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Ham Radio Antenna Build Guides — All Types & Frequencies

Step-by-step construction guides covering the full range of amateur radio antenna projects — from simple HF wire antennas to advanced directional arrays, from 160 meters through 23 centimeters. Includes low-band antennas, portable and SOTA designs, VHF and UHF builds, satellite antennas, magnetic loops, NVIS designs, and lesser-known but highly effective antenna types. Every guide includes materials lists, construction steps, weatherproofing, and tuning instructions.

144+Build guides
160m–23cmFull frequency coverage
4Skill levels
$10–$300Cost range
Beginner — basic tools, wire and coax only
Intermediate — some fabrication, balun winding, basic test equipment
Advanced — metalwork, NEC2 modeling, VNA required
Expert — precision fabrication, complex feed systems, full test setup

20m Half-Wave Dipole

The foundational HF antenna. Wire, coax, current choke, two supports. Resonant on 20m, usable on 10m and others with a tuner. Full step-by-step with tuning.

Beginner~$252–3 hrs20m · 10m

40m Half-Wave Dipole

66 feet of wire for the most popular HF ragchew and DX band. Works 40m, 15m, and often 80m with a tuner. NVIS at low height, DX at higher installations.

Beginner~$302–3 hrs40m · 15m

80m Half-Wave Dipole

130 feet of wire for regional and NVIS communication. Covers phone, CW, and digital on 80m/75m. Inverted-V configuration recommended to manage the span with one center support.

Beginner~$403–4 hrs80m · 40m

160m Inverted-L

A top-band solution for stations without 260-foot spans. Vertical section plus horizontal top-hat. Efficient for 160m DX when combined with a solid radial system.

Intermediate~$60Half day160m · 80m

Fan Dipole — 40/20/10m

Multiple parallel dipole elements sharing one feedpoint. Each leg pair cut for a separate band. No traps, no tuner needed on covered bands. True multi-band performance from a single coax run.

Intermediate~$504–5 hrs40m · 20m · 10m

Trap Dipole — 80/40/20m

Resonant LC traps electrically shorten the antenna on higher bands, allowing a single-wire dipole to cover three bands at reduced physical length. Includes winding your own traps.

Intermediate~$45Half day80m · 40m · 20m

Off-Center-Fed Dipole (OCFD)

A dipole fed 1/3 from one end instead of at the center. The asymmetric feed point allows multi-band resonance on 80, 40, 20, 15, and 10m from a single wire with a 4:1 balun.

Intermediate~$553–4 hrs80m–10m

40m Delta Loop

Full-wave equilateral triangle — 134 feet of wire across three supports. Approximately 2 dBd gain over a dipole, quieter receive, and works multi-band with ladder line and a tuner.

Intermediate~$60Half day40m–10m

80m Full-Wave Square Loop

264 feet of wire in a square configuration — outstanding low-noise receive characteristics on 80m and covers 40m through 10m with ladder line. A serious multi-band antenna for those with space.

Intermediate~$70Half day80m–10m

W3EDP End-Fed Wire

A classic 85-foot end-fed wire with a short counterpoise. Works on 80m through 10m with a tuner. One of the most popular multi-band wires in amateur radio history — simple and effective.

Intermediate~$202 hrs80m–10m

ZS6BKW / G5RV Improved

An improved version of the classic G5RV — optimized matching section length for lower SWR on more bands. Covers 10m through 40m without a tuner on most covered bands.

Intermediate~$353 hrs40m–10m

Random Wire Antenna with 9:1 Unun

The simplest true multi-band HF wire — any convenient length fed through a 9:1 unun and a tuner. No resonance calculation required, forgiving of whatever span your property allows.

Beginner~$252 hrs80m–10m

W3DZZ Trap Dipole

The original trap dipole design covering 80m and 40m from one span using parallel-resonant LC traps, with harmonic coverage on 15m as a bonus.

Intermediate~$50Half day80m · 40m · 15m

Extended Double Zepp

Two 5/8-wave elements fed in phase for real gain over a plain dipole broadside to the wire, with a figure-8 pattern and no traps needed.

Intermediate~$45Half day20m · 15m · 10m

Cobweb (5-Band) Antenna

Five folded dipoles on a single compact spider frame, all fed from one coax — a genuinely small-footprint multi-band horizontal antenna for restricted spaces.

