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PLANTE RANGE

Exide Plante Battery

Exide Plante Battery 2V Industrial Standby Batteries for Critical DC Power Systems

Exide Plante Battery is a flooded stationary battery range developed for critical standby applications in power plants, substations and industrial infrastructure. The Plante architecture combines 99.99% pure-lead positive plates, transparent SAN containers, high-rate discharge capability and long-life standby operation.

99.99% pure-lead positive plates High-rate discharge capability Transparent SAN containers
EXIDE PLANTE
TRANSPARENT SAN CELL
POSITIVE 99.99%
PURE LEAD
NEGATIVE LOW ANTIMONY
LEAD ALLOY
CELL → BATTERY BANK → CRITICAL DC LOAD
HIGH RATE STANDBY RAPID CHARGE
Conceptual illustration — Exide Plante Battery pure-lead plate, transparent-cell and critical standby-power architecture
2 V Nominal cell voltage
16–2250 Ah Capacity range
>20 Years Standby float life at 27°C
12–18 Months Topping interval
Exide Plante Battery Overview

Long-Life Standby Energy for Critical Industrial Operations

Exide Plante Battery is designed for stationary applications where dependable DC standby power is required for critical equipment and infrastructure.

The Plante positive plate uses 99.99% pure lead, minimising impurities within the active positive-plate structure.

Negative plates use a low-antimony lead alloy, complementing the pure-lead positive-plate construction within the flooded cell.

Plante cells are designed for excellent high-rate discharge capability and strong energy output during critical standby events.

Transparent SAN containers provide direct visual access to important internal battery conditions.

Electrolyte level, plate colour and separator condition can be inspected through the transparent container during routine battery checks.

The vent arrangement permits electrolyte specific-gravity measurement, providing an indication of battery state of charge.

The Plante range also supports rapid charging and operates across demanding ambient conditions encountered in industrial installations.

Exide Plante Battery Features

Pure-Lead Construction, High-Rate Discharge & Visual Monitoring

Plante technology combines high-purity lead, flooded-cell construction and user-visible condition monitoring for critical stationary applications.

99.99% Pure-Lead Positive Plate

High-purity lead is used in the positive plate to minimise impurities within the Plante electrochemical architecture.

High-Rate Discharge Performance

The Plante range is designed for strong discharge performance when critical DC loads require high current.

Transparent SAN Container

Transparent cell containers allow electrolyte level, plates and separators to be visually inspected.

Specific-Gravity Monitoring

The vent architecture permits measurement of electrolyte specific gravity to monitor battery state of charge.

Rapid Charging Capability

Plante cells support rapid charging for compatible stationary battery systems and charging arrangements.

Insulated Inter-Cell Connectors

Insulated inter-cell connections form part of the battery-bank architecture for stationary DC installations.

POSITIVE 99.99% PURE LEAD
NEGATIVE LOW-ANTIMONY Pb
FLOODED ELECTROLYTE
VISUAL
MONITORING
HIGH-RATE
DISCHARGE
RAPID
CHARGING
CHARGER ⇄ PLANTE BATTERY BANK ⇄ CRITICAL DC LOAD
Plante Stationary Battery Architecture Pure-lead positive plates, low-antimony negative plates and flooded electrolyte operate within a transparent cell designed for monitored standby operation. Conceptual illustration — Exide Plante Battery plate, electrolyte, monitoring and stationary DC power architecture
Exide Plante Battery Technology

Pure-Lead Plate Technology for Critical Standby Duty

Exide Plante Battery combines high-purity plate construction with flooded electrolyte, direct condition monitoring and high-rate discharge capability for critical stationary applications.

  • 2V flooded stationary cell architecture
  • 16Ah to 2250Ah capacity range
  • 99.99% pure-lead positive plate
  • Low-antimony lead-alloy negative plate
  • Transparent SAN cell container
  • Visual electrolyte-level monitoring
  • Specific-gravity measurement capability
  • High-rate discharge performance
  • Rapid charging capability
  • Insulated inter-cell connectors
Exide Plante Battery Applications

Standby Battery Power for Critical Infrastructure

Power Plants Standby battery applications for compatible power-generation DC systems.
Substations Stationary battery power for compatible transmission and distribution substations.
Process Industries Critical DC backup for compatible industrial process and control systems.
Control & Instrumentation Battery-backed DC power for compatible control and instrumentation equipment.
Telecommunication Stationary standby battery applications for compatible telecommunications systems.
UPS Systems Battery energy storage for compatible uninterrupted power supply architectures.
Emergency Lighting Standby DC battery applications for compatible emergency lighting systems.
Exide Plante Battery Technology

Exide Plante Battery Range

The Plante family covers multiple 2V stationary battery capacities and configurations for critical industrial standby power.

Exide Plante Battery Plante Battery Range YAP YHP YKP 2V Battery Cell 16Ah 2250Ah Flooded Stationary Battery Pure Lead Positive Plate 99.99% Pure Lead Low Antimony Lead Alloy Transparent SAN Container High Rate Discharge Rapid Charging Specific Gravity Monitoring Electrolyte Level Monitoring Insulated Inter-Cell Connectors Stationary DC Battery Industrial Standby Battery
Exide Plante Battery Technical Information

Exide Plante Battery Specifications

Key electrical, construction and monitoring characteristics of the Exide Plante stationary battery family.

Manufacturer
Exide Industries Limited
Product range
Plante
Product families
YAP / YHP / YKP
Battery category
Flooded Stationary Lead-Acid Battery
Nominal cell voltage
2V
Capacity range
16Ah to 2250Ah
Positive plate material
99.99% pure lead
Negative plate material
Low-antimony lead alloy
Container
Transparent SAN
Discharge characteristic
Excellent high-rate discharge performance
Charging
Capable of rapid charging
Standby float life
Greater than 20 years at 27°C under applicable standby float conditions
Topping interval
Approximately once every 12 to 18 months under applicable operating conditions
Inter-cell connection
Insulated inter-cell connectors
Visual monitoring
Electrolyte level, plate colour and separator condition visible through transparent container
State-of-charge monitoring
Electrolyte specific-gravity measurement
Energy performance
High Ah and Wh efficiency with strong all-round voltage and energy output
Primary applications
Power plants, substations, process industries, C&I, telecommunications, UPS systems and emergency lighting

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

Exide Plante Battery FAQs

Frequently Asked Questions About Exide Plante Battery

Key information about Plante technology, capacity, monitoring and industrial standby applications.

What is an Exide Plante Battery?

Exide Plante Battery is a flooded 2V stationary lead-acid battery designed for critical standby applications, featuring a 99.99% pure-lead positive plate, transparent SAN container and high-rate discharge capability.

What capacity range does Exide Plante Battery cover?

Exide’s Plante stationary range covers 2V battery cells from 16Ah to 2250Ah across different configurations.

How can the condition of a Plante battery be monitored?

Its transparent SAN container allows visual inspection of electrolyte level, plates and separators. Electrolyte specific gravity can also be measured to assess state of charge.

What technical parameters vary by model/configuration?

Capacity, dimensions, weight, terminal arrangement, electrolyte quantity, charging parameters and discharge performance vary by configuration. Values vary by model and configuration; applicable Exide product documentation governs the configuration.

Exide Plante Battery Architecture

Pure-Lead Plates, Transparent Cells & Critical DC Power

Explore conceptual views of the Plante cell, stationary battery-bank power path and visual condition-monitoring architecture.

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