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MAX9060, MAX9061, MAX9062, MAX9063, MAX9064

Ultra-Small, Low-Power Single Comparators in 4-Bump UCSP and 5-SOT23

The Industry's Smallest Comparators Available in a 4-Bump UCSP
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Status Explanations for product status codes

Active: In Production.

Description

The MAX9060–MAX9064 are small single comparators, ideal for a wide variety of portable electronics applications such as cell phones, media players, and notebooks that have extremely tight board space and power constraints. These comparators are offered in both, a miniature 4-bump UCSP™ package with a 1mm x 1mm footprint (as small as two 0402 resistors), and a 5-pin SOT23 package.

The MAX9060–MAX9064 feature an input voltage range of -0.3V to +5.5V independent of supply voltage. These devices maintain high impedance at the inputs even when powered down (VCC or VREF = 0V). They also feature internal filtering to provide high RF immunity.

The MAX9060 and MAX9061 have open-drain outputs and draw quiescent supply current from a user-supplied reference voltage, VREF, between 0.9V and 5.5V. These devices consume only 100nA (max) supply current and operate over the extended -40°C to +85°C temperature range.

The MAX9062, MAX9063 and MAX9064 are single comparators with an internal 0.2V reference. These devices feature either a push-pull or an open-drain output. They consume only 700nA (max) supply current. The MAX9062, MAX9063, and MAX9064 operate down to VCC = 1V over the extended -40°C to +85°C temperature range.

Data Sheet

Download this datasheet in PDF formatDownload Rev 5 (PDF, 327.7kB)
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An evaluation board is available: MAX9060EVKIT, MAX9061EVKIT, MAX9062EVKIT, MAX9063EVKIT, MAX9064EVKIT, MAX9065EVKIT

Key Features

  • Tiny 1mm x 1mm x 0.6mm 4-Bump UCSP
    • Footprint = Two 0402 Resistors
    • Also Available in a 5-Pin SOT23 Package
  • Ultra-Low Operating Current (100nA max)
  • Input Voltage Range = -0.3V to +5.5V
  • External REF Range = 0.9V to 5.5V (MAX9060/MAX9061)
  • Internal REF Voltage = 0.2V (MAX9062/MAX9063/MAX9064)
  • 15µs Propagation Delay
  • -40°C to +85°C Extended Temperature Range
 

Applications/Uses

  • Cell Phones
  • Electronic Toys
  • Notebook Computers
  • Portable Media Players
  • Portable Medical Devices
   

Key Specifications:

Comparators
Part Number Comp-
arators
tPD
(ns)
Input Range VSUPPLY (Total)
(V)
VSUPPLY (Total)
(V)
ICC per Comp.
(µA)
VOS
(mV)
VOS
(mV)
Logic Out Oper. Temp.
(°C)
Budgetary
Price
typ min max max typ max See Notes
MAX9060  1 25000
Rail to Rail
above Pos. Rail
to Neg. Rail
0.9 5.5 0.35 1.3 9 Open Drain -40 to +85 $0.40 @1k
MAX9061 
See All Comparators (84)

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 and version-specific prices and delivery, please see the price and availability page or contact an authorized distributor.


Comparators + Reference
Part Number Comp-
arators
Thresh.
(V)
Internal Ref. Accuracy
(%)
tPD
(µs)
VSUPPLY
(V)
VSUPPLY
(V)
ICC
(µA)
Prog. Hyst. Logic Out Oper. Temp.
(°C)
Budgetary
Price
typ min max max See Notes
MAX9062  1 0.2 6 15 1 5.5 1.1 No Open Drain -40 to +85 $0.41 @1k
MAX9063  Open Drain $0.40 @1k
MAX9064  Push-Pull $0.44 @1k
See All Comparators + Reference (48)

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 and version-specific prices and delivery, please see the price and availability page or contact an authorized distributor.



Diagram

MAX9060, MAX9061, MAX9062, MAX9063, MAX9064: Typical Operating Circuits
Typical Operating Circuits

More Information

Topmark Coding MAX9060
Topmark Coding MAX9061
Topmark Coding MAX9062
Topmark Coding MAX9063
Topmark Coding MAX9064
New Product Press Release   2008-07-28 ]

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Document Ref.: 19-4105 Rev 5; 2012-11-01
This page last modified: 2012-11-01