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LM336LPR-2-5 +BOM

0°C to 70°C, 2.5-V integrated reference circuit

LM336LPR-2-5 General Description

The LM236-2.5, LM336-2.5, and LM336B-2.5 integrated circuits are precision 2.5-V shunt regulator diodes. These reference circuits operate as low-temperature-coefficient 2.5-V Zeners diodes with a 0.2- dynamic impedance. A third terminal provided on the circuit allows the reference voltage and temperature coefficient to be trimmed easily.

The series is useful as precision 2.5-V low-voltage references (VZ) for digital voltmeters, power supplies, or operational-amplifier circuitry. The 2.5-V voltage reference makes it convenient to obtain a stable reference from 5-V logic supplies. Devices in this series operate as shunt regulators, and can be used as either positive or negative voltage references.

The LM236-2.5 is characterized for operation from –25°C to 85°C. The LM336-2.5 and LM336B-2.5 are characterized for operation from 0°C to 70°C.

Key Features

  • Low Temperature Coefficient
  • Wide Operating Current.400 µA to 10 mA
  • 0.27- Dynamic Impedance
  • ±1% Tolerance Available
  • Specified Temperature Stability
  • Easily Trimmed for Minimum Temperature Drift
  • Fast Turnon

Specifications

Product Category Voltage References Mounting Style Through Hole
Reference Type Shunt Precision References Output Voltage 2.49 V
Initial Accuracy 4 % Temperature Coefficient 34 PPM / C
Series VREF - Input Voltage - Max - Shunt Current - Max 10 mA
Minimum Operating Temperature 0 C Maximum Operating Temperature + 70 C
Series LM336-2.5 Accuracy 10 mV
Description/Function 2.5-V INTEGRATED REFERENCE CIRCUIT Height 3.68 mm
Length 4.83 mm Product Voltage References
Product Type Voltage References Shunt Current - Min 400 uA
Factory Pack Quantity 2000 Subcategory PMIC - Power Management ICs
Topology Shunt References Width 3.43 mm
Unit Weight 0.007520 oz

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In Stock: 7,059

Minimum Order: 1

Qty. Unit Price Ext. Price
1+ $2.156 $2.16
10+ $1.978 $19.78
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500+ $1.701 $850.50
1000+ $1.678 $1,678.00

The prices below are for reference only.