LT6015
Info : RECOMMENDED FOR NEW DESIGNS
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LT6015

3.2MHz, 0.8V/μs Low Power, Over-The-Top Precision Op Amps

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Info : RECOMMENDED FOR NEW DESIGNS tooltip
Info : RECOMMENDED FOR NEW DESIGNS tooltip
Part Details
Part Models 6
1ku List Price Starting From $1.85
Features
  • Input Common Mode Range: V to V + 76V
  • Rail-to-Rail Input and Output
  • Low Power: 315μA/Amplifier
  • Operating Temperature Range: –55°C to 150°C
  • VOS: ±50μV (Maximum)
  • CMRR, PSRR: 126dB
  • Reverse Battery Protection to 50V
  • Gain Bandwidth Product: 3.2MHz
  • Specified on 5V and ±15V Supplies
  • High Voltage Gain: 1000V/mV
  • No Phase Reversal
  • No Supply Sequencing Problems
  • Single 5-Lead SOT-23 (ThinSOT) Package
  • Dual 8-Lead MSOP
  • Quad 22-Lead DFN (6mm × 3mm)
Additional Details
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The LT6015/LT6016/LT6017 are single/dual/quad rail-to-rail input operational amplifiers with input offset voltage trimmed to less than 50μV. These amplifiers operate on single and split supplies with a total voltage of 3V to 50V and draw only 315μA per amplifier. They are reverse battery protected, drawing very little current for reverse supplies up to 50V.

The Over-The-Top® input stage of the LT6015/LT6016/LT6017 is designed to provide added protection in tough environments. The input common mode range extends from V to V+ and beyond: these amplifiers operate with inputs up to 76V above V independent of V+. Internal resistors protect the inputs against transient faults up to 25V below the negative supply. The LT6015/LT6016/LT6017 can drive loads up to 25mA and are unity-gain stable with capacitive loads as large as 200pF. Optional external compensation can be added to extend the capacitive drive capability beyond 200pF.

The LT6015 is offered in a 5-lead SOT package. The LT6016 dual op amp is available in an 8-lead MSOP package. The LT6017 is offered in a 22-pin leadless DFN package.

Applications

  • High Side or Low Side Current Sensing
  • Battery/Power Supply Monitoring
  • 4mA to 20mA Transmitters
  • High Voltage Data Acquisition
  • Battery/Portable Instrumentation
Part Models 6
1ku List Price Starting From $1.85

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Documentation

Documentation

Video

Part Model Pin/Package Drawing Documentation CAD Symbols, Footprints, and 3D Models
LT6015HS5#TRMPBF
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LT6015MPS5#TRMPBF
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Software & Part Ecosystem

Software & Part Ecosystem

Evaluation Kit

Evaluation Kits 2

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DC417B

DIP8, MS8, S8, SOT23-6 | Multi-Footprint General Purpose Board for Single Op. Amp

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AD-M2KPWR-EBZ

ADALM2000 Power Booster Board

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AD-M2KPWR-EBZ

ADALM2000 Power Booster Board

ADALM2000 Power Booster Board

Features and Benefits

  • ADALM2000 compatible
  • USB Type-C powered
  • Provides two outputs with increased current sourcing capabilities

Product Detail

The AD-M2KPWR-EBZ is an ADALM2000 add-on board which increases the output current capability up to 700mA. This board can be also used as a standalone benchtop power supply with positive and negative outputs.

The AD-M2KPWR-EBZ is a USB Type C powered board capable to increase the output current of ADALM2000’s power supplies. 

Inputs:

  1. USB type C:  4 – 18 V (validated with RPI USB-C power supply - not provided in the kit), 20W (power supply permitting)
  2. External (screw terminal connector): 4.5–18V; 20W (power supply permitting)

 

Switching between the inputs is done with a jumper.

Outputs: (2 control modes)

  1. Two variable power supplies that track M2K user supplies:
    1. 0V to 5V (400mA in USB power mode)
    2. –5V to 0V (400mA in USB power mode)
  2. Two variable power supplies, controlled from a potentiometer
    1. 1.5V to 15V (up to 700mA if powered with 18V)
    2. –15V to –1.5V (up to 700mA if powered with 18V)

 

APPLICATIONS

  • General-purpose electronic systems
  • Educational applications
  • Automated test equipment
Tools & Simulations

Tools & Simulations 4

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.

Reference Designs

Reference Designs 2

Figure 1. CN0588 Simplified Block Diagram.

DC to 10 kHz MEMS-Based IEPE Vibration Sensor

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CN0588

DC to 10 kHz MEMS-Based IEPE Vibration Sensor

CN0588

Circuits from the lab

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DC to 10 kHz MEMS-Based IEPE Vibration Sensor

Features and Benefits

  • Mechanically enclosed and machine mountable
  • IEPE interface to retrofit into existing machines
  • Power and data over a single wire, power comes from host
  • Has a frequency range from DC up to 10 kHz and response within ±3 dB
  • Resonant frequency around 12.5 kHz
View Detailed Reference Design external link

Design & Integration Tools

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ZIP

2.6 M

CN0508 Block Diagram

75 Watt, Single-Output Benchtop Power Supply

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cn0508

75 Watt, Single-Output Benchtop Power Supply

cn0508

Circuits from the lab

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75 Watt, Single-Output Benchtop Power Supply

Features and Benefits

  • 75 Watt Power Supply
  • Constant Current (>3A) and Constant Voltage (>25V) Modes
  • True 0V and 0A operation
  • Manual or Software Controlled
View Detailed Reference Design external link

Design & Integration Tools

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ZIP

4.72 M

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