LM336

LM336


Specifications
SKU
12611676
Details

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Parameter Symbol Conditions Min Typ Max Unit
Output Voltage Vo Io = 10 μA 2.50 2.50 2.50 V
Line Regulation ΔVo/ΔVs Io = 10 μA, Vs = 5 V to 40 V - 0.001 - %/V
Load Regulation ΔVo/ΔIo Io = 1 μA to 10 mA - 0.01 - %/mA
Temperature Coefficient TC Io = 10 μA, -40°C to +85°C - 10 - ppm/°C
Dropout Voltage Vd Io = 10 μA 0.5 1.0 1.5 V
Operating Current Io Vs = 5 V to 40 V 1 10 100 μA
Power Dissipation PD TA = 25°C - 100 - mW
Operating Temperature TOP - -40 25 125 °C

Instructions for Using the LM336

  1. Output Voltage Adjustment:

    • The LM336 is a precision voltage reference that provides a stable output voltage of 2.50 V.
    • For different output voltages, use external resistors to set the desired voltage.
  2. Circuit Configuration:

    • Connect the positive terminal (Vo) to the load or next stage.
    • Connect the negative terminal (V-) to ground.
    • Connect the adjust terminal (Vadj) to a resistor network to set the output voltage.
  3. Stability and Filtering:

    • To ensure stability, place a 1 μF capacitor between the output and ground.
    • For better noise filtering, add a 10 μF tantalum capacitor in parallel with the 1 μF capacitor.
  4. Power Supply:

    • The power supply voltage (Vs) should be at least 0.5 V higher than the output voltage.
    • The maximum supply voltage is 40 V.
  5. Operating Current:

    • The minimum operating current is 1 μA, but for optimal performance, a current of 10 μA is recommended.
    • The maximum operating current is 100 μA.
  6. Temperature Considerations:

    • The temperature coefficient is 10 ppm/°C, which means the output voltage will change by 0.01% per degree Celsius.
    • Ensure the device operates within the temperature range of -40°C to +125°C.
  7. Power Dissipation:

    • The maximum power dissipation is 100 mW. Ensure adequate heat sinking if the device is expected to dissipate significant power.
  8. Storage and Handling:

    • Store the device in a dry, cool place.
    • Handle with care to avoid static damage.
  9. Testing:

    • Before using the device in a circuit, test it on a breadboard to ensure it meets the required specifications.
    • Use a multimeter to measure the output voltage and verify it is within the specified range.
(For reference only)

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