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TLP2391(E(T - Toshiba

Description: TLP2391(E(T,Photocoupler,photo-IC output

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TLP2391(E(T - Toshiba PCB footprint - Other - Other - 11-4L1S_3
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TLP2391(E(T Details

  • Manufacturer Part Number:

    TLP2391(E(T

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Package Description:

    SO-6

  • HTS Code:

    8541.40.80.00

  • Manufacturer:

    Toshiba America Electronic Components

  • YTEOL:

    9

  • Additional Feature:

    UL APPROVED

  • Configuration:

    SINGLE

  • Data Rate-Nom:

    10 MBps

  • Forward Current-Max:

    0.01 A

  • Isolation Voltage-Max:

    3750 V

  • Mounting Feature:

    SURFACE MOUNT

  • Number of Elements:

    1

  • Number of Functions:

    1

  • On-State Current-Max:

    0.01 A

  • Operating Temperature-Max:

    125 °C

  • Operating Temperature-Min:

    -40 °C

  • Optoelectronic Device Type:

    LOGIC IC OUTPUT OPTOCOUPLER

  • Power Dissipation-Max:

    0.02 W

  • Response Time-Nom:

    3e-9 ns

  • Supply Voltage-Min:

    2.7 V

  • Supply Voltage-Nom:

    5.5 V

  • Surface Mount:

    YES

TLP2391(E(T Frequently Asked Questions (FAQs)

  • The recommended operating voltage range for the TLP2391(E) is 3.3V to 5.5V.
  • To ensure reliable communication in noisy environments, use a common-mode choke coil or a ferrite bead in series with the transmission line, and consider using a shielded cable or a twisted pair cable.
  • The maximum cable length supported by the TLP2391(E) depends on the transmission speed and the type of cable used. As a general guideline, the maximum cable length is approximately 10 meters at 100 Mbps and 50 meters at 10 Mbps.
  • To handle hot swapping with the TLP2391(E), use a power-on reset circuit to ensure that the device is properly initialized when the power is applied, and consider using a power switch or a load switch to control the power supply to the device.
  • The TLP2391(E) has a maximum junction temperature of 150°C. Ensure good thermal design and heat dissipation to prevent overheating, especially in high-temperature environments.

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