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25CS160-E/MS 数据表(PDF) 12 Page - Microchip Technology |
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25CS160-E/MS 数据表(HTML) 12 Page - Microchip Technology |
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12 / 53 page ![]() 2026 Microchip Technology Inc. and its subsidiaries Preliminary DS20007008B-page 12 25CS160 2.0 PIN DESCRIPTIONS The descriptions of the pins are listed in Table 2-1. TABLE 2-1: PIN FUNCTION TABLE 2.1 Chip Select (CS) Asserting the CS pin selects the device. When the CS pin is deasserted, the device will be deselected and placed in Standby mode, and the SO pin will be in a high-impedance state. When the device is deselected, data will not be accepted on the SI pin. A high-to-low transition on the CS pin is required to start a sequence, and a low-to-high transition is required to end a sequence. For write sequences, the device will not enter Standby mode until the completion of the self-timed internal write cycle. 2.2 Serial Data Output (SO) The SO pin is used to shift data out from the device. Data on the SO pin are always clocked out on the falling edge of SCK. The SO pin is in a high-impedance state whenever the device is deselected (CS is deasserted) as well as when the Hold function is engaged. 2.3 Write-Protect Pin (WP) The Write-Protect (WP) pin can be used to protect the STATUS register and memory array contents via the Block Protection modes when Legacy Write Protection mode is enabled. 2.4 Serial Data Input (SI) Instructions, addresses and data are latched by the 25CS160 on the rising edge of the Serial Clock (SCK) line via the Serial Data Input (SI) pin. 2.5 Serial Clock (SCK) The Serial Clock (SCK) pin is used to provide a clock signal to the device and is used to synchronize the flow of data to and from the device. Instructions, addresses and data present on SI pin are always latched in on the rising edge of SCK, while output data on the SO pin are always clocked out on the falling edge of SCK. 2.6 Hold (HOLD) When the device is selected and a serial communication sequence is underway, HOLD can be used to pause the communication with the host device without resetting the serial sequence. Name MSOP SOIC SOT-23 TSSOP UDFN(1) Function CS 1 1 5 1 1 Chip Select Input SO 2 2 4 2 2 Serial Data Output WP 3 3 — 3 3 Write-Protect VSS 4 4 2 4 4 Ground SI 5 5 3 5 5 Serial Data Input SCK 6 6 1 6 6 Serial Clock Input HOLD 7 7 — 7 7 Hold Input VCC 8 8 6 8 8 Device Power Supply Note 1: Exposed pad on UDFN can be connected to VSS or left floating. |
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