Table of Contents
CHAPTER 1 — GENERAL INFORMATION
1-1. SCOPE
This manual covers the V-Beam Antenna, a specialized antenna for operation on 40M (7.0–7.3 MHz), 20M (14.0–14.35 MHz). Design approach: Two long wire elements arranged in a V-shape from a common feedpoint; bidirectional pattern along the V bisector.
1-2. APPLICABLE REFERENCES
- ARRL Antenna Book — Specialized and Experimental Antennas
- NEC2 model: v_beam.nec (in antenna directory)
- FCC OET Bulletin 65 — RF Exposure Evaluation
1-3. SAFETY PRECAUTIONS
CHAPTER 2 — THEORY OF OPERATION
2-1. DESIGN PRINCIPLES
Two long wire elements arranged in a v-shape from a common feedpoint; bidirectional pattern along the v bisector. Key parameters: 60–120 ft legs; 120–180° apex angle; terminated or non-terminated variants; directional gain 4–8 dBi on bisector.
2-2. RADIATION CHARACTERISTICS
Gain: 4–8 dBi bidirectional along bisector. Efficiency: 75–88%. Feed impedance: 500–800 Ω at apex (10:1 unun or ATU). The pattern and polarization depend on the specific antenna geometry; consult the NEC2 model for accurate polar plots and gain/elevation data.
2-3. PROPAGATION APPLICATION
This antenna is optimized for its specific application (see subtitle). Operating it outside the designed frequency range or in a different orientation from the NEC2 model will result in degraded performance — consult the simulation before making substitutions.
CHAPTER 3 — MATERIALS AND CONSTRUCTION
3-1. BILL OF MATERIALS
| Qty | Item | Specification |
|---|---|---|
| Per NEC model | Conductor elements | Dimensions from NEC2 wire list; use copper or aluminum per design frequency |
| 1 | Feed connector | SO-239 or N-type; 500–800 Ω at apex (10:1 unun or ATU) system |
| 1 | Support hardware | UV-stable; sized for operating environment (wind, ice load) |
| As needed | Feed line | RG-213 or LMR-400; match to feed impedance 500–800 Ω at apex (10:1 unun or ATU) |
3-2. CRITICAL DIMENSIONS
All critical dimensions are embedded in the NEC2 model wire card (GW) definitions. Extract from v_beam.nec for precise construction reference.
CHAPTER 4 — ASSEMBLY PROCEDURES
- Extract all element lengths and spacings from NEC2 model file v_beam.nec (GW card dimensions). Convert from meters to inches or feet for construction.
- Fabricate each element to ±1 mm tolerance (VHF/UHF) or ±0.5 in (HF). Label elements before assembly.
- Assemble support structure. Verify element positions match NEC model geometry. Use non-conductive fasteners where element isolation is required.
- Install feed connector at designed feedpoint location. Install any required matching network (gamma match, balun, transformer).
- Connect feed line. Install common-mode choke (Mix-31 toroid) at feedpoint. Route feed line to minimize coupling with antenna elements.
- Perform SWR measurement per Chapter 5 before installing at full height.
CHAPTER 5 — CALIBRATION PROCEDURE
- SOLT calibrate NanoVNA at feedpoint (antenna connector).
- Set sweep range: ±10% of design center frequency.
- Connect NanoVNA to antenna. Record SWR minimum and frequency, R + jX at resonance.
- Compare measured impedance to NEC2 predicted values. Investigate discrepancies >20%.
- Verify SWR ≤2.0:1 after matching at operating frequency. If not, adjust matching per Chapter 6.
- For gain verification: compare received signal strength (using TinySA as receiver) from a known beacon vs. reference antenna.
CHAPTER 6 — TUNING AND ADJUSTMENT
Element lengths can be adjusted by ±2% of design length to shift resonance and optimize impedance. For matching network adjustment: follow gamma-match, delta-match, or transformer-tap procedure per the specific implementation. Refer to NEC2 model for sensitivity analysis — the model can be re-run at ±2% element length to determine which element most affects resonance and F/B ratio.
CHAPTER 7 — VERIFICATION
| Parameter | Requirement | Pass/Fail |
|---|---|---|
| SWR at design frequency | < 2.0:1 after matching | ____ |
| Resonant frequency | Within ±1% of design | ____ |
| Gain (NEC2 or field test) | 4–8 dBi bidirectional along bisector | ____ |
| Efficiency | 75–88% | ____ |
APPENDIX A — CALCULATIONS AND FORMULAS
APPENDIX B — EXAMPLE RESULTS
| Freq | SWR | R (Ω) | X (Ω) | Notes |
|---|---|---|---|---|
| Design center | < 2.0:1 after matching | ~50 | ~0 | After full match/tune |
| Band edge low | <2.5:1 | ~40 | ≤−20 | Capacitive below resonance |
| Band edge high | <2.5:1 | ~40 | ≥+20 | Inductive above resonance |