









Messi and Paoloni JUMPER Hyperflex 10
€40.92 – €70.45 incl. VAT
Hyperflex 10 is our new, better performing with lower losses cable. It is easy to use and more flexible.
- High grade screening efficiency
- Watertight connectors
- Pre-assembled coax jumpers
- Best velocity ratio in the coax range: 87%
- Excellent performances with limited signal loss
- Flexible, lightweight and well balanced
Each cable assembly is laboratory tested and is delivered with its own TEST REPORT according to Messi & Paoloni quality system certifications!

Composition of Hyperflex 10
Jacket: UV-resistant black PVC overall 10.3 mm (0.405″)
Reactive braid: 85% screening – 192 wires of copper-clad aluminum made with 24 spool machines (instead of 16). Thanks to 50% more crossovers, grants exceptional screening attenuation and reacts to twisting and vending like a spring
Foil: 100% screening – first screen made of copper with an applied PE-layer, prevents cracking due to short radius bends
Dielectric: High pressure physical injection foamed polyethylene triple layer – overall 7,3 mm (0.287″)
Inner conductor: 19x0.59 mm copper wires – overall 2.9 mm (0.114″)
Comparison between Hyperflex 10, LMR-400 and RG-58 Cable Assemblies
| Hyperflex 10 | LMR-400 | RG-58 | |
|---|---|---|---|
| Inner Conductor | Copper wire | Solid copper/aluminum | Tinned copper |
| Dielectric | Gas injected foam polyethylene Triple Layer | Gas injected foam polyethylene | Solid polyethylene |
| Foil | Bare copper + PE 100% | Aluminum 100% | - |
| Braid | 85% screening, copper clad Al 78%, 24 spools braiding (50% more crossovers), copper over copper = correct matching | Tin clad copper 95%, 16 spools braiding, tin over аluminum = galvanic c. | 92% screening, 16 spools braiding, 112 wires of tinned copper |
| Jacket | UV resistant PVC | UV resistant polyethylene | UV resistant PVC |
| Velocity Ratio | 87% | 85% | 66% |
| Screening Efficiency (SA) | >105 dB | >90 dB | >55 dB |
| Rohs Compliant | Yes | Yes | - |
| Attenuation (Maximum cable assembly insertion loss over 10 m length at 25°C) | 868 MHz - 1,2 dB 915 MHz - 1,3 dB | 868 MHz - 1,4 dB 915 MHz - 1,5 dB | 868 MHz - 5,2 dB 915 MHz - 5,3 dB |
Messi and Paoloni‘s cable modules substantially increase the radio frequency signal spread and coverage for Helium Hotspot devices such as the RAK Hotspot Miner and the HNT Nebra Outdoor/Indoor Hotspot Miner. The high-efficient upgrade raises earning potential due to the more productive transmission of RF signals from your Hotspot device to the Antenna.
The biggest advantage is the high-speed return of the initial investment for these performance-critical components of the system, due to the low price of the assemblies. Changes in the regulatory system now allow reduced output power of devices which directly affects the Hotspot performance. It also represents an additional challenge in mining Helium HNT tokens.
The use of Hyperflex 10 assemblies at the very moment is important more than ever due to the recent restrictions on output power in Europe. Till now Hotspot devices used to have a higher output rating. “RG” cables are no longer the preferred option to use between Helium devices and Antennas because of their high loss performance. They also tend to increase the attenuation over time which reduces the Hotspot capacity and coverage.

Get your Hyperflex 10
TECHNICAL SPECIFICATIONS
Electrical Data
| Impedance @200 Mhz: | 50 Ohm ± 3 |
| Minimum bending radius: | up to 15 bends: 80 mm (3.15 in); single bend (choke): 40 mm (1.57 in) |
| Temperature: | -40°C to +60°C (-40°F to +140°F) |
| Capacitance: | 78 pF/m ± 2 (23.8 pF/ft ± 2) |
| Velocity ratio: | 87% |
| Screening Efficiency (SA): | 100-2000 MHz >105 dB |
| Screening Class: | A++ |
| Inner conductor resistance: | 3,6 Ohm/Km (1.1 Ohm/1000 ft) |
| Outer conductor resistance: | 12 Ohm/Km (3.7 Ohm/1000 ft) |
| Tension test (spark test): | 8 kV |
| Net weight (100 m/100 ft): | 11,2 Kg (7.5 lb) |
| Maximum peak power: | 13.000 WATT |
| Connectors: | UHF (PL), N, BNC, SMA, TNC, 7/16 |
SRL
| 0,3-600 MHz | >30 dB |
| 600-1200 MHz | >25 dB |
| 1200-2000 MHz | >20 dB |
Attenuation (20°C/68°F)
| Frequency | dB/100m | dB/100ft |
| 1,8 MHz | 0,8 | 0,2 |
| 3,5 MHz | 1,0 | 0,3 |
| 7 MHz | 1,1 | 0,3 |
| 10 MHz | 1,3 | 0,4 |
| 14 MHz | 1,5 | 0,4 |
| 21 MHz | 1,8 | 0,5 |
| 28 MHz | 2,0 | 0,6 |
| 50 MHz | 2,7 | 0,8 |
| 100 MHz | 3,9 | 1,1 |
| 144 MHz | 4,7 | 1,4 |
| 200 MHz | 5,6 | 1,7 |
| 400 MHz | 8,3 | 2,5 |
| 430 MHz | 8,6 | 2,6 |
| 800 MHz | 11,9 | 3,6 |
| 1000 MHz | 13,4 | 4,1 |
| 1296 MHz | 15,4 | 4,7 |
| 2400 MHz | 21,8 | 6,6 |
| 3000 MHz | 24,6 | 7,5 |
| 4000 MHz | 29,1 | 8,8 |
| 5000 MHz | 33,1 | 10,0 |
| 6000 MHz | 36,9 | 11,2 |
| 7000 MHz | 40,7 | 12,4 |
| 8000 MHz | 44,2 | 13,4 |
| 9000 MHz | 47,5 | 14,4 |
| 10.000 MHz | 50,7 | 15,4 |
Power Handling (40°C/104°F)
| Frequency | Max power |
| 1,8 MHz | 9927 W |
| 3,5 MHz | 7721 W |
| 7 MHz | 5990 W |
| 10 MHz | 5186 W |
| 14 MHz | 4483 W |
| 21 MHz | 3777 W |
| 28 MHz | 3357 W |
| 50 MHz | 2518 W |
| 100 MHz | 1759 W |
| 144 MHz | 1460 W |
| 200 MHz | 1226 W |
| 430 MHz | 808 W |
| 800 MHz | 581 W |
| 1000 MHz | 516 W |
| 1296 MHz | 449 W |
| 2400 MHz | 319 W |
| 3000 MHz | 282 W |
| 4000 MHz | 239 W |
| 5000 MHz | 210 W |
| 6000 MHz | 188 W |
| 7000 MHz | 171 W |
| 8000 MHz | 157 W |
| 10.000 MHz | 137 W |
In compliance with:
CEI 46-1 (construction parameters); EN 50117 (screening efficiency); CEI EN 50289 (SA test methods); R118 (ISO7622-1); IEC 60332-1-2 (cables with PVC and LSZH jacket); PR305/11 (EN50575:2014 - DoP number: MP00103)
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