Factory Direct High-Definition B-Ultrasound Cable 20-Core 30Awg Coaxial PFA Insulation High Quality 20-Core 30Awg Coaxial Cable
| Procurement Item | Recommended Information |
|---|---|
| Application | High-Definition B-Ultrasound |
| Cable Type | Coaxial Ultrasound Probe Cable |
| Core Count | 20C |
| Conductor Size | 30AWG |
| Conductor Material | Required material / plating |
| Cable Structure | Coaxial |
| Insulation | PFA |
| Shielding | Required shield structure |
| Impedance | Target value, where applicable |
| Capacitance | Target value, where applicable |
| Cable Diameter | Target / maximum allowable OD |
| Cable Length | Finished cable length |
| Flexibility | Bending / routing requirements |
| Connector | Probe-side / equipment-side connector |
| Pinout | Channel assignment |
| Termination | Required termination method |
| Drawing | Cable / assembly drawing |
| Prototype Quantity | Engineering samples |
| Production Volume | Expected recurring quantity |
| Testing | Electrical, dimensional, mechanical and signal requirements |
- Overview
- Recommended Products
Number of signal channels
Power connections
Ground / return conductors
Shield connections
Auxiliary lines
Core assignment
Connector pinout
Conductor material
AWG
Stranding structure
Plating, where applicable
Insulation
Electrical requirements
Flexibility requirements
Inner conductor
Dielectric layer
Shield structure
Shield termination
Coaxial geometry
Overall cable arrangement
Connector interface
Required insulation thickness
Electrical requirements
Cable dimensions
Flexibility
Operating temperature
Mechanical routing
Compatibility with the conductor and shielding structure
Conductor configuration
Coaxial geometry
Capacitance
Impedance, where specified
Cable length
Shielding
Channel-to-channel consistency
Connector termination
Grounding configuration
Shield material
Shield coverage
Grounding method
Shield termination
Required channel isolation
EMI requirements
Connector-side shield continuity
Minimum bending radius
Repeated flexing
Probe movement
Equipment routing
Cable exit direction
Strain relief
Required cable softness
Target OD
Maximum allowable OD
OD tolerance
Probe routing space
Connector entry dimensions
Required bending radius
Connector manufacturer
Connector series
Part number
Contact count
Pin assignment
Connector orientation
Mating interface
Termination method
Strain-relief requirements
Core count
AWG
Conductor material
Coaxial construction
Insulation material
Shielding
Cable diameter
Cable length
Jacket / outer material
Connector
Pin assignment
Termination
Prototype samples
Mass-production configuration
B-ultrasound probe application
20-core configuration
30AWG conductor requirement
Conductor material
Coaxial cable drawing
PFA insulation requirement
Shielding specification
Target impedance, if applicable
Target capacitance, if applicable
Cable OD
Cable length
Flexibility requirements
Connector part number
Pinout / channel assignment
Termination requirements
Prototype quantity
Expected production volume
Required testing
Model |
20C(20×30AWG) |
Size |
OD=12mm |
Color |
Black |
Package |
100m/Roll |
20 Core 30AWG PFA Insulated Ultrasound Probe Cable for Medical Imaging Systems
Product Overview
🩺 HOTTEN 20 Core 30AWG Ultrasound Probe Cable is designed for high-definition ultrasound imaging equipment requiring stable signal transmission, excellent flexibility and reliable electrical performance.
Featuring multi-core coaxial structures and PFA insulation materials, this medical cable provides outstanding resistance to heat, chemicals and mechanical stress for demanding diagnostic applications.
HOTTEN supports customized ultrasound cable solutions including conductor size, core number, insulation materials, shielding structures and connector assembly.
