參數(shù)資料
型號(hào): M37512FCH-XXXHP
元件分類: 微控制器/微處理器
英文描述: 8-BIT, FLASH, 4 MHz, MICROCONTROLLER, PQFP48
封裝: 7 X 7 MM, 0.50 MM PITCH, PLASTIC, LQFP-48
文件頁(yè)數(shù): 31/87頁(yè)
文件大小: 879K
代理商: M37512FCH-XXXHP
Feb 18, 2005
page 37 of 85
REJ03B0122-0101
7512 Group
Example of Master Transmission
An example of master transmission in the standard clock mode, at
the SCL frequency of 100 kHz and in the ACK return mode is
shown below.
(1) Set a slave address in the high-order 7 bits of the I2C address
register (address 002C16) and “0” into the RWB bit.
(2) Set the ACK return mode and SCL = 100 kHz by setting “8516
in the I2C clock control register (address 002F16).
(3) Set “0016” in the I2C status register (address 002D16) so that
transmission/reception mode can become initializing condition.
(4) Set a communication enable status by setting “0816” in the I2C
control register (address 002E16).
(5) Confirm the bus free condition by the BB flag of the I2C status
register (address 002D16).
(6) Set the address data of the destination of transmission in the
high-order 7 bits of the I2C data shift register (address 002B16)
and set “0” in the least significant bit.
(7) Set “F016” in the I2C status register (address 002D16) to gener-
ate a START condition. At this time, a SCL for 1 byte and an
ACK clock automatically occur.
(8) Set transmit data in the I2C data shift register (address
002B16). At this time, a SCL and an ACK clock automatically oc-
cur.
(9) When transmitting control data of more than 1 byte, repeat
step (8).
(10) Set “D016” in the I2C status register (address 002D16) to gen-
erate a STOP condition if ACK is not returned from slave
reception side or transmission ends.
Example of Slave Reception
An example of slave reception in the high-speed clock mode, at
the SCL frequency of 400 kHz, in the ACK non-return mode and
using the addressing format is shown below.
(1) Set a slave address in the high-order 7 bits of the I2C address
register (address 002C16) and “0” in the RWB bit.
(2) Set the ACK non-return mode and SCL = 400 kHz by setting
“2516” in the I2C clock control register (address 002F16).
(3) Set “0016” in the I2C status register (address 002D16) so that
transmission/reception mode can become initializing condition.
(4) Set a communication enable status by setting “0816” in the I2C
control register (address 002E16).
(5) When a START condition is received, an address comparison
is performed.
(6) When all transmitted addresses are “0” (general call):
AD0 of the I2C status register (address 002D16) is set to “1”
and an interrupt request signal occurs.
When the transmitted addresses agree with the address set in (1):
ASS of the I2C status register (address 002D16) is set to “1”
and an interrupt request signal occurs.
In the cases other than the above AD0 and AAS of the I2C
status register (address 002D16) are set to “0” and no inter
rupt request signal occurs.
(7) Set dummy data in the I2C data shift register (address 002B16).
(8) When receiving control data of more than 1 byte, repeat step (7).
(9) When a STOP condition is detected, the communication ends.
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