1H0000B2H0000B3H0000B4H0000B5H0000B6H0000B7H0000B8H0000B9H0000BAH0000BBH0000BCH0000BDH(Continued)
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MB90340E Series
(Continued)
Interrupt cause
UART 2 RX / UART 4 RXUART 2 TX / UART 4 TXFlash MemoryDelayed Interrupt
Y1 : Usable
Y2 : Usable, with EI2OS stop functionN:Unusable
Notes : •The peripheral resources sharing the ICR register have the same interrupt level.
•When two peripheral resources share the ICR register, only one can use Extended Intelligent I/O Service at a time.
•When either of the two peripheral resources sharing the ICR register specifies Extended Intelligent I/O
Service, the other one cannot use interrupts.
EIOS Support
2
DMA channel number1415⎯⎯
Interrupt vectorNumber#39#40#41#42
AddressFFFF60HFFFF5CHFFFF58HFFFF54H
Interrupt control
registerNumberICR14ICR15
Address0000BEH0000BFH
Y2Y1NN
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MB90340E Series
■ELECTRICAL CHARACTERISTICS
1.Absolute Maximum Ratings
Parameter
SymbolVCC
Power supply voltage*1
AVCC
RatingMinVSS − 0.3VSS − 0.3
MaxVSS + 6.0VSS + 6.0VSS + 6.0VSS + 6.0VSS + 6.0+4.04015410050−15−4−100−50340+105+150
UnitVVVVVmAmAmAmAmAmAmAmAmAmA °C °C
VCC = AVCC*2
AVCC ≥ AVRH, AVCC ≥ AVRL, AVRH ≥ AVRL*3*3*5*5*4*4*4*4*4*4*4*4
Remarks
AVRH,
VSS − 0.3
AVRLVIVOICLAMPΣ|ICLAMP|IOLIOLAVΣIOLΣIOLAVIOHIOHAVΣIOHΣIOHAVPDTATSTG
VSS − 0.3VSS − 0.3−4.0⎯⎯⎯⎯⎯⎯⎯⎯⎯⎯−40−55
Input voltage*1Output voltage*1
Maximum Clamp CurrentTotal Maximum Clamp Current“L” level maximum output current“L” level average output current“L” level maximum overall output current“L” level average overall output current“H” level maximum output current“H” level average output current“H” level maximum overall output current“H” level average overall output currentPower consumptionOperating temperatureStorage temperature
mWMB90F347E
*1:This parameter is based on VSS = AVSS = 0 V
*2:Set AVCC and VCC to the same voltage. Make sure that AVCC does not exceed VCC and that the voltage at the analog inputs does not exceed AVCC when the power is switched on.*3:VI and VO should not exceed VCC + 0.3 V. VI should not exceed the specified ratings. However if the maximum current to/from an input is limited by some means with external components, the ICLAMP rating supersedes the VI rating.*4:Applicable to pins: P00 to P07, P10 to P17, P20 to P27, P30 to P37, P40 to P47, P50 to P57, P60 to P67,
P70 to P77, P80 to P87, P90 to P97, PA0, PA1*5: • Applicable to pins: P00 to P07, P10 to P17, P20 to P27, P30 to P37, P40 to P47,
P50 to P57 (Evaluation device : P50 to P55) , P60 to P67, P70 to P77, P80 to P87, P90 to P97, PA0 to PA1
• Use within recommended operating conditions.• Use with DC voltage (current)
• The +B signal should always be applied by using a limiting resistance placed between the +B signal and themicrocontroller.
• The value of the limiting resistance should be set so that when the +B signal is applied, the input current tothe microcontroller pin does not exceed the rated value, either instantaneously or for prolonged periods.• Note that when the microcontroller drive current is low, such as in the power saving modes, the +B inputpotential may pass through the protective diode and increase the potential at the VCC pin, and this may affectother devices.
(Continued)
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MB90340E Series
(Continued)
• Note that if a +B signal is input when the microcontroller power supply is off (not fixed at 0 V) , the powersupply is provided from the pins, so that incomplete operation may result.
• Note that if the +B input is applied during power-on, the power supply is provided from the pins and theresulting supply voltage may not be sufficient to operate the power-on reset.• Care must be taken not to leave the +B input pin open.• Sample recommended circuits: •Input/output equivalent circuitsProtective diodeVCCLimitingresistance+B input (0 V to 16 V)P-chN-chRWARNING:Semiconductor devices can be permanently damaged by application of stress (voltage, current,
temperature, etc.) in excess of absolute maximum ratings. Do not exceed these ratings.
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MB90340E Series
2.Recommended Operating Conditions
(VSS = AVSS = 0 V)
Parameter
Symbol
Value
Min4.0
VCC, AVCC
3.54.53.0
Smoothing capacitorOperating temperature
CSTA
0.1−40
Typ5.05.05.0⎯⎯⎯
Max5.55.55.55.51.0+105
UnitVVVVµF °C
Remarks
Under normal operation
Under normal operation, when not using the A/D converter and not Flash programming.
When External bus is used.Maintains RAM data in stop modeUse a ceramic capacitor or capacitor of better AC characteristics. Capacitor at the VCC should be greater than this capacitor.
Power supply voltage
C Pin Connection DiagramCCSWARNING:The recommended operating conditions are required in order to ensure the normal operation of the
semiconductor device. All of the device’s electrical characteristics are warranted when the device isoperated within these ranges.
