MF51

MF51 Series Glass-Encapsulated NTC Thermistors

Operating temperature−20 °C to +250 °C
Thermal time constant, static air2–11 s
R25 tolerance±1% to ±10%
B-value tolerance±1% / ±2%
Body diameter1.2 / 1.6 / 2.0 mm
Rated power≤15 to ≤50 mW

Glass-encapsulated leaded NTC thermistors for temperature measurement from −20 °C to +250 °C. Three sizes with 1.2–2.0 mm body diameter; thermal time constant 2–11 s in static air.

Series product photograph
Series product photograph

Part numbers

Part-number list on request. Download the datasheet or send us your specification.

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See the part-numbering scheme

Datasheets & approval documents

Datasheets, technical documents and approval certificates for this series. English editions of documents marked “Chinese” are available on request.

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Engineering details

Overview

Glass-encapsulated leaded NTC thermistors for temperature measurement from −20 °C to +250 °C. Three constructions, MF51-A, -B and -C, with body diameters of 2.0, 1.6 and 1.2 mm; thermal time constant 2–11 s in static air and 0.18–1.1 s in flowing oil. R25 tolerance ±1% to ±10%, B-value tolerance ±1% or ±2%.

Series features

  • Glass-encapsulated sensing element in 1.2, 1.6 and 2.0 mm body diameters
  • Thermal time constant specified in static air and flowing oil for each construction (A, B, C)
  • Dissipation constant in static air and rated power specified per construction
  • R25 tolerance ±1% to ±10%; B-value tolerance ±1% or ±2%
  • Bulk packed, 65 mm leads; operating temperature −20 °C to +250 °C
Specifications
FunctionLeaded NTC thermistor for temperature measurement; zero-power resistance decreases as the temperature of the sensing element rises
ConstructionGlass-encapsulated NTC sensing element with leads
ConstructionsMF51-A · MF51-B · MF51-C
Operating temperature−20 °C to +250 °C
High-temperature usePower derating, lead and seal temperature limits, life and drift limits across −20 °C to +250 °C on request.
Zero-power resistanceDC resistance at temperature t, measured at a power low enough that any further reduction changes the resistance by less than 0.1%
R25 code examples102 = 1 kΩ · 103 = 10 kΩ · 104 = 100 kΩ · 105 = 1,000 kΩ
R25 valuesAvailable R25 and B-value combinations on request.
R25 tolerance codesF ±1% · G ±2% · H ±3% · J ±5% · K ±10%
B-value definitionB = ln(R1/R2) / (1/T1 − 1/T2)
B-value reference temperaturesT1 = 298.15 K (25 °C); T2 = 323.15 K (50 °C) or 358.15 K (85 °C)
B-value tolerance codesF ±1% · G ±2%
Temperature accuracyR25 and B tolerances do not state a ±°C accuracy. Calculate the temperature error from the R/T table of the selected part number.
Dimensions, MF51-AD 2.0 ±0.2 · H 3.8 ±0.5 · L 65 ±2.5 · lead Ø d 0.30 ±0.02 mm
Dimensions, MF51-BD 1.6 ±0.2 · H 3.2 ±0.5 · L 65 ±2.5 · lead Ø d 0.25 ±0.02 mm
Dimensions, MF51-CD 1.2 ±0.2 · H 2.4 ±0.5 · L 65 ±2.5 · lead Ø d 0.20 ±0.02 mm
Thermal time constant, MF51-A10–11 s in static air · 0.9–1.1 s in flowing oil
Thermal time constant, MF51-B4–5 s in static air · 0.3–0.4 s in flowing oil
Thermal time constant, MF51-C2–3 s in static air · 0.18–0.24 s in flowing oil
Thermal time constant, definitionTime to reach 63.2% of the change from initial to final temperature, under zero-power conditions
Dissipation constant, MF51-A1.2–1.3 mW/°C in static air
Dissipation constant, MF51-B0.7–0.8 mW/°C in static air
Dissipation constant, MF51-C0.4–0.5 mW/°C in static air
Rated powerMF51-A ≤50 mW · MF51-B ≤35 mW · MF51-C ≤15 mW
Terminal option0 = without terminal · P = with terminal
Lead lengthStandard 65 ±2.5 mm; coded in the last four characters of the part number
Hand soldering and rework300 °C max. · 3 s max. · solder point at least 2 mm from the glass body
PackingBulk
Storage≤35 °C · ≤70% RH · 12 months · keep the original package closed and reseal after opening; protect lead solderability from corrosive atmospheres
Environmental complianceRoHS and REACH compliant; halogen status and material declarations on request
Further dataOn request: resistance–temperature (R/T) table of each part number · terminal type and drawing · lead-length code table · max. sensing current and voltage, allowed self-heating error and power derating versus temperature · max. working voltage, dielectric withstand and insulation resistance · lead alloy, plating and solderability finish · glass-seal hermeticity, insulation-resistance and moisture-ingress data · wave or reflow soldering conditions, lead-forming radius, cleaning and potting compatibility · endurance, high- and low-temperature storage, thermal-shock, humidity, vibration, lead-strength and solderability results
Automotive useNo AEC-Q200 qualification is specified for this series
Variants

Ranges by dielectric, package and lead style within this series.