Advanced~$90Weekend20m–10m

Classic Windom Antenna

A single-wire, off-center-fed antenna predating the OCFD, fed with a single wire counterpoise-style connection instead of a balun — a historically important, simple multi-bander.

Intermediate~$403–4 hrs80m–10m

Sloper Antenna

A single wire sloping down from one tall support — one of the simplest ways to get low-band directional gain from just one mast or tower.

Beginner~$302–3 hrs80m · 40m

Folded Dipole Antenna

A dipole folded into a flattened loop shape — roughly 4x the feedpoint impedance and noticeably wider bandwidth than a plain thin-wire dipole of the same length.

Beginner~$352–3 hrs40m · 20m

Double Bazooka Antenna

A coax-shield dipole where the outer braid of each leg forms the radiating element — genuinely broadband and often quieter on receive than a plain wire dipole.

Intermediate~$55Half day40m · 20m

W5GI Mystery Antenna

A fixed-length multi-wire folded dipole design, no calculator needed — a well-documented "just build it to these dimensions" multi-band wire antenna.

Intermediate~$50Half day80m–10m

Rhombic Antenna

Four long wires forming a diamond, terminated for a unidirectional traveling-wave pattern — serious DX gain for stations with real acreage to spare.

Expert~$150+Multiple days40m–10m

Fractal Antenna (Koch Dipole)

A dipole folded into a Koch-curve fractal pattern to shrink its footprint for a given resonant frequency — a genuine, honestly-scoped size/performance tradeoff.

Advanced~$35Half day20m · 10m

Vee Beam Antenna

Two long wires fed at a common apex — real long-wire gain from two wires and three supports instead of a rhombic's four.

Advanced~$90Weekend40m–10m

10m Half-Wave Dipole

Just 16.5 feet of wire for solar-cycle DX and summer sporadic-E openings — one of the fastest, cheapest dipole builds on this site.

Beginner~$202 hrs10m

12m Half-Wave Dipole

A quiet, contest-free WARC band dipole — cut for band center and the whole 100 kHz allocation is covered with excellent SWR.

Beginner~$202 hrs12m

15m Half-Wave Dipole

A middle-ground DX band between 20m's reliability and 10m's solar-cycle excitement, at just over 22 feet total.

Beginner~$252 hrs15m

17m Half-Wave Dipole

A quiet WARC-band dipole known for productive late-afternoon DX once the higher bands start to close.

Beginner~$252 hrs17m

30m Half-Wave Dipole

A CW/data-only WARC band dipole at reduced 200W power — near-round-the-clock usability favored by digital and CW operators.

Intermediate~$352–3 hrs30m CW/data

60m Half-Wave Dipole

A dipole for the US's unusual 5-channel allocation — cut for the practical center channel to cover all 5 with good SWR.

Intermediate~$402–3 hrs60m (5 channels)

Sloping V Antenna

A V-shaped sloper fed from a single tower top, both legs angled toward a target DX heading — a single-tower low-band DX tool distinct from the horizontal Vee Beam.

Advanced~$70Half day160m · 80m

Carolina Windom Antenna

A multi-band Windom variant whose RF choke creates a vertical radiating section below the feedpoint — 80m–10m on coax with no ATU needed on four bands.

Intermediate~$75Half day80m–10m

All-Band Doublet Antenna

An open-wire-fed dipole with no critical length — feed any convenient wire run through ladder line to a balanced tuner for 160m through 10m with minimal feedline loss.

Beginner~$502–3 hrs160m–10m

G5RV Dipole Antenna

The classic full-size multiband HF dipole — a single 102-ft wire and 34-ft ladder-line matching section cover 80m–10m without band switching.

Intermediate~$60Half day80m–10m

Inverted-V Dipole Antenna

A dipole hung from a single center support with both ends sloping down — needs only one mast instead of two, with wire lengths for 80m through 10m.

Beginner~$302 hrsAny HF band

T2FD — Terminated Tilted Folded Dipole

A resistor-terminated broadband dipole covering 2–30 MHz continuously with no ATU and no retuning — trades some efficiency for genuinely no-tune operation.

