268
CHAPTER 16 8/16-BIT COMPOSITE TIMER
16.13 Operating Description of Input Capture Function
This section describes the operations of the input capture function for the 8/16-bit
composite timer.
■
Operation of Input Capture Function
The composite timer requires the settings shown in Figure 16.13-1 to serve as the input capture function.
Figure 16.13-1 Settings for Input Capture Function
When the input capture function is selected, the counter value is stored to the 8/16-bit composite timer
00/01 data register (T00DR/T01DR) upon detection of an edge of the external signal input. The edge to be
detected is selected by timer operation mode setting (T00CR0/T01CR0:F3, F2, F1, F0).
This function is available in either free-run mode or clear mode, which can be selected by timer operation
mode setting.
In clear mode, the counter starts counting from "00
H
". When the edge is detected, the counter value is
transferred to the 8/16-bit composite timer 00/01 data register (T00DR/T01DR), the interrupt flag
(T00CR1/T01CR1:IR) is set to "1", and the counter continues to count by restarting at "00
H
".
When the edge is detected in free-run mode, the counter value is transferred to the 8/16-bit composite timer
00/01 data register (T00DR/T01DR) and the interrupt flag (T00CR1/T01CR1:IR) is set to "1". In this case,
the counter continues to count without being cleared.
This function has no effect on the buffer full flag (T00CR1/T01CR1:BF).
To measure the time exceeding the length of the counter, software can be used to count the number of
occurrences of a counter overflow. When the counter causes an overflow, the interrupt flag (T00CR1/
T01CR1:IF) is set to "1". The interrupt service routine can therefore be used to count the number of times
the overflow occurs.
The capture value in the 8/16-bit composite timer 00/01 data register (T00DR/T01DR) must be nullified if
an interrupt occurs before the timer is activated (before "1" is written to the STA bit).
bit7
bit6
bit5
bit4
bit3
bit2
bit1
bit0
T00/01CR0
IFE
C2
C1
C0
F3
F2
F1
F0
❍
❍
❍
❍
❍
❍
❍
❍
T00/01CR1
STA
HO
IE
IR
BF
IF
SO
OE
1
❍
❍
❍
×
❍
×
×
TMCR
TO1
TO0
IIS
MOD
FE11
FE10
FE01
FE00
×
×
❍
❍
❍
❍
❍
❍
T00/01DR
Holds pulse width measurement value
❍
: Used bit
×: Unused bit
1: Set "1"
0: Set "0"
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 ...
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Страница 104: ...90 CHAPTER 7 RESET ...
Страница 105: ...91 CHAPTER 8 INTERRUPTS This chapter explains the interrupts 8 1 Interrupts ...
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Страница 184: ...170 CHAPTER 10 TIMEBASE TIMER ...
Страница 218: ...204 CHAPTER 13 WATCH PRESCALER ...
Страница 257: ...243 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
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Страница 288: ...274 CHAPTER 16 8 16 BIT COMPOSITE TIMER ...
Страница 301: ...287 CHAPTER 17 16 BIT PPG TIMER ...
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Страница 382: ...368 CHAPTER 21 UART SIO DEDICATED BAUD RATE GENERATOR ...
Страница 390: ...376 CHAPTER 22 I2C ...
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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 ...
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Страница 536: ...522 CHAPTER 28 256 KBIT FLASH MEMORY ...
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Страница 564: ...550 CHAPTER 29 EXAMPLE OF SERIAL PROGRAMMING CONNECTION ...
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Страница 599: ...585 Pin Function Index V2 LCD power supply driving pin 2 439 V3 LCD power supply driving pin 3 439 ...
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