Ready to onboard?
Are you ready to join DistyParts and
grow your business?
| Distributor | Stock | Pricing | MOQ | PKG | Lead Time | Date Code | On Order Quantity | On Order Delivery | |
|---|---|---|---|---|---|---|---|---|---|
|
3,835 pcs
|
3835 pcs | On Request | 1 | On Request | On Request | On Request | On Request | On Request |
| Category | |
| Manufacturer Name | |
| B Value Tolerance | |
| B25 | |
| B25/85 Value | |
| Diameter | |
| Dissipation Factor | |
| Lead Spacing | |
| Length | |
| Maximum power dissipation | |
| Mounting Type | |
| Operating Temperature | |
| Operating Temperature Range | |
| Power | |
| Resistance Tolerance | |
| Resistance in Ohms @ 25°C | |
| Resistance value at 25 °C | |
| Response Time | |
| Tape & Reel | |
| Thermal Time Constant |
This Vishay Dale NTCLG100E2103JB is an NTC thermistor designed for high-temperature measurement, sensing, and control applications. It features a resistance of 10kΩ at 25°C with a tolerance of ±5% and a B-value of 3997K with a tolerance of ±1.3%.
The thermistor has a wide operating temperature range of -40°C to +200°C, making it suitable for demanding environments. It is encapsulated in glass, offering resistance to corrosive atmospheres and harsh conditions. The component has a maximum power dissipation of 100 mW at 55°C and a dissipation factor of 2.5 mW/K.
With a quick response time of 0.9 seconds and a thermal time constant of 6 seconds, this NTC thermistor is efficient for sensing applications. It is available in an axial package (DO-204AH, DO-35) and supports through-hole mounting. The component is also available in bulk or on tape for different manufacturing needs.
| Qty | Low | High |
|---|---|---|
| 1+ | $1.50 | $1.50 |
Estimated market price range - modelled values for guidance only, not live distributor offers.
The resistance of the NTCLG100E2103JB at 25°C is 10 kΩ.
The B-value (B25/85) of the NTCLG100E2103JB is 3997K.
The operating temperature range is -40°C to 200°C.
The maximum power dissipation is 100 mW at 55°C.
It is mounted using the through-hole method.