Editorial Technical Reference

Charging Table

This page explains how Charging Table is classified within Computer, Electronic and Optical Product Manufacturing. Technical values and manufacturer relationships are research references; confirm the current specification and supplier evidence for each order.

Technical Definition & Core Assembly

A structural platform within a charging/discharging system that supports and positions batteries or devices during the charging process.

Representative product image. Confirm appearance and specifications with the manufacturer.

Product Specifications

Technical details and manufacturing context for Charging Table

Definition
The Charging Table is a critical component of industrial charging/discharging systems, providing a stable, organized workspace for positioning multiple batteries or electronic devices during charging operations. It typically integrates with power distribution systems, safety mechanisms, and monitoring equipment to facilitate efficient, safe charging cycles in manufacturing, testing, or maintenance environments. The table is constructed from materials such as powder-coated steel, aluminum alloy, or insulated polymer composites, offering durability and electrical insulation where required. Its design includes alignment guides, mounting fixtures, and conductive surfaces to ensure proper electrical contact with charging connectors. The table supports a range of rated charging currents from 10 to 100 A and voltages from 24 to 750 V DC, aligning with IEC 61851. Positioning accuracy is maintained within ±0.5 mm per ISO 9283, and contact resistance is kept at or below 5 mΩ per IEC 60512-2 to minimize heat and energy loss. Insulation resistance is at least 100 MΩ, and dielectric withstand voltage is 1500 V AC, both per IEC 60243-1. The operating temperature range is -20 to 50 °C, storage range is -40 to 70 °C, and relative humidity range is 5 to 95% non-condensing, per IEC 60068 series. Ingress protection ratings vary from IP54 to IP65 per IEC 60529. Load capacity ranges from 50 to 500 kg per ISO 11228-1, and overall dimensions are customizable from 600×400×150 mm to 1200×800×300 mm. The table's weight ranges from 15 to 80 kg. Material grades for metallic parts include SUS304 to SUS316L stainless steel per ASTM A240. These specifications serve as reference ranges; actual values must be confirmed with the manufacturer for specific models and applications.
Working Principle
The Charging Table provides physical support and alignment for batteries or devices, ensuring proper electrical contact with charging connectors. It may incorporate conductive surfaces, alignment guides, or mounting fixtures to maintain consistent positioning. In automated systems, it may interface with robotic arms or conveyors to feed devices into charging stations. The table's structure is designed to withstand mechanical loads and environmental conditions, while its electrical insulation properties prevent leakage currents. By maintaining precise positioning, it ensures reliable charging cycles and reduces wear on connectors.
Common Materials
Powder-coated steel, Aluminum alloy, Insulated polymer composites
Technical Parameters
ParameterTypical rangeNotes & selection driver
Rated Charging Current10–100 ADetermines charging speed and thermal load.IEC 61851
Rated Charging Voltage24–750 V DCMust match battery pack voltage.IEC 61851
Positioning Accuracy±0.5 mmEnsures proper contact alignment.ISO 9283
Contact Resistance≤5 Lower resistance reduces heat and energy loss.IEC 60512-2
Insulation Resistance≥100 Safety against leakage currents.IEC 60243-1
Dielectric Withstand Voltage1500 V ACEnsures insulation integrity.IEC 60243-1
Operating Temperature Range-20–50 °COutside this range, performance may degrade.IEC 60068-2-1
Storage Temperature Range-40–70 °CFor non-operating conditions.IEC 60068-2-2
Relative Humidity Range5–95 % RHNon-condensing; high humidity may cause corrosion.IEC 60068-2-78
Ingress Protection RatingIP54–IP65Protection against dust and water jets.IEC 60529
Load Capacity50–500 kgMaximum weight of batteries/devices supported.ISO 11228-1
Overall Dimensions (L×W×H)600×400×150–1200×800×300 mmCustomizable to fit different battery sizes.
Weight15–80 kgAffects portability and installation.
Material GradeSUS304–SUS316LStainless steel for corrosion resistance.ASTM A240

Ranges are indicative industry figures for RFQ preparation, not a supplier commitment. Confirm every value and standard with the legal manufacturer before ordering.

