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Mainboard Flex for TECNO CAMON 17P CG7 Main Board Motherboard Connector LCD Flex Cable

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Mainboard-LCD Connectivity: Designed to connect the mainboard of TECNO CAMON 17P CG7 and compatible Infinix devices to LCD displays, enabling seamless signal transmission between critical components.
  • Multi-Signal Transmission: Equipped with parallel conductive traces for simultaneous data, power, and control signal transfer, ensuring efficient functionality in electronic systems.

Key features

  • 1. Material Technology

  • With a flexible polyimide/polyamide substrate and protective polyethylene layer, ensure durability and resistance to wear even in rugged environments.

  • 2. Interactive Design

  • With customizable sections labeled "MAIN/SUB" and parallel conductive traces, easily tailor connections and transmit multiple signals simultaneously for seamless integration into electronic systems.

  • 3. Performance Parameters

  • With high flexibility and durability, withstand repeated bending without compromising signal integrity, maintaining optimal performance in compact spaces like mobile devices.

  • 4. Scenario Solutions

  • Designed for mobile phones like the TECNO CAMON 17P, enabling flexible connections in limited spaces for displays, sensors, and modules while supporting both home and commercial use.

  • 5. Certification Standards

  • Constructed to meet industry standards for electronic components, ensuring reliability and safety in diverse applications.

Product details

Mainboard Flex  for TECNO CAMON 17P CG7 Main Board Motherboard Connector LCD Flex Cable

The Mainboard Flex for TECNO CAMON 17P CG7 is a high-performance flexible flat cable (FFC) designed for precise connectivity in mobile devices. Crafted with a polyimide substrate and conductive copper traces, it ensures reliable signal transmission while maintaining flexibility. Compatible with Tecno and Infinix devices, this cable is ideal for applications requiring durability, compact design, and customizable routing.

Technical specifications

FeatureSpecificationBenefit
MaterialPolyimide substrate with copper tracesHigh-temperature resistance (up to 150°C)
FlexibilityBend radius: 2mmWithstands repeated folding without damage
Protective LayerPolyethylene (PE) coatingEnhanced abrasion and chemical resistance
Connector TypeStandard FFC/LCD terminalsSeamless integration with motherboards
LabelingPre-printed "MAIN/SUB" and part codesEasy identification and error-free assembly

Customization guide

Adjustable parameters include:

  • Length and routing: Customize the cable’s path to fit specific device layouts.
  • Conductive trace count: Modify the number of parallel traces to match signal requirements.
  • Terminal configuration: Tailor connector types (e.g., gold-plated for premium conductivity).

Get inspired

Use this flex cable to connect motherboards to LCD screens, sensors, or modules in smartphones, robotics, or IoT devices. Its flat profile saves space, while its durable design ensures longevity in portable electronics.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Bend Cycles5,000 cycles+15% (5,750 cycles)+30% (6,500 cycles)*
Temperature Range-20°C to 85°C-30°C to 105°C-40°C to 125°C
Chemical ResistanceStandard PE layerEnhanced PE+TPU coating (+20% durability)

Supplier's note

  1. Technical Breakthroughs:

    • Polyimide substrate: Enables 20% thinner profiles than traditional FFCs.
    • PE+ protective layer: Reduces wear by 30% in high-friction environments.
    • Customizable routing: Allows integration into compact device designs.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard smartphones or devices with minimal bending needs.
    • Advanced Model: Perfect for ruggedized devices (e.g., industrial IoT) requiring frequent flexing.
    • Pro Model: Best for extreme environments (e.g., automotive or aerospace) needing heat/chemical resistance.

With the Pro Model’s TPU coating, you can ensure durability in harsh chemical exposure scenarios. Pair it with its expanded temperature range to maintain performance in extreme climates. The Advanced Model’s enhanced bend cycles make it ideal for robotics with repetitive motion requirements.

Frequently asked questions

  • Which mobile phone models is the Mainboard Flex compatible with?

  • How do I clean and store the Mainboard Flex to maintain flexibility?

  • Why is polyimide better than standard materials for this flex cable?

  • Can I request custom labeling or lengths for bulk orders?

  • Is the Mainboard Flex RoHS compliant and FDA-approved?

  • What applications benefit from the Mainboard Flex's flat design?

  • How does the protective layer enhance the cable's lifespan?

  • Does the Mainboard Flex require special tools for installation?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Standard FFC CableBasic consumer electronics (e.g., smartphones, tablets)- Flex Life: 10,000 cycles (IEC 60664-1)
- Thickness: 0.3mm (ISO 3801)
- Conductive Traces: 30+ (ASTM F311)
Cost-effective, widely compatible with generic devices.
- Lightweight (15g/m, ISO 3801)
Limited durability for heavy-duty use. ▲
- Narrow trace count limits signal capacity.
High-Flex FFC (Our Base)Robotics, industrial equipment- Flex Life: 20,000 cycles (▲ vs Industry Standard)
- Thickness: 0.3mm
- Conductive Traces: 50+ (▲)
Durable for frequent bending (e.g., robotic arms).
- Supports higher signal density.
Higher cost than standard cables. ▲
- Stiffer profile may require extra space.
Custom-Profile FFC (Our Advanced)Medical devices, aerospace- Flex Life: 30,000 cycles (▲)
- Thickness: 0.2mm (▲)
- Custom Bend Radius: 2mm (ISO 11801)
Ultra-thin design for tight spaces.
- Tailored bend radius for precision applications.
Longer lead times for customization.
- Requires specialized tooling.
High-Temperature FFCAutomotive, industrial heating systems- Operating Temp: -40°C to +125°C (MIL-STD-810)
- Flame Retardant: UL 94 V-0
Withstands extreme temperatures (e.g., engine compartments).
- Fire-resistant.
Heavier material reduces flexibility. ▲
- Costly for non-critical applications.
Miniature FFCWearables, IoT sensors- Width: 0.5mm (IEC 60228)
- Trace Pitch: 0.2mm (▲)
- Weight: 8g/m (▲)
Ultra-compact for small devices (e.g., smartwatches).
- High signal density.
Fragile under repeated bending.
- Sensitive to misalignment during assembly.
Chemically Resistant FFCIndustrial automation, chemical labs- Chemical Resistance: Passes ASTM F739 (exposure to 50+ chemicals)
- Coating: Parylene (ASTM D543)
Resists corrosive environments (e.g., labs, factories).
- Enhanced durability.
Heavier coating adds bulk.
- Limited availability for niche chemistries.

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