Always use semiconductor devices within their recommended operating condition ranges. Operationoutside these ranges may adversely affect reliability and could result in device failure.
No warranty is made with respect to uses, operating conditions, or combinations not represented onthe data sheet. Users considering application outside the listed conditions are advised to contact theirFUJITSU representatives beforehand.
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MB90340E Series
3.DC Characteristics
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = AVSS = 0 V)
Parameter
Sym-bol
Pin
Condition
Value
Min
Typ
Max
Unit
Remarks
Port inputs if CMOS
hysteresis input levels are selected (except P12, P44, P45, P46, P47, P50, P82, P83)
Port inputs if
Automotive input levels are selected
Port inputs if TTL input levels are selected
P12, P50, P82, P85
inputs if CMOS input levels are selected
P44, P45, P46, P47
inputs if CMOS hysteresis input levels are selectedRST input pin (CMOS hysteresis) MD input pin
Port inputs if CMOS
hysteresis input levels are selected (except P12, P44, P45, P46, P47, P50, P82, P83)
Port inputs if
Automotive input levels are selected
Port inputs if TTL
input levels are selectedP12, P50, P82, P85
inputs if CMOS input levels are selected
P44, P45, P46, P47
inputs if CMOS hysteresis input levels are selectedRST input pin (CMOS hysteresis) MD input pin
VIHS⎯⎯0.8 VCC⎯VCC + 0.3V
VIHA
Input H voltage (At VCC = 5 V ± 10%)
VIHTVIHS
⎯⎯⎯
⎯⎯⎯
0.8 VCC
2.00.7 VCC
⎯⎯⎯
VCC + 0.3VCC + 0.3VCC + 0.3
VVV
VIHIVIHRVIHM
⎯⎯⎯
⎯⎯⎯
0.7 VCC0.8 VCCVCC − 0.3
⎯⎯⎯
VCC + 0.3VCC + 0.3VCC + 0.3
VVV
VILS⎯⎯VSS − 0.3⎯0.2 VCCV
VILA
Input L voltage (At VCC = 5 V ± 10%)
VILTVILS
⎯⎯⎯
⎯⎯⎯
VSS − 0.3VSS − 0.3VSS − 0.3
⎯⎯⎯
0.5 VCC
0.80.3 VCC
VVV
VILIVILRVILM
Output H voltageOutput H voltageOutput L voltageOutput L voltage54
VOHVOHIVOLVOLI
⎯⎯⎯Normal outputs
⎯⎯⎯
VSS − 0.3VSS − 0.3VSS − 0.3
⎯⎯⎯⎯⎯⎯⎯
0.3 VCC0.2 VCCVSS + 0.3⎯⎯0.40.4
VVVVVVV
VCC = 4.5 V,
VCC − 0.5
IOH = −4.0 mA
I2C current VCC = 4.5 V,
VCC − 0.5
outputsIOH = −3.0 mANormal outputs
VCC = 4.5 V, IOL = 4.0 mA
⎯⎯
I2C current VCC = 4.5 V, outputsIOL = 3.0 mA
(Continued)
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MB90340E Series
(Continued)
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = AVSS = 0 V)
ParameterInput leak currentPull-up resistance
Sym-bolIIL
Pin⎯
P00 to P07,P10 to P17,P20 to P27,P30 to P37,
RSTMD2
Condition
VCC = 5.5 V, VSS < VI < VCC
⎯
Min−125
Value
TypMax⎯+150
100
UnitRemarksµAkΩ
Except
Flash kΩ
memorydevicesmA
Flash mAmemory
devicesFlash mAmemory
devicesmAmA
RUP
Pull-down resistance
RDOWN⎯
VCC = 5.0 V,
Internal frequency : 24 MHz, At normal operation.VCC = 5.0 V,
Internal frequency : 24 MHz, At writing Flash memory.VCC = 5.0 V,
Internal frequency : 24 MHz, At erasing Flash memory.VCC = 5.0 V,
Internal frequency : 24 MHz, In Sleep mode.VCC = 5.0 V,
Internal frequency : 2 MHz, In Main Timer modeVCC = 5.0 V,
Internal frequency : 24 MHz, In PLL Timer mode,
external frequency = 4 MHzVCC = 5.0 V
Internal frequency : 8 kHz,In sub operationTA = +25°CVCC = 5.0 V
Internal frequency : 8 kHz,In sub sleepTA = +25°CVCC = 5.0 V
Internal frequency : 8 kHz,In watch modeTA = +25°CVCC = 5.0 V, In Stop mode, TA = +25°C
⎯
2550100
⎯⎯⎯⎯⎯
557075250.3
708590350.8
ICC
ICCS
ICTS
Power supply current*
ICTSPLL6
VCC
⎯47mA
ICCL
⎯70140µA
ICCLS
⎯2050µA
ICCT
⎯1035µA
ICCH
Other than C, AVCC, AVSS, AVRH, AVRL, VCC, VSS
⎯725µA
Input capacitanceCIN
⎯515pF
* : The power supply current is measured with an external clock.
