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Processing line

Step 1

Lead Oxide

- Barton pot process is the core of lead oxide
  spherically shaped particles

- Fine Oxide with ca.50% by weight less than
  4.5 microns

Step 2

Strip Rolling

- Over 90% slab reduction rate

- Excellent mechanical properties, fine and
  uniform strip

- Anti-corrosion alloy

Step 3

Strip Punching

- Full Framed Grid constrains the active
   material and provides mechanical strength

- Reduction of Internal Resistance

Step 4

Pasting

- Double-sided pasting for minimizing
   corrosion of grid

- Strong adhesion between grid and paste

Step 5

Curing

- Even plate quality by vertical loading

- Optimal particle size for battery
   performance & lifetime

- Advanced adhesion and cohesion of plate

Step 6

Assembling

- Plate quantity & weight measuring system

- Total inspection for all batteries

- Spot welding quality measuring system

Step 7

Formation

- Dynamic charging acceptability & less
   self-discharge rate by multi-step charging

- Optimized charging temperature management
   system

Step 8

Finishing Process

- Electrolyte cooling system & Inspection
   by High Rate Discharge(HRD)

- Laser marking System & Robot Packaging
   System

- Storage in Automatic Warehouse for Shipping

Step 1

Lead
Oxide

- Barton pot process is the core of lead oxide
  spherically shaped particles
- Fine Oxide with ca.50% by weight less than
  4.5 microns

Step 2

Strip
Rolling

- Over 90% slab reduction rate
- Excellent mechanical properties, fine and
  uniform strip
- Anti-corrosion alloy

Step 3

Strip
Punching

- Full Framed Grid constrains the active
   material and provides mechanical strength
- Reduction of Internal Resistance

Step 4

Pasting

- Double-sided pasting for minimizing
   corrosion of grid
- Strong adhesion between grid and paste

Step 5

Curing

- Even plate quality by vertical loading
- Optimal particle size for battery
   performance & lifetime
- Advanced adhesion and cohesion of plate

Step 6

Assembling

- Plate quantity & weight measuring system
- Total inspection for all batteries
- Spot welding quality measuring system

Step 7

Formation

- Dynamic charging acceptability & less
   self-discharge rate by multi-step charging
- Optimized charging temperature management
   system

Step 8

Finishing
Process

- Electrolyte cooling system & Inspection
   by High Rate Discharge(HRD)
- Laser marking System & Robot Packaging
   System
- Storage in Automatic Warehouse for Shipping

Step 1

Lead Oxide

  • Barton pot process is the core of lead oxide spherically shaped particles
  • Fine Oxide with ca.50% by weight less than 4.5 microns
Step 2

Strip Rolling

  • Over 90% slab reduction rate
  • Excellent mechanical properties, fine and uniform strip
  • Anti-corrosion alloy
Step 3

Strip Punching

  • Full Framed Grid constrains the active material and provides mechanical strength
  • Reduction of Internal Resistance
Step 4

Pasting

  • Double-sided pasting for minimizing corrosion of grid
  • Strong adhesion between grid and paste
Step 5

Curing

  • Even plate quality by vertical loading
  • Optimal particle size for battery performance & lifetime
  • Advanced adhesion and cohesion of plate
Step 6

Assembling

  • Plate quantity & weight measuring system
  • Total inspection for all batteries
  • Spot welding quality measuring system
Step 7

Formation

  • Dynamic charging acceptability & less self-discharge rate by multi-step charging
  • Optimized charging temperature management system
Step 8

Finishing Process

  • Electrolyte cooling system & Inspection by High Rate Discharge(HRD)
  • Laser marking System & Robot Packaging System
  • Storage in Automatic Warehouse for Shipping