LM136H-2.5 ,2.5Volt ReferenceFEATURESThe LM136-2.5-N series is useful as a precision 2.5V2• Low Temperature Coefficientlow volta ..
LM136H-2.5 ,2.5Volt ReferenceMICROCIRCUIT DATA SHEETOriginal Creation Date: 07/10/95MNLM136-5.0-X REV 0A0Last Update Date: 03/28 ..
LM136H-2.5/883 ,2.5V REFERENCE DIODEGeneral DescriptionThe LM136-5.0 integrated circuit is a precision 5.0V shunt regulator diode. This ..
LM136H-2.5/883 ,2.5V REFERENCE DIODEGeneral DescriptionThe LM136-2.5 integrated circuit is a precision 2.5V shunt regulator diode. This ..
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LM136H5.0 ,2.5V REFERENCE DIODEGeneral DescriptionThe LM136-5.0 integrated circuit is a precision 5.0V shunt regulator diode. This ..
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LM136H-2.5
Reference Diode
LM136-2.5-N
www.ti.com SNVS749F –MAY 1998–REVISED APRIL 2013
LM136-2.5-N, LM236-2.5-N, LM336-2.5-NV Reference Diode
Checkfor Samples: LM136-2.5-N
1FEATURESThe LM136-2.5-N seriesis usefulasa precision 2.5V
Low Temperature Coefficientlow voltage reference for digital voltmeters, power
• Wide Operating Currentof 400 μAto10 mA supplies or op amp circuitry. The 2.5V makeit
• 0.2Ω Dynamic Impedance convenientto obtaina stable reference from 5V logic
supplies. Further, since the LM136-2.5-N operatesas
• ±1% Initial Tolerance Available shunt regulator,it can be used as eithera positive
• Specified Temperature Stability or negative voltage reference.
• Easily Trimmed for Minimum Temperature DriftThe LM136-2.5-Nis rated for operation over −55°Cto
• Fast Turn-On +125°C while the LM236-2.5-Nis rated overa −25°C +85°C temperature range.
DESCRIPTIONThe LM336-2.5-Nis rated for operation overa 0°CtoThe LM136-2.5-N/LM236-2.5-N and LM336-2.5-N +70°C temperature range. See the connectionintegrated circuits are precision 2.5V shunt regulator diagramsfor available packages.diodes. These monolithic IC voltage references
operate asa low-temperature-coefficient 2.5V zener
with 0.2Ω dynamic impedance.A third terminalon the
LM136-2.5-N allows the reference voltage and
temperature coefficienttobe trimmed easily.
Connection Diagram
TO-92 Plastic Package TO Metal Can Package
Figure1. Bottom View Figure2. Bottom View Number LP See Package Number NDV
SOIC Package
Figure3. Top View
See Package NumberD