MCC 45Ω 40AWG(PFA)High Temperature Micro Coaxial LVDS Cable for Electronics Automotive & Medical
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Product name
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40AWG(26AWG-36AWG -46AWG -50AWG) Micro Coaxial Cable
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Connector
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for FPC,FPCA,JAE,KEL,HONDAOther Coaxial Cable Connectors
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Conductor material
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Silver Plated Copper Alloy,Silver Plated Copper
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Insulation
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PFA
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Shielding
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Silver Plated Copper (Alloy),Tinned Copper( Alloy)
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Sheath Color
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Black, White, Green, Red, Yellow, Orange, Blue, Brown, Purple, Gray...
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Sheath material
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PFA/FEP/PET TAPE
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OD
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0.35mm(0.1mm-2.0mm)
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Rating voltage
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30v
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Rating temperature
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80℃
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Characteristic Impedance
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42.5Ω、45Ω、50Ω
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Certification
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ROHS/REACH/UL/ISO9001
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Cable Advantage
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Ultra-fine size, High Frequency Transmission, Low Loss, Anti-interference,
High Flexibility, Bending Resistance
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Application
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Laptop, tablet, foldable phone, surveillance camera, drone,
reverse imaging radar, pylon camera,Medical Endoscope,Ultrasound Prboe
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- Overview
- Recommended Products
- Silver plated copper alloy
- Silver plated copper
- PFA
- FEP
- PET Tape
- Silver plated copper alloy shielding
- Tinned copper alloy shielding
- PFA
- FEP
- PET Tape
Target impedance
Impedance tolerance
Measurement method
Measurement frequency or test conditions, where applicable
Cable length
Connector configuration
Conductor material
Plating
AWG
Stranding structure
Insulation
Required flexibility
Electrical requirements
Continuous operating temperature
Maximum temperature exposure
Exposure duration
Temperature during cable movement
Insulation requirements
Jacket / sheath requirements
Connector temperature limitations
Differential-pair configuration
Characteristic impedance
Conductor geometry
Dielectric structure
Shielding
Cable length
Connector termination
Pin assignment
Routing near other electronic components
Shield material
Shield coverage
Shield termination
Grounding method
Connector-side shield continuity
Required EMI performance
Target OD
Maximum allowable OD
OD tolerance
Minimum bending radius
Routing clearance
Connector entry dimensions
Strain relief
Required bending radius
Repeated bending conditions
Static or dynamic routing
Cable movement frequency
Installation direction
Strain-relief requirements
High-speed electronic equipment
Compact imaging systems
Medical electronics
High-density electronic interconnects
Temperature-sensitive electronic modules
Other LVDS-based systems
Connector manufacturer
Connector series
Part number
Contact count
Pitch
Pin assignment
Connector orientation
Termination method
Mating interface
Strain relief requirements
AWG
Conductor material
Impedance
Insulation / dielectric
Shielding
Cable diameter
Cable length
Jacket / sheath material
High-temperature construction
Connector
Pin assignment
Termination
Prototype samples
Mass-production configuration
LVDS interface specification
Target 45Ω impedance and tolerance
40AWG conductor requirement
Conductor material
PFA requirement
Temperature profile
Target cable OD
OD tolerance
Shielding requirement
Cable length
Flexibility / bending requirements
Connector part number
Pinout
Termination drawing
Application environment
Prototype quantity
Expected production volume
Required testing
Product Overview
40AWG Micro Coaxial LVDS Cable for High Speed Signal Applications
HOTTEN 40AWG Micro Coaxial LVDS Cable is designed for high-speed signal transmission applications requiring compact size, stable impedance control and excellent flexibility.
Featuring a 45Ω characteristic impedance, PFA insulation structure and ultra-fine 40AWG conductor design, this cable provides reliable signal integrity and high-temperature performance for advanced electronic systems.
The cable supports customized configurations including conductor materials, impedance requirements, shielding structures, outer diameter and connector assembly to meet different application requirements.
