387
CHAPTER 22 I
2
C
Table 22.5-3 I
2
C Bus Status Register (IBSR0)
Bit name
Function
bit7
BB:
Bus busy bit
This bit indicates the bus status.
• This bit is set to "1" when a start condition is detected.
• This bit is set to "0" when a stop condition is detected.
bit6
RSC:
Repeated start
condition detection bit
This bit is used to detect repeated start conditions.
• This bit is set to "1" when a repeated start condition is detected.
• This bit is set to "0" in the following cases:
- When "0" is written to IBCR10:INT.
- When the slave address does not match the address set in IAAR0 in slave mode.
- When the slave address matches the address set in IAAR0 but IBCR00:AACKX = 1 in slave
mode.
- When the general call address is received but IBCR10:GACKE = 0 in slave mode.
- When a stop condition is detected.
bit5
Unused bit
The value read is always "0".
An attempt to write to the bit is meaningless.
bit4
LRB:
Acknowledge
storage bit
This bit saves the value of the SDA0 line in the ninth shift clock cycle during data byte transfer.
• This bit is set to "1" when no acknowledgment is detected (SDA0 = H).
• This bit is set to "0" in the following cases:
- When acknowledgment is detected (SDA0 = L)
- When a start or stop condition is detected.
Note:
It follows from the above that this bit must be read after ACK. (Read the value in response
to the transfer completion interrupt in the ninth SCL0 cycle.) Accordingly, if ACK is read
when the IBCR00:INTS bit is "1", you must write "0" to the IBCR00:INTS bit in the
transfer completion interrupt triggered by the eighth SCL0 cycle so that another transfer
completion interrupt will be triggered by the ninth SCL0 cycle.
bit3
TRX:
Data transfer status bit
This bit indicates the data transfer mode.
• This bit is set to "1" when data transfer is performed in transfer mode.
• This bit is set to "0" in the following cases:
- Data is transferred in receive mode.
- NACK is received in slave transmit mode.
bit2
AAS:
Addressing detection
bit
This bit indicates that the MCU has been addressed in slave mode.
• This bit is set to "1" if the MCU is addressed in slave mode.
• This bit is set to "0" when a start or stop condition is detected.
bit1
GCA:
General call address
detection bit
This bit is used to detect a general call address.
• This bit is set to "1" in the following cases:
- When the general call address (00
H
) is received in slave mode.
- When the general call address (00
H
) is received in master mode with IBCR10:GACKE = 1.
- When arbitration lost is detected during transmission of the second byte of the general call
address in master mode.
• This bit is set to "0" in the following cases:
- When a start or stop condition is detected.
- When arbitration lost is not detected during transmission of the second byte of the general call
address in master mode.
bit0
FBT:
First byte detection bit
This bit is used to detect first byte.
• This bit is set to "1" when a start condition is detected.
• This bit is set to "0" in the following cases:
- When "0" is written to the IBCR10:INT bit.
- When the slave address does not match the address set in IAAR0 in slave mode.
- When the slave address matches the address set in IAAR0 but IBCR00:AACKX = 1 in slave
mode.
- When the general call address is received with IBCR10:GACKE = 0 in slave mode.
Содержание F2 MC-8FX Family
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Страница 30: ...16 CHAPTER 1 DESCRIPTION 1 FPT 64P M23 FPT 64P M24 2 For the I O circuit type refer to 1 8 I O Circuit Type ...
Страница 34: ...20 CHAPTER 1 DESCRIPTION ...
Страница 35: ...21 CHAPTER 2 HANDLING DEVICES This chapter gives notes on using 2 1 Device Handling Precautions ...
Страница 38: ...24 CHAPTER 2 HANDLING DEVICES ...
Страница 39: ...25 CHAPTER 3 MEMORY SPACE This chapter describes memory space 3 1 Memory Space 3 2 Memory Map ...
Страница 43: ...29 CHAPTER 4 MEMORY ACCESS MODE This chapter describes the memory access mode 4 1 Memory Access Mode ...
Страница 56: ...42 CHAPTER 5 CPU ...
Страница 73: ...59 CHAPTER 6 CLOCK CONTROLLER ...
Страница 96: ...82 CHAPTER 6 CLOCK CONTROLLER ...
Страница 104: ...90 CHAPTER 7 RESET ...
Страница 105: ...91 CHAPTER 8 INTERRUPTS This chapter explains the interrupts 8 1 Interrupts ...
Страница 174: ...160 CHAPTER 10 TIMEBASE TIMER ...
Страница 184: ...170 CHAPTER 10 TIMEBASE TIMER ...
Страница 218: ...204 CHAPTER 13 WATCH PRESCALER ...
Страница 257: ...243 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Страница 261: ...247 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Страница 288: ...274 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Страница 301: ...287 CHAPTER 17 16 BIT PPG TIMER ...
Страница 316: ...302 CHAPTER 17 16 BIT PPG TIMER ...
Страница 382: ...368 CHAPTER 21 UART SIO DEDICATED BAUD RATE GENERATOR ...
Страница 390: ...376 CHAPTER 22 I2C ...
Страница 395: ...381 CHAPTER 22 I2C ...
Страница 399: ...385 CHAPTER 22 I2C ...
Страница 430: ...416 CHAPTER 23 10 BIT A D CONVERTER ...
Страница 476: ...462 CHAPTER 24 LCD CONTROLLER ...
Страница 482: ...468 CHAPTER 25 LOW VOLTAGE DETECTION RESET CIRCUIT ...
Страница 494: ...480 CHAPTER 26 CLOCK SUPERVISOR ...
Страница 507: ...493 CHAPTER 27 REAL TIME CLOCK ...
Страница 523: ...509 CHAPTER 27 REAL TIME CLOCK ...
Страница 532: ...518 CHAPTER 27 REAL TIME CLOCK ...
Страница 536: ...522 CHAPTER 28 256 KBIT FLASH MEMORY ...
Страница 554: ...540 CHAPTER 28 256 KBIT FLASH MEMORY ...
Страница 564: ...550 CHAPTER 29 EXAMPLE OF SERIAL PROGRAMMING CONNECTION ...
Страница 595: ...581 INDEX INDEX The index follows on the next page This is listed in alphabetic order ...
Страница 596: ...582 INDEX Index ...
Страница 597: ...583 INDEX ...
Страница 599: ...585 Pin Function Index V2 LCD power supply driving pin 2 439 V3 LCD power supply driving pin 3 439 ...
Страница 600: ...586 Pin Function Index ...
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