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NTC Elements

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PDF Design Type Resistance (at 25 °C) (kOhm) Tolerance (%)
Glass-encapsulated sensors G1550 2 - 230 ±2, ±3
Glass-encapsulated sensors G1560 2 - 230 ±2, ±3
Glass-encapsulated sensors G1540 5 - 100 ±2, ±3
Glass-encapsulated sensors with insulation G1551 2 - 230 ±2, ±3
Glass-encapsulated sensors with insulation G1541 5 - 100 ±2, ±3
Glass-encapsulated sensors with insulation G1561 2 - 230 ±2, ±3
Leaded NTC thermistors, lead spacing 2.5 mm S891 2.2 - 100 ±1 - ±5
Leaded NTC thermistors, lead spacing 2.5 mm M891 1 - 470 ±5, ±10
Leaded NTC thermistors, lead spacing 2.5 mm S871 2.1 - 30 ±1 - ±5
Leaded NTC thermistors, lead spacing 2.5 mm S881 2.1 - 30 ±1 - ±5
Leaded NTC thermistors, lead spacing 5 mm K164 0.022 - 470 ±5, ±10
Leaded NTC thermistors, lead spacing 5 mm S875 2.1 - 30 ±1 - ±5
Leaded NTC thermistors, lead spacing 5 mm S885 2.1 - 30 ±1 - ±5
Leadless NTCs L860 5.2 ±7.4
Leadless NTCs S860 10 - 85 ±5
Leadless NTCs K350 0.99 ±5
Leadless NTCs M820 0.056 - 1.014 ±5
Leadless NTCs K220 2.057 ±5
Leadless NTCs K1150 2.394 ±5
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Miniature sensors with bendable wires L862 1 - 100 1, 3
Miniature sensors with bendable wires S869 3 - 30 ---
Miniature sensors with bendable wires S864 2 - 5 ±1, ±3
Miniature sensors with bendable wires S867 2 - 50 ±1 - ±5
Miniature sensors with bendable wires S861 2 - 100 ±1 - ±5
Miniature sensors with bendable wires S863 3 - 30 ---
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Pb-free leaded NTC thermistors, lead spacing 2.5 mm L871 2 - 100 1, 3
Surface temperature sensor, small-outline no-lead T850 10 ±2
Surface temperature sensor, small-outline no-lead T850 10 ±1

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  • Selection guide
  • Ordering code structure
  • General technical information
  • Application notes
  • Standardized R/T characteristics
  • Taping and packing
  • Mounting instructions
  • Quality and environment
  • Climatic conditions
  • Symbols and terms
  • Cautions and warnings

In order to download up to 20 files together as zip, please mark them with the check box. To start the download, please click the Download button at the end of the list.


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Podcast

In e-mobility, the temperature of all system units needs to be constantly monitored. The high currents result in losses with a corresponding generation of heat arising, in particular, at contacts. TDK has now developed a special-purpose high-voltage resistant temperature sensor for connectors.



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