0.5mm Pitch LVDS Cable with HRS DF80 50 Pin Connector
Technical Specifications
| Item | Specification |
|---|---|
| Cable Type | LVDS Cable Assembly |
| Application | LCD / Display / Camera / Video Transmission |
| Signal Type | LVDS / High-Speed Differential Signal |
| Connector | HRS DF80 |
| Connector Configuration | 50 Pin |
| Connector Pitch | 0.5mm |
| Cable Structure | High-Density Multi-Conductor Cable |
| Conductor | Copper / Silver Plated Copper / Copper Alloy |
| Insulation | FEP / PFA / Customized |
| Shielding | Tinned Copper / Silver Plated Copper / Customized |
| Impedance | Customized according to application |
| Cable Length | Customized |
| Pin Assignment | Customized |
| Termination | HRS DF80 / Customized |
| Signal Application | Display Signal / Video Signal / High-Speed Data |
| Cable Structure Customization | Available |
| OEM Service | Prototype / Engineering Validation / Volume Production |
- Overview
- Recommended Products
0.5mm Pitch Design — Suitable for compact, high-density electronic equipment.
HRS DF80 50-Pin Connector — High-density connector configuration for multi-channel signal transmission.
LVDS High-Speed Transmission — Designed for display and video signal applications.
Compact Cable Structure — Suitable for space-constrained internal cable routing.
Custom Cable Length — Cable length and assembly configuration can be customized according to application requirements.
OEM Manufacturing — Supports customized connector, pin assignment, cable structure and production requirements.
LCD and display systems
Industrial displays
Camera and imaging equipment
Embedded display systems
Compact electronic devices
High-speed video transmission systems
Consumer electronics
Cable length
Conductor specifications
Insulation material
Shielding structure
Connector type
Connector pin assignment
Number of conductors
Cable routing and assembly structure
Connector model and manufacturer
Connector pitch and pin count
Pin assignment
Cable length
Cable structure
Conductor or wire size
Shielding requirements
Electrical requirements
Cable diameter or available routing space
Minimum bending requirements
Connector orientation and termination requirements
Mating PCB or equipment information
Drawings, samples, or existing cable assemblies
0.5mm Pitch LVDS Cable with HRS DF80 50 Pin Connector
HOTTEN provides customized 0.5mm pitch LVDS cable assemblies with HRS DF80 50-pin connectors for high-speed display and video transmission applications.
Designed for compact electronic systems, this LVDS cable solution combines a fine-pitch connector structure with high-density wiring to support reliable signal transmission where installation space is limited.
Key Features
Applications
This custom LVDS cable assembly can be used in:
Customized LVDS Cable Manufacturing
Different electronic devices require different cable lengths, connector configurations and electrical characteristics.
HOTTEN can customize the LVDS cable assembly according to customer drawings, samples and application requirements, including:
For projects requiring a compact 0.5mm pitch LVDS cable with HRS DF80 50-pin connectivity, HOTTEN can provide customized development and manufacturing support from prototype to volume production.
Why Choose HOTTEN?
HOTTEN focuses on high-precision electronic wires, micro coaxial cables and customized cable assemblies for advanced electronic applications.
Our manufacturing capabilities cover fine-pitch, high-density and compact cable structures for applications requiring reliable signal transmission and precise dimensional control.
Whether you need a standard LVDS configuration or a customized HRS DF80 50-pin LVDS cable assembly, HOTTEN can develop the cable according to your equipment and interface requirements.
Engineering & Procurement Considerations for 0.5mm Pitch LVDS Cables
Why is 0.5mm pitch important for an LVDS cable assembly?
A 0.5mm connector pitch allows a relatively high number of electrical contacts to be arranged within a compact connector footprint. This can be important in display, camera, and other space-constrained electronic systems where board space and cable routing are limited.
For an LVDS cable assembly, connector pitch should be considered together with pin count, cable construction, connector height, bending requirements, and the available installation space. A smaller pitch does not automatically mean better electrical performance; the complete cable and connector design must be matched to the system requirements.
How does connector pin count affect LVDS cable design?
The number of connector pins determines how many electrical connections must be accommodated within the cable assembly. A 50-pin LVDS connector, for example, requires the cable structure, conductor arrangement, termination, and pin assignment to be designed around the corresponding interface.
Engineers should define the required pin count and pin assignment early in the development process. This helps ensure that the cable assembly matches the PCB interface and avoids redesigns during prototyping or production.
What should engineers consider when designing a high-speed LVDS cable assembly?
LVDS cable design should consider more than the connector alone. Important factors can include signal integrity, cable construction, conductor size, shielding, electrical coupling between adjacent signal paths, cable length, routing space, and connector termination.
For compact high-speed applications, micro coaxial or other controlled cable constructions may be considered when the system requires better control of individual signal paths or electrical interference. The appropriate construction depends on the actual interface and system requirements rather than simply the nominal LVDS interface.
How should engineers select the cable structure for a compact LVDS application?
The cable structure should be selected according to the required signal configuration, available space, flexibility, cable length, and electrical requirements.
