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quality Thermistor KNSCHA 192NTC0013 Negative Temperature Coefficient Designed for Power Supplies Electronic Ballasts and Lamps factory
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quality Thermistor KNSCHA 192NTC0013 Negative Temperature Coefficient Designed for Power Supplies Electronic Ballasts and Lamps factory
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Specifications
Resistance @ 25℃:
Operating Temperature:
-40℃~+175℃
Tolerance:
±20%
Steady State Current (Max):
3A
Thermal Time Constant:
55s
B Constant (25℃/85℃):
2800K
Mfr. Part #:
192NTC0013
Package:
4032
Key Attributes
Model Number: 192NTC0013
Product Description

Product Overview

This product is a Negative Temperature Coefficient (NTC) thermistor designed for various electronic applications. It is suitable for use in switching power supplies, electronic energy-saving lamps, electronic ballasts, and other electronic circuits. The thermistor offers a rated zero-power resistance value with specified accuracy and a maximum steady-state current.

Product Attributes

  • Brand: Not specified
  • Origin: Not specified
  • Material: Not specified
  • Color: Not specified
  • Certifications: Not specified

Technical Specifications

ModelSizeRated Zero-Power Resistance ()Tolerance (%)Max. Steady-State Current (A)Environment Temperature (C)Test Power (mW)Thermal Time Constant (s)Dissipation Factor (mW/C)Rated Power (mW)Allowable Operating Current (mA)
4032(D-11)4032100101002512010100100

Note on Resistance Measurement: Resistance values are measured at ambient temperatures of 25C or 70C.

Note on Thermal Time Constant: This is the time required for the thermistor element's temperature to change from its initial temperature to a final temperature difference, under zero-power conditions, when the ambient temperature changes abruptly. Typically measured in seconds.

Note on Dissipation Factor: This is the power required to raise the thermistor's temperature by 1C due to self-heating at a specific ambient temperature. Typically expressed in mW/C. Can be calculated using the formula: Dissipation Factor = Rated Power / Temperature Rise.

Note on Rated Power: This is the power required to raise the surface temperature by 1C due to self-heating at an ambient temperature of 25C.

Note on Allowable Operating Current: This is the current that causes a temperature rise of 1C due to self-heating in still air.

Recommended Soldering Conditions

Reflow Soldering

  • Preheat: 150C ~ 180C, 60s ~ 120s
  • Temperature Rise: 2C/s ~ 4C/s
  • Time above 180C: 60s ~ 120s
  • Peak Temperature: Max. 235C (for 10s)
  • Solder: Reflow soldering: Max. 2 times

Manual Soldering

  • Preheat: 100C ~ 150C, 60s
  • Tip Temperature: Max. 300C (for 3s)
  • Soldering Time: Max. 3s
  • Solder: Manual soldering: Max. 2 times

Important Note: Do not allow the soldering iron tip to contact the terminal end.


2410121247_KNSCHA-192NTC0013_C18236212.pdf

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