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VRLA RANGE – PPST & UPST

Exide Powersafe PPST UPST VRLA Battery

Exide Powersafe PPST & UPST 2V VRLA Batteries Sealed Maintenance-Free Stationary Batteries for Critical DC Power Applications

Exide Powersafe PPST UPST VRLA Battery range comprises 2V valve-regulated lead-acid batteries developed for stationary applications. PPST and UPST combine low self-discharge, lead-calcium-tin grid technology, flame-arrestor safety valves and thermal-management features for critical standby and DC power systems.

2V VRLA architecture Sealed maintenance-free design PPST & UPST stationary ranges
EXIDE POWERSAFE VRLA
PPST
ROBUST GRID
MULTIPLE TERMINALS
RIBBED CONTAINER
UPST
ENHANCED PLATES
HIGH POWER DENSITY
THERMAL MANAGEMENT
2V VRLA Ca-Sn GRID SAFETY VALVE
Conceptual illustration — Exide Powersafe PPST UPST VRLA Battery stationary-cell, grid, valve and thermal-management architecture
2 V Nominal cell architecture
20 Years Design life at 27°C under ideal float conditions
<0.5% Weekly self-discharge at stated conditions
4000 Cycles At 20% depth of discharge
Exide Powersafe PPST UPST VRLA Battery Overview

Stationary VRLA Power for Critical Infrastructure

Exide Powersafe PPST UPST VRLA Battery range is engineered around sealed valve-regulated lead-acid technology for stationary DC and standby-power applications.

The battery architecture uses a proprietary lead-calcium-tin alloy in the positive grid, contributing to low float-current characteristics and low water loss.

Reduced float current also limits heat generation, while dedicated thermal-management features support operation under demanding ambient conditions.

PPST is designed around a robust grid and multiple-terminal architecture for stationary applications requiring high-current capability.

Ribbed PPST containers support structural and thermal management, while multiple terminals help reduce voltage drop in higher-capacity configurations.

UPST incorporates enhanced plate length for high power density together with deep-discharge recovery and low self-discharge characteristics.

Both ranges use self-resealing flame-arrestor safety valves and sealed maintenance-free VRLA construction.

The architecture is intended for stationary installations exposed to repetitive charge-discharge operation and occasional deep discharge.

Exide Powersafe PPST UPST VRLA Battery Features

Low Self-Discharge, High-Current Capability & Thermal Management

PPST and UPST combine sealed VRLA construction with grid, plate, terminal and safety-valve technologies for stationary power applications.

Sealed Maintenance-Free VRLA

Valve-regulated construction provides a sealed stationary battery architecture without routine electrolyte-water topping.

Lead-Calcium-Tin Grid Alloy

Calcium-tin grid technology supports low float-current characteristics, reduced water loss and controlled corrosion.

Low Self-Discharge

Self-discharge is less than 0.5% per week at the stated C10 and temperature reference conditions.

Thermal Management

Grid chemistry and container-design features work together to manage heat during stationary battery operation.

High-Current Terminal Architecture

PPST higher-capacity configurations use multiple terminals to reduce voltage drop and improve current-carrying capability.

Flame-Arrestor Safety Valve

A self-resealing flame-arrestor fitted safety valve forms part of the VRLA pressure and safety architecture.

GRID Ca-Sn Alloy
VRLA CELL 2V
DC LOAD Stationary
LOW FLOAT
CURRENT
THERMAL
CONTROL
SAFETY
VALVE
CHARGER ⇄ VRLA BATTERY BANK ⇄ CRITICAL DC LOAD
Stationary VRLA Battery Architecture Lead-calcium-tin grids, sealed cells, pressure-control valves and terminal architecture work together within a stationary battery bank. Conceptual illustration — Exide Powersafe PPST UPST VRLA Battery grid, cell, valve and stationary DC power architecture
Exide Powersafe PPST UPST VRLA Battery Technology

Low-Float-Current Grid Technology for Stationary Power

Exide Powersafe PPST UPST VRLA Battery technology combines sealed VRLA cells, lead-calcium-tin grids, low self-discharge and thermal-management features for critical stationary battery systems.

