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2V Deep Cycle VRLA Gel Battery for Telecom, UPS and Utility Power Systems

Basic Properties
Place of Origin: China
Brand Name: camel
Certification: ISO9001, ISO14001, IATF16949, TLC, CCS, CE
Model Number: GFMJ Series
Trading Properties
Minimum Order Quantity: 20 pcs
Price: Negotiable
Payment Terms: T/T、L/C、D/P
Supply Ability: 5000 pcs/ month
Specifications
Application: UPS, Telecom, Power, Rail Transit, Data Center Type: 2V Gel Valve‑Regulated Battery
Capacity: 200Ah–3000Ah Voltage: 2V
Certifications: ISO9001, ISO14001, IATF16949, TLC, CCS, CE
High Light:

Independent Station Uninterruptible Power Supply

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deep cycle vrla gel battery 200Ah

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3000Ah deep cycle vrla gel battery

Product Description
2V Deep Cycle VRLA Gel Battery for Telecom, UPS and Utility Power Systems
Quick Details
  • Brand: Camel
  • Type: 2V Gel Valve‑Regulated Battery
  • Voltage: 2V
  • Capacity: 200Ah–3000Ah
  • Application: UPS, Telecom, Power, Rail Transit, Data Center
  • Certifications: ISO9001, ISO14001, IATF16949, TLC, CCS, CE
  • Gel electrolyte, maintenance free

Product Description

Camel Energy GFMJ Series is a valve-regulated lead-acid (VRLA) gel battery specifically designed for long-duration backup power and deep cycle energy storage applications.

Using advanced gel electrolyte technology, the battery eliminates acid stratification and significantly improves cycle life, thermal stability, and reliability under demanding operating conditions.

The product is available in capacities ranging from 200Ah to 3000Ah and is widely used in:

  • Telecommunication base stations
  • Power substations
  • Utility grid backup systems
  • Large UPS systems
  • Rail transit signaling systems
  • Data centers
  • Renewable energy storage projects
  • Independent station backup systems

Unlike high-rate UPS batteries that are optimized for 5-30 minute discharge durations, the GFMJ series is designed for long-duration discharge applications ranging from several hours to more than ten hours.

The battery supports both float service and cyclic operation, making it suitable for critical infrastructure that requires uninterrupted power availability.


Product Specification
Model Voltage Capacity Dimensions (L*W*H/TH, mm) Weight (kg) Terminal
GFMJ‑200 2V 200Ah 170*110*330/350 12.5 2*M8
GFMJ‑300 2V 300Ah 171*150*330/350 17 2*M8
GFMJ‑400 2V 400Ah 195*171*330/350 23 2*M8
GFMJ‑500 2V 500Ah 240*171*330/350 29 2*M8
GFMJ‑600 2V 600Ah 280*171*330/350 35 2*M8
GFMJ‑800 2V 800Ah 380*171*340/350 47 4*M8
GFMJ‑1000 2V 1000Ah 474*172*340/350 58 4*M8
GFMJ‑1500 2V 1500Ah 400*350*340/350 90 8*M8
GFMJ‑2000 2V 2000Ah 490*350*340/350 120 8*M8
GFMJ‑3000 2V 3000Ah 629*346*341/350 174 16*M8

Typical Applications
Telecommunications
  • Telecom base stations
  • Switching centers
  • Fiber communication networks
Electric Utilities
  • Power substations
  • Distribution automation systems
  • SCADA systems
Data Centers
  • Large UPS systems
  • Modular data centers
  • Edge computing facilities
Transportation Infrastructure
  • Rail transit signaling
  • Metro communication systems
  • Airport backup power systems
Renewable Energy
  • Solar energy storage
  • Wind energy storage
  • Hybrid microgrid systems

Product Features
Advanced Gel Electrolyte Technology

Silica gel electrolyte prevents acid stratification and improves charge acceptance and cycle stability.

Outstanding Deep Cycle Capability

Designed for repeated charge and discharge operation with excellent deep discharge recovery performance.

Ultra-Low Self-Discharge

Monthly self-discharge rate is extremely low, making the battery suitable for long-term standby applications.

Long Float Service Life

Designed service life can reach 12-18 years under standard float charging conditions.

Excellent High Temperature Performance

Gel electrolyte improves thermal stability and reduces water loss under elevated temperatures.

Maintenance-Free Operation

Sealed structure eliminates electrolyte maintenance and water replenishment requirements.


Product Advantages
Ideal for Utility Infrastructure

Suitable for substations, transmission systems, and grid backup applications.

Reduced Total Cost of Ownership

Long service life reduces replacement frequency and maintenance expenses.

Better Performance in Harsh Environments

Maintains stable performance under high temperature, vibration, and remote installation environments.

Flexible System Design

2V modular architecture allows easy construction of 48V, 110V, 220V and higher voltage battery systems.

Suitable for Renewable Energy Storage

Excellent deep cycling performance makes the battery suitable for solar and hybrid energy systems.


FAQ
What is the difference between AGM and Gel batteries?

AGM batteries use fiberglass separators to absorb electrolyte, while gel batteries use silica gel electrolyte.

Gel batteries generally provide:

  • Longer cycle life
  • Better deep discharge performance
  • Higher temperature tolerance

AGM batteries usually provide better high-rate discharge capability.

Why do telecom operators use 2V batteries instead of 12V batteries?

2V cells offer greater flexibility for building large-capacity battery banks and simplify maintenance in high-capacity telecom and utility systems.

Is this battery suitable for renewable energy storage?

Yes.

The GFMJ series is designed for both float service and cyclic operation and is suitable for solar energy storage and hybrid microgrid projects.

Can the battery operate in high-temperature environments?

Yes.

The gel electrolyte significantly improves thermal stability and reduces water loss compared with conventional flooded batteries.

What battery life can customers expect?

Under recommended float charging conditions, the battery design life can reach 12-18 years depending on operating environment and discharge profile.

Does Camel Energy support OEM and ODM projects?

Yes.

Camel Energy provides:

  • OEM branding
  • Terminal customization
  • Rack integration
  • Battery bank design
  • Telecom project support
  • Utility project engineering support
Why Large UPS Systems Use 2V Batteries

Large-scale UPS and telecom systems commonly use 2V battery cells connected in series to build 48V, 110V, 220V or higher DC systems.

Benefits of 2V batteries include:

Feature 12V Battery 2V Battery
Capacity Expansion Limited Excellent
Large System Integration Moderate Ideal
Heat Management More Difficult Better
Cell Balancing Less Flexible Easier
Maintenance Replacement Higher Cost Lower Cost
Utility Substation Use Rare Standard

For applications above several hundred ampere-hours, 2V batteries are generally the preferred solution due to their flexibility and long service life.