RF SkyPower – Military-Grade Full-Band RF Chain Solutions
Military-grade RF electronics manufacturing facility

RF SkyPower // Strategic Core // 01

Military-Grade
Full-Band RF
Chain Solutions

30MHz – 6GHz Continuous Coverage  //  GaN High-Power Platform

  • ≥15% Power Headroom Above Rated Spec — Zero Drop Under Thermal Stress
  • <1.5dB Gain Flatness Across Full Band
  • Optimized VSWR — Maximum Signal Transfer
  • 46-Step Military Validation Protocol
ISO 9001:2015 GJB 9001C CE & FCC 400+ Engineers 50,000 m² Facility Global Export Ready
// Chapter 01 — Heritage & Scale

30 Years of RF Heritage

Years Active
30+
RF Industry Heritage
Production Base
50k
Manufacturing Footprint
Skilled Workforce
400+
Specialists on Floor
Monthly Capacity
10k+
Units / Month
ISO 9001:2015Quality Management System
GJB 9001CWeapon Equipment Quality
CE — EUGlobal Export Compliance
FCC — USGlobal Export Compliance

Three decades of institutional RF knowledge, backed by in-house certifications and a 50,000 m² production facility.

Discover Our RF Ecosystem
// Chapter 02 — The Solution

Complete RF Chain
Architecture

We manufacture the entire signal chain — from digital source to radiated output — as one perfectly impedance-matched ecosystem. No integration guesswork. Maximum effectiveness.

GaN broadband jamming module PCBA

// High-Efficiency Power Output

Jamming Modules

GaN-based broadband amplifier cores deliver 30W–200W across 30MHz–6GHz continuously. Vacuum-sintered copper substrate ensures consistent output even under peak thermal load.

  • 30MHz – 6000MHz Continuous Band
  • 30W / 50W / 100W / 150W / 200W
  • CW // Sweep // Pulse // Digital Modulation
  • -40°C to +85°C Operating Range
SDR digital signal source module

// Smart Frequency Hopping

SDR Source

Real-time frequency-hopping digital source covering 100MHz–6GHz with dual independent channels. Compatible with DJI OcuSync, ELRS, Crossfire, and custom FPV protocols.

  • 100MHz – 6GHz Frequency Range
  • Dual Independent Channels (200MHz)
  • OFDM / LFM / GNSS / CW Waveforms
  • RS422 Control Interface
Precision directional horn antenna system

// Precision Directional Control

Antenna System

Omnidirectional and high-gain directional horn series engineered for lossless pairing with our amplifier and SDR outputs. Aircraft-grade aluminium, VSWR <2.0, N-Type tactical connectors.

  • 360° Omni OR Directional High-Gain
  • Up to 250W Power Capacity
  • -40°C to +65°C Operating Temp
  • Extreme Field Deployment Ready
GaN power amplifier PCBA with pure copper thermal base — HZ-JAM-GA-2026
// Core Power — Series HZ-JAM-GA-2026

Wideband GaN
Power Amplifiers

GaN high-efficiency platform with ≥15% power headroom above rated spec. Vacuum-sintered pure copper thermal base and precision impedance matching hold full-rated output from 30MHz to 6GHz — regardless of environment.

// HZ-JAM-GA-2026 — CORE PARAMETERS
BAND
30MHz — 6GHz
Continuous · No Gap
OUTPUT
200W
30 / 50 / 100 / 150 / 200W
Technology
GaN · High-Efficiency
Gain Flatness
<1.5 dB Across Full Band
Protection
VSWR Thermal Over-Current
Waveforms
CW Sweep Pulse Digital Mod
Operating Temp
−40°C to +85°C
≥15%
Power Headroom
<1.5dB
Gain Flatness
17×
Cu Conductivity
125°C
Thermal Swing
// Smart Signal Control — HZSDR1006000-A01

SDR Digital
Signal Source

Real-time frequency hopping across 100MHz–6GHz defeats adaptive drone protocols including DJI OcuSync, ELRS, and Crossfire. One RS422 command reprograms the full emission profile in milliseconds.

