



- Stock: In Stock
- Model: KSD9700 5A plastic N0 50 degree
- Weight: 3.50g
- Dimensions: 75.00mm x 7.50mm x 3.80mm
- SKU: 3356
High-Precision Bimetallic Thermal Sensing Engine
The KSD9700 Normally Open (NO) Bimetal Thermal Switch provides rapid-response temperature monitoring and solid-state-like switching reliability within a compact, insulation-molded thermoplastic casing. Built around a precision-calibrated snap-action bimetallic disk, the switch maintains open contact under nominal operating conditions. When localized thermal energy reaches the fixed activation threshold of 50 degrees Celsius, the internal bimetallic element undergoes a rapid thermodynamic deflection, closing the silver-alloy contacts and completing the circuit to initiate auxiliary cooling fans, activate warning indicators, or trigger system-level thermal shutdown protocols.
Robust Electrical Characteristics and Mechanical Architecture
Engineered for low contact resistance and high electrical endurance, this thermal switch is rated for AC loads up to 250V at 5A, making it suitable for direct control of small relays, contactors, or signaling logic circuits. The sensor head measures 21.0 mm in length, 7.5 mm in width, and 3.6 mm in height, allowing seamlessly non-intrusive integration between motor stator windings, battery cell gaps, and tight heatsink channels. Integrated 73 mm insulated 20AWG flexible stranded copper leads facilitate easy soldering, terminal crimping, or inline wiring harness integration.
Industrial Applications and System Protection Contexts
With its high dielectric insulation strength and vibration-resistant polymer housing, the 50C Normally Open KSD9700 excels in rugged automotive, industrial, and consumer applications. Primary deployment scenarios include over-temperature monitoring in Li-ion Battery Management Systems (BMS), fractional horsepower motor protection, solar inverter heat sink cooling actuation, high-density power supply monitoring, and transformer thermal relief circuit activation. The snap-action mechanism minimizes electrical arcing, ensuring prolonged contact life across thousands of thermal switching cycles.