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MB90340E Series
4.AC Characteristics
(1) Clock Timing
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = AVSS = 0 V)
Parameter
Symbol
PinX0, X1
Clock frequency
fC
X0, X1
fCLtCYL
X0, X1
tCYLL
Input clock pulse widthInput clock rise and fall timeInternal operating clock frequency (machine clock)Internal operating clock cycle time (machine clock)
PWH, PWLPWHL, PWLLtCR, tCFfCPfCPLtCPtCPL
X0A, X1A
X0X0AX0⎯⎯⎯⎯
41.6710105⎯1.5⎯41.6720
⎯30.5⎯15.2⎯⎯8.192⎯122.1
333—⎯⎯52450666⎯
nsµsnsµsnsMHzkHznsµs
Duty ratio is about 30% to 70%.
When using external clockWhen using main clockWhen using sub clockWhen using main clockWhen using sub clock
X0A, X1AX0, X1
Clock cycle time
3—62.5
⎯32.768⎯
24100333
MHzkHzns
When using an oscillation circuit
When using an external clock
Value
Min3
Typ⎯
Max16
UnitMHz
Remarks
When using an oscillation circuit
When using an external clock*
* : When selecting the PLL clock, the range of clock frequency is limited. Use this product within the range as
mentioned in “Relation between the external clock frequency and machine clock frequency”.Clock TimingtCYLX0PWHtCFPWLtCR0.8 VCC0.2 VCCtCYLLX0APWHLtCFPWLLtCR0.8 VCC0.2 VCC56
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MB90340E Series
Guaranteed PLL operation rangeGuaranteed operation range5.54.03.5Guaranteed PLL operation rangeGuaranteed A/D Converteroperation rangePower supply voltageVCC (V)1.54Machine clock fCP (MHz)24Guaranteed operation range of MB90340E seriesGuaranteed oscillation frequency rangex 6x 4x 3x 2x 124Internal clockfCP (MHz)161284.01.5348121624External clock fC (MHz) *x 1/2(PLL off)* : When using a crystal oscillator or ceramic oscillator, the maximum oscillation clock frequency is 16 MHz57
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MB90340E Series
(2) Reset Standby Input
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = AVSS = 0.0 V)
Parameter
Symbol
Pin
ValueMin500
Reset input time
tRSTL
RSTOscillation time of oscillator*
+ 100 µs
100
Max⎯⎯⎯
Unitnsnsµs
Remarks
Under normal operationIn Stop mode, Sub Clock mode, Sub Sleep mode and Watch modeIn Time Timer mode
* : The oscillation time of the oscillator is the time it takes for the amplitude of the oscillations to reach 90%. For
crystal oscillators, this time is between several ms and several tens of ms, for ceramic oscillators the time is between several hundred µs and several ms, and for an external clock, the time is 0 ms.
• Under normal operation:tRSTLRST0.2 VCC0.2 VCC• In Stop mode, Sub Clock mode, Sub Sleep mode, Watch mode: tRSTLRST0.2 VCC90% ofamplitude0.2 VCCX0Internal operationclockOscillation timeof oscillator100 µsOscillation stabilization waiting timeInstruction executionInternal reset58
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MB90340E Series
(3) Power On Reset
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = AVSS = 0.0 V)
ParameterPower on rise timePower off time
SymboltRtOFF
PinVCCVCC
Condition
⎯
ValueMin0.051
Max30⎯
Unitmsms
Due to repetitive operation
Remarks
tR2.7 V0.2 V0.2 VtOFFIf you change the power supply voltage too rapidly, a power on reset may occur. We recommend that you startup smoothly by restraining voltages when changing the power supply voltage during operation, as shown in the figure below. Perform while not using the PLL clock. However, if voltage drops are within 1 V/s, you can operate while using the PLL clock.0.2 VVCCVCC3 VVSSHolds RAM dataWe recommend a rise of 50 mV/ms maximum. (4) Clock Output Timing
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, VSS = 0.0 V, fCP ≤ 24 MHz)
ParameterCycle timeCLK ↑ → CLK ↓
SymboltCYCtCHCL
PinCLKCLK
Condition
⎯⎯
ValueMin62.541.762013
Max⎯⎯⎯⎯
Unitnsnsnsns
Remarks
fCP = 16 MHzfCP = 24 MHzfCP = 16 MHzfCP = 24 MHz
tCYCtCHCLCLK2.4 V0.8 V2.4 V59
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MB90340E Series
