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STPIC44L02 数据表(PDF) 10 Page - STMicroelectronics |
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STPIC44L02 数据表(HTML) 10 Page - STMicroelectronics |
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10 / 21 page ![]() STPIC44L02 10/21 Figure 8 : SDO Switching Time Figure 9 : FLT Switching Time PRINCIPLES OF OPERATION SERIAL DATA OPERATION The STPIC44L02 offers serial input interface to the microcontroller to transfer control data to the predriver and fault data back to the controller. The serial input interface consists of: SCLK - Serial Clock CS - Chip Select SDI - Serial Data Input SDO - SeriaL Data Output Serial data is shifted into the least significant bit (LSB) of the SDI shift register on the rising edge of the first SCLK after CS has transitated from 1 to 0. The CS must be transitated from 1 to 0 before the falling edge of the first clock (see note 1). Four clock cycles must occur before CS transitates high for a proper control of the outputs. Less than four clock cycles result in fault data being latched into the output control buffer. Eight bits data can be shifted into the device, but the first 4 bits shifted out are always the fault data and the last 4 bits shifted in are always the output control data. A low-to-high transition on CS latches the contents of the serial shift register into the output control register. A logic 0 input to SDI turns off the corresponding parallel output and a logic 1 input turns the output on (see figure 10). Data is shifted out of SDO on the falling edge of SCLK. The MSB of fault data is available after CS is transitated low. The remaining 3 bits of fault data are shifted out in the following three clock cycles. Fault data is latched into the serial register when CS is transitated low. A fault must be present on the high to low transition of CS to be captured by the device. The CS input must be transitated to a high state after the last bit of serial data has been clocked into the device. The rising edge of CS inhibit SDI puts SDO into a high impedance state, latches the 4 bits of serial data into the output control register, and clears and reenables the serial fault registers (see figure 11). When a shorted load condition occurs, the device automatically retries the output and the fault clears after the fault condition has been corrected. |
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