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LM313

  

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 LM313 LM313H
начиная LM313* LM313H*
концы *ELM313
включая *FLM313* *ELM313*

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LM313 [Reference Diode ]

other parts : LM113  LM113-1H  LM113-1H/883  LM113-2H  LM113-2H/883  LM113H  LM113H/883 

National-Semiconductor
National ->Texas Instruments

General Description
The LM113/LM313 are temperature compensated, low voltage reference diodes. They feature extremely-tight regulation over a wide range of operating currents in addition to an unusually-low breakdown voltage and good temperature stability.
The diodes are synthesized using transistors and resistors in a monolithic integrated circuit. As such, they have the same low noise and long term stability as modern IC op amps. Further, output voltage of the reference depends only on highly-predictable properties of components in the IC; so they can be manufactured and supplied to tight tolerances.

Features
Low breakdown voltage: 1.220V
Dynamic impedance of 0.3Xfrom 500 mAto20mA
Temperature stability typically 1% over -55oC to 125oC range (LM113), 0oC to 70oC (LM313)
Tight tolerance: ±5%, ±2% or ±1%

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LM313H [Reference Diode ]

other parts : LM113  LM113-1H  LM113-1H/883  LM113-2H  LM113-2H/883  LM113H  LM113H/883 

National-Semiconductor
National ->Texas Instruments

General Description
The LM113/LM313 are temperature compensated, low voltage reference diodes. They feature extremely-tight regulation over a wide range of operating currents in addition to an unusually-low breakdown voltage and good temperature stability.
The diodes are synthesized using transistors and resistors in a monolithic integrated circuit. As such, they have the same low noise and long term stability as modern IC op amps. Further, output voltage of the reference depends only on highly-predictable properties of components in the IC; so they can be manufactured and supplied to tight tolerances.

Features
Low breakdown voltage: 1.220V
Dynamic impedance of 0.3Xfrom 500 mAto20mA
Temperature stability typically 1% over -55oC to 125oC range (LM113), 0oC to 70oC (LM313)
Tight tolerance: ±5%, ±2% or ±1%

View
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