LTC6363
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LTC6363

Precision, Low Power Differential Amplifier/ADC Driver Family

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Part Models 24
1ku List Price Starting From $3.20
Features
  • Available with User Settable Gain or Fixed-Gain of 0.5V/V, 1V/V, or 2V/V
  • 2.9nV/√Hz Input-Referred Noise
  • 2mA Maximum Supply Current
  • 45ppm Max Gain Error
  • 0.5ppm/°C Max Gain Error Drift
  • 94dB Min CMRR
  • 100µV Max Offset Voltage
  • 50nA Max Input Offset Current
  • Fast Settling: 720ns to 18-Bit, 8VP-P Output
  • 2.8V (±1.4V) to 11V (±5.5V) Supply Voltage Range
  • Differential Rail-to-Rail Outputs
  • Input Common Mode Range Includes Ground
  • Low Distortion: 118dB SFDR at 2kHz, 18VP-P
  • 500MHz Gain-Bandwidth Product
  • 35MHz –3dB Bandwidth
  • Low Power Shutdown: 20µA (VS = 3V)
  • 8-Lead MSOP, 2mm × 3mm 8-Lead DFN and 3mm × 3mm 16-lead LFCSP Packages
Additional Details
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The LTC6363 family consists of four fully differential, low power, low noise amplifiers with rail-to-rail outputs optimized to drive SAR ADCs. The LTC6363 is a standalone differential amplifier, where the gain is typically set using four external resistors. The LTC6363-0.5, LTC6363-1, and LTC6363-2 each have internal matched resistors to create fixed gain blocks with gains of 0.5V/V, 1V/V, and 2V/V respectively. Each of the fixed-gain amplifiers features precision laser trimmed on-chip resistors for accurate, ultrastable gain and excellent CMRR.

Applications

  • 20-Bit, 18-Bit and 16-Bit SAR ADC Drivers
  • Single-Ended-to-Differential Conversion
  • Low Power ADC Drivers
  • Level Shifter
  • Differential Line Drivers
  • Battery-Powered Instrumentation
Part Models 24
1ku List Price Starting From $3.20

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Documentation

Video

Part Model Pin/Package Drawing Documentation CAD Symbols, Footprints, and 3D Models
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Product Lifecycle

PCN

Feb 3, 2020

- 20_0128

Laser Top Mark for 8 Lead MSOP Packages Assembled in ADPG and UTAC

LTC6363HMS8#PBF

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Mar 20, 2024

- 23_0089

Obsolescence of Tower Fab3 (JAZZ-3) SBC35 Process

LTC6363HDCB#TRMPBF

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Feb 3, 2020

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Laser Top Mark for 8 Lead MSOP Packages Assembled in ADPG and UTAC

LTC6363HMS8#PBF

LAST TIME BUY

LTC6363HMS8#TRPBF

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LTC6363HMS8-0.5#PBF

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Mar 20, 2024

- 23_0089

arrow down

Obsolescence of Tower Fab3 (JAZZ-3) SBC35 Process

LTC6363HDCB#TRMPBF

LAST TIME BUY

LTC6363HDCB#TRPBF

LAST TIME BUY

LTC6363HMS8#PBF

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Software & Part Ecosystem

Evaluation Kits 3

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DC2655A

LTC6363-1, LTC6363-2, LTC6363-0.5 Fully Differential Amplifier

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DC2655A

LTC6363-1, LTC6363-2, LTC6363-0.5 Fully Differential Amplifier

LTC6363-1, LTC6363-2, LTC6363-0.5 Fully Differential Amplifier

Product Detail

The LTC®6363-1, LTC6363-2, LTC6363-0.5 are low power, low noise differential op amps with built-in precision resistors to establish accurate gains of 1, 2 or 0.5 respectively

The DC2655A is a small-size demo circuit that minimizes trace resistance in series with the IC, so that the precise gain and CMRR can be maintained. The board’s inputs can be driven single-ended or differentially. The signal path from inputs to outputs is DC-coupled. An onboard jumper configures the DC2655A for dual or single power supply. To minimize PCB layout parasitics, the configurability of this board has been minimized. For a more flexible board refer to the DC2319A.

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DC2487A

LTC6363 Rail-to-Rail SAR ADC Driver Amplifier

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DC2487A

LTC6363 Rail-to-Rail SAR ADC Driver Amplifier

LTC6363 Rail-to-Rail SAR ADC Driver Amplifier

Product Detail

Demonstration circuit 2487A features the LTC6363 amplifier. The DC2487A is designed to drive the inputs of the DC2290A demo board. The DC2290A features the LTC2387 18-bit, 15Msps high speed SAR ADC. The linearity and low noise of the LTC6363 make it an ideal candidate to drive the LTC2387 at frequencies up to 100kHz.

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DC2319A-A

LTC6363 Differential Op Amp/ADC Driver Demo Board

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DC2319A-A

LTC6363 Differential Op Amp/ADC Driver Demo Board

LTC6363 Differential Op Amp/ADC Driver Demo Board

Product Detail

The LTC6363 is a low power, low noise differential op amp with rail-to-rail output swing and good DC accuracy. The amplifier may be configured to process a fully differential input signal or to convert a single-ended input signal to a differential output signal. The differential outputs of the DC2319A can be configured with a first order RC network for driving the differential inputs of an ADC.

Tools & Simulations 6

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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