(5) Bus Timing (Read)
Parameter
ALE pulse width
Sym-boltLHLL
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, VSS = 0.0 V, fCP ≤ 24 MHz)
Value
PinConditionUnitRemarks
MinMax
ALEALE, A23 to A16,
AD15 to AD00A23 to A16, AD15 to AD00, RDA23 to A16, AD15 to AD00
RDRD, AD15 to AD00RD, ALERD, A23 to A16A23 to A16, AD15 to AD00, CLK
RD, CLKALE, RDtAVCH
CLK
2.4 V
tRLCH2.4 V
tCP/2 − 10tCP/2 − 20tCP/2 − 15tCP − 15⎯
⎯
3 tCP/2 − 20
⎯0tCP/2 − 15tCP/2 − 10tCP/2 − 16tCP/2 − 15tCP/2 − 15
⎯⎯⎯⎯5 tCP/2 − 60
⎯3 tCP/2 − 50
⎯⎯⎯⎯⎯⎯
nsnsnsnsnsnsnsnsnsnsnsnsns
Valid address → ALE ↓ timetAVLL
ALE ↓ → Address valid timetLLAXALE, AD15 to AD00Valid address → RD ↓ time
tAVRL
Valid address → Valid data
tAVDV
input
RD pulse widthRD ↓ → Valid data inputRD ↑ → Data hold timeRD ↓ → ALE ↑ timeRD ↑ → Address valid time
tRLRHtRLDVtRHLHtRHAX
tRHDXRD, AD15 to AD00Valid address → CLK ↑ timetAVCHRD ↓ → CLK ↑ timeALE ↓ → RD ↓ time
tRLCHtLLRL
tAVLL
ALE
2.4 VtLHLL
tAVRL
RDtLLAX2.4 V0.8 V
tRLRH
2.4 V
0.8 V
tLLRL
tRHLH2.4 V
tRHAX
A23 to A16
2.4 V0.8 V
tRLDV
tAVDV
AD15 to AD00
2.4 V0.8 V
Address
2.4 V0.8 V
VIHVIL
Read data
2.4 V0.8 VtRHDX
VIHVIL
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MB90340E Series
(6) Bus Timing (Write)
Parameter
Symbol
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, VSS = 0.0 V, fCP ≤ 24 MHz)
Value
PinConditionUnitRemarks
MinMaxA23 to A16,
AD15 to AD00,
WRWRAD15 to AD00,
WRAD15 to AD00,
WRA23 to A16,
WRWR, ALEWR, CLKtCP−153 tCP/2 − 203 tCP/2 − 20
⎯
15tCP/2 − 10tCP/2 − 15tCP/2 − 15
⎯⎯⎯⎯⎯⎯⎯
nsnsnsnsnsnsns
Valid address → WR ↓ timeWR pulse widthValid data output → WR ↑ time
WR ↑ → Data hold timeWR ↑ → Address valid timeWR ↑ → ALE ↑ timeWR ↓ → CLK ↑ time
tAVWLtWLWHtDVWHtWHDXtWHAXtWHLHtWLCH
tWLCH
CLK
2.4 V
tWHLH
ALE
2.4 V
tAVWL
WR (WRL, WRH)tWLWH
2.4 V
0.8 V
tWHAX
A23 to A16
2.4 V0.8 V
tDVWH
AD15 to AD00
2.4 V0.8 V
Address
2.4 V0.8 V
Write data
2.4 V0.8 VtWHDX
2.4 V0.8 V
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MB90340E Series
(7) Ready Input Timing
Parameter
RDY setup timeRDY hold time
Sym-boltRYHStRYHH
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, VSS = 0.0 V, fCP ≤ 24 MHz)
Rated ValueTest
PinUnitsRemarks
ConditionMinMaxRDYRDY
45
⎯
320
⎯⎯⎯
nsnsns
fCP = 16 MHzfCP = 24 MHz
Note : If the RDY setup time is insufficient, use the auto-ready function.
CLK
2.4 V
ALE
RD/WR
tRYHS
RDY
When WAIT is not used.
VIH
tRYHHVIH
RDY
When WAIT is used.
VIL
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MB90340E Series
(8) Hold Timing
Parameter
Pin floating → HAK ↓ time
HAK ↑ time → Pin valid time
SymboltXHALtHAHV
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, VSS = 0.0 V, fCP ≤ 24 MHz)
Value
PinConditionUnitsRemarks
MinMaxHAK⎯
HAKtCP
2 tCP
ns
30
tCP
ns
Note : There is more than 1 cycle from when HRQ reads in until the HAK is changed.HAKtXHAL
Each pin
2.4 V0.8 V
2.4 V
0.8 V
tHAHV
Hi-Z
2.4 V0.8 V
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MB90340E Series
(9) UART0/1/2/3/4
Parameter
Serial clock cycle timeSCK ↓ → SOT delay timeValid SIN → SCK ↑
SCK ↑ → Valid SIN hold timeSerial clock “H” pulse widthSerial clock “L” pulse widthSCK ↓ → SOT delay timeValid SIN → SCK ↑
SCK ↑ → Valid SIN hold time
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, VSS = 0.0 V, fCP ≤ 24 MHz)
Value
SymbolPinConditionUnitRemarks
MinMaxtSCYCtSLOVtIVSHtSHIXtSHSLtSLSHtSLOVtIVSHtSHIX
SCK0 to SCK4
SCK0 to SCK4,
SOT0 to SOT4Internal clock
operation output
SCK0 to SCK4, pins are
SIN0 to SIN4CL = 80 pF + 1 TTLSCK0 to SCK4, SIN0 to SIN4SCK0 to SCK4SCK0 to SCK4
SCK0 to SCK4, External clock SOT0 to SOT4operation output
pins are
SCK0 to SCK4,
CL = 80 pF + 1 TTL
SIN0 to SIN4SCK0 to SCK4, SIN0 to SIN4
8 tCP−80100604 tCP4 tCP⎯6060
⎯+80⎯⎯⎯⎯150⎯⎯
nsnsnsnsnsnsnsnsns
Notes : •AC characteristic CLK synchronized mode.
•CL is the value of the load capacitance applied to the pins during testing.
