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Temperature sensors: TDK launches new Au wire bond-optional NTC thermistors for laser diode temperature measurement

Temperature sensors: TDK launches new Au wire bond-optional NTC thermistors for laser diode temperature measurement

TDK Corporation (TSE:6762) has announced the introduction of its new NTCWS series of NTC thermistors, available with Au wire bonding. These bondable NTC thermistors can be mounted with Au wire bonding inside the package for highly accurate temperature detection of laser diodes (LDs) used for optical communication. Mass production of the product series began in September 2023.

The use of LD devices in optical communication transceivers is increasing, as typified by 5G and LiDAR used for inter-vehicle distance measurement. Since the wavelength of LDs changes with temperature, controlling the temperature of LDs is the key to improving their performance.

The new NTCWS series of temperature sensors from TDK supports a narrow tolerance (± 1%) of resistance and B value and can be mounted with Au wire bonding near the LD for highly accurate temperature sensing. Featuring a compact and lead-free design, the NTCWS series thermistors can withstand operating temperatures of -40 ~ 125 °C. TDK has initially released sensors with a B value of 3930 K ± 1 % (the NTCWS3UF103FC1GT and NTCWS3UF103HC1GT) and plans to release additional products with other characteristics in the future.

TDK is committed to improving temperature sensor products for industrial and automotive applications and will continue to expand its NTC thermistor portfolio to meet market needs.


Main applications
  • Temperature sensing of LD for optical communication transceiver and LiDAR

Main features and benefits

  • Supports Au wire bonding that can be mounted inside the LD package
  • Narrow tolerance (± 1 %) of both resistance and B value
 
Type Dimensions
[mm] (L x W x T (max.))
Resistance R25
[K Ω]
B value B25/85
[K]
Electrode
NTCWS3UF103FC1GT L,W : 0.33±0.04
T : 0.25 max
10.0 ± 1 % B25/85=3930 ± 1% Au Thick film
NTCWS3UF103HC1GT 10.0 ± 3 %