Datasheet ADR130 (Analog Devices)
Manufacturer | Analog Devices |
Description | Precision Series Sub-Band Gap Voltage Reference |
Pages / Page | 16 / 1 — Precision Series Sub-Band Gap. Voltage Reference. Data Sheet. ADR130. … |
Revision | D |
File Format / Size | PDF / 629 Kb |
Document Language | English |
Precision Series Sub-Band Gap. Voltage Reference. Data Sheet. ADR130. FEATURES. PIN CONFIGURATION. Initial accuracy
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Precision Series Sub-Band Gap Voltage Reference Data Sheet ADR130 FEATURES PIN CONFIGURATION Initial accuracy A grade: +0.70% (maximum) NC 1 6 NC ADR130 B grade: +0.35% (maximum) GND 2 TOP VIEW 5 SET (Not to Scale) Maximum temperature coefficient VIN 3 4 VOUT
001
A grade: 50 ppm/°C NC = NO CONNECT
06322-
B grade: 25 ppm/°C
Figure 1. 6-Lead TSOT (UJ-6)
CLOAD = 0.1 µF to 1 µF Output current: +4 mA/−2 mA Low operating current: 80 µA (typical) Output noise: 6 µV p-p @ 1.0 V output Input range: 2.0 V to 18 V Temperature range: −40°C to +125°C Tiny, Pb-free TSOT package APPLICATIONS Battery-powered instrumentation Portable medical equipment Communication infrastructure equipment GENERAL DESCRIPTION
The ADR130 is the industry’s first family of tiny, micropower, Available in the industrial temperature range of −40°C to low voltage, high precision voltage references. Featuring 0.35% +125°C, the ADR130 is housed in a tiny TSOT package. initial accuracy and 25 ppm/°C of temperature drift in the tiny For 0.5 V output, tie SET (Pin 5) to VOUT (Pin 4). For 1.0 V TSOT-23 package, the ADR130 voltage reference only requires output, tie SET (Pin 5) to GND (Pin 2). 80 µA for typical operation. The ADR130 design includes a patented temperature drift curvature correction technique that minimizes the nonlinearities in the output voltage vs. tempera- ture characteristics.
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Document Outline Features Applications Pin Configuration General Description Revision History Specifications Electrical Characteristics Absolute Maximum Ratings Thermal Resistance ESD Caution Typical Performance Characteristics Terminology Theory of Operation Power Dissipation Considerations Input Capacitor Output Capacitor Application Notes Basic Voltage Reference Connection Stacking Reference ICs for Arbitrary Outputs Precision Current Source Outline Dimensions Ordering Guide