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ADFS7124-4BBCPZ Datasheet(PDF) 48 Page - Analog Devices |
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ADFS7124-4BBCPZ Datasheet(HTML) 48 Page - Analog Devices |
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48 / 93 page ![]() Data Sheet ADFS7124-4 ADC CIRCUIT INFORMATION analog.com Rev. 0 | 48 of 93 AVDD = 3 V. If the ADC is configured for bipolar mode, the analog input range on the AINP input is 0 V to AVDD. The bipolar/unipolar option is chosen by programming the bipolar bit in the configuration register. DATA OUTPUT CODING When the ADC is configured for unipolar operation, the output code is natural (straight) binary with a zero differential input voltage resulting in a code of 00 … 00, a midscale voltage resulting in a code of 100 … 000, and a full-scale input voltage resulting in a code of 111 … 111. The output code for any analog input voltage can be represented as Code = (2N × AIN × Gain)/VREF When the ADC is configured for bipolar operation, the output code is offset binary with a negative full-scale voltage resulting in a code of 000 … 000, a zero differential input voltage resulting in a code of 100 … 000, and a positive full-scale input voltage resulting in a code of 111 … 111. The output code for any analog input voltage can be represented as Code = 2N − 1 × ((AIN × Gain/VREF) + 1) where: N = 24. AIN is the analog input voltage. Gain is the gain setting (1 to 128). EXCITATION CURRENTS The ADFS7124-4 also contains two matched, software configura- ble, constant current sources that can be programmed to equal 0.1 µA, 50 µA, 100 µA, 250 µA, 500 µA, 750 µA, or 1 mA. These current sources can be used to excite external resistive bridges or RTD sensors. Both current sources source currents from AVDD and can be directed to any of the analog input pins (see Figure 77). The pins on which the currents are made available are programmed using the IOUT1_CH and IOUT0_CH bits in the IO_CONTROL_1 register (see Table 50). The magnitude of each current source is individually programmable using the IOUT1 and IOUT0 bits in the IO_CONTROL_1 register. In addition, both currents can be output to the same analog input pin. Note that the on-chip reference does not need to be enabled when using the excitation currents. Figure 77. Excitation Current and Bias Voltage Connections Table 50. Input/Output Control 1 Register Reg. Name Bits Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 Reset RW 0x03 IO_ CONTROL _1 [23:16] GPIO_DAT2 GPIO_DAT1 0 0 GPIO_CTRL 2 GPIO_CTRL 1 0 0 0x000000 RW [15:8] PDSW 0 IOUT1 IOUT0 [7:0] IOUT1_CH IOUT0_CH |
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