APPLICATION
- Large-scale broadcast studio multi-track audio transmission and remote equipment control
- Intelligent building and super large complex multi-system integrated wiring
- Intelligent manufacturing and industrial automation whole-line control & data acquisition
- Large-scale venue and event multi-system linkage control & audio transmission
- Large-scale scientific research test platform and multi-channel synchronous data acquisition
- Rail transit, large passenger ship and luxury vehicle onboard multi-system control & audio transmission
CONSTRUCTION
|
Conductor Material |
Tinned copper |
|
Conductor Surface / Structure |
7/32AWG |
|
Core Insulation Material |
Foam PE |
|
Screen1 Material |
Bi-Laminate (Alum+Poly) |
|
Drain Material |
Tinned copper |
|
Screen2 Material |
N/A |
|
Material Outer Sheath |
PVC |
CHARACTERISTICS
|
Cable performance(at 20℃) |
Data of product |
|
Inner Conductor DC Resistance |
≤79Ω/km |
SPECIFIATION FOR APPROVAL
|
Impedance |
100±10Ω |
|
Capacitance conductor to conductor |
Nom.41.0pF/m |
|
Capacitance conductor to shielded |
Nom.76.1pF/m |
|
Max.operation voltage |
300V |
|
Operating temperature |
-20℃ to+75℃ |
|
General requirements |
RoHS Compliant |
REGULAR PACKING
100M, 300M, 500M, 1000M, 500FT, 1000FT, Coil/Drum
Structural Design & Signal Benefits
- Structural Design: 24 AWG (7×32) stranded tinned copper conductors, high-performance HDPE insulation, 15 independent twisted pairs with staggered lay-length, 100% coverage individual shielding per pair with dedicated 24 AWG drain wire, symmetrical hierarchical cabling, industrial-grade PVC outer jacket.
- Signal Benefits: Supports 15-channel ultra-high-density synchronous transmission with zero crosstalk; superior EMI/RFI immunity in harsh environments; low attenuation, high fidelity and full-channel consistency; engineering-optimized flexible design for efficient wiring; long-term stable performance and high reliability.
Installation & Performance Considerations
Installation & Performance: Bending radius ≥8×OD, per-pair shielding grounded (≤4Ω); avoid high-voltage interference, inspect insulation (≥100MΩ) with 1000V megohmmeter; control transmission distance, regular maintenance, avoid damage and overloading.
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