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ADFS7124-4BBCPZ 데이터시트(PDF) 14 Page - Analog Devices |
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ADFS7124-4BBCPZ 데이터시트(HTML) 14 Page - Analog Devices |
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14 / 93 page ![]() Data Sheet ADFS7124-4 PIN CONFIGURATION AND FUNCTION DESCRIPTIONS analog.com Rev. 0 | 14 of 93 Figure 9. 32-Lead LFCSP Pin Configuration Table 6. Pin Function Descriptions Pin No. Mnemonic Description 1 REGCAPD Digital LDO Regulator Output. Decouple this pin to DGND with a 0.1 µF capacitor. 2 IOVDD Serial Interface Supply Voltage, 1.65 V to 3.6 V. IOVDD is independent of AVDD. Therefore, the serial interface can operate at 1.65 V with AVDD at 3.6 V, for example. 3 DGND Digital Ground Reference Point. 4 AIN0/IOUT/VBIAS Analog Input 0/Output of Internal Excitation Current Source/Bias Voltage. This input pin is configured through the configuration registers to be the positive or negative terminal of a differential or pseudodifferential input. Alternatively, the internal programmable excitation current source can be made available at this pin. Either IOUT0 or IOUT1 can be switched to this output. A bias voltage midway between the analog power supply rails can be generated at this pin. 5 AIN1/IOUT/VBIAS Analog Input 1/Output of Internal Excitation Current Source/Bias Voltage. This input pin is configured through the configuration registers to be the positive or negative terminal of a differential or pseudodifferential input. Alternatively, the internal programmable excitation current source can be made available at this pin. Either IOUT0 or IOUT1 can be switched to this output. A bias voltage midway between the analog power supply rails can be generated at this pin. 6, 7, 10, 11, 14, 15, 18, 19 DNC Do Not Connect. Do not connect to these pins. 8 AIN2/IOUT/VBIAS/P1 Analog Input 2/Output of Internal Excitation Current Source/Bias Voltage/General-Purpose Output 1. This input pin is configured through the configuration registers to be the positive or negative terminal of a differential or pseudodifferential input. Alternatively, the internal programmable excitation current source can be made available at this pin. Either IOUT0 or IOUT1 can be switched to this output. A bias voltage midway between the analog power supply rails can be generated at this pin. This pin can also be configured as a general-purpose output bit, referenced between AVSS and AVDD. 9 AIN3/IOUT/VBIAS/P2 Analog Input 3/Output of Internal Excitation Current Source/Bias Voltage/General-Purpose Output 2. This input pin is configured through the configuration registers to be the positive or negative terminal of a differential or pseudodifferential input. Alternatively, the internal programmable excitation current source can be made available at this pin. Either IOUT0 or IOUT1 can be switched to this output. A bias voltage midway between the analog power supply rails can be generated at this pin. This pin can also be configured as a general-purpose output bit, referenced between AVSS and AVDD. 12 REFIN1(+) Positive Reference Input. An external reference can be applied between REFIN1(+) and REFIN1(−). REFIN1(+) can be anywhere between AVDD and AVSS + 0.5 V. The nominal reference voltage (REFIN1(+) − REFIN1(−)) is 2.5 V, but the device functions with a reference from 0.5 V to AVDD. 13 REFIN1(−) Negative Reference Input. This reference input can be anywhere between AVSS and AVDD – 0.5 V. 16 AIN4/IOUT/VBIAS Analog Input 4/Output of Internal Excitation Current Source/Bias Voltage. This input pin is configured through the configuration registers to be the positive or negative terminal of a differential or pseudodifferential input. Alternatively, the internal programmable excitation current source can be made available at this pin. Either IOUT0 or IOUT1 can be switched to this output. A bias voltage midway between the analog power supply rails can be generated at this pin. 17 AIN5/IOUT/VBIAS Analog Input 5/Output of Internal Excitation Current Source/Bias Voltage. This input pin is configured through the configuration registers to be the positive or negative terminal of a differential or pseudodifferential input. |
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