Non Dispersive Infrared NDIR Detection Technology Electrolyte Leakage Sensor KGD ATRS 315 for Measuring Range 0 10000ppm
Price:
Negotiable
MOQ:
1PCS
Delivery Time:
5-8 work days
Brand:
KACISE
Product Description
Non Dispersive Infrared NDIR Detection Technology Electrolyte Leakage Sensor KGD ATRS 315 for Measuring Range 0-10000ppm
Key Attributes
| Attribute | Value |
|---|---|
| Detection Principle | Non-Dispersive Infrared (NDIR) Detection Technology |
| Tested Gas | Electrolyte Vapor DMC |
| Measuring Range | 0 - 10000ppm |
| Data Refresh | ≤1s |
| Preheating Time | <15s |
| Communication Method | CAN2.0B |
Product Description
Electrolyte Leakage Sensor KGD - ATRS - 315
Product Introduction
The KGD - ATRS - 315 electrolyte leakage sensor is a lithium-ion battery electrolyte leakage sensor developed based on Non-Dispersive Infrared (NDIR) technology. It can conduct real-time online monitoring of the gas concentration released by electrolyte leakage in the environment and output alarm signals. This sensor features high precision and excellent long-term stability.
Product Features
- High precision and fast response time
- High selectivity with no cross-gas interference
- Excellent long-term stability and small drift
- Long service life and maintenance-free
Technical Parameters
| Items | Details |
|---|---|
| Detection Principle | Non-Dispersive Infrared (NDIR) Detection Technology |
| Tested Gas | Electrolyte Vapor DMC |
| Measuring Range | 0 - 10000ppm |
| Measurement Accuracy | 0 - 2000ppm: ±200ppm 2000ppm - 10000ppm: ±10% of the reading |
| Data Refresh | ≤1s |
| Preheating Time | <15s |
| Communication Method | CAN2.0B |
| Service Life | ≥10 years |
| Protection Level | IP54 |
| Operating Conditions | -40°C - 85°C, 0 - 95%RH (non-condensing) |
| Supply Voltage | DC 9V - 16V, ripple <100mV |
| Average Working Current | ≤30mA |
| Dimensions | L70W60H19.5 (mm) |
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Company
Xi'an Kacise Optronics Co.,Ltd.
Location
2nd Building, Tianyuan International Mansion, High-tech Zone, Xi'an City, Shaanxi Province, China
Contact Person
Evelyn Wang