Internal Shift Clock Mode
tSCYC
SCK
2.4 V
0.8 VtSLOV
SOT
2.4 V0.8 V
tIVSH
SIN
VIHVIL
tSHIX
VIHVIL0.8 V
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MB90340E Series
External Shift Clock Mode
tSLSH
SCK
VIH
VILtSLOV
SOT
2.4 V0.8 V
tIVSH
SIN
VIHVIL
tSHIX
VIHVIL
VIL
tSHSL
VIH
(10) Trigger Input Timing
Parameter
SymboltTRGHtTRGL
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = 0.0 V)
Value
PinConditionUnitRemarks
MinMaxINT0 to INT15,
INT0R to INT15R,
ADTG
⎯
5 tCP
⎯
ns
Input pulse width
VIHVIH
VIL
tTRGH
tTRGL
VIL
INT0 to INT15, INT0R to INT15R, ADTG
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MB90340E Series
(11) Timer Related Resource Input Timing
(TA = −40 °C to +105 °C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = 0 V)
Value
ParameterSymbolPinConditionUnitRemarks
MinMaxInput pulse width
tTIWHtTIWL
TIN0 to TIN3,
IN0 to IN7
⎯
4 tCP
⎯
ns
VIHVIH
VIL
tTIWH
tTIWL
VIL
TIN0 to TIN3,IN0 to IN7
(12) Timer Related Resource Output Timing
(TA = –40°C to +105°C, VCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = 0.0 V)
Value
ParameterSymbolPinConditionUnitRemarks
MinMaxCLK ↑ → TOUT change time
tTO
TOT0 to TOT3,
PPG0 to PPGF
⎯
30
⎯
ns
CLK
2.4 V
TOT0 to TOT3,PPG0 to PPGF
tTO
2.4 V0.8 V
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MB90340E Series
(13) I2C Timing
Parameter
SCL clock frequency
Hold time (repeated) START conditionSDA↓ → SCL ↓
“L” width of the SCL clock“H” width of the SCL clock
Set-up time (repeated) START conditionSCL ↑ → SDA ↓Data hold timeSCL ↓ → SDA ↓ ↑Data set-up timeSDA ↓ ↑ → SCL ↑
Set-up time for STOP conditionSCL ↑ → SDA ↑
Bus free time between a STOP and START condition
SymbolfSCLtHDSTAtLOWtHIGHtSUSTAtHDDATtSUDATtSUSTOtBUS
R = 1.7 kΩ,C = 50 pF*2
(TA = –40°C to +105°C, VCC = 5.0 V ± 10%, VSS = 0.0 V)
Standard-modeFast-mode*1
ConditionUnit
MinMaxMinMax
04.04.74.04.702504.04.7
100⎯⎯⎯⎯3.45*3⎯⎯⎯
00.61.30.60.601000.61.3
400⎯⎯⎯⎯0.9*4⎯⎯⎯
kHzµsµsµsµsµsnsµsµs
*1:For use at over 100 kHz, set the machine clock to at least 6 MHz.*2:R,C: Pull-up resistor and load capacitor of the SCL and SDA lines.
*3:The maximum tHDDAT meets the requirement that it does not extend the “L” width (tLOW) of the SCL signal.*4:A Fast-mode I2C-bus device can be used in a Standard-mode I2C-bus system, but the requirement
tSUDAT ≥ 250 ns must then be met.
SDAtBUStLOWSCLtSUDATtHDSTAtHDSTAtHDDATtHIGHtSUSTAtSUSTO67
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MB90340E Series
5.A/D Converter
(TA = −40 °C to +105 °C, 3.0 V ≤ AVRH − AVRL, VCC = AVCC = 5.0 V ± 10%, fCP ≤ 24 MHz, VSS = AVSS = 0 V)ParameterResolutionTotal errorNonlinearity errorDifferential
nonlinearity errorZero reading voltage
Full scale reading voltageCompare timeSampling timeAnalog port input currentAnalog input voltage rangeReference voltage rangePower supply currentReference voltage currentOffset between input channels
Symbol⎯⎯⎯⎯VOTVFST⎯⎯IAINVAIN⎯⎯IAIAHIRIRH⎯
Pin⎯⎯⎯⎯
Value
Min⎯⎯⎯⎯
Typ⎯⎯⎯⎯
Max10±3.0±2.5±1.9
UnitbitLSBLSBLSB
Remarks
AN0 to AN23AVRL − 1.5AVRL + 0.5AVRL + 2.5LSBAN0 to AN23AVRH − 3.5AVRH − 1.5AVRH + 0.5LSB
⎯⎯AN0 to AN23AN0 to AN23
AVRHAVRLAVCCAVCCAVRHAVRHAN0 to AN23
1.02.00.51.2−0.3AVRLAVRL + 2.7
0⎯⎯⎯⎯⎯
⎯⎯⎯⎯⎯⎯3.5⎯600⎯⎯
16500
µsµsµAVVVmAµAµAµALSB
**
4.5 V ≤ AVCC ≤ 5.5 V4.0 V ≤ AVCC < 4.5 V4.5 V ≤ AVCC ≤ 5.5 V4.0 V ≤ AVCC < 4.5 V
∞
+0.3AVRHAVCCAVRH − 2.7
7.5590054
*:If the A/D convertor is not operating, a current when CPU is stopped is applicable (VCC = AVCC = AVRH = 5.0 V) .Note: The accuracy gets worse as |AVRH − AVRL| becomes smaller.
