GAL16V8D-10LPN

GAL16V8D-10LPN


Specifications
SKU
11655839
Details

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Parameter Description Value
Package Type Type of package PLCC-20
Pin Count Number of pins 20
Operating Voltage (Vcc) Supply voltage range 4.5V to 5.5V
Maximum Current per Output (IOL) Maximum current output when low 25mA
Maximum Current per Output (IOH) Maximum current output when high -10mA
Propagation Delay Time (tpd) Time delay from input to output 10ns (max) at Vcc = 5V, TA = 25掳C
Power Dissipation (PD) Maximum power dissipation 330mW
Operating Temperature Range (TA) Ambient temperature range -40掳C to +85掳C
Storage Temperature Range (Tstg) Storage temperature range -65掳C to +150掳C
Input High Voltage (VIH) Minimum input voltage for high logic level 2.0V (min)
Input Low Voltage (VIL) Maximum input voltage for low logic level 0.8V (max)
Output High Voltage (VOH) Minimum output voltage for high logic level 2.4V (min)
Output Low Voltage (VOL) Maximum output voltage for low logic level 0.4V (max)
Standby Current (ICC) Current consumption in standby mode 10渭A (max)
Programming Voltage (Vpp) Voltage required for programming 12.6V 卤 0.6V
Programming Current (Ipp) Current during programming 250渭A (max)

Instructions for GAL16V8D-10LPN

  1. Power Supply:

    • Ensure the supply voltage (Vcc) is within the specified range of 4.5V to 5.5V.
    • Connect the ground (GND) pin to a stable ground reference.
  2. Programming:

    • Use a compatible programmer that supports the GAL16V8D device.
    • Apply the programming voltage (Vpp) of 12.6V 卤 0.6V to the appropriate pin.
    • Follow the specific programming algorithm provided by the manufacturer.
  3. Handling:

    • Handle the device with care to avoid static damage.
    • Store the device in a dry environment within the specified storage temperature range.
  4. Mounting:

    • Ensure proper alignment of the device on the PCB.
    • Solder the device using a temperature-controlled soldering iron to avoid thermal stress.
  5. Testing:

    • After mounting, verify the correct operation by applying the specified input signals and measuring the output responses.
    • Check for any short circuits or open connections.
  6. Decoupling Capacitors:

    • Place decoupling capacitors (typically 0.1渭F) close to the Vcc and GND pins to filter out noise and stabilize the power supply.
  7. Signal Levels:

    • Ensure all input signals meet the minimum and maximum voltage levels for high and low logic states.
    • Verify that the output signals are within the specified voltage ranges for high and low logic states.
  8. Thermal Management:

    • If operating near the maximum power dissipation, ensure adequate heat sinking or cooling to maintain the device within the operating temperature range.
(For reference only)

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