  • 2V valve-regulated lead-acid cells
  • Sealed maintenance-free construction
  • Lead-calcium-tin positive grid alloy
  • Less than 0.5% weekly self-discharge
  • Excellent recovery from deep discharge
  • Enhanced plate length for high power density
  • PPST multiple-terminal configurations
  • PPST ribbed container architecture
  • Self-resealing flame-arrestor safety valve
  • Low-footprint stationary design
Exide Powersafe PPST UPST VRLA Battery Applications

Stationary Batteries for Critical Power & Infrastructure Systems

Power Plants Stationary VRLA battery applications for compatible power-generation DC systems.
Transmission & Distribution Battery-backed DC power for compatible transmission and distribution substations.
Switchgear Operations Stationary battery applications for compatible switchgear control and operating systems.
UPS Systems VRLA energy-storage applications within compatible uninterrupted power supply architectures.
Railway Signalling Stationary battery applications for compatible railway signalling power systems.
Offshore Platforms Stationary DC battery applications for compatible offshore power infrastructure.
Exide Powersafe VRLA Technology

Exide Powersafe PPST UPST VRLA Battery Range

PPST and UPST combine sealed VRLA construction with stationary power, thermal-management and high-current battery technologies.

Exide Powersafe PPST UPST VRLA Battery Powersafe VRLA PPST Range UPST Range 2V VRLA Stationary Battery Sealed Maintenance-Free Lead Calcium Tin Alloy Ca-Tin Corrosion Alloy Low Float Current Low Self-Discharge Deep Discharge Recovery Enhanced Plate Length High Power Density Multiple Terminal Design 4 Terminal Design 6 Terminal Design Ribbed Container Flame Arrestor Safety Valve Thermal Management Cadmium-Free Low Footprint
Exide Powersafe PPST UPST VRLA Battery Technical Information

Exide Powersafe PPST & UPST VRLA Battery Specifications

PPST and UPST share a 2V sealed VRLA platform while differing in grid, container, plate and terminal implementation across individual configurations.

Manufacturer
Exide Industries Limited
Product family
Powersafe VRLA
Ranges
PPST and UPST
Battery category
Stationary Valve-Regulated Lead-Acid Battery
Nominal cell voltage
2V
Construction
Sealed maintenance-free VRLA
Positive grid alloy
Lead-calcium-tin alloy
PPST corrosion alloy
Special calcium-tin corrosion alloy
Self-discharge
Less than 0.5% per week at C10 capacity at 27°C
Storage characteristic
3 to 6 months depending on ambient temperature, with freshening charge requirements dependent on storage conditions
Design-life reference
20 years at 27°C under ideal float conditions
Cycle reference – 20% DOD
4000 cycles
Cycle reference – 50% DOD
1800 cycles
Cycle reference – 70% DOD
1400 cycles
Deep-discharge characteristic
Excellent recovery from deep discharge
PPST container
Ribbed container for structural and thermal management
PPST terminal architecture
Multiple-terminal design; 4/6-terminal configurations in higher-capacity range
UPST plate architecture
Enhanced plate length for high power density
Safety valve
Self-resealing flame-arrestor fitted safety valve
Material characteristic
Cadmium-free
GTP capacity bands
80–400Ah, 415–1000Ah and above 1000Ah

Values vary by model and configuration; applicable Exide product documentation governs the configuration.

Exide Powersafe PPST UPST VRLA Battery FAQs

Frequently Asked Questions About Exide Powersafe PPST & UPST

Key information about PPST and UPST construction, stationary applications, self-discharge and configuration-dependent technical parameters.

What is an Exide Powersafe PPST UPST VRLA Battery?

Exide Powersafe PPST UPST VRLA Battery refers to Exide’s 2V sealed valve-regulated stationary battery ranges developed for compatible standby and critical DC power applications.

What is the difference between PPST and UPST?

PPST emphasises a robust grid, ribbed container and multiple-terminal design for high-current stationary applications. UPST includes enhanced plate length for high power density along with low self-discharge and deep-discharge recovery characteristics.

What is the self-discharge rate of PPST and UPST batteries?

The range is specified at less than 0.5% self-discharge per week at C10 capacity at 27°C, with storage duration dependent on ambient conditions and freshening-charge requirements.

What technical parameters vary by model/configuration?

Capacity, dimensions, weight, number of terminals, charging parameters, discharge performance and battery-bank arrangement vary by PPST or UPST configuration. Values vary by model and configuration; applicable Exide product documentation governs the configuration.

Exide Powersafe PPST UPST VRLA Battery Architecture

VRLA Cells, Grid Technology & High-Current Stationary Power

Explore conceptual views of the VRLA cell, stationary battery-bank power path and PPST high-current terminal architecture.

Request Exide Powersafe PPST UPST VRLA Battery Product Information

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