VRLA Batteries

MICROTEX Value Regulated  Battery is designed to meet industrial standards. The battery works on gas recombination technology, which eliminates the need to top up the batteries with water periodically and is mounted horizontally in robust stackable steel modules.

 

MICROTEX make VRLA Batteries generally conforms to the following International standards:IEC 60896-21 ED. 1.0 B:2004, BS 6290 Part-IV, TEC Spec:G/BAT-01/03, March 2004, & IEEE 1188 - 2005.

Valve Regulated Lead Acid (VRLA) Batteries

Advantages

• Gas recombination technology that eliminates the need to add water.

• Effective & repeatable valve operation that works within a narrow pressure band. (Opening and Closing).

• Installation that is high on convenience is friendly & provides peace of mind.

• High performance operation with no maintenance (doesn’t require routine water additions or specific gravity checks).

• Jar formation ensures consistent capacity & voltage of the cell.

• Leakage resistant double seal terminals that prevents escape of any acid mist. 

• Long storage due to the use of high quality materials in electrode construction with stringent process controls there in.

• Leakage resistant construction with flame retardant materials permits its use in any orientation that assures safety.

• Effective & reliable performance based on balanced material design, excellent charge acceptance, deep discharge recovery and uniformly useful capacity during its expected service life.

• Better usage of foot print area due to stackable modular design.

 

Technical Specifications

Self-Discharge Characteristics

Cycle Life at 27˚C

Applications

• Telecommunications

• Power

• Solar Photovoltaic

• Process Control

• Oil and Gas

• UPS

• Switch Gear

• Railways

 

Charging Specifications

Module Specifications

Constructional Features

• Flame retardant cell case.

• Proprietary process technology ideal for all climatic Conditions

• Robust & aesthetically attractive modular design with
thermal control features

• Unique European type wide electrode design

• Leak resistant double seal terminal design

• Efficient & Effective Vent Valve Assembly

 

Torque Specifications

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Note

 

• The dimensions are as per our standard stacking arrangement.

• Nominal Capacity is at 10 hr rate of discharge to an End Cell Voltage of 1.75VPC at 27oC

• Other special design & configuration of Battery system for specific application shall be provided
on request.

• Intermediate AH Capacities are also available on specific request.

• In accordance with improvement the company reserves the right to change the specification
& design without notice. All the data given in catalog are for guidance only & cannot be held
binding on the company.

• Higher AH capacities such as 3000 & 4000AH are presently under design and the dimensional
details of the same shall be made available shortly.

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Average Storage Temperature

Max Storage Period Recommended

25oC to 30oC

6 months

31oC to 35oC

4.5 months

36oC to 40oC

3 months

41oC to 45oC

2 months

46oC to 50oC

1.5 months

600 cycles at 100% Depth of Discharge.

1400 cycles at 80% Depth of Discharge.

2600 cycles at 50% Depth of Discharge.

3500 cycles at 30% Depth of Discharge.

4800 cycles at 20% Depth of Discharge.

Type of charging

Constant Potential with Current Limited

Float voltage & Current

2.25 Volts Per Cell at 27oC and current 3 to 5mA per AH

Boost Voltage &  Current

2.30 Volts Per Cell at 27oC and current Max 20% of the  AH Capacity

AC Ripple

Max 3% RMS

 

Model Type

Capacity (AH) at C10 rate of discharge

 

No. of Cells per Module

 

Module Voltage

Module Dimensions in mm

Approx Module Weight in Kg   (± 5%)

Internal Resistance of cell in Milliohms

Short Circuit Current in KA

Length ±15mm

Depth
±15mm

Height ±15mm

M-100V

100

6

12 V

655

275

216

60

0.95

2.25

M-200V

200

6

12 V

655

375

216

100

0.73

2.94

M-300V

300

4

8 V

857

380

141

90

0.56

3.84

M-400V

400

4

8 V

870

375

180

120

0.47

4.58

M-500V

500

4

8 V

940

380

235

165

0.42

5.09

M-600V

600

4

8 V

940

380

235

175

0.32

6.64

M-800V

800

3

6 V

690

495

235

190

0.25

8.68

M-1000V

1000

3

6 V

705

495

290

215

0.34

6.26

M-2000V

2000

2

4V

505

500

540

285

0.19

11.15

Apply correct Torque (12-14Nm) for tightening the bolts.