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9092-12-11 - Coto Technology

Description: Reed Relays 2 FORMA SIP 12V W/D

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9092-12-11 - Coto Technology PCB footprint - Other - Other - 9092-12-11-3
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9092-12-11 - Coto Technology  - 3D model - Other - 9092-12-11-3
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9092-12-11 Details

  • Manufacturer Part Number:

    9092-12-11

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Country Of Origin:

    Mexico

  • ECCN Code:

    EAR99

  • HTS Code:

    8536.41.00.60

  • Manufacturer:

    Coto Technology USA

  • Body Breadth:

    3.81 mm

  • Body Height:

    8.89 mm

  • Body Length or Diameter:

    15.24 mm

  • Coil Operate Voltage(DC):

    9 V

  • Coil Release Voltage(DC):

    1 V

  • Coil Resistance:

    750 Ω

  • Coil Voltage(DC)-Max:

    15 V

  • Coil Voltage-Nom:

    12 V

  • Coil/Input Supply Type:

    DC

  • Contact (AC) Max Rating R Load:

    0.5A@200VAC

  • Contact Current(AC)-Max:

    0.5 A

  • Contact Current(DC)-Max:

    0.5 A

  • Contact (DC) Max Power Rating R Load:

    10W@200VDC

  • Contact (DC) Max Rating R Load:

    0.5A@200VDC

  • Contact Voltage(AC)-Max:

    200 V

  • Contact Voltage(DC)-Max:

    200 V

  • Contact/Output Supply Type:

    AC/DC

  • Input Switching Control Type:

    Random

  • Insulation Resistance:

    1000000000000 Ω

  • JESD-609 Code:

    e3

  • Number of Terminals:

    6

  • Operate Time:

    0.75 ms

  • Operating Temperature-Max:

    85 °C

  • Operating Temperature-Min:

    -20 °C

  • Physical Dimension:

    15.24mm x 3.81mm x 8.89mm

  • Relay Action:

    MOMENTARY

  • Relay Form:

    2 FORM A

  • Relay Function:

    DPST

  • Release Time:

    0.5 ms

  • Sealing:

    HERMETICAL

  • Terminal Finish:

    Tin (Sn)

  • Terminal Length:

    0.003200406400812802 inch

  • Termination Type:

    SOLDER

9092-12-11 Frequently Asked Questions (FAQs)

  • Coto Technology provides a recommended PCB layout and land pattern in their application notes, which can be found on their website. It's essential to follow these guidelines to ensure proper relay operation and to prevent overheating.
  • To ensure proper relay operation, it's crucial to follow the recommended drive circuit and switching guidelines outlined in the datasheet. This includes using a suitable drive voltage, current, and switching frequency to prevent overheating and premature wear.
  • While the datasheet provides general guidelines, it's essential to note that the maximum allowable voltage and current for the relay contacts depend on the specific application and environmental conditions. It's recommended to consult with Coto Technology's application engineers for specific guidance.
  • To minimize EMI and RFI emissions, it's recommended to use proper shielding, grounding, and filtering techniques in the circuit design. Additionally, following good PCB layout practices, such as separating analog and digital circuits, can help reduce emissions.
  • To prevent damage and ensure reliability, it's essential to follow proper storage and handling procedures, such as storing the relays in their original packaging, avoiding exposure to moisture and extreme temperatures, and handling the relays by the body rather than the leads.

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