TYPE | DESCRIPTION |
---|
Mounting Style | Surface Mount |
Number of Pins | 24 Pin |
Supply Voltage (DC) | 5.00V (min) |
Case/Package | SOIC-24 |
Supply Current | 4.5 mA |
Number of Circuits | 1 Circuit |
Number of Channels | 2 Channel |
Number of Positions | 24 Position |
Number of Bits | 24 Bit |
Power Dissipation | 52.5 W |
Sample Rate | 1 ksps |
Resolution (Bits) | 24.0 Bit |
Input Capacitance | 20.0 pF |
Input Impedance | 1.00 Ω |
Number of ADCs | 1 ADC |
Number of Inputs | 1 Input |
Operating Temperature (Max) | 85 ℃ |
Operating Temperature (Min) | -40 ℃ |
Power Dissipation (Max) | 52.5 mW |
Number of Input Channels | 1 Channel |
Supply Voltage (Max) | 10 V |
Supply Voltage (Min) | 5 V |
TYPE | DESCRIPTION |
---|
Product Lifecycle Status | Active |
Packaging | Tube |
Size-Length | 15.6 mm |
Size-Width | 7.6 mm |
Size-Height | 2.35 mm |
Operating Temperature | -40℃ ~ 85℃ |
The AD7712ARZ is a complete analog front end LC²MOS signal conditioning Analog-to-digital Converter (ADC) for low frequency measurement applications. The device has two analog input channels and accepts either low level signals directly from a transducer or high level signals and outputs a serial digital word. It employs a conversion technique to realize up to 24-bit of no missing codes performance. The input signal is applied to a proprietary programmable gain front end based around an analog modulator. The modulator output is processed by an on-chip digital filter. The first notch of this digital filter can be programmed via the on-chip control register, allowing adjustment of the filter cut-OFF and settling time. It is ideal for use in smart, microcontroller based systems. Input channel selection, gain settings and signal polarity can be configured in software using the bidirectional serial port.
● High level and low level analog input channels
● Programmable gain for both inputs gains from 1 to 128
● Differential input for low level channel
● Ability to read/write calibration coefficients
● Bidirectional microcontroller serial interface
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