Components / BOM
  • Table Frame Part
    Provides structural support and stability for the entire assembly
    Material: Powder-coated steel
  • Charging Surface Part
    Platform where batteries/devices are placed, often with alignment guides or mounting points
    Material: Insulated polymer composite
  • Cable Management System
    Organizes and routes power cables from charging units to devices
    Material: Plastic cable channels
  • Conductive Contacts Optional
    Carry charging current straight through the table on builds with a powered surface.

Applied To / Applications

This component is essential for the following industrial systems and equipment:

Industrial Ecosystem & Supply Chain Structure

Complementary Systems
Downstream Applications
Specialized Tooling

Application Fit & Sizing Matrix

Operational Limits
pressure: Max 5 bar
other spec: Max load capacity: 500 kg, Vibration tolerance: ≤2g RMS
temperature: -20°C to +80°C
Media Compatibility
✓ Lithium-ion battery packs ✓ Lead-acid battery banks ✓ Portable electronic device arrays
Unsuitable: High-corrosive chemical environments (e.g., acid mist, salt spray chambers)
Sizing Data Required
  • Maximum battery/device weight and dimensions
  • Required charging station density (units/m²)
  • Environmental exposure class (indoor/outdoor, IP rating)

Reliability & Engineering Risk Analysis

Failure Mode & Root Cause
Electrical contact degradation
Cause: Oxidation and pitting of charging contacts due to environmental exposure, repeated mechanical wear from device insertion/removal, and arcing from poor connection alignment
Structural fatigue failure
Cause: Cyclic loading from repeated device placement/removal causing stress concentrations at mounting points, material fatigue in support arms or hinges, and vibration-induced cracking in welded joints
Maintenance Indicators
  • Intermittent or failed charging despite proper device placement (indicating contact degradation)
  • Visible structural deformation, unusual wobble, or audible creaking/groaning during normal operation
Engineering Tips
  • Implement regular contact cleaning with appropriate non-abrasive solvents and apply thin protective coatings to electrical contacts to prevent oxidation
  • Establish torque verification procedures for all fasteners and conduct periodic non-destructive testing (e.g., ultrasonic inspection) on high-stress structural components

Indicative industry ranges for design and RFQ preparation. Confirm the exact figures and applicable standard with the manufacturer before specifying.

Compliance & Manufacturing Standards

Applicable Standards
CE Marking - EU safety, health, and environmental requirements ASTM F2057-19 - Standard safety specification for clothing storage units

Quoted from the published standard.

Manufacturing Precision
  • Flatness: +/- 0.5mm across surface
  • Hole alignment: +/- 0.2mm for charging port cutouts
Quality Inspection
  • Load testing - verify structural integrity under weight
  • Electrical safety testing - insulation resistance and grounding continuity

Manufacturers of Charging Table

Manufacturer profiles associated with Charging Table.

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Frequently Asked Questions

What is the primary function of a Charging Table?

The Charging Table provides a stable platform to support and position batteries or devices during charging, ensuring proper alignment with charging connectors for efficient and safe operation.

What materials are commonly used for Charging Tables?

Common materials include powder-coated steel, aluminum alloy, and insulated polymer composites. These materials offer durability, corrosion resistance, and electrical insulation as needed.

What standards are referenced for Charging Table specifications?

Key standards include IEC 61851 for charging current and voltage, ISO 9283 for positioning accuracy, IEC 60512-2 for contact resistance, and IEC 60243-1 for insulation resistance and dielectric withstand voltage. Always verify compliance with the manufacturer.

Can the Charging Table be customized for different battery sizes?

Yes, overall dimensions are customizable within a range, typically from 600×400×150 mm to 1200×800×300 mm, to accommodate various battery sizes and configurations.

Data Basis

Editorial classification, named public sources where available, and source-reviewed manufacturer records.

Preliminary Technical Classification
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