2N3823

2N3823

$33.48
  • Description:JFET N-CH 30V TO72
  • Series:-

SKU:e47b89ec1968 Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:JFET N-CH 30V TO72
  • Series:-
  • Mfr:Microchip Technology
  • Package:Bulk
  • FET Type:N-Channel
  • Voltage - Breakdown (V(BR)GSS):30 V
  • Drain to Source Voltage (Vdss):30 V
  • Current - Drain (Idss) @ Vds (Vgs=0):20 mA @ 15 V
  • Current Drain (Id) - Max:-
  • Voltage - Cutoff (VGS off) @ Id:8 V @ 500 pA
  • Input Capacitance (Ciss) (Max) @ Vds:6pF @ 15V
  • Resistance - RDS(On):-
  • Power - Max:300 mW
  • Operating Temperature:-55°C ~ 200°C (TJ)
  • Mounting Type:Through Hole
  • Package / Case:TO-206AF, TO-72-4 Metal Can
  • Supplier Device Package:TO-72
  • Grade:Military
  • Qualification:MIL-PRF-19500/375

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2N3823

Buying Guide
Summary

Microchip Technology 2N3823 is a component in JFETs category typically evaluated for fit, operating limits, and supportability in production. Key specs include Description (JFET N-CH 30V TO72), Packaging (Bulk), Temperature (-55°C ~ 200°C (TJ)), Package/case (TO-206AF, TO-72-4 Metal Can), and Mounting (Through Hole).

Selection Notes
  • For 2N3823, verify the operating temperature range (-55°C ~ 200°C (TJ)) and derate as needed in your application.
  • Validate Voltage - Breakdown (V(BR)GSS) (30 V) under the expected test conditions in your application.
  • Double-check the mounting type (Through Hole) for your intended installation method.
  • Confirm the supply current (20 mA @ 15 V) is acceptable for standby and active operation.
Alternates & Substitutions
  • For JFETs, compare the datasheet test conditions behind key specs and re-check the margins that were tightest during bring-up.
  • Verify the alternate stays within temperature -55°C ~ 200°C (TJ) across startup, load steps, and worst-case temperature.
  • If you are qualifying a second source, align documentation/traceability requirements early to avoid surprises in procurement.
  • If you already have candidate alternates, send the list and we can check drop-in risks against (package TO-206AF, TO-72-4 Metal Can).
FAQ

What should I verify before using 2N3823 in production?
Confirm footprint/pinout, min/max ratings, operating temperature, and the datasheet test conditions behind key specifications.

Which Qualification is specified for 2N3823?
MIL-PRF-19500/375

Can you confirm the Voltage - Breakdown (V(BR)GSS) for 2N3823?
30 V

Which Power - Max is listed for 2N3823?
300 mW

Application Scenarios

In production JFETs builds, parts like Microchip Technology 2N3823 are shortlisted for predictable behavior, clear documentation, and stable supply. Selection focuses on operating envelope (breakdown voltage/current), conduction loss, switching behavior, package parasitics, and thermal impedance under realistic waveforms. They are typically used when a design must handle inductive loads, fast edges, or high current in compact footprints. In real deployments, engineers often validate drift and input leakage across temperature because they can dominate error budgets in precision circuits. In robotics, actuator and motor switching stages are validated for stalls and rapid reversals without unsafe operating conditions. In test and measurement, JFET inputs help preserve signal integrity for high-impedance sources under practical cabling and shielding constraints. In instrumentation, JFET stages are used when leakage must be minimized, and temperature behavior is validated against the error budget.

Compatibility Advice
  • In practice, confirm short-circuit and fault timing assumptions so survivability is not inferred from typical conditions before release to production.
Project Fit
  • Usually not a good fit when integrating Microchip Technology 2N3823 for JFETs, layout parasitics cannot be controlled enough to keep transient stress predictable, because the remaining risk is system-level and cannot be bounded by datasheet checks alone.
  • Best fit when you can qualify Microchip Technology 2N3823 for JFETs integration with production-like fixtures, typically when you can control layout parasitics so gate/base drive behavior stays repeatable in production.
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