// HZSDR1006000-A01 — SIGNAL PARAMETERS
FREQ RANGE
100 MHz – 6 GHz
Bandwidth
100 MHz/ch · 200 MHz Dual
Dynamic Range
>25 dB · 35-Level Adj.
Signal Modes
OFDM LFM GNSS CW
Accuracy
<0.1 MHz Typical
Control I/F
RS422 IN/OUT · Modular
Operating Temp
−40°C to +70°C

// Supported Drone Protocols

ELRS Crossfire FlySky OcuSync LightBridge DJI Series Custom FPV
SDR Digital Signal Source HZSDR1006000-A01 with dual RF output and RS422 control SDR DIGITAL SOURCE // HZSDR1006000-A01
2 CH
Independent Outputs
200MHz
Combined Bandwidth
<200g
Module Weight
4
Signal Waveforms
Wideband Tactical Antenna Systems — ground-based RF antenna and radar array for counter-drone and electronic warfare deployment
// Radiating Element — Series RF-ANT-2026

Wideband Tactical
Antenna Systems

The antenna is the final arbiter of every RF chain. When your GaN amplifier delivers rated output, a mismatched antenna wastes it. Our wideband platform covers 30MHz–6GHz continuously — no band switching, no frequency gaps hostile operators exploit to evade jamming. Precision impedance-matched to the RF SkyPower amplifier and SDR stack from ground up.

// Antenna Series

Series 01 · Omni Cylinder Series 02 · Directional Horn 360° Airspace Coverage High-Gain Precision N-Type Tactical Connector GaN System Matched
Frequency
30 MHz – 6000 MHz (Continuous)
Peak Power
250W (Omni) / 100W Std (Horn)
VSWR
≤ 2.0 (Across Full Band)
Impedance
50 Ω Nominal
Material
Aircraft-Grade Aluminum / Nylon Radome
Operating Temp
-40°C to +65°C
Deployment
Fixed Site / Vehicle Mount / Rapid Deploy
≤ 2.0
VSWR Full Band
250W
Peak Power Rating
20dBi
Max Horn Gain
105°C
Thermal Range Span
// Chapter D-01 — Quality Assurance

The 46-Step Military
Validation Protocol

"While others stop at Step 20 — we continue to Step 46."
500x microscope PCB inspection during IQC incoming quality control
01// Phase One

IQC — Incoming Inspection

Every component is verified under 500× microscopy before assembly begins. Rejecting sub-standard inputs at source is the fastest way to eliminate field failures.

  • 500× Microscope PCB Pad Flatness Check
  • RF Power Transistor I-V Curve Matching
  • Cavity Dimension & Interface Precision
  • X-Ray Void Inspection — Void Rate <2%
PCBA functional calibration and RF performance validation
02// Phase Two

PCBA Functional Validation

Every board undergoes full-chain electrical calibration — gain flatness, VSWR, and thermal protection thresholds confirmed individually on every unit.

  • Vacuum Sintering — Maximum Thermal Contact
  • Conformal Coating & Surface Treatment
  • Full-Chain Precision Calibration (Steps 33–37)
  • VSWR & Thermal Protection Tuning & Test
48-hour burn-in rack running modules at 100% peak power stress test
03// Phase Three

Extreme Stress & Environmental Test

No unit ships without 48 hours of peak-power burn-in, thermal cycling from -55°C to +85°C, and 3-axis random vibration screening — applied to every unit, not just samples.

  • 48h Burn-In at 100% Peak Power (Step 41)
  • Thermal Cycling — -55°C to +85°C Extremes
  • 3-Axis Random Vibration — 10Hz to 2000Hz
  • Post-Cycle Full Electrical Re-verification
// Protocol Completion Pathway — Steps 01 → 46 Industry standard: Step 20  ·  RF SkyPower: Step 46
46
Total Process Steps
<2%
X-Ray Void Rate
100%
Unit-Level Burn-In
500×
PCB Inspection Zoom

46 non-negotiable steps applied to every unit, every time. This is how we deliver batch-to-batch consistency for large defence orders.

See Our Testing Laboratory
// Chapter D-02 — Survival Testing

Engineered to Survive

MIL-STD-810G · GJB 150A · All Tests at 100% Unit Level
48-hour powered aging rack with RF modules under continuous peak-power stress

Active Aging Protocol

Every module runs at 100% rated power for 48 hours before shipping — eliminating early-life failure mechanisms before the unit ever reaches the field.

  • Duration: 48 Hours Continuous at Full Load
  • Monitoring: Real-Time Power & Thermal Logging
  • Objective: Infant Mortality Elimination
  • Coverage: 100% of Production Units
Temperature chamber running powered thermal cycling from minus 55 to plus 85 degrees Celsius

Thermal Cycling Protocol

Units are cycled powered-up through desert heat and arctic cold — because thermal expansion under load is the primary driver of solder joint fatigue and long-term field failure.