✨ Key Features
🔹 High Definition Signal Transmission
Designed for medical imaging systems requiring:
✓ Stable signal integrity
✓ Low interference
✓ Reliable image transmission
✓ High-frequency performance
🔹 PFA Insulation Material
PFA insulation provides:
✓ Excellent heat resistance
✓ Chemical resistance
✓ High electrical insulation performance
✓ Long-term durability
🔹 Multi-Core Coaxial Structure
20-core configuration supports:
✓ High-density signal transmission
✓ Compact equipment design
✓ Customized probe applications
🔹 Flexible Customization
HOTTEN provides customized solutions:
✓ Core quantity
✓ AWG size
✓ Cable diameter
✓ Shielding structure
✓ Jacket materials
✓ Connector assembly
Applications
Suitable for:
🔹 B Ultrasound Equipment
🔹 Medical Imaging Systems
🔹 Ultrasound Probe Assemblies
🔹 Diagnostic Equipment
🔹 Medical Device OEM Applications
Manufacturing Capability
HOTTEN provides complete OEM cable manufacturing:
✓ Micro coaxial cable production
✓ Medical cable assembly
✓ Precision extrusion
✓ Shielding process
✓ Prototype development
✓ Mass production
Engineering & Procurement Considerations
What Engineers Should Consider When Selecting a 20-Core B-Ultrasound Cable
A B-ultrasound cable connects an ultrasound probe or transducer with the supporting diagnostic equipment. For high-definition ultrasound systems, cable selection should consider core count, conductor size, coaxial construction, signal transmission, shielding, flexibility, cable diameter and connector integration as a complete cable design.
This configuration combines a 20-core, 30AWG coaxial construction with PFA insulation, making it particularly relevant for compact ultrasound probe systems where multi-channel signal transmission and controlled cable construction are required.
Published Product Configuration
| Item | Specification |
|---|---|
| Product Type | B-Ultrasound Cable |
| Application | High-Definition B-Ultrasound |
| Core Configuration | 20-Core |
| Conductor Size | 30AWG |
| Cable Construction | Coaxial |
| Insulation | PFA |
| Cable Length | Customized |
| Cable Diameter | Customized |
| Connector / Termination | Customized |
| Production | Customized |
The key product entities are the 20-core configuration, 30AWG conductors, coaxial construction and PFA insulation.
Key Engineering Requirements
| Engineering Requirement | Key Considerations |
|---|---|
| 20-Core Configuration | Core count should match the ultrasound transducer's signal and electrical architecture. |
| 30AWG Conductor | Conductor size should be selected according to the required signal and mechanical performance. |
| Coaxial Construction | Coaxial structure can provide controlled signal paths and shielding for ultrasound signal transmission. |
| PFA Insulation | PFA should be evaluated according to electrical, dimensional, thermal and mechanical requirements. |
| Signal Integrity | Conductor geometry, dielectric structure, shielding and cable length should be considered together. |
| Channel Consistency | Multi-channel ultrasound cables require consistent electrical and dimensional characteristics across channels. |
| Flexibility | Cable construction should support probe movement, handling and equipment routing. |
| Connector Compatibility | Connector configuration and pin assignment must match the ultrasound probe and equipment interface. |
| Manufacturing Consistency | Core order, OD, electrical characteristics and termination quality should remain stable during production. |
20-Core Configuration Considerations
The 20-core configuration should be mapped against the actual ultrasound probe architecture before production.
Customers should define:
A cable drawing or wiring diagram is strongly recommended because the 20 conductors must remain correctly identified and terminated throughout production.
30AWG Conductor Considerations
The 30AWG conductor provides a defined fine-gauge configuration for the cable.
Engineering teams should confirm:
The final conductor selection should be evaluated together with the coaxial structure and overall cable dimensions.
Coaxial Construction Considerations
The coaxial structure is an important part of this product.
Engineers should evaluate:
For multi-channel ultrasound cables, the relationship between the individual coaxial channels and the complete cable assembly should be defined in the customer's drawing.
PFA Insulation Considerations
PFA is the specified insulation material for this product.
Customers should provide information regarding:
The PFA insulation should be evaluated as part of the complete coaxial geometry because dielectric characteristics can affect electrical performance.
Signal Integrity Considerations
For high-definition B-ultrasound systems, the cable forms part of the complete electrical transmission path between the transducer and diagnostic equipment.
Relevant parameters may include:
The final electrical specifications should come from the customer's ultrasound system design.
Shielding and Channel Isolation
The coaxial construction provides a shielded path around the conductor.
When sourcing the cable, customers should clarify:
For multi-channel ultrasound systems, shielding and grounding should be evaluated together with the transducer and diagnostic-equipment interface.