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MB90340E Series
6.Definition of A/D Converter Terms
ResolutionNon linearity errorDifferential linearity errorTotal error
: Analog variation that is recognized by the A/D converter.
: The deviation between the actual conversion characteristics and a line that joins the zero-transition line ( “00 0000 0000” ← → “00 0000 0001” ) to the full-scale transition line ( “11 1111 1110” ← → “11 1111 1111” ) .
: Deviation of input voltage, which is required for changing output code by 1 LSB, from an ideal value.
: Difference between the actual value and the ideal value. The total error includes zero transition error, full-scale transition error, and linear error.
Total error3FFH3FEH3FDH Digital output{1 LSB × (N − 1) + 0.5 LSB}Actual conversioncharacteristics1.5 LSB004H003H002H001H0.5 LSBAVRLAnalog inputVNT(Actually-measured value)Actual conversioncharacteristicsIdeal characteristicsAVRHTotal error of digital output “N” = VNT − {1 LSB × (N − 1) + 0.5 LSB}1 LSBAVRH − AVRL1 LSB (Ideal value) = [V]1024[LSB]N : Value of the digital output from the A/D converterVOT (Ideal value) = AVRL + 0.5 LSB [V]VFST (Ideal value) = AVRH − 1.5 LSB [V]VNT : A voltage at which the digital output transitions from (N − 1) to N.(Continued)69
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MB90340E Series
(Continued)Non linearity error3FFH3FEH3FDHDigital outputActual conversioncharacteristics{1 LSB × (N − 1) + VOT }N + 1HVFST (actualmeasurement value)VNT (actualmeasurement value)Actual conversioncharacteristicsIdeal characteristics001HVOT (actual measurement value)AVRLAnalog inputAVRHAVRLActual conversioncharacteristicsDifferential linearity errorIdeal characteristicsDigital outputNH004H003H002HN − 1HV (N + 1) T(actual measurementvalue)VNT(actual measurement value)Actual conversioncharacteristicsAVRHN − 2HAnalog inputNon linearity error of digital output N =Differential linearity error of digital output N =1 LSB =VNT − {1 LSB × (N − 1) + VOT}1 LSBV (N+1) T − VNT1 LSBVFST − VOT1022−1 LSB [LSB][V][LSB]N : Value of the digital output from the A/D converterVOT : Voltage at which digital output transits from “000H” to “001H.”VFST : Voltage at which digital output transits from “3FEH” to “3FFH.”70
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MB90340E Series
7.Notes on A/D Converter Section
Use the device with external circuits of the following output impedance for analog inputs :
Recommended output impedance of external circuits are : Approx. 1.5 kΩ or lower (4.0 V ≤ AVCC ≤ 5.5 V,
sampling period = 0.5 µs) If an external capacitor is used, in consideration of the capacitive voltage dividing effect between the externalcapacitor and the internal on-chip capacitor, it is recommended that the capacitance of the external capacitorbe several thousand times greater than the capacitance of the internal capacitor.
If the output impedance of the external circuit is too high, a sampling period for an analog voltage may beinsufficient. •Analog input circuit modelAnalog inputRComparatorC4.5 V ≤ AVCC ≤ 5.5 V : R := 2.52 kΩ, C := 10.7 pF4.0 V ≤ AVCC < 4.5 V : R := 13.6 kΩ, C := 10.7 pFNote : Use the values in the figure only as a guideline.8.Flash Memory Program/Erase Characteristics
Parameter
Sector erase timeChip erase timeWord (16-bit width)
programming timeProgram/Erase cycleFlash Data Retention Time
⎯AverageTA = +85 °CTA = +25 °CVCC = 5.0 VConditions
Value
Min⎯⎯⎯1000020
Typ1916⎯⎯
Max15⎯3600⎯⎯
Unitssµscycleyear
*
Remarks
Excludes programming prior to erasureExcludes programming prior to erasure
Except for the over head time of the system
* : This value was converted from the results of evaluating the reliability of the technology (using Arrhenius equation to translate high temperature measurements into normalized value at +85 °C) .
