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MAX4162, MAX4163, MAX4163EBL, MAX4164

SOT23, Micropower, Single-Supply, Rail-to-Rail I/O Op Amps

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Status Explanations for product status codes

Part Number Status
MAX4162 Active: In Production.
MAX4163 Active: In Production.
MAX4163EBL Active: In Production.
MAX4164 This product is No Longer Available. See Ordering Information for recommended replacements.

Description

The MAX4162/MAX4163/MAX4164 are single/dual/quad, micropower operational amplifiers that combine an exceptional bandwidth to power consumption ratio with true rail-to-rail inputs and outputs. They consume a mere 25µA quiescent current per amplifier, yet achieve 200kHz gain-bandwidth product and are unity-gain stable while driving any capacitive load. The MAX4162/MAX4163/MAX4164 operate from either a single supply (2.5V to 10V) or dual supplies (±1.25V to ±5V), with an input common-mode voltage range that extends 250mV beyond either supply rail. These amplifiers use a proprietary architecture to achieve a very high input common-mode rejection ratio without the midswing nonlinearities present in other rail-to-rail op amps. This architecture also maintains high open-loop gain and output swing while driving substantial loads.

The combination of excellent bandwidth/power performance, single-supply operation, and miniature footprint makes these op amps ideal for portable equipment and other low-power, single-supply applications. The single MAX4162 is available in 8-pin SO and space-saving 5-pin SOT23 packages. The MAX4163 is available in an 8-pin ultra chip-scale package (UCSP™) and an 8-pin µMAX® or SO package. The MAX4164 is available in a 14-pin SO package.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 3 (PDF, 328kB)
Send this datasheet to any email addressE-Mail

Key Features

  • UCSP Package (MAX4163)
  • 1.0pA Typical Input Bias Current
  • Single-Supply Operation from 2.5V to 10V
  • Input Common-Mode Voltage Range Extends 250mV Beyond Either Supply Rail
  • Rail-to-Rail Output Swing
  • 200kHz Gain-Bandwidth Product
  • 25µA Quiescent Current per Amplifier
  • Excellent CMRR, PSRR, and Gain Linearity
  • No Phase Reversal for Overdriven Inputs
  • Unity-Gain Stable
  • Stable with Any Capacitive Load
  • Internally Short-Circuit Protected to Either Rail
 

Applications/Uses

  • Automotive Electronics
  • Cell Phones
  • Cordless Phones
  • Glucose Meters
  • GPS Solutions
  • Ionization Detectors
  • IP Camera
  • Low-Power, Low-Voltage Equipment
  • Medical Instruments
  • Panel Meters
  • pH Probes
  • Portable Equipment
  • Power Meters
  • Programmable Logic Controllers (PLCs)
   

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)
Low Pwr. Shutdn Package/Pins Budgetary Price
min min max typ max max typ typ max typ typ See Notes
MAX4162  1 Input/Output 1 2.5 10 25 40 3000 100 110 0.1 0.2 0.115 80 No
SOIC(N)/8
SOT/5
$1.17 @1k
MAX4163  2 4000
µMAX/8
SOIC(N)/8
UCSP/8
$1.47 @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

MAX4162, MAX4163, MAX4163EBL, MAX4164: Typical Application Circuit
Typical Application Circuit

Application Notes

Tutorial 741   Rail-to-Rail Outputs and Beyond-the-Rails Inputs: The Inside Story on Micropower Op Amps
Application Note 825   Sawtooth Generator Exhibits ~1% Linearity And >80dB Dynamic Frequency Range
Application Note 843   Industrial 0V to +10V Digital Potentiometer
Application Note 1074   DAC and Op Amp Generate Variable Negative Control Voltage
Reference Design 1867   Optocoupler Extends High-Side Current Sensor to 1kV
Application Note 1988   Circuit Enables PC-Based Voltage Measurements
Application Note 3757   Bias Supply Powers Low-Power Geiger-Mueller Tube
Application Note 3869   Variations Among Current-Sink/Source Circuits with a Single Op Amp
Application Note 4428   Rail-to-Rail: Railroading and the Electronics of Op Amps
Application Note 4520   Charging Lithium Batteries with a Nonstandard Termination Voltage
Application Note 4523   Constant-Power Driver Is Simple, Efficient, and Inexpensive
Application Note 4566   Extending the Input Voltage Range of Standard Op Amps
Application Note 4721   The Quick Guide to Layout Considerations for the Lithium-Ion (Li+) Battery Simulator

Product Guides

Amplifiers and Comparators (PDF)
Video (PDF)

