01M2251SFC3

01M2251SFC3

$9.83
  • Description:THERMISTOR NTC 2.25KOHM BEAD
  • Series:M
  • Mfr:Vishay Dale
  • Package:Bulk

SKU:d3edb7a065f5 Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:THERMISTOR NTC 2.25KOHM BEAD
  • Series:M
  • Mfr:Vishay Dale
  • Package:Bulk
  • Resistance in Ohms @ 25°C:2.25k
  • Resistance Tolerance:±1%
  • B Value Tolerance:-
  • B0/50:-
  • B25/50:-
  • B25/75:-
  • B25/85:-
  • B25/100:-
  • Operating Temperature:0°C ~ 70°C
  • Power - Max:-
  • Length - Lead Wire:1.50" (38.00mm)
  • Mounting Type:Free Hanging
  • Package / Case:Bead
  • Grade:-
  • Qualification:-

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01M2251SFC3

Buying Guide
Summary

Vishay Dale 01M2251SFC3 is used in NTC Thermistors category where integration and verification need to stay predictable. Key specs include Description (THERMISTOR NTC 2.25KOHM BEAD), Series (M), Packaging (Bulk), Temperature (0°C ~ 70°C), and Package/case (Bead).

Selection Notes
  • For 01M2251SFC3, ensure the package/case (Bead) and land pattern match your PCB layout before procurement.
  • Validate the operating temperature range (0°C ~ 70°C) for your environment and margin.
  • Confirm Resistance Tolerance (±1%) is suitable for your use case and operating conditions.
  • Confirm Length - Lead Wire (1.50" (38.00mm)) meets your design constraints and system-level expectations.
Alternates & Substitutions
  • In NTC Thermistors designs, define acceptance criteria up front so alternates can be qualified and repeated in production.
  • Start by matching the non-negotiables (package/case Bead, mounting Free Hanging, packaging Bulk) and confirm the operating envelope (temperature 0°C ~ 70°C) before you compare performance.
  • For production substitutions, confirm traceability and documentation expectations so the alternate can be released cleanly.
  • Confirm startup states and fault behavior are equivalent so the alternate does not change system behavior during brownouts or resets.
FAQ

What should I compare when selecting an alternate for 01M2251SFC3?
Compare footprint/pinout, key electrical limits, temperature range, and interface requirements, then validate under worst-case conditions.

Is 01M2251SFC3 surface-mount or through-hole?
Free Hanging

Which Length - Lead Wire is specified for 01M2251SFC3?
1.50" (38.00mm)

What package type does 01M2251SFC3 come in?
Bead

Application Scenarios

For Vishay Dale 01M2251SFC3 used in NTC Thermistors designs, the shortlist is often driven by predictable margins and a straightforward validation plan. They monitor conditions such as temperature, humidity, light, gas concentration, or particulates for safety and efficiency. Designers typically evaluate response time, drift, contamination resistance, and compensation so readings stay meaningful over time. Thermistor designs focus on self-heating, response time, and calibration so temperature estimates stay accurate in the final airflow and mounting. Once the interface and envelope are agreed, engineers focus on proving behavior on the actual PCB stack-up. Within consumer devices, compact sensing enables adaptive control under tight power budgets. Across indoor safety systems, gas and smoke sensing is validated for response time and long-term drift under variable airflow. In a service context, clear failure modes and predictable margins reduce downtime and troubleshooting cycles.

Compatibility Advice
  • In board-level integration, check filtering and bandwidth choices so noise and latency align with the control or monitoring use-case. This keeps acceptance criteria measurable and repeatable.
  • Verify long-term stability and condensation exposure if the product sees outdoor or humid environments during bring-up and production test.
  • To keep validation repeatable, validate drift, hysteresis, and response time under the real airflow, enclosure, and contamination conditions. This keeps acceptance criteria measurable and repeatable.
Project Fit
  • Good fit when you can bench-verify Vishay Dale 01M2251SFC3 for NTC Thermistors integration on the assembled PCB, and you need repeatable readings with a defined calibration and compensation plan across lots.
  • Poor fit when calibration and compensation cannot be supported but long-term accuracy is still expected, because the remaining risk is system-level and cannot be bounded by datasheet checks alone.
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