Temperature Probe for Energy Storage Battery Systems
Temperature Probe for Energy Storage Battery Systems
Key Features
- High-precision thermistor provides accurate cell temperature measurement for battery safety
- Quick-response design detects temperature changes in milliseconds for rapid system feedback
- Operates reliably in a wide temperature range, -40 °C to +125 °C
- Compact and flexible sensor suitable for tight battery pack installations
- Durable construction resists vibration, corrosion, and mechanical stress in harsh environments
- Fully compatible with most BMS controllers, connectors, and monitoring devices
- Reduces thermal runaway risk and enhances overall battery lifespan and performance
- Cost-effective solution for OEMs, battery pack integrators, and industrial users
- Supports customization in wire length, gauge, and connector type for B2B applications
- CE and RoHS certified, meeting international quality and industrial safety standards
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Battery Temperature Sensor
Our Battery Temperature Sensor is a precision temperature monitoring device designed for modern battery management systems (BMS). Using high-quality thermistor or NTC/PTC materials, it provides fast, reliable, and accurate temperature readings across lithium-ion, lead-acid, and other rechargeable battery types.
Designed for harsh industrial and automotive environments, it ensures optimal battery performance, enhances safety, and prevents thermal runaway. The sensor is compact, cost-effective, and compatible with standard BMS wiring and connectors, making it ideal for OEM manufacturers, battery pack integrators, and global industrial clients.
Main Benefits of Battery Temperature Sensor
- High Accuracy & Reliability – Measures battery cell temperature with ±0.5 °C precision
- Fast Response Time – Thin-film thermistor or NTC junction ensures quick thermal feedback
- Wide Temperature Range – Operates reliably from -40 °C to +125 °C, suitable for EV, E-bike, and energy storage batteries
- Enhanced Battery Safety – Prevents overheating and thermal runaway in lithium-ion battery packs
- Compact & Flexible Design – Small form factor and versatile mounting options for different battery modules
- Easy Integration – Compatible with most BMS systems, connectors, and monitoring units
- Robust Construction – Resistant to vibration, corrosion, and mechanical wear in harsh environments
- Cost-Effective Solution – High performance at a competitive factory price
- Customizable Options – Available in various lengths, wire gauges, and connector types
- Global Standard Compliance – CE, RoHS certified, meeting international quality and safety standards
Battery Temperature Sensor Specifications
| Parameter | Specification |
|---|---|
| Sensor Type | NTC/PTC Thermistor |
| Operating Voltage | 3.3V – 5V DC (typical for BMS inputs) |
| Temperature Range | -40 °C to +125 °C |
| Accuracy | ±0.5 °C |
| Response Time | t₀.₅ < 1 s (thin-film sensor) |
| Lead Wire | 26~32 AWG, Teflon insulated |
| Connector Options | JST, Molex, or custom BMS connectors |
| Protection Rating | IP65 standard, IP67 optional |
| Working Environment | Automotive, EV battery packs, energy storage systems, industrial batteries |
| Certifications | CE, RoHS, ISO9001 |
Battery Temperature Sensor Applications
Electric Vehicles & E-Bikes
Monitors individual cell temperature to prevent overheating and optimize charging cycles.
Energy Storage Systems
Provides precise thermal data for Li-ion or LiFePO4 battery packs.
Industrial Batteries
Ensures safe operation in UPS, forklift, and heavy equipment batteries.
OEM Battery Packs
Integrates easily for B2B manufacturing, assembly, and quality monitoring.
Testing & Lab Environments
High-accuracy measurement for research, development, and thermal validation.
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| Type J Thermocouple |
| Type N Thermocouple |
| Type R Thermocouple |
| Type S Thermocouple |
| Type T Thermocouple |
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Strict Production Process
Engineers develop optimized electronic circuits and structural designs based on real application needs.
High-quality components and materials are carefully selected from trusted suppliers to ensure long-term reliability.
Automated SMT and precision soldering technologies are used to build stable and high-performance circuit boards.
Sensor elements or connector terminals are assembled with the PCB and housing to ensure accurate operation and strong mechanical stability.
Each product undergoes strict calibration and functional testing to guarantee accuracy and stable performance.
Every unit is carefully inspected, labeled, and securely packaged to ensure it arrives safely and performs reliably for your applications.
Strict Production Process of Yafeite