A compact micro coaxial construction can be useful when multiple signal paths must be routed through a small space while maintaining separation between individual signal paths. Other cable constructions may be appropriate when the application has different mechanical or electrical priorities.
Therefore, engineers should evaluate the complete assembly—including cable, connector, termination, and routing—not just the wire itself.
What specifications should be provided when developing a custom 0.5mm pitch LVDS cable?
For an accurate engineering evaluation and quotation, buyers should normally provide as much of the following information as available:
If some specifications are not yet finalized, an engineering supplier can help determine a suitable cable construction based on the application and interface requirements.
What should buyers evaluate when sourcing a custom LVDS cable assembly?
Buyers should evaluate both the cable itself and the supplier's ability to manufacture the complete assembly consistently.
Key considerations include experience with fine-gauge and micro coaxial cable assemblies, connector termination capability, pin-assignment control, dimensional consistency, sample development, inspection procedures, and the ability to transition from prototype quantities to volume production.
For customized LVDS assemblies, providing an existing sample, drawing, connector information, or interface specification can significantly improve the accuracy of engineering evaluation and quotation. A supplier with both cable-processing and assembly capabilities can also reduce coordination between multiple vendors.
Engineering & Procurement Considerations
A 0.5mm Pitch LVDS Cable with HRS DF80 50 Pin Connector is designed for compact electronic systems that require a high-density LVDS interconnection. When selecting this type of cable assembly, engineers should evaluate the connector interface, 50-pin configuration, 0.5mm pitch, signal requirements, cable length, routing conditions, and mechanical space.
Engineering Considerations
50-Pin High-Density Interface
The 50-pin configuration should match the signal architecture of the target display, camera, or electronic module. Pin assignment and signal mapping should be verified before cable assembly production to ensure compatibility with the system interface.
0.5mm Connector Pitch
A 0.5mm pitch provides a compact connector interface for systems where PCB and cable routing space are limited. Engineers should confirm the connector pitch, contact arrangement, mating dimensions, and available clearance during mechanical design.
HRS DF80 Connector Compatibility
The cable assembly is configured around the HRS DF80 50-pin connector interface. The exact connector part number, mating connector, contact orientation, and termination requirements should be confirmed during the engineering stage.
LVDS Signal Requirements
LVDS cable assemblies should be evaluated according to the requirements of the complete signal path. Cable construction, conductor configuration, shielding, termination, cable length, and connector selection can all affect signal transmission performance.
Micro-Space Routing
Compact electronic equipment often requires cable routing through restricted spaces. Cable length, bending direction, exit orientation, and mechanical clearance should therefore be considered when defining the final cable assembly configuration.
Mechanical and Electrical Integration
The cable should not be selected only by connector model. The mechanical interface, electrical signal assignment, cable construction, and installation environment should be reviewed together to ensure proper integration with the target equipment.
Procurement Considerations
When sourcing a 0.5mm Pitch LVDS Cable with HRS DF80 50 Pin Connector, OEM buyers should provide the available technical information, including:
| Procurement Item | Recommended Information |
|---|---|
| Cable Type | LVDS Cable Assembly |
| Connector | HRS DF80 |
| Pin Count | 50 Pin |
| Pitch | 0.5 mm |
| Application | LVDS display, camera, or compact electronic system |
| Cable Length | Required finished length |
| Conductor Configuration | Required cable/core configuration |
| Shielding | Required shielding structure, if applicable |
| Connector Part Number | Exact HRS DF80 part number or drawing |
| Mating Connector | Target mating connector specification |
| Pinout | Signal assignment and termination requirements |
| Cable Routing | Bend direction, exit orientation, and installation path |
| Mechanical Clearance | Available installation space |
| Technical Documents | Drawing, sample, BOM, connector specification, or pinout |
| Quantity | Prototype, sample, pilot production, or mass production |
OEM Customization
HOTTEN supports customized LVDS cable assemblies based on connector model, pin count, pitch, cable length, pinout, mechanical dimensions, drawings, samples, and application requirements.
For HRS DF80 50-pin, 0.5mm pitch LVDS cable projects, customers can provide the connector part number, mating interface, cable dimensions, electrical requirements, and installation conditions for engineering evaluation and prototype-to-production sourcing.
FAQ
What is a 0.5mm pitch LVDS cable?
A 0.5mm pitch LVDS cable uses a compact connector and high-density wiring structure designed for space-constrained applications requiring high-speed differential signal transmission.
What is the HRS DF80 connector used for?
The HRS DF80 series is a high-density connector family used in compact electronic applications where reliable multi-pin signal connections and reduced installation space are important.
Can the HRS DF80 50-pin LVDS cable be customized?
Yes. HOTTEN can customize cable length, conductor configuration, shielding, connector configuration, pin assignment and other assembly requirements according to customer specifications.
What applications use LVDS cable assemblies?
LVDS cable assemblies are commonly used for LCD displays, cameras, imaging equipment, embedded systems and other electronic devices requiring high-speed signal transmission.
Does HOTTEN support OEM LVDS cable production?
Yes. HOTTEN supports OEM development and manufacturing, including prototype samples, engineering validation and volume production.
