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MAX680, MAX681
+5V to ±10V Voltage Converters

Generates Positive and Negative Doubled Outputs Simultaneously


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 85kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX680/MAX681 are monolithic, CMOS, dual charge-pump voltage converters that provide ±10V outputs from a +5V input voltage. The MAX680/MAX681 provide both a positive step-up charge pump to develop +10V from +5V input and an inverting charge pump to generate the -10V output. Both parts have an on-chip, 8kHz oscillator. The MAX681 has the capacitors internal to the package, and the MAX680 requires four external capacitors to produce both positive and negative voltages from a single supply.

The output source impedances are typically 150Ω, providing useful output currents up to 10mA. The low quiescent current and high efficiency make this device suitable for a variety of applications that need both positive and negative voltages generated from a single supply.

The MAX864/MAX865 are also recommended for new designs. The MAX864 operates at up to 200kHz and uses smaller capacitors. The MAX865 comes in the smaller µMAX® package.

Key Features   Applications/Uses
  • 95% Voltage-Conversion Efficiency
  • 85% Power-Conversion Efficiency
  • +2V to +6V Voltage Range
  • Only Four External Capacitors Required (MAX680)
  • No Capacitors Required (MAX681)
  • 500µA Supply Current
  • Monolithic CMOS Design

 

Key Specifications:  Charge Pumps
Part Number Topology VIN
(V)
VIN
(V)
ICC
(mA)
Unadj. VOUT
(V)
IOUT
(A)
Oper. Freq.
(kHz)
Industry Qualified Oper. Temp.
(°C)
Package/Pins Smallest Available Pckg.
(mm2)
Price
min max max typ max w/pins See Notes
MAX680 
Doubler
Dual Output
Inverter
Unregulated
2 6 2
+2xVIN
-2xVIN
0.01 8 MIL-STD-883B
-55 to +125
-40 to +85
0 to +70
CDIP(N)/8
PDIP(N)/8
SOIC(N)/8
30.9 $1.87 @1k
MAX681  -
PDIP(N)/14
160.5 -
See All Charge Pumps (48)

Diagram
MAX680, MAX681: Typical Operating Circuits
Typical Operating Circuits

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    Document Ref.: 19-0896; Rev 1; 1996-07-01
    This page last modified: 2007-06-27


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