ADR5040
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ADR5040

Precision Micropower Shunt Mode Voltage Reference Applications (2.048 Vout)

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Info: : PRODUCTION tooltip
Info: : PRODUCTION tooltip
Part Models 5
1ku List Price Starting From $0.33
Features
  • Ultracompact SC70 and SOT-23 packages
  • Low temperature coefficient: 75 ppm/°C (maximum)
  • Pin compatible with LM4040/LM4050
  • Initial accuracy: ±0.1%
  • No external capacitor required
  • Wide operating current range: 50 µA to 15 mA
  • Extended temperature range: −40°C to +125°C
  • Qualified for automotive applications
Additional Details
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Designed for space-critical applications, the ADR5040 / ADR5041 / ADR5043 / ADR5044 / ADR5045 are high precision shunt voltage references, housed in ultrasmall SC70 and SOT-23 packages. These voltage references are multipurpose, easy-to-use references that can be used in a vast array of applications. They feature low temperature drift, an initial accuracy of better than 0.1%, and fast settling time.

Available in output voltages of 2.048 V, 2.5 V, 3.0 V, 4.096 V, and 5.0 V, the advanced design of the ADR5040 / ADR5041 / ADR5043 / ADR5044 / ADR5045 eliminates the need for compensation by an external capacitor, yet the references are stable with any capacitive load. The minimum operating current increases from 50 µA to a maximum of 15 mA. This low operating current and ease of use make these references ideally suited for handheld, battery-powered applications. This family of references has been characterized over the extended temperature range of −40°C to +125°C. The ADR5041W and the ADR5044W are qualified for automotive applications and are available in a 3-lead SOT-23 package.

Applications

  • Portable, battery-powered equipment
  • Automotives
  • Power supplies
  • Data acquisition systems
  • Instrumentation and process control
  • Energy management
Part Models 5
1ku List Price Starting From $0.33

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Documentation

Part Model Pin/Package Drawing Documentation CAD Symbols, Footprints, and 3D Models
ADR5040AKSZ-REEL7
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ADR5040ARTZ-REEL7
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ADR5040BKSZ-REEL7
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ADR5040BRTZ-REEL7
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ADR5040WARTZ-R7
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Product Lifecycle

PCN

Nov 17, 2020

- 20_0295

ADR504x Family Data Sheet Change

ADR5040AKSZ-REEL7

PRODUCTION

ADR5040ARTZ-REEL7

PRODUCTION

ADR5040BKSZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

ADR5040WARTZ-R7

PRODUCTION

Sep 12, 2014

- 13_0293

ADR504X Die Revision

ADR5040AKSZ-REEL7

PRODUCTION

ADR5040ARTZ-REEL7

PRODUCTION

ADR5040BKSZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

May 12, 2008

- 08_0066

Addition of Polyimide layer on selected 8" C6 process parts

ADR5040AKSZ-REEL7

PRODUCTION

ADR5040BKSZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

Feb 8, 2010

- 04_0080

Qualification of the 8" C6 and Q Wafer Fab Processes at Analog Devices, Limerick, Ireland.

Feb 4, 2010

- 10_0009

Halogen Free Material Change for SOT_23 Products

ADR5040ARTZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

Filter by Model

reset

Reset Filters

Part Models

Product Lifecycle

PCN

Nov 17, 2020

- 20_0295

arrow down

ADR504x Family Data Sheet Change

ADR5040AKSZ-REEL7

PRODUCTION

ADR5040ARTZ-REEL7

PRODUCTION

ADR5040BKSZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

ADR5040WARTZ-R7

PRODUCTION

Sep 12, 2014

- 13_0293

arrow down

ADR504X Die Revision

ADR5040AKSZ-REEL7

PRODUCTION

ADR5040ARTZ-REEL7

PRODUCTION

ADR5040BKSZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

May 12, 2008

- 08_0066

arrow down

Addition of Polyimide layer on selected 8" C6 process parts

ADR5040AKSZ-REEL7

PRODUCTION

ADR5040BKSZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

Feb 8, 2010

- 04_0080

arrow down

Qualification of the 8" C6 and Q Wafer Fab Processes at Analog Devices, Limerick, Ireland.

Feb 4, 2010

- 10_0009

arrow down

Halogen Free Material Change for SOT_23 Products

ADR5040ARTZ-REEL7

PRODUCTION

ADR5040BRTZ-REEL7

PRODUCTION

Software & Part Ecosystem

Tools & Simulations 2

LTspice® is a powerful, fast and free simulation software, schematic capture and waveform viewer with enhancements and models for improving the simulation of analog circuits.

To launch ready-to-run LTspice demonstration circuits for this part:

Step 1: Download and install LTspice on your computer.

Step 2: Click on the link in the section below to download a demonstration circuit.

Step 3: If LTspice does not automatically open after clicking the link below, you can instead run the simulation by right clicking on the link and selecting “Save Target As.” After saving the file to your computer, start LTspice and open the demonstration circuit by selecting ‘Open’ from the ‘File’ menu.

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