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MCP47FVB01 数据表(PDF) 61 Page - Microchip Technology |
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MCP47FVB01 数据表(HTML) 61 Page - Microchip Technology |
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61 / 92 page ![]() 2015 Microchip Technology Inc. DS20005405A-page 61 MCP47FVBXX 8.0 TYPICAL APPLICATIONS The MCP47FVBXX family of devices are general pur- pose, single/dual-channel voltage output DACs for vari- ous applications where a precision operation with low-power is needed. Applications generally suited for the devices are: • Set Point or Offset Trimming • Sensor Calibration • Portable Instrumentation (Battery-Powered) • Motor Control 8.1 Connecting to I2C BUS using Pull-Up Resistors The SCL and SDA pins of the MCP47FVBXX devices are open-drain configurations. These pins require a pull-up resistor, as shown in Figure 8-2. The pull-up resistor values (R1 and R2) for SCL and SDA pins depend on the operating speed (standard, fast and high-speed) and loading capacitance of the I2C bus line. A higher value of the pull-up resistor consumes less power, but increases the signal transition time (higher RC time constant) on the bus line. Therefore, it can limit the bus operating speed. The lower resistor value, on the other hand, consumes higher power, but allows higher operating speed. If the bus line has higher capacitance due to long metal traces or multiple device connections to the bus line, a smaller pull-up resistor is needed to compensate the long RC time constant. The pull-up resistor is typically chosen between 1 k and 10 k ranges for Standard and Fast modes, and less than 1 k for High-Speed mode. 8.1.1 DEVICE CONNECTION TEST The user can test the presence of the device on the I2C bus line using a simple I2C command. This test can be achieved by checking an acknowledge response from the device after sending a Read or Write command. Figure 8-1 shows an example with a Read command. The steps are: 1. Set the R/W bit “High” in the device’s address byte. 2. Check the ACK bit of the address byte. If the device acknowledges (ACK = 0) the command, then the device is connected. Otherwise, it is not connected. 3. Send Stop bit. FIGURE 8-1: I2C Bus Connection Test. 12 3 4 5 6 7 8 9 SCL SDA A2 A1 A0 1 Start Bit Address Byte Address bits R/W Stop Bit Device Response A3 A4 A5 A6 |
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