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MCP79520-I/MS 数据表(PDF) 9 Page - Microchip Technology |
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MCP79520-I/MS 数据表(HTML) 9 Page - Microchip Technology |
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9 / 58 page ![]() 2012-2022 Microchip Technology Inc. and its subsidiaries DS20002300D-page 9 MCP7951X/MCP7952X 3.0 PIN DESCRIPTIONS The descriptions of the pins are listed in Table 3-1. 3.1 Oscillator Input/Output (X1, X2) These pins are used as the connections for an external 32.768 kHz quartz crystal and load capacitors. X1 is the crystal oscillator input and X2 is the output. The MCP795XX is designed to allow for the use of external load capacitors in order to provide additional flexibility when choosing external crystals. The MCP795XX is optimized for crystals with a specified load capacitance of 6-9 pF. X1 also serves as the external clock input when the MCP795XX is configured to use an external oscillator. 3.2 Backup Supply (VBAT) This is the input for a backup supply to maintain the RTCC and SRAM registers during the time when VCC is unavailable. Power should be applied to VCC before VBAT. If the battery backup feature is not being used, the VBAT pin should be connected to VSS. 3.3 Chip Select (CS) A low level on this pin selects the device, whereas a high level deselects the device. A nonvolatile memory programming cycle which is already initiated or in progress will be completed, regardless of the CS input signal. When the device is deselected, SO goes into the high-impedance state, allowing multiple parts to share the same SPI bus. After power-up, a high-to-low transition on CS is required prior to any sequence being initiated. 3.4 Serial Input (SI) This pin is used to transfer data into the device. It receives instructions, addresses and data. Data is latched on the rising edge of the serial clock. 3.5 Serial Output (SO) This pin is used to transfer data out of the MCP795XX. During a read cycle, data is shifted out on this pin after the falling edge of the serial clock. 3.6 Serial Clock (SCK) This pin is used to synchronize the communication between a host and the MCP795XX. Instructions, addresses or data present on the SI pin are latched on the rising edge of the clock input, while data on the SO pin is updated after the falling edge of the clock input. 3.7 Multifunction Pin (MFP) The MFP pin is shared with the clock divider and the alarms. This pin requires an external pull-up to VCC or VBAT. The pin remains low until such time that the interrupt flag in the register is cleared by software. This pin has a maximum sink current of 10 mA. TABLE 3-1: PIN FUNCTION TABLE Name 10-Pin MSOP 10-Pin TDFN(1) Pin Function X1 1 1 Quartz Crystal Input, External Oscillator Input X2 2 2 Quartz Crystal Output VBAT 3 3 Battery Backup Supply Input CS 4 4 Chip Select Input VSS 5 5 Ground SI 6 6 Serial Data Input SO 7 7 Serial Data Output SCK 8 8 Serial Clock Input MFP 9 9 Multifunction Pin VCC 10 10 Primary Power Supply Note 1: Exposed pad on TDFN can be connected to Vss or left floating. |
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