VariantBody dimensionsR25 / B valueThermal time constant / dissipation constant / rated powerLead / land patternNotes
MF51-AD 2.0 × H 3.8 mm · L 65 mm · d 0.30 mm (nom.)Per part numberAir 10–11 s · oil 0.9–1.1 s · 1.2–1.3 mW/°C · ≤50 mWLeaded glass body · terminal option 0 or PLargest body and highest rated power. Validate high-temperature construction, self-heating and response in the medium.
MF51-BD 1.6 × H 3.2 mm · L 65 mm · d 0.25 mm (nom.)Per part numberAir 4–5 s · oil 0.3–0.4 s · 0.7–0.8 mW/°C · ≤35 mWLeaded glass body · terminal option 0 or PIntermediate size and response, for general liquid or air sensing.
MF51-CD 1.2 × H 2.4 mm · L 65 mm · d 0.20 mm (nom.)Per part numberAir 2–3 s · oil 0.18–0.24 s · 0.4–0.5 mW/°C · ≤15 mWLeaded glass body · terminal option 0 or PSmallest and fastest construction. Protect the fine leads and limit the excitation.
Selection guide

Start with the temperature range, system accuracy and response in the actual medium. Then select R25 and B value from the R/T table of the selected part number, choose the A, B or C construction, limit self-heating and validate the glass-to-lead interface.

  1. Define temperature, accuracy and mission profile

    Set sensor and ambient extremes, required ±°C error, response, drift, calibration, life and the safety consequence of a sensing error. For use near +250 °C, obtain construction and life data before design-in.

  2. Select R25, B value and R/T data

    Choose R25 for the divider and ADC range and B25/50 or B25/85. Use the R/T table and tolerance band of the selected part number.

  3. Select A, B or C from the thermal path

    Use C for the smallest body and fastest response, A for the highest rated power, or B between them. Validate response in the actual fluid, airflow, contact and mounting condition.

  4. Limit self-heating and electrical stress

    Calculate divider power at every resistance and supply tolerance. Keep excitation within the error budget, using the max. voltage and current, power derating and allowed self-heating of the selected part.

  5. Specify construction, process and qualification

    Specify glass seal and lead materials, terminal and lead drawing, soldering and strain relief, packing, environmental declarations and qualification for each part number.

Design notes

+250 °C is not a lifetime rating

At the max. mission-profile temperature, define the construction (A, B or C), exposure time, duty, atmosphere, lead and seal temperature and the resistance-drift limit.

R25 tolerance is not full-range accuracy

System error includes R25 and curve tolerance, ADC, reference and divider error, self-heating, thermal gradients, calibration and aging. Obtain the R/T tolerance band at every critical temperature.

Validate response in the actual medium

Response in oil depends on oil type and flow. Contact, potting, immersion depth, airflow and enclosure geometry can dominate the response. Correlate the finished assembly against reference thermometry.

Keep excitation within the error budget

The C construction has the lowest dissipation constant and rated power. Use pulsed or lower-current measurement where needed and verify max. supply and resistance corners against the self-heating limits.

Protect the glass-to-lead interface

Avoid bending or clamping near the body, differential-expansion stress, unsupported vibration and uncontrolled potting cure. Use a defined forming radius, strain relief and compatible sealing and cleaning processes.

Part numbering

Example ordering code. Not every combination is available.

MT · 51A · 103 · F · 3950 · F · 0 · 0000

CodeMeaning
MTTemperature-sensing NTC prefix
51AConstruction: 51A; 51B and 51C for the other sizes
103R25: 103 = 10 kΩ; 102 = 1 kΩ, 104 = 100 kΩ, 105 = 1 MΩ
FR25 tolerance: F = ±1%; G ±2%, H ±3%, J ±5%, K ±10%
3950Nominal B value in K; available values and B25/50 or B25/85 basis per part number
FB-value tolerance: F = ±1%; G = ±2%
0Terminal: 0 = without terminal; P = with terminal
0000Lead length; code table on request