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MB90340E Series
■EXAMPLE CHARACTERISTICS
•MB90F346E, MB90F346ES, MB90F346CE, MB90F346CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHzf = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.51009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)403020100ICCL (A)f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency3530f = 24 MHzf = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.550454035302520151050ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)20151050ICCLS (A)25f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency4003503002502001501005002.53.54.55.56.520181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCT (A)ICTS (A)f = 2 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (A)VCC (V)2.53.54.55.56.5VCC (V)72
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MB90340E Series
•MB90F347E, MB90F347ES, MB90F347CE, MB90F347CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHzf = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.51009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)403020100ICCL (A)f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency3530f = 24 MHzf = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.550454035302520151050ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)20151050ICCLS (A)25f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency4003503002502001501005002.53.54.55.56.520181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCT (A)ICTS (A)f = 2 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (A)VCC (V)2.53.54.55.56.5VCC (V)73
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MB90340E Series
•MB90F349E, MB90F349ES, MB90F349CE, MB90F349CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHz1009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)4030201002.53.54.55.5f = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz6.5ICCL (µA)f = 20 MHzf = 16 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency353025f = 24 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.5504540353025201510502.53.5ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)20151050ICCLS (µA)f = 20 MHzf = 8 kHz4.5VCC (V)VCC (V)5.56.5ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency4003503002502001501005002.53.54.55.56.520181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICTS (µA)ICCT (µA)f = 2 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (µA)2.53.54.55.56.5VCC (V)VCC (V)74
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MB90340E Series
•MB90F342E, MB90F342ES, MB90F342CE, MB90F342CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHz1009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)4030201002.53.54.55.5f = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz6.5ICCL (µA)f = 20 MHzf = 16 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency353025f = 24 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.5504540353025201510502.53.5ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)20151050ICCLS (µA)f = 20 MHzf = 8 kHz4.5VCC (V)VCC (V)5.56.5ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency4003503002502001501005002.53.54.55.56.520181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICTS (µA)ICCT (µA)f = 2 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (µA)2.53.54.55.56.5VCC (V)VCC (V)75
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MB90340E Series
•MB90F345E, MB90F345ES, MB90F345CE, MB90F345CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHz1009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)4030201002.53.54.55.5f = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz6.5ICCL (A)f = 20 MHzf = 16 MHzf = 8 kHz2.53.54.5VCC (V)VCC (V)5.56.5ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency353025f = 24 MHzf = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.550454035302520151050ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)20151050ICCLS (A)f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency40035030020181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICTS (A)2502001501005002.53.54.55.5ICCT (A)f = 2 MHzf = 8 kHz6.52.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (A)2.53.54.55.56.5VCC (V)VCC (V)76
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MB90340E Series
•MB90346E, MB90346ES, MB90346CE, MB90346CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHz1009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)4030201002.53.54.55.5ICCL (µA)f = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz6.5f = 8 kHz2.53.54.5VCC (V)VCC (V)5.56.5ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency3530f = 24 MHzf = 20 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.5f = 16 MHz50454035302520151050ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)2520151050ICCLS (µA)f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency40035030020181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICTS (µA)2001501005002.53.54.55.56.5ICCT (µA)250f = 2 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (µA)VCC (V)2.53.54.55.56.5VCC (V)77
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MB90340E Series
•MB90347E, MB90347ES, MB90347CE, MB90347CESICC − VCCTA = +25 °C, external clock operationf = Internal operation frequency706050f = 24 MHz1009080706050403020100ICCL − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICC (mA)4030201002.53.54.55.5ICCL (µA)f = 20 MHzf = 16 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz6.5f = 8 kHz2.53.54.5VCC (V)VCC (V)5.56.5ICCS − VCCTA = +25 °C, external clock operationf = Internal operation frequency3530f = 24 MHzf = 20 MHzf = 12 MHzf = 10 MHzf = 8 MHzf = 4 MHzf = 2 MHz2.53.54.55.56.5f = 16 MHz50454035302520151050ICCLS − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICCS (mA)2520151050ICCLS (µA)f = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTS − VCCTA = +25 °C, external clock operationf = Internal operation frequency40035030020181614121086420ICCT − VCCTA = +25 °C, external clock operationf = Internal operation frequencyICTS (µA)2001501005002.53.54.55.56.5ICCT (µA)250f = 2 MHzf = 8 kHz2.53.54.55.56.5VCC (V)VCC (V)ICTSPLL6 − VCCTA = +25 °C, external clock operationf = Internal operation frequency109876543210109876543210ICCH − VCCTA = +25 °C, stoppedICTSPLL6 (mA)f = 24 MHz2.53.54.55.56.5ICCH (µA)VCC (V)2.53.54.55.56.5VCC (V)78
