MF58 Series Glass Encapsulated NTC Thermistor
PRODUCT FEATURES
Excellent high-temperature stability, resistance to aging and slight resistance drift during long-term operation, ensuring high comprehensive reliability.
Miniature size and lightweight design with a sturdy impact-resistant body structure, suitable for automatic insertion and mass production assembly.
High heat conduction efficiency, fast thermal response, high temperature detection sensitivity and timely temperature control feedback.
Ultra-wide resistance range: 0.1KΩ~5000KΩ, with sufficient full-range specifications for both high and low resistance options.
Adopted precise process control, the accuracy of resistance and B-value can reach
±1%, delivering higher measuring accuracy and lower error.
OPERATION PARAMETERS
Nominal Resistance Range: 0.1KΩ~5000KΩ
Operating Temperature Range: -40℃~+300℃
Response Time: ≤10s
Dissipation Factor: ≥2.5mW/℃
Popular B-Value: 3435, 3950, 3977 optional
Accuracy Grade: ±1%, ±2%, ±5%
Product Structure & Advantages
The MF58 series adopts glass glaze high-temperature resistant hermetic encapsulation,
featuring high temperature resistance, oxidation resistance, moisture-proof, corrosion resistance and excellent insulation performance.
High mechanical strength with resistance to vibration and high-low temperature cycling, suitable for harsh working conditions.
Standard through-hole leads with excellent solderability, compatible with manual welding and automated production.
Core Highlights
Wide-temperature and high-temperature resistant design, breaking the temperature limit of conventional epoxy resin encapsulated thermistors.
Glass sealing protection delivers strong environmental adaptability, widely used in industrial equipment and high-temperature home appliances.
Superior consistency and interchangeability with great compatibility for mass production, effectively reducing overall costs.
Complete ultra-high resistance specifications to meet the demands of special circuits for temperature measurement, temperature compensation and over-temperature protection.
Application Scenarios
Widely used in high-temperature home appliances, industrial heating equipment, baking appliances,
HVAC systems, automotive electronics, industrial controllers, precision instruments, medical devices and more.
It is applied to high-temperature environment temperature detection, overheating protection and circuit temperature compensation.