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MAX4130, MAX4131, MAX4132, MAX4133, MAX4134

Single/Dual/Quad, Wide-Bandwidth, Low-Power, Single-Supply Rail-to-Rail I/O Op Amps

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Status Explanations for product status codes

Part Number Status
MAX4130 Active: In Production.
MAX4131 Active: In Production.
MAX4132 Active: In Production.
MAX4133 Active: In Production.
MAX4134 This product is No Longer Available. See Ordering Information for recommended replacements.

Description

The MAX4130–MAX4134 family of operational amplifiers combines 10MHz gain-bandwidth product and excellent DC accuracy with Rail-to-Rail operation at the inputs and outputs. These devices require only 900µA per amplifier, and operate from either a single supply (+2.7V to +6.5V) or dual supplies (±1.35V to ±3.25V) with a common-mode voltage range that extends 250mV beyond VEE and VCC. They are capable of driving 250Ω loads and are unity-gain stable. In addition, the MAX4131/ MAX4133 feature a shutdown mode in which the outputs are placed in a high-impedance state and the supply current is reduced to only 25µA per amplifier.

With their rail-to-rail input common-mode range and output swing, the MAX4130-MAX4134 are ideal for low-voltage, single-supply operation. Although the minimum operating voltage is specified at 2.7V, the devices typically operate down to 1.8V. In addition, low offset voltage and high speed make them the ideal signal-conditioning stages for precision, low-voltage data-acquisition systems. The MAX4130 is offered in the space-saving 5-pin SOT23 package. The MAX4131 is offered in the ultra-small 6-bump, 1mm x 1.5mm chip-scale package (UCSP™).
 

Data Sheet

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Key Features

  • 6-Bump UCSP (MAX4131)
  • +2.7V to +6.5V Single-Supply Operation
  • Rail-to-Rail Input Common-Mode Voltage Range
  • Rail-to-Rail Output Voltage Swing
  • 10MHz Gain-Bandwidth Product
  • 900µA Quiescent Current per Amplifier
  • 25µA Shutdown Function (MAX4131/MAX4133)
  • 200µV Offset Voltage
  • No Phase Reversal for Overdriven Inputs
  • Drive 250Ω Loads
  • Stable with 160pF Capacitive Loads
  • Unity-Gain Stable
 

Applications/Uses

  • Automotive Sensors
  • Base Station/Wireless Infrastructure
  • Battery-Powered Instruments
  • Computers: Desktops, Workstations, and Servers
  • Computers: Motherboards
  • Computers: Notebook
  • Data Acquisition Systems
  • Industrial: Process Measurement and Control
  • Low-Power, Low-Voltage Applications
  • Panel Meters
  • Portable Equipment
  • Programmable Logic Controllers (PLCs)
  • Signal Conditioning
   

Key Specifications:

Operational Amplifiers
Part Number Amps. Rail to Rail AVCL VSUPPLY (Total)
(V)
VSUPPLY (Total)
(V)
ICC per Amp.
(µA)
ICC per Amp.
(µA)
VOS
(µV)
CMRR @DC
(dB)
PSRR @DC
(dB)
Input IBIAS
(nA)
Unity Gain BW
(MHz)
Slew Rate
(V/µs)
en
(nV/√Hz)
in
(pA/√Hz)
Low Pwr. Shutdn Package/Pins Budgetary Price
min min max typ max max typ typ max typ typ See Notes
MAX4130  1 Input/Output 1 2.7 6.5 1000 1150 1500 90 100 150 10 4 22 0.4 No
SOT/5
$1.42 @1k
MAX4131  1 600 98
µMAX/8
SOIC(N)/8
UCSP/6
$1.15 @1k
MAX4132  2 750 94
µMAX/8
SOIC(N)/8
$1.66 @1k
MAX4133  2 750 94
SOIC(N)/14
$1.96 @1k
See All Operational Amplifiers (160)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.


Diagram

MAX4130, MAX4131, MAX4132, MAX4133, MAX4134: Typical Operating Circuit
Typical Operating Circuit

Notes and Comments

Single, rail-to-rail input/output, unity-gain stable (MAX4130)
Single, rail-to-rail input/output, unity-gain stable, has shutdown (MAX4131)
Dual, rail-to-rail input/output, unity-gain stable (MAX4132)
Dual, rail-to-rail input/output, unity-gain stable, has shutdown (MAX4133)
Quad, rail-to-rail input/output, unity-gain stable (MAX4134)

More Information

Topmark Coding MAX4130
Topmark Coding MAX4131

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Document Ref.: 19-1089 Rev 3; 2003-06-12
This page last modified: 2009-07-16




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