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1P13S-52S CCS Wire Harness Board 280Ah 314Ah Cells for High Voltage Energy Storage

1P13S-52S CCS Wire Harness Board 280Ah 314Ah Cells for High Voltage Energy Storage

Model Number: 1P13S-52S-CCS
MOQ: 500 Pieces
Price: Negotiable
Packaging Details: Carton
Payment Terms: T/T,L/C,PayPal,Western Union
Detail Information
Place of Origin:
Guangdong, China
Configuration:
1P13S To 52S
Applicable Cell:
280Ah / 314Ah Prismatic Cell
Series Range:
13S To 52S
Nominal System Voltage:
Up To 166V (52S)
Conductor Material:
High-Conductivity Aluminum Busbar
Wire Harness:
High-Quality Flexible Wire Harness
Acquisition Terminal:
Precision Plated Acquisition Terminal
Temperature Sensor:
NTC Thermistor
Bracket Process:
Injection-Molded Bracket / Blister Thermo-Riveting
Integration Method:
One-Piece Integrated Forming
Voltage Acquisition Accuracy:
+/- 5mV
Temperature Acquisition Accuracy:
+/- 0.5 C
Supply Ability:
10000 Sets per Month
Highlight:

High Voltage 52S String Topology

,

Plug and Play Rack Integration

,

Lower BOM Cost per Pack

Product Description

1P13S-52S CCS Wire Harness Board 280Ah 314Ah Cells for High Voltage Energy Storage

Product Overview

The 1P13S-52S CCS (Cell Contacting System) Wire Harness Board is a high-voltage contacting platform developed for 280Ah and 314Ah prismatic cells in long-string energy storage architectures. Covering a 13-series to 52-series range, it brings together flexible high-quality wire harnesses, precision plated acquisition terminals, NTC temperature sensors, high-conductivity aluminum busbars, and injection-molded or blister thermo-riveted brackets in one integrated assembly.

Built on a mature injection-molded bracket fixing or blister thermo-riveting process, the board keeps signal transmission stable and voltage and temperature acquisition precise — essential for high-voltage racks where acquisition errors scale with string length. The design also trims bill-of-materials cost versus conventional PCB and FPC contacting schemes.

Product Features

  • High-Voltage Long-String Ready: Optimized for 13S to 52S strings, keeping acquisition accuracy and insulation performance stable as system voltage rises.
  • Plug-and-Play Integration: A single formed board replaces scattered harnesses and brackets, shortening rack assembly time and reducing wiring errors.
  • Lower BOM Cost per Pack: Compared with PCB and FPC versions, it reduces per-pack material cost for cost-sensitive, large-volume base modules.
  • Precision Acquisition Chain: Plated terminals and an NTC thermistor array deliver reliable voltage and temperature feedback to the BMS.
  • Broad Adaptability: Harness layout, trace length and bracket geometry can be adjusted to fit a wide range of cell series/parallel arrangements.

Technical Specifications

Configuration 1P13S to 52S
Applicable Cell 280Ah / 314Ah Prismatic Cell
Nominal System Voltage Up to 166V (52S)
Conductor Material High-Conductivity Aluminum Busbar
Wire Harness High-Quality Flexible Wire Harness
Acquisition Terminal Precision Plated Acquisition Terminal
Temperature Sensor NTC Thermistor
Bracket Process Injection-Molded Bracket / Blister Thermo-Riveting
Voltage Acquisition Accuracy +/- 5mV
Temperature Acquisition Accuracy +/- 0.5 C
Insulation Resistance Above 100 MOhm at 500V DC
Rated Voltage Up to 1500V DC
Operating Temperature -40 C to +125 C

Applications

  • High-voltage energy storage racks and clusters using 280Ah or 314Ah cells
  • Battery cabinets and centralized energy storage systems with long series strings
  • Standardized 13S to 52S module platforms for utility and commercial ESS
  • Cost-sensitive, high-volume base module integration projects

Why Choose Us

  • High-Voltage Engineering Know-How: Designs tuned for long strings and elevated system voltage, not just low-series modules.
  • Public Mold & Custom Service: Standard public-mold products plus tailored layout and series-count engineering.
  • Cost-Efficient Alternative: Lower production cost than PCB and FPC contacting approaches with dependable electrical performance.
  • Stable Supply: Consistent capacity and predictable lead times for sampling and mass production.