• Part: ADR395
  • Description: Low Noise Precision Voltage References
  • Manufacturer: Analog Devices
  • Size: 781.97 KB
Download ADR395 Datasheet PDF
Analog Devices
ADR395
ADR395 is Low Noise Precision Voltage References manufactured by Analog Devices.
- Part of the ADR391 comparator family.
Data Sheet Micropower, Low Noise Precision Voltage References with Shutdown ADR391/ADR392/ADR395 Features pact 5-lead TSOT package Low temperature coefficient B grade: 9 ppm/°C A grade: 25 ppm/°C Initial accuracy B grade: ±4 m V maximum (ADR391) A grade: ±6 m V maximum Ultralow output noise: 5 μV p-p (0.1 Hz to 10 Hz) Low dropout: 300 m V Low supply current 3 μA maximum in shutdown 140 μA maximum in operation No external capacitor required Output current: 5 m A Automotive grade available Wide temperature range: - 40°C to +125°C APPLICATIONS Battery-powered instrumentation Portable medical instrumentation Data acquisition systems Industrial process controls Automotive GENERAL DESCRIPTION The ADR391/ADR392/ADR395 are precision 2.5 V, 4.096 V, and 5 V band gap voltage references, respectively, featuring low power and high precision in a tiny footprint. Using patented temperature drift curvature correction techniques from Analog Devices, Inc., the ADR39x references achieve a low 9 ppm/°C of temperature drift in the TSOT package. PIN CONFIGURATION SHDN 1 ADR391/ 5 GND VIN 2 ADR392/ ADR395 VOUT (SENSE) 3 (Not to Scale) 4 VOUT (FORCE) Figure 1. 5-Lead TSOT (UJ Suffix) 00419-001 Table 1. Model ADR391B ADR391A ADR392B ADR392A ADR395B ADR395A Output Voltage (VO) 2.5 2.5 4.096 4.096 5.0 5.0 Temperature Coefficient (ppm/°C) 9 25 9 25 9 25 Accuracy (m V) ±4 ±6 ±5 ±6 ±5 ±6 The ADR39x family of micropower, low dropout voltage references provides a stable output voltage from a minimum supply of 300 m V above the output. Their advanced design eliminates the need for external capacitors, which further reduces board space and system cost. The bination of low power operation, small size, and ease of use makes the ADR39x precision voltage references ideally suited for battery-operated applications. Rev. I Document Feedback Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its...