参数资料
型号: MD83C154CXXX-16P883D
厂商: TEMIC SEMICONDUCTORS
元件分类: 微控制器/微处理器
英文描述: 8-BIT, MROM, 16 MHz, MICROCONTROLLER, CDIP40
文件页数: 97/242页
文件大小: 61013K
代理商: MD83C154CXXX-16P883D
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186
ATmega165A/PA/325A/PA/3250A/PA/645A/P/6450A/P [DATASHEET]
8285E–AVR–02/2013
Note:
1. The DI and USCK pins are renamed to Serial Data (SDA) and Serial Clock (SCL) respectively to avoid confusion
between the modes of operation.
Bit 3:2 – USICS1:0: Clock Source Select
These bits set the clock source for the Shift Register and counter. The data output latch ensures that the output is
changed at the opposite edge of the sampling of the data input (DI/SDA) when using external clock source
(USCK/SCL). When software strobe or Timer/Counter0 Compare Match clock option is selected, the output latch is
transparent and therefore the output is changed immediately. Clearing the USICS1...0 bits enables software strobe
option. When using this option, writing a one to the USICLK bit clocks both the Shift Register and the counter. For
external clock source (USICS1 = 1), the USICLK bit is no longer used as a strobe, but selects between external
clocking and software clocking by the USITC strobe bit.
Table 21-2 shows the relationship between the USICS1:0 and USICLK setting and clock source used for the Shift
Register and the 4-bit counter.
Table 21-1.
Relations between USIWM1:0 and the USI Operation
USIWM1
USIWM0
Description
0
Outputs, clock hold, and start detector disabled. Port pins operates as normal.
01
Three-wire mode. Uses DO, DI, and USCK pins.
The Data Output (DO) pin overrides the corresponding bit in the PORT Register in this mode.
However, the corresponding DDR bit still controls the data direction. When the port pin is set as
input the pins pull-up is controlled by the PORT bit.
The Data Input (DI) and Serial Clock (USCK) pins do not affect the normal port operation. When
operating as master, clock pulses are software generated by toggling the PORT Register, while
the data direction is set to output. The USITC bit in the USICR Register can be used for this
purpose.
10
Two-wire mode. Uses SDA (DI) and SCL (USCK) pins (1).
The Serial Data (SDA) and the Serial Clock (SCL) pins are bi-directional and uses open-collector
output drives. The output drivers are enabled by setting the corresponding bit for SDA and SCL in
the DDR Register.
When the output driver is enabled for the SDA pin, the output driver will force the line SDA low if
the output of the Shift Register or the corresponding bit in the PORT Register is zero. Otherwise
the SDA line will not be driven (i.e., it is released). When the SCL pin output driver is enabled the
SCL line will be forced low if the corresponding bit in the PORT Register is zero, or by the start
detector. Otherwise the SCL line will not be driven.
The SCL line is held low when a start detector detects a start condition and the output is enabled.
Clearing the Start Condition Flag (USISIF) releases the line. The SDA and SCL pin inputs is not
affected by enabling this mode. Pull-ups on the SDA and SCL port pin are disabled in Two-wire
mode.
11
Two-wire mode. Uses SDA and SCL pins.
Same operation as for the Two-wire mode described above, except that the SCL line is also held
low when a counter overflow occurs, and is held low until the Counter Overflow Flag (USIOIF) is
cleared.
Table 21-2.
Relations between the USICS1:0 and USICLK setting.
USICS1
USICS0
USICLK
Shift Register Clock Source
4-bit Counter Clock Source
0
No Clock
0
1
Software clock strobe (USICLK)
0
1
X
Timer/Counter0 Compare Match
1
0
External, positive edge
External, both edges
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