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Three Core Technologies for Every Emergency Lighting Need

NiCd Emergency Battery Pack

EN 60598-2-22 Certified | 3-Hour Duration

Our NiCd battery packs are specifically designed for European emergency lighting systems compliant with EN 60598-2-22. The SC2000mAh 4.8V Hi-Temp configuration delivers reliable 3-hour emergency duration at +70°C, ideal for enclosed luminaires in commercial buildings, hotels, and industrial facilities.

EN 60598-2-22 compliant (1h/3h duration)
Voltage: 3.6V-6.0V pack configurations
Capacity: 1500-4000mAh SC/D cells
Operating temp: -20°C to +70°C
Certifications: EN 60598-2-22, CE, RoHS
NiCd Emergency Battery Pack

Technical Specifications

voltage1.2V/cell
capacity1000-7000mAh
temp Range-20°C to +70°C
cycle Life800+ cycles
self Discharge<20%/month

Product Models & Specifications

ModelCell TypeVoltageCapacitySizeApplication
HT-SC2000-3.6V3×SC3.6V2000mAh23×130mmEN 60598-2-22 Exit Signs (1h)
HT-SC2000-4.8V4×SC4.8V2000mAh23×172mmEN 60598-2-22 Luminaires (3h)
HT-SC2000-6.0V5×SC6.0V2000mAh23×215mmEN 60598-2-22 Central Battery
HT-SC1500-3.6V3×SC3.6V1500mAh23×130mmCompact Exit Signs (1h)
HT-SC1500-4.8V4×SC4.8V1500mAh23×172mmLED Emergency Luminaires
HT-D4000-3.6V3×D3.6V4000mAh33×183mmHigh-Power Luminaires (3h)
HT-D4000-6.0V5×D6.0V4000mAh33×305mmIndustrial Central Battery

* Custom configurations available upon request. Contact us for OEM/ODM solutions.

Download Datasheet (PDF)

Application Scenarios

Our high-temperature batteries are designed for critical emergency lighting applications

Emergency Exit Signs

Emergency Exit Signs

LED exit signs with battery backup for safe evacuation

Corridor Lighting

Corridor Lighting

Pathway illumination during power outages

Healthcare Facilities

Healthcare Facilities

Critical safety lighting in hospitals and clinics

Commercial Buildings

Commercial Buildings

Office, retail, and industrial emergency systems

Technology Comparison

Data-Driven Selection for Your Application

Multi-Dimensional Performance Analysis

Comprehensive analysis across energy density, cycle life, temperature resistance, eco-friendliness, and cost efficiency.

Battery Technology Radar Comparison

High-Temperature Resilience vs. Cycle Life

NiCd leads in high-temperature stability, while LiFePO4 offers superior cycle life for long-term applications.

High-Temperature Performance vs Cycle Life

Safety vs. Energy Density Balance

Understanding the trade-offs between safety stability and energy density for optimal product selection.

Safety vs Energy Density Comparison

International Certifications

All products meet global safety and environmental standards

UL 924
EN 60598-2-22
RoHS
CE
ISO 9001