Intermediate~$80Half day2–30 MHz

EFHW Portable — 40m through 10m

33-foot wire with a homebrew 49:1 UNUN wound on FT-240-43. Packs into a pocket, deploys in minutes, covers 40/20/15/10m without a tuner. The go-to for SOTA, POTA, and field day.

Beginner~$35Half day40m–10m

EFHW — 80m through 10m

66-foot wire version for 80m as the fundamental, covering 80/40/20/15/10m on harmonics. Longer wire needs higher supports but delivers excellent low-band portable coverage for POTA and field ops.

Beginner~$40Half day80m–10m

Linked Dipole — Multi-Band

A portable dipole with clip-in link sections that extend the wire for lower bands. Change bands by clipping in or removing sections — no tuner needed. Popular for SOTA where low weight is critical.

Intermediate~$304 hrs40m · 20m · 15m · 10m

Telescoping Vertical — Portable HF

A telescoping whip with a tuner and a few radial wires. Compact, lightweight, and deployable in 5 minutes on any summit or park. Works 40m through 10m with a portable ATU.

Beginner~$501 hr40m–10m

Homebrew PAC-12 Style Vertical

A loading-coil vertical similar to the commercial PAC-12. Switchable coil taps cover 40m through 10m. Compact and efficient for a loaded antenna — excellent for POTA and emergency deployment.

Intermediate~$45Half day40m–10m

Buddipole-Style Portable Dipole

A homebrew clone of the popular commercial Buddipole — coil-loaded telescoping arms on a tripod, covering multiple HF bands from one compact travel case.

Intermediate~$90Weekend40m–10m

Buddistick-Style Portable Vertical

A single-mast, coil-loaded portable vertical clone of the commercial Buddistick — a compact multi-band travel antenna needing only one support point.

Intermediate~$70Half day40m–10m

AX1-Style Ultra-Portable HF Antenna

A tiny, heavily-loaded HF antenna clone in the spirit of the commercial AX1 — trades efficiency for a genuinely pocket-sized footprint for minimalist travel and EDC operating.

Advanced~$60Half day20m–10m

Slinky Portable Vertical Antenna

A loaded vertical using a stretched metal spring toy as the loading element — a genuinely inexpensive, packable low-band portable antenna.

Beginner~$202–3 hrs40m · 20m

Emergency/Go-Kit Antenna

A minimal-parts, fast-deploy wire antenna designed to live in a go-bag — built for reliability and quick setup over maximum performance.

Beginner~$201–2 hrs40m–10m

EFHW Antenna for SOTA and POTA

A 40m end-fed half-wave built around a 49:1 unun — a single 66-ft wire covers 40m, 20m, 15m, and 10m for about $15 total, ideal for summit and park activations.

Beginner~$152 hrs40/20/15/10m

Portable EFHW Antenna for SOTA and POTA

A hand-wound 49:1 transformer and 67-ft wire deployed as a single-point sloper — covers 40m–10m at a complete system weight around 130g.

Beginner~$182 hrs40m–10m

Portable Linked Dipole Antenna

A center-fed dipole with Anderson Powerpole band links along each leg — resonant on every band from 40m to 10m with no tuner and no traps.

Beginner~$222–3 hrs40/20/15/10m

40m Quarter-Wave Vertical

33-foot ground-mounted vertical with a buried radial system. Low-angle DX radiation on 40m. Complete installation guide from ground anchor to feedpoint matching and weatherproofing.

Intermediate~$80Full day40m

20m Quarter-Wave Vertical

16.5-foot vertical for the primary DX band. Omni low-angle radiation — competitive with a dipole for DX, superior when pointed in the right direction isn't possible. Elevated or buried radials covered.

Intermediate~$70Full day20m

80m Base-Loaded Vertical

A loading-coil vertical for 80m where a full 65-foot quarter-wave isn't practical. Covers the full band with a tuner. Base loading coil design and construction included.

Advanced~$120Full day80m · 40m

Radial System Installation Guide

Complete guide to laying a buried or elevated radial system for any HF vertical. Covers wire selection, burial depth, radial quantity trade-offs, and how to connect radials to the feedpoint.

Intermediate~$30 materialsHalf–full dayAll HF bands

Multi-Band Trapped Vertical

A trap vertical covering 10, 15, 20, and 40m from a single radiator using resonant traps at each band junction. Includes winding and tuning each trap for correct resonance.

