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MAX6001, MAX6002, MAX6003, MAX6004, MAX6005 Low-Cost, Low-Power, Low-Dropout, SOT23-3 Voltage References


source: | post time:2010-01-10

Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 208kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX6001-MAX6005 family of SOT23, low-cost series voltage references meets the cost advantage of shunt references and offers the power-saving advantage of series references, which traditionally cost more. Unlike conventional shunt-mode (two-terminal) references that must be biased at the load current and require an external resistor, these devices eliminate the need for an external resistor and offer a supply current that is virtually independent of the supply voltage.

These micropower, low-dropout, low-cost devices are ideal for high-volume, cost-sensitive 3V and 5V battery- operated systems with wide variations in supply voltage that require very low power dissipation. Additionally, these devices are internally compensated and do not require an external compensation capacitor, saving valuable board area in space-critical applications.

Key Features   Applications/Uses
  • 1% max Initial Accuracy
  • 100ppm/°C max Temperature Coefficient
  • 45µA max Quiescent Supply Current
  • 0.8µA/V Supply Current Variation with VIN
  • ±400µA Output Source and Sink Current
  • 100mV Dropout at 400µA Load Current
  • 0.12µV/µA Load Regulation
  • 8µV/V Line Regulation
  • Stable with CLOAD = 0 to 2.2nF
 

 

Key Specifications:  Voltage References
Part Number VOUT
(V)
Temp. Coeff.
(ppm/°C)
Initial Accuracy
(% max)
ISUPPLY
(µA)
VSUPPLY
(V)
VSUPPLY
(V)
Noise 0.1Hz to 10Hz
(µVpp)
Features Oper. Temp.
(°C)
Package/Pins Smallest Available Pckg.
(mm2)
Price
max @ +25°C max min max typ max w/pins See Notes
MAX6001  1.25 100 1 45 2.5 12.6 25 Series -40 to +85
SOT/3
8 $0.40 @1k
MAX6002  2.5 2.7 60
SOT/3
$0.40 @1k
MAX6003  3 3.2 75
SOT/3
$0.40 @1k
MAX6004  4.096 4.3 100
SOT/3
$0.40 @1k
MAX6005  5 5.2 120
SOT/3
$0.40 @1k
See All Voltage References (162)

Diagram
Typical Operating Circuit

Pin Configuration

source:ShenZhen henlito electronic co.,ltd.

web:www.henlito.com


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