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AD7819 Datasheet PDF

Part Series:
AD7819 Series
Category:
Analog to Digital
Description:
ANALOG DEVICES AD7819YRZ Analogue to Digital Converter, 8Bit, 200KSPS, Single, 2.7V, 5.5V, SOIC
Updated Time: 2023/01/13 02:52:54 (UTC + 8)

AD7819 Datasheet PDF Analog to Digital

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AD7819YRZ - ADI Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
16 Pin
Digital Logic Level
SAR
Supply Voltage (DC)
2.70V (min)
Case/Package
SOIC-16
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AD7819YRZ - ADI Function Overview

Product Details
The AD7819 is a high speed, microprocessor-compatible, 8-bit analog-to-digital converter with a maximum throughput of 200 kSPS. The converter operates off a single +2.7 V to +5.5 V supply and contains a 4.5 µs successive approximation A/D converter, track/hold circuitry, on-chip clock oscillator and 8-bit wide parallel interface. The parallel interface is designed to allow easy interfacing to microprocessors and DSPs. Using only address decoding logic the AD7819 is easily mapped into the microprocessor address space.
When used in its power-down mode, the AD7819 automatically powers down at the end of a conversion and powers up at the start of a new conversion. This feature significantly reduces the power consumption of the part at lower throughput rates. The AD7819 can also operate in a high speed mode where the part is not powered down between conversions. In this mode of operation the part is capable of providing 200 kSPS throughput.
The part is available in a small, 16-pin 0.3" wide, plastic dual-in-line package (DIP); in a 16-pin, 0.15" wide, narrow body small outline IC (SOIC) and in a 16-pin, narrow body, thin shrink small outline package (TSSOP).
### Features and Benefits
8-Bit ADC with 4.5 µs Conversion Time
On-Chip Track and Hold
Operating Supply Range: 2.7 V to 5.5 V
8-Bit Parallel Interface 8-Bit Read
Analog Input Range: 0 V to VREF
Reference Input Range: 1.2 V to VDD
Specifications at 2.7 V–3.6 V and 5 V ± 10%
Power Performance
Normal Operation
   10.5 mW, VDD = 3 V
Automatic Power-Down
   57.75 µW @ 1 kSPS, VDD = 3 V
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