AD7367BRUZ-5-RL7
数据手册.pdf模数转换器 - ADC Bipolar Input Dual 14B 2Ch SAR
Product Details
The AD7366-5/AD7367-51 are dual, 12-/14-bit, low power, successive approximation analog-to-digital converters ADCs that feature throughput rates up to 500 kSPS. Each device contains two ADCs, which are both preceded by a 2-channel multiplexer, and a low noise, wide bandwidth, track-and-hold amplifier.
The AD7366-5/AD7367-5 are fabricated on the Analog Devices, Inc., industrial CMOS process _i_CMOS®2, which is a technology platform combining the advantages of low and high voltage CMOS. The process allows the parts to accept high voltage bipolar signals in addition to reducing power consumption and package size. The AD7366-5/AD7367-5 can accept true bipolar analog input signals in the ±10 V range, ±5 V range, and 0 V to +10 V range.
The devices have an on-chip 2.5 V reference that can be disabled to allow the use of an external reference. If a 3 V reference is applied to the DCAPA and DCAPB pins, the AD7366-5/AD7367-5 can accept a true bipolar ±12 V analog input. Minimum ±12 V VDD and VSS supplies are required for the ±12 V input range.
**Product Highlights**
1. True bipolar analog input signals can be accepted, as well as ±10 V, ±5 V, ±12 V with external reference, and 0 V to +10 V unipolar signals.
2. Two complete ADC functions allow simultaneous sampling and conversion of two channels.
3. A 500 kSPS serial interface is SPI-/QSPI™-/MICROWIRE™-/ DSP-compatible.
### Features and Benefits
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- Dual 14-bit, 2-channel ADC
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- True bipolar analog inputs
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- Programmable input ranges
±10 V, ±5 V, 0 V to +10 V
±12 V with +3 V external reference
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- Throughput rate: 500 kSPS
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- High analog input impedance
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- Low current consumption
5.1 mA typical in normal mode
320 nA typical in shutdown mode
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- Simultaneous conversion with read in less than 2 µs
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- AD7367-5
76 dB SNR at 50 kHz input frequency
14-bit no missing codes
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- Accurate on-chip reference: 2.5 V ± 0.2%
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- –40°C to +85°C operation
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- High speed serial interface
SPI-/QSPI™-/MICROWIRE™-/DSP-compatible
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- _i_CMOS process technology