Reliability Reports

Reliability Report: MAX4163.pdf
Show FIT data for:
Request Reliability Report for:

Software/Models

MAX4162 Macromodel
MAX4162AVCL Test Circuit File

Ordering Information

Filters: Part Number: Package: Temperature: Tape and Reel Sample
Part Number Free
Sample
Buy Status Explanations for product status codes Recommended Replacement Package:
TYPE PINS FOOTPRINT
DRAWING  CODE/VAR *
Temp RoHS/Lead-Free?
Materials Analysis
MAX4162ESA    
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8-2*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4162ESA+  
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8+2*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4162ESA+T    
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8+2*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4162ESA-T    
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8-2*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4162EUK+T    
Active   SOT;5 pin;9 mm²
Outline Drawing:21-0057 (PDF)
Land Pattern: 90-0174 (PDF)
Use pkgcode/variation: U5+1*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4162EUK-T    
Active   SOT;5 pin;9 mm²
Outline Drawing:21-0057 (PDF)
Land Pattern: 90-0174 (PDF)
Use pkgcode/variation: U5-1*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4163EBL+T    
Active   UCSP;8 pin;2.7 mm²
Outline Drawing:21-0093 (PDF)
Land Pattern: Not Available
Use pkgcode/variation: B9+5*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4163EBL-T    
Active   UCSP;8 pin;2.7 mm²
Outline Drawing:21-0093 (PDF)
Land Pattern: Not Available
Use pkgcode/variation: B9-5*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4163ESA    
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8-4*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4163ESA+  
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8+4*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
Part Number Free
Sample
Buy Status Explanations for product status codes Recommended Replacement Package:
TYPE PINS FOOTPRINT
DRAWING  CODE/VAR *
Temp RoHS/Lead-Free?
Materials Analysis
MAX4163ESA+T    
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8+4*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4163ESA-T    
Active   SOIC(N);8 pin;30.9 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0096 (PDF)
Use pkgcode/variation: S8-4*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4163EUA    
Active   µMAX;8 pin;16.2 mm²
Outline Drawing:21-0036 (PDF)
Land Pattern: 90-0092 (PDF)
Use pkgcode/variation: U8-1*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4163EUA+  
Active   µMAX;8 pin;16.2 mm²
Outline Drawing:21-0036 (PDF)
Land Pattern: 90-0092 (PDF)
Use pkgcode/variation: U8+1*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4163EUA+T    
Active   µMAX;8 pin;16.2 mm²
Outline Drawing:21-0036 (PDF)
Land Pattern: 90-0092 (PDF)
Use pkgcode/variation: U8+1*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4163EUA-T    
Active   µMAX;8 pin;16.2 mm²
Outline Drawing:21-0036 (PDF)
Land Pattern: 90-0092 (PDF)
Use pkgcode/variation: U8-1*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4164ESD     N/A No Longer Available MAX4495
MAX4472

 
SOIC(N);14 pin;54.3 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0112 (PDF)
Use pkgcode/variation: S14M-5*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
MAX4164ESD+     N/A No Longer Available MAX4495
MAX4472

 
SOIC(N);14 pin;54.3 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0112 (PDF)
Use pkgcode/variation: S14M+5*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4164ESD+T     N/A No Longer Available MAX4495
MAX4472

 
SOIC(N);14 pin;54.3 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0112 (PDF)
Use pkgcode/variation: S14M+5*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
MAX4164ESD-T     N/A No Longer Available MAX4495
MAX4472

 
SOIC(N);14 pin;54.3 mm²
Outline Drawing:21-0041 (PDF)
Land Pattern: 90-0112 (PDF)
Use pkgcode/variation: S14M-5*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis

Notes:
  1. Other options and links for purchasing parts are listed at: http://www.maxim-ic.com/sales.
  2. Didn't Find What You Need? Ask our applications engineers. Expert assistance in finding parts, usually within one business day.
  3. Part number suffixes: T or T&R = tape and reel; + = RoHS/lead-free; # = RoHS/lead-exempt; -D = drypack; -U/+U on DS parts = cut tape. More: See Full Data Sheet or Maxim Product Naming Conventions.
  4. * Some packages have variations, listed on the drawing. "PkgCode/Variation" tells which variation the product uses. Note that "+", "#", "-" in the part number suffix describes RoHS status. Package drawings may show a different suffix character.

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More Information

Topmark Coding MAX4162
Topmark Coding MAX4163


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Information Index

Document Ref.: 19-1195 Rev 3; 2010-02-12
This page last modified: 2010-02-12


 


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