  • Cold Extreme: -55°C Storage / -40°C Powered
  • Heat Extreme: +85°C Storage / +60°C Powered
  • Post-Cycle: Full Electrical Re-Analysis
  • Standard: GJB 150.5A / MIL-STD-810G Method 503
3-axis vibration table running GJB 150.16A broadband random vibration test

Kinetic Integrity Test

Broadband random vibration from 10Hz to 2000Hz across all three axes simultaneously — simulating a full operational lifetime of mechanical stress in a controlled environment.

  • Test Environment: 3-Axis Simultaneous
  • Frequency Range: 10Hz – 2000Hz
  • Standard: GJB 150.16A
  • Post-Test: Full RF Performance Re-validation

// Advanced Testing Equipment — RF SkyPower Laboratory

Spectrum Analyzer
Full-band output verification
Vector Network Analyzer
S-parameter & VSWR mapping
High-Precision Oscilloscope
Transient & waveform analysis
Temperature Chamber
-55°C to +85°C active cycling
LCR Meter
Passive component verification
Vacuum Reflow System
Void-free die attachment

Every specification in our datasheets is measured, not estimated. Every unit ships with verified test data.

Explore Custom Engineering
RF engineering team performing circuit simulation and custom frequency plan design
// Chapter D-03 — End-to-End Delivery

Engineering-Driven
Custom RF Manufacturing

Your system has its own frequency plan, form factor, and thermal envelope. Our 100+ RF engineers work from your requirement document to design, simulate, prototype, and manufacture to your exact specification.

100+
RF Engineers
3,000m²
R&D Centre
7 Days
Prototype Lead Time
  • 01Frequency Band Customisation — any band within 30MHz – 6GHz
  • 02Power Level Configuration — 1W to 200W+ modular output
  • 03Interface Protocol Design — RS422, RS232, Ethernet, custom
  • 04Thermal Architecture Optimisation — passive, active or liquid
  • 05OEM / ODM Support — your branding, your enclosure, our core
  • 06Prototype → Mass Production — 7-day sample, 10,000+ units/mo

// Custom Project Delivery Workflow — 4 Phases

Requirement Review
Submit your frequency, power, interface, and form-factor specs. Our engineers respond within 24 hours with feasibility analysis and preliminary circuit topology.
Topology Simulation
Digital twin modelling confirms gain flatness, VSWR, and thermal headroom before any hardware is built — saving weeks of hardware revision cycles.
Prototype & Debug
7-day sample production with fully traceable test report. VSWR matching and P1dB verification via real-time diagnostics. Client approval before production is scaled.
Production & Delivery
10,000+ units per month with ruggedised industrial packaging, unit-level traceability, and export documentation for compliant global shipment.
// Chapter A-01 — Global Footprint

Trusted by Global Defense
& System Integrators

RF SkyPower RF chains are active across six continents — from border installations in the Middle East to counter-drone operations in Southeast Asia.

Airports

Perimeter counter-drone RF chains protecting civilian aviation airspace and runways

Border Protection

Fixed-site and vehicle-mounted systems for national border surveillance and enforcement

Military Bases

Forward operating base and installation aerial threat neutralisation — permanent and deployable

Government Facilities

VIP protection zones, embassies, and sensitive facility RF perimeter defence systems

Critical Infrastructure

Power plants, data centres, and communication hubs protected by full-band aerial security

USA & Canada Europe — Poland · Portugal · Ukraine Middle East — UAE · Jordan South Asia — India Southeast Asia — Thailand · Cambodia Latin America — Brazil · Colombia · Mexico Russia & CIS
// Chapter A-02 — Begin Cooperation

Start Your RF Project
With Engineering Support

Submit your specs and our engineering team responds within 24 hours — a qualified technical assessment, not a sales script. All enquiries handled under strict confidentiality.

  • Counter-Drone System Integrators
  • Defense Procurement Authorities
  • Security Infrastructure Providers
  • RF System Developers & OEM Partners
WhatsApp
+86 158 8974 7408
Response
Technical reply within 24 hours
Confidential Project Handling NDA Available on Request 24h Technical Response MOQ: 1 Unit
// Submit RF Project Requirements Secure Channel Active







    Technical response guaranteed within 24 hours

    All submissions treated as strictly confidential. NDA available on request.