24
CHAPTER 1 OVERVIEW
●
Notes on Energization
To prevent malfunction of the internal voltage regulator, supply voltage profile while turning on the power
supply should be slower than 50
µ
s from 0.2 V to 2.7 V.
●
Stabilization of
power supply voltage
If the power supply voltage varies acutely even within the operation assurance range of the V
CC
power
supply voltage, a malfunction may occur. The V
CC
power supply voltage must therefore be stabilized. As
stabilization guidelines, stabilize the power supply voltage so that V
CC
ripple fluctuations (peak to peak
value) in the commercial frequencies (50 to 60 Hz) fall within 10% of the standard V
CC
power supply
voltage and the transient fluctuation rate becomes 0.1 V/ms or less in instantaneous fluctuation for power
supply switching.
●
Note on using CAN Function
The MB90360 series does not contain the clock modulation function. So, at using CAN, the DIRECT bit of
the CAN direct mode register (CDMR) must be set "1". (See Table 1.7-1 ). If the DIRECT bit is not set
correctly, the device does not operate normally.
Note:
For details on the clock modulation, see "CHAPTER 6 CLOCK SUPERVISOR".
For details on the CAN direct mode, see "21.11 Setting Configuration of Multi-level Message Buffer".
Table 1.7-1 Setting of Clock Modulation and CAN Direct Mode
Clock modulation setting
(CMCR:PMOD bit)
CAN direct mode setting
(setting of CDMR:DIRECT bit)
Required setting
0: Disable clock modulation
(initial value)
1: Enable CAN direct mode
Setting disabled
1: Enable clock modulation
0: Disable CAN direct mode
(initial value)
Summary of Contents for F2MCTM-16LX
Page 2: ......
Page 3: ...FUJITSU LIMITED F2MCTM 16LX 16 BIT MICROCONTROLLER MB90360 Series HARDWARE MANUAL ...
Page 4: ......
Page 42: ...26 CHAPTER 1 OVERVIEW ...
Page 70: ...54 CHAPTER 2 CPU ...
Page 134: ...118 CHAPTER 6 CLOCK SUPERVISOR ...
Page 176: ...160 CHAPTER 8 LOW POWER CONSUMPTION MODE ...
Page 194: ...178 CHAPTER 10 I O PORTS ...
Page 252: ...236 CHAPTER 13 16 Bit I O TIMER ...
Page 282: ...266 CHAPTER 14 16 BIT RELOAD TIMER ...
Page 296: ...280 CHAPTER 15 WATCH TIMER ...
Page 386: ...370 CHAPTER 18 8 10 BIT A D CONVERTER ...
Page 426: ...410 CHAPTER 20 LIN UART Figure 20 5 2 ORE Flag Set Timing RDRF ORE Reception data ...
Page 540: ...524 CHAPTER 22 ADDRESS MATCH DETECTION FUNCTION ...
Page 568: ...552 CHAPTER 24 512K BIT FLASH MEMORY ...
Page 633: ...617 APPENDIX B Instructions Table B 9 3 Bit Operation Instruction Map first byte 6CH ...
Page 634: ...618 APPENDIX Table B 9 4 Character String Operation Instruction Map first byte 6EH ...
Page 637: ...621 APPENDIX B Instructions Table B 9 7 ea Instruction 2 first byte 71H ...
Page 638: ...622 APPENDIX Table B 9 8 ea Instruction 3 first byte 72H ...
Page 639: ...623 APPENDIX B Instructions Table B 9 9 ea Instruction 4 first byte 73H ...
Page 640: ...624 APPENDIX Table B 9 10 ea Instruction 5 first byte 74H ...
Page 641: ...625 APPENDIX B Instructions Table B 9 11 ea Instruction 6 first byte 75H ...
Page 642: ...626 APPENDIX Table B 9 12 ea Instruction 7 first byte 76H ...
Page 643: ...627 APPENDIX B Instructions Table B 9 13 ea Instruction 8 first byte 77H ...
Page 644: ...628 APPENDIX Table B 9 14 ea Instruction 9 first byte 78H ...
Page 645: ...629 APPENDIX B Instructions Table B 9 15 MOVEA RWi ea Instruction first byte 79H ...
Page 646: ...630 APPENDIX Table B 9 16 MOV Ri ea Instruction first byte 7AH ...
Page 647: ...631 APPENDIX B Instructions Table B 9 17 MOVW RWi ea Instruction first byte 7BH ...
Page 648: ...632 APPENDIX Table B 9 18 MOV Ri ea Instruction first byte 7CH ...
Page 649: ...633 APPENDIX B Instructions Table B 9 19 MOVW ea Rwi Instruction first byte 7DH ...
Page 650: ...634 APPENDIX Table B 9 20 XCH Ri ea Instruction first byte 7EH ...
Page 651: ...635 APPENDIX B Instructions Table B 9 21 XCHW RWi ea Instruction first byte 7FH ...
Page 664: ...648 APPENDIX ...
Page 665: ...649 INDEX INDEX The index follows on the next page This is listed in alphabetic order ...
Page 682: ......