Key Features
High Performance Micro Coaxial LVDS Solution
🔹 40AWG ultra-fine conductor structure
🔹 45Ω characteristic impedance
🔹 PFA insulation material
🔹 High temperature resistance
🔹 Low signal loss performance
🔹 Excellent EMI shielding capability
🔹 High flexibility and bending resistance
🔹 Customized cable structures available
Cable Structure
Precision Micro Coaxial Construction
Conductor
Options:
Insulation
Material:
Shielding
Options:
Outer Sheath
Options:
Applications
High Density Electronic Applications
Suitable for:
💻 Laptop Display Systems
📱 Tablet Devices
🚁 UAV / Drone Equipment
📷 Camera Modules
🏥 Medical Endoscope Systems
🩺 Ultrasound Probe Equipment
🚗 Automotive Electronic Systems
Customization Options
HOTTEN provides customized Micro Coaxial LVDS solutions:
✔ Impedance (42.5Ω / 45Ω / 50Ω)
✔ AWG Size
✔ Cable Diameter
✔ Conductor Material
✔ Shielding Structure
✔ Insulation Material
✔ Connector Assembly
✔ Cable Length







Engineering & Procurement Considerations
What Engineers Should Consider When Selecting a 45Ω 40AWG Micro Coaxial LVDS Cable
A micro coaxial LVDS cable is used for high-speed differential signal transmission in compact electronic systems. This MCC configuration combines 45Ω characteristic impedance, 40AWG fine-gauge conductors, PFA construction and high-temperature capability, making it suitable for applications where signal integrity, compact dimensions and environmental resistance need to be considered together.
For OEM applications, cable selection should evaluate impedance, conductor size, dielectric structure, shielding, cable diameter, temperature requirements, flexibility and connector integration as one complete interconnect solution.
Key Engineering Requirements
| Engineering Requirement | Key Considerations |
|---|---|
| 45Ω Impedance | The cable construction should match the target LVDS system impedance and specified tolerance. |
| 40AWG Fine-Gauge Conductor | Fine-gauge construction supports compact, high-density cable routing. |
| LVDS Signal Transmission | Differential-pair construction and cable geometry should match the requirements of the target LVDS interface. |
| Micro Coaxial Structure | Individual coaxial signal paths can help provide controlled transmission and shielding in compact applications. |
| High-Temperature Capability | Conductor, dielectric, shielding and PFA components should be evaluated against the customer's temperature profile. |
| EMI Control | Shielding should be selected according to signal sensitivity and electromagnetic environment. |
| Compact Routing | Cable OD and connector dimensions should fit the available installation space. |
| Flexibility | Cable construction should support the required routing and bending conditions. |
| Manufacturing Consistency | Impedance, conductor dimensions, cable OD and termination quality should remain stable during production. |
45Ω Impedance Considerations
The 45Ω characteristic impedance is a key technical identifier for this product.
When specifying the cable, engineers should define:
Impedance is influenced by the relationship between:
Conductor Geometry + Dielectric Structure + Shielding + Cable Construction
Therefore, the cable and connector assembly should be evaluated as a complete transmission path for high-speed applications.
40AWG Conductor Considerations
The 40AWG conductor provides a fine-gauge configuration for compact micro coaxial applications.
Procurement teams should confirm:
Fine-gauge conductors can help reduce overall cable size, but the selected AWG must remain compatible with the required electrical and mechanical performance.
PFA and High-Temperature Considerations
PFA is a key material entity for this product and should be evaluated together with the complete cable structure.
For high-temperature applications, customers should define:
High-temperature capability should not be inferred only from the word “PFA”; the complete cable construction and connector assembly need to be evaluated against the customer's actual operating conditions.
LVDS Signal Integrity Considerations
For LVDS applications, the entire differential signal path should be considered.
Important engineering parameters may include:
Where the customer has an established LVDS specification, it should be included in the cable drawing or RFQ.
Shielding and EMI Control
Micro coaxial cable construction provides a shielded transmission structure.
Engineers should specify:
Shielding should be designed together with impedance and connector termination to maintain consistent high-speed signal performance.
Cable Diameter and Mechanical Routing
For compact LVDS applications, cable OD is an important engineering parameter.
Customers should define:
A smaller cable is not automatically a better cable; the required OD must be balanced with impedance, shielding, flexibility and mechanical reliability.
Flexibility Considerations
Although high-temperature cable construction emphasizes environmental resistance, flexibility may also be important depending on the installation environment.
Engineering teams should define:
The cable construction should maintain its electrical and shielding characteristics under the intended mechanical conditions.