Flexibility and Probe Routing
Ultrasound probe cables can experience repeated bending and movement during handling.
Engineering teams should define:
The cable should maintain the intended electrical and coaxial construction during the required mechanical movement.
Cable Diameter Considerations
For a 20-core coaxial cable, the final OD is affected by:
Core Count + 30AWG + Coaxial Structure + PFA Insulation + Shielding + Outer Construction
Customers should provide:
A controlled OD is particularly important when the cable needs to fit through a compact probe or handle structure.
Connector and Termination Considerations
The connector is part of the complete ultrasound signal path.
Customers should provide:
For a 20-core cable, the probe-side and equipment-side pinout should be confirmed before prototype production.
Key Procurement Parameters
When sourcing a 20-core 30AWG coaxial B-ultrasound cable, procurement teams should confirm:
| Procurement Item | Recommended Information |
|---|---|
| Application | High-Definition B-Ultrasound |
| Cable Type | Coaxial Ultrasound Probe Cable |
| Core Count | 20C |
| Conductor Size | 30AWG |
| Conductor Material | Required material / plating |
| Cable Structure | Coaxial |
| Insulation | PFA |
| Shielding | Required shield structure |
| Impedance | Target value, where applicable |
| Capacitance | Target value, where applicable |
| Cable Diameter | Target / maximum allowable OD |
| Cable Length | Finished cable length |
| Flexibility | Bending / routing requirements |
| Connector | Probe-side / equipment-side connector |
| Pinout | Channel assignment |
| Termination | Required termination method |
| Drawing | Cable / assembly drawing |
| Prototype Quantity | Engineering samples |
| Production Volume | Expected recurring quantity |
| Testing | Electrical, dimensional, mechanical and signal requirements |
OEM Customization
HOTTEN supports customized B-ultrasound cable development according to the customer's probe and diagnostic-system requirements.
Customization may include:
For OEM projects, the final cable should be designed around the actual ultrasound transducer and equipment interface.
Supplier Evaluation Checklist
When evaluating a supplier for a 20-core coaxial B-ultrasound cable, procurement teams should consider:
① Multi-Channel Coaxial Capability
Can the supplier consistently manufacture and assemble 20 coaxial signal paths?
② Fine-Gauge Processing
Can the supplier reliably process the specified 30AWG conductors?
③ PFA Insulation Capability
Can the supplier maintain stable PFA insulation dimensions and electrical characteristics?
④ Signal Integrity Capability
Can the supplier control coaxial geometry, shielding and other signal-related requirements?
⑤ High-Density Termination
Can the supplier accurately manage 20-core connector pinout and termination?
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:
20C + 30AWG + Coaxial + PFA + OD + Cable Length + Connector + Pinout
HOTTEN B-Ultrasound Cable Engineering Support
HOTTEN provides customized high-definition B-ultrasound coaxial cable solutions for ultrasound probe and transducer applications.
This product is differentiated by its 20-core, 30AWG coaxial construction with PFA insulation, providing a defined multi-channel cable configuration for medical ultrasound systems.
For OEM development, customers can provide the transducer specification, cable drawing, connector information and electrical requirements for technical evaluation and customized production.



Our Services & Strength







Why Choose HOTTEN
✓ Experienced medical cable manufacturer
✓ Micro coaxial cable technology
✓ Customized OEM solutions
✓ UL and ISO quality management system
✓ Support from prototype to mass production
FAQ
Q1: What is a 20 core ultrasound cable used for?
A 20 core ultrasound cable is commonly used in ultrasound probes and medical imaging systems where multiple signal channels require reliable transmission.
Q2: Can HOTTEN customize ultrasound probe cables?
Yes. HOTTEN can customize core numbers, AWG sizes, insulation materials, shielding structures and connectors according to customer requirements.
Q3: Why use PFA insulation for medical cables?
PFA provides excellent electrical insulation, temperature resistance and chemical stability, making it suitable for demanding medical applications.
Q4: Does HOTTEN manufacture medical cable assemblies?
Yes. HOTTEN provides customized medical cable assemblies from cable design, prototype development to mass production.
