DS1244Y-150

DS1244Y-150

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256K NV SRAM with Phantom Clock

Parameter Symbol Min Typ Max Unit
Operating Voltage Vcc 4.75 5 5.25 V
Output Current Iout - 150 - mA
Quiescent Current Iq - 3 - mA
Dropout Voltage Vdo - 0.5 - V
Load Transient Response ΔVout - 50 - mV
Line Transient Response ΔVout - 50 - mV
Thermal Shutdown Tsd - 160 - °C
Storage Temperature Tstg -65 - 150 °C
Operating Temperature Topr -40 - 85 °C

Instructions for DS1244Y-150

  1. Power Supply:

    • Ensure the input voltage (Vcc) is within the range of 4.75V to 5.25V.
    • Connect the Vcc pin to a stable power supply.
  2. Output Configuration:

    • The output current (Iout) should not exceed 150mA to avoid damage to the device.
    • Use appropriate load resistance to match the desired output current.
  3. Thermal Management:

    • Monitor the operating temperature to ensure it does not exceed 85°C.
    • If the device reaches the thermal shutdown temperature (160°C), it will automatically shut down to prevent damage.
  4. Transient Response:

    • The load and line transient responses are both specified at 50mV. Design the circuit to handle these transients without significant performance degradation.
  5. Storage and Handling:

    • Store the device in an environment with temperatures between -65°C and 150°C.
    • Handle the device with care to avoid static discharge and physical damage.
  6. Quiescent Current:

    • The quiescent current (Iq) is typically 3mA. This value should be considered when designing the power supply and overall system efficiency.
  7. Dropout Voltage:

    • The dropout voltage (Vdo) is typically 0.5V. Ensure that the input voltage is always at least 0.5V higher than the desired output voltage to maintain regulation.
  8. Schematic and Layout:

    • Follow the recommended layout guidelines provided in the datasheet to ensure optimal performance and reliability.
    • Place bypass capacitors close to the Vcc and GND pins to filter out noise and improve stability.
  9. Testing and Validation:

    • Test the device under various operating conditions to ensure it meets the required specifications.
    • Validate the design by measuring key parameters such as output voltage, current, and temperature.
  10. Compliance:

    • Ensure that the device complies with all relevant safety and regulatory standards for your application.
(For reference only)

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