Typical Application Considerations
This type of 45Ω 40AWG PFA micro coaxial LVDS cable may be considered for:
For medical projects, the final cable construction should be evaluated against the requirements of the specific medical device.
Connector and Termination Considerations
The connector is part of the overall signal path and can affect compatibility and high-speed performance.
Customers should provide:
For LVDS assemblies, the connector and cable should be reviewed together rather than independently.
Key Procurement Parameters
When sourcing a 45Ω 40AWG PFA micro coaxial LVDS cable, procurement teams should confirm:
| Procurement Item | Recommended Information |
|---|---|
| Product Type | Micro Coaxial LVDS Cable |
| Impedance | 45Ω |
| Conductor Size | 40AWG |
| Conductor Material | Required material / plating |
| Insulation / Dielectric | PFA or specified material |
| Shielding | Required shielding structure |
| Temperature | Continuous and peak operating temperature |
| Cable OD | Target / maximum allowable OD |
| OD Tolerance | Required dimensional tolerance |
| Cable Length | Finished cable length |
| Flexibility | Bending / routing requirements |
| Connector | Manufacturer / model / part number |
| Pinout | Differential pair and contact assignment |
| Termination | Connector termination method |
| Drawing | Cable / assembly drawing |
| Prototype Quantity | Engineering samples |
| Production Volume | Expected recurring quantity |
| Testing | Impedance, signal, electrical and dimensional requirements |
OEM Customization
HOTTEN can customize the micro coaxial LVDS cable according to customer electrical and mechanical requirements.
Customization may include:
For OEM projects, the final construction should be developed around the customer's LVDS interface, temperature conditions and mechanical architecture.
Supplier Evaluation Checklist
When evaluating a 45Ω high-temperature micro coaxial LVDS supplier, procurement teams should consider:
① Impedance-Control Capability
Can the supplier maintain the required 45Ω impedance and tolerance?
② Fine-Gauge Processing
Can the supplier consistently process 40AWG conductors?
③ High-Temperature Material Capability
Can the supplier provide and control PFA-based cable construction for the customer's operating conditions?
④ LVDS Signal Capability
Can the supplier coordinate conductor geometry, shielding, dielectric structure and termination for high-speed differential transmission?
⑤ Micro-Coaxial Manufacturing Capability
Can the supplier maintain consistent coaxial geometry and shielding?
⑥ Prototype-to-Mass-Production Support
Can the supplier support engineering samples and recurring production?
Recommended RFQ Information
For faster engineering evaluation and quotation, customers are recommended to provide:
For this product, the most important RFQ combination is:
45Ω + 40AWG + PFA + Temperature Requirement + Cable OD + Cable Length + Connector
HOTTEN Micro-Coaxial LVDS Engineering Support
HOTTEN provides customized micro coaxial LVDS cable solutions for compact electronic and medical applications. This configuration is defined by 45Ω impedance, 40AWG fine-gauge construction, PFA-based cable construction and high-temperature application requirements.
For OEM projects, customers can provide their LVDS specification, cable drawing, temperature profile and connector information for engineering evaluation and customized production.
Why Choose HOTTEN
Professional Micro Coaxial Cable Manufacturer
Precision Signal Transmission Capability
HOTTEN specializes in ultra-fine coaxial cable development for high-density electronic and medical applications.
Customized Engineering Support
Cable structures can be optimized according to electrical performance, mechanical requirements and application environments.
Reliable Quality Control
Testing equipment ensures stable impedance, insulation performance and product consistency.
FAQ
Q1: What is a Micro Coaxial LVDS Cable?
A Micro Coaxial LVDS Cable is a high-speed signal cable designed for compact electronic systems requiring controlled impedance and low signal interference.
Q2: What applications use 40AWG Micro Coaxial Cable?
40AWG Micro Coaxial Cable is commonly used in displays, cameras, drones, medical devices and other high-density electronic equipment.
Q3: Why choose PFA insulation for this cable?
PFA provides excellent temperature resistance, chemical stability and reliable electrical insulation for demanding environments.
Q4: Can HOTTEN customize impedance and cable structure?
Yes. HOTTEN supports customized impedance values, conductor materials, shielding structures, dimensions and connector solutions.