当GPIFII设计器中的“时钟设置”被设置为“内部”时,PCLK(GPIF16)引脚被配置为输出并向外部设备提供时钟。
在这种情况下,GPIF II的状态机硬件由PCLK计时。
如果使用同步接口,则需要同步PCLK和传感器设备时钟。
如果使用异步接口,PCLK引脚不输入/输出时钟,并且不需要与传感器设备时钟同步。但是传输速度会比同步接口慢。
当做,
诺里基
以上来自于百度翻译
以下为原文
When the "Clock settings" is set to "Internal" in the GPIF II Designer, the PCLK (GPIF16) pin is configured as an output and provides a clock to external devices.
In this case, the GPIF II's state machine hardware is clocked by the PCLK.
If a synchronous interface is used, it is required to synchronize the PCLK and the sensor device clock .
If an asynchronous interface is used, the PCLK pin does not input/output a clock and is not required to be synchronized to the sensor device clock. But the transfer speed will be slower than the synchronous interface.
Regards,
Noriaki
当GPIFII设计器中的“时钟设置”被设置为“内部”时,PCLK(GPIF16)引脚被配置为输出并向外部设备提供时钟。
在这种情况下,GPIF II的状态机硬件由PCLK计时。
如果使用同步接口,则需要同步PCLK和传感器设备时钟。
如果使用异步接口,PCLK引脚不输入/输出时钟,并且不需要与传感器设备时钟同步。但是传输速度会比同步接口慢。
当做,
诺里基
以上来自于百度翻译
以下为原文
When the "Clock settings" is set to "Internal" in the GPIF II Designer, the PCLK (GPIF16) pin is configured as an output and provides a clock to external devices.
In this case, the GPIF II's state machine hardware is clocked by the PCLK.
If a synchronous interface is used, it is required to synchronize the PCLK and the sensor device clock .
If an asynchronous interface is used, the PCLK pin does not input/output a clock and is not required to be synchronized to the sensor device clock. But the transfer speed will be slower than the synchronous interface.
Regards,
Noriaki
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