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MB90340E Series
•I/O characteristics (VCC−VOH) − IOHTA = +25 °C, VCC = 4.5 V80070010009008007006005004003002001000VOL − IOLTA = +25 °C, VCC = 4.5 VVCCVOH (mV)6005004003002001000012345678910VOL (mV)012345678910IOH (mA)IOL (mA)Automotive VIN − VCCTA = +25 °C5.04.54.03.53.02.52.01.51.00.50.05.04.54.03.53.02.52.01.51.00.50.0CMOS VIN − VCCOther than UART-SIN pin and I2C pinTA = +25 °CVIHAVILAVIN (V)VIHSVIN (V)VILS2.53.03.54.04.55.05.56.06.57.02.53.03.54.04.55.05.56.06.57.0VCC (V)VCC (V)TTL VIN − VCCTA = +25 °C2.52.32.01.81.51.31.00.80.50.30.05.04.54.03.53.02.52.01.51.00.50.0CMOS VIN − VCCUART-SIN pin, I2C pinTA = +25 °CVIHSVIN (V)VIHTVILTVIN (V)VILS2.53.03.54.04.55.05.56.06.57.02.53.03.54.04.55.05.56.06.57.0VCC (V)VCC (V)79
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MB90340E Series
■ORDERING INFORMATION
Part number
MB90F342EPFMB90F342ESPFMB90F342CEPFMB90F342CESPFMB90F342EPFVMB90F342ESPFVMB90F342CEPFVMB90F342CESPFVMB90F343EPFMB90F343ESPFMB90F343CEPFMB90F343CESPFMB90F343EPFVMB90F343ESPFVMB90F343CEPFVMB90F343CESPFVMB90F345EPFMB90F345ESPFMB90F345CEPFMB90F345CESPFMB90F345EPFVMB90F345ESPFVMB90F345CEPFVMB90F345CESPFVMB90F346EPFMB90F346ESPFMB90F346CEPFMB90F346CESPFMB90F346EPFVMB90F346ESPFVMB90F346CEPFVMB90F346CESPFV
(Continued)
100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06) 100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06) 100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06) 100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06)
Package
Remarks
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MB90340E Series
Part number
MB90F347EPFMB90F347ESPFMB90F347CEPFMB90F347CESPFMB90F347EPFVMB90F347ESPFVMB90F347CEPFVMB90F347CESPFVMB90F349EPFMB90F349ESPFMB90F349CEPFMB90F349CESPFMB90F349EPFVMB90F349ESPFVMB90F349CEPFVMB90F349CESPFVMB90341EPFMB90341ESPFMB90341CEPFMB90341CESPFMB90341EPFVMB90341ESPFVMB90341CEPFVMB90341CESPFVMB90342EPFMB90342ESPFMB90342CEPFMB90342CESPFMB90342EPFVMB90342ESPFVMB90342CEPFVMB90342CESPFV
PackageRemarks
100-pin plastic QFP (FPT-100P-M06)
100-pin plastic LQFP (FPT-100P-M05)
100-pin plastic QFP (FPT-100P-M06)
100-pin plastic LQFP (FPT-100P-M05)
100-pin plastic QFP (FPT-100P-M06)
100-pin plastic LQFP (FPT-100P-M05)
100-pin plastic QFP (FPT-100P-M06)
100-pin plastic LQFP (FPT-100P-M05)
(Continued)
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MB90340E Series
(Continued)
Part numberMB90346EPFMB90346ESPFMB90346CEPFMB90346CESPFMB90346EPFVMB90346ESPFVMB90346CEPFVMB90346CESPFVMB90347EPFMB90347ESPFMB90347CEPFMB90347CESPFMB90347EPFVMB90347ESPFVMB90347CEPFVMB90347CESPFVMB90348EPFMB90348ESPFMB90348CEPFMB90348CESPFMB90348EPFVMB90348ESPFVMB90348CEPFVMB90348CESPFVMB90349EPFMB90349ESPFMB90349CEPFMB90349CESPFMB90349EPFVMB90349ESPFVMB90349CEPFVMB90349CESPFVMB90V340E-101MB90V340E-102
299-pin Ceramic PGA (PGA-299C-A01)
For evaluation
100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06) 100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06) 100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06) 100-pin plastic LQFP (FPT-100P-M05) 100-pin plastic QFP (FPT-100P-M06)
PackageRemarks
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MB90340E Series
■PACKAGE DIMENSIONS
100-pin plastic QFPLead pitchPackage width ×package lengthLead shapeSealing methodMounting heightCode(Reference)0.65 mm14.00× 20.00 mmGullwingPlastic mold3.35 mm MAXP-QFP100-14×20-0.65(FPT-100P-M06)100-pin plastic QFP(FPT-100P-M06)23.90±0.40(.941±.016)*20.00±0.20(.787±.008)8051Note 1)* : These dimensions do not include resin protrusion.Note 2)Pins width and pins thickness include plating thickness.Note 3)Pins width do not include tie bar cutting remainder.81500.10(.004)17.90±0.40(.705±.016)*14.00±0.20(.551±.008)INDEXDetails of \"A\" part100311300.25(.010)+0.353.00–0.20+.014.118–.008(Mounting height)0~8˚0.17±0.06(.007±.002)0.65(.026)\"A\"0.32±0.05(.013±.002)0.13(.005)M0.80±0.20(.031±.008)0.88±0.15(.035±.006)0.25±0.20(.010±.008)(Stand off)C2002 FUJITSU LIMITED F100008S-c-5-5Dimensions in mm (inches).Note: The values in parentheses are reference values.Please confirm the latest Package dimension by following URL.http://edevice.fujitsu.com/fj/DATASHEET/ef-ovpklv.html
(Continued)
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MB90340E Series
(Continued)
100-pin plastic LQFPLead pitchPackage width ×package lengthLead shapeSealing methodMounting heightWeight0.50 mm14.0× 14.0 mmGullwingPlastic mold1.70 mm MAX0.65gP-LFQFP100-14×14-0.50(FPT-100P-M05)Code(Reference)100-pin plastic LQFP(FPT-100P-M05)16.00±0.20(.630±.008)SQ*14.00±0.10(.551±.004)SQ7551Note 1)* : These dimensions do not include resin protrusion.Note 2)Pins width and pins thickness include plating thickness.Note 3)Pins width do not include tie bar cutting remainder.76500.08(.003)Details of \"A\" partINDEX1.50–0.10.059–.004(Mounting height)26+0.20+.0081000.10±0.10(.004±.004)(Stand off)0.25(.010)0˚~8˚\"A\"0.50±0.20(.020±.008)0.60±0.15(.024±.006)1250.50(.020)0.20±0.05(.008±.002)0.08(.003)M0.145±0.055(.0057±.0022)C2003 FUJITSU LIMITED F100007S-c-4-6Dimensions in mm (inches).Note: The values in parentheses are reference values.Please confirm the latest Package dimension by following URL.http://edevice.fujitsu.com/fj/DATASHEET/ef-ovpklv.html
84
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MB90340E Series
The information for microcontroller supports is shown in the following homepage.
http://www.fujitsu.com/global/services/microelectronics/product/micom/support/index.html
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