VO0631-X001T

VO0631-X001T

$3.04
  • Description:OPTOISO 4KV 2CH OPEN DRAIN 8SOIC
  • Series:-
  • Mfr:Vishay Semiconductor Opto Division
  • Package:Tape & Reel (TR),Cut Tape (CT)

SKU:991dc4269edf Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:OPTOISO 4KV 2CH OPEN DRAIN 8SOIC
  • Series:-
  • Mfr:Vishay Semiconductor Opto Division
  • Package:Tape & Reel (TR),Cut Tape (CT)
  • Number of Channels:2
  • Inputs - Side 1/Side 2:2/0
  • Voltage - Isolation:4000Vrms
  • Common Mode Transient Immunity (Min):5kV/µs
  • Input Type:DC
  • Output Type:Open Drain
  • Current - Output / Channel:50 mA
  • Data Rate:10MBd
  • Propagation Delay tpLH / tpHL (Max):100ns, 100ns
  • Rise / Fall Time (Typ):23ns, 7ns
  • Voltage - Forward (Vf) (Typ):1.4V
  • Current - DC Forward (If) (Max):15mA
  • Voltage - Supply:4.5V ~ 5.5V
  • Operating Temperature:-40°C ~ 100°C
  • Mounting Type:Surface Mount
  • Package / Case:8-SOIC (0.154", 3.90mm Width)
  • Supplier Device Package:8-SOIC
  • Grade:-
  • Qualification:-

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VO0631-X001T

Buying Guide
Summary

Vishay Semiconductor Opto Division VO0631-X001T is a component in Logic Output Optoisolators category typically evaluated for fit, operating limits, and supportability in production. Key specs include Description (OPTOISO 4KV 2CH OPEN DRAIN 8SOIC), Packaging (Tape & Reel (TR), Cut Tape (CT)), Supply (4.5V ~ 5.5V), Temperature (-40°C ~ 100°C), and Package/case (8-SOIC (0.154", 3.90mm Width)).

Selection Notes
  • For VO0631-X001T, double-check the channel count (2) against your integration and test plan.
  • Validate the operating temperature range (-40°C ~ 100°C) for your environment and margin.
  • Make sure Voltage - Forward (Vf) (Typ) (1.4V) aligns with your design targets and verification plan.
Alternates & Substitutions
  • In Logic Output Optoisolators, confirm that alternates preserve startup states and fault behavior so system behavior does not change quietly.
  • Confirm the physical match (package/case 8-SOIC (0.154", 3.90mm Width), supplier package 8-SOIC, mounting Surface Mount) and the operating corners (supply 4.5V ~ 5.5V, temperature -40°C ~ 100°C) so the substitution is not a hidden redesign.
  • For production substitutions, confirm traceability and documentation expectations so the alternate can be released cleanly.
  • Always compare the datasheet test conditions behind key specs (load, frequency, temperature) to avoid swapping in a part that was characterized differently.
FAQ

Which Common Mode Transient Immunity (Min) is listed for VO0631-X001T?
5kV/µs

Which Number of Channels is listed for VO0631-X001T?
2

Can you confirm the Inputs - Side 1/Side 2 for VO0631-X001T?
2/0

What is the output type of VO0631-X001T?
Open Drain

Application Scenarios

Across practice, the question for Vishay Semiconductor Opto Division VO0631-X001T in Logic Output Optoisolators is whether it stays inside the electrical/thermal envelope while remaining easy to validate and support. In real deployments, isolation strategy is treated as a system-level choice that interacts with grounding, creepage/clearance, EMC, and safety compliance. A well-designed isolation boundary improves robustness and reduces field failures caused by transients and ground shifts. A small set of stress tests often identifies the limiting assumptions long before production ramp. In industrial automation, isolation protects low-voltage domains from ground shifts on long field wiring. In industrial automation, isolation protects MCU and I/O domains from ground shifts and transients on long field wiring, improving uptime in noisy cabinets. Within many systems, the cost is in integration and validation, so reducing uncertainty is the real win.

Compatibility Advice
  • Confirm barrier capacitance and grounding do not create unexpected common-mode paths that defeat isolation in practice across temperature and supply corners.
Project Fit
  • Best fit for Logic Output Optoisolators when you can qualify creepage/clearance, insulation coordination, and transient immunity in the final mechanical stack-up.
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