Advanced~$100Weekend40m–10m

4-Square Phased Vertical Array

Four quarter-wave verticals in a square arrangement, fed with a phasing network for switchable directional patterns. The serious DXer's choice for 40m and 80m low-band operation.

Expert~$300+Multiple days40m · 80m

Isotron-Style Compact Loaded HF Antenna

A small, heavily-loaded capacitive-plate antenna clone in the spirit of the commercial Isotron — trades size for efficiency in restricted installations.

Intermediate~$50Half day40m–10m

EH Antenna

An electrically tiny coaxial-cylinder HF radiator — an honest look at the efficiency claims made for this design that independent testing hasn't confirmed.

Advanced~$45Half day40m · 20m

Bobtail Curtain (and Sterba Curtain)

Three in-phase vertical radiators tied together by a top wire and fed at the bottom center — real broadside gain and a low-angle vertically-polarized DX pattern.

Advanced~$70Weekend40m · 80m

Crossed Field Antenna (CFA)

A combined E-field/H-field small radiator with claims disputed by mainstream antenna engineering — described honestly here, controversy and all.

Advanced~$40Half day40m · 80m

6m Quarter-Wave Vertical

A tiny, under-5-foot vertical for sporadic-E and F2 DX on the Magic Band — the easiest vertical on this site to mount almost anywhere.

Beginner~$402–3 hrs6m

10m Quarter-Wave Vertical

An 8-foot single-section vertical, easy to mount on a rooftop or small lot with a 16-radial ground plane.

Intermediate~$50Full day10m

12m Quarter-Wave Vertical

A single-section vertical for the quiet, contest-free 12m WARC band — a nearly flat SWR curve across the whole 100 kHz allocation.

Intermediate~$50Full day12m

15m Quarter-Wave Vertical

An 11-foot vertical bridging 20m's reliability and 10m's excitement, with a solid daytime DX record.

Intermediate~$55Full day15m

17m Quarter-Wave Vertical

A quiet WARC-band vertical known for late-afternoon DX openings once the higher bands start to fade.

Intermediate~$55Full day17m

30m Quarter-Wave Vertical

A two-section telescoping vertical for the CW/data-only WARC band, capped at 200W by regulation — a round-the-clock workhorse for digital and CW ops.

Advanced~$95Full day30m CW/data

60m Quarter-Wave Vertical

A three-section telescoping vertical cut for the channelized 5-channel US 60m allocation, with a power/gain rule relative to a dipole.

Advanced~$140Full day60m (5 channels)

Inverted-L Antenna for 160m and 80m

A dual-band 160m/80m inverted-L with a radial system, L-network match, and relay-switched 80m capacitor — a serious low-band DX vertical from one structure.

Advanced~$150Weekend160m · 80m

160m Vertical Antenna

A top-loaded 160m vertical on a 65-ft mast — covers capacity-hat sizing, base loading coil design, and radial systems for serious Top Band operation.

Advanced~$200Weekend160m

10m 3-Element Yagi

Aluminum tubing beam for 28–29.7 MHz. At 16-foot boom length this delivers ~7 dBd with a manageable physical size. Excellent for solar maximum DX and 10m FM simplex contacts worldwide.

Intermediate~$90Weekend10m

10m Moxon Rectangle

A compact folded beam with ~5 dBd gain and excellent front-to-back ratio, fitting in 30% less space than a full-size Yagi. Wire construction on a simple PVC frame — no metal fabrication needed.

Intermediate~$30Half day10m

20m Moxon Rectangle

A wire Moxon for 20m — directional performance without aluminum tubing. Approximately 28 feet wide and 10 feet deep. A practical rotatable beam for stations without a tower.

Intermediate~$45Half day20m

2-Element Delta Loop Beam

Two delta loops in a driven/reflector arrangement — delivers ~5 dBd gain with excellent low-angle radiation. Excellent for 20m and 40m where tower height is limited. Parasitic loop spacing and phasing covered.

Advanced~$80Weekend40m · 20m

2-Element Cubical Quad

Full-wave wire loops on a spreader frame — 2 elements deliver ~7 dBd with lower noise and lower takeoff angle than a comparable Yagi. Covers 20m, 15m, and 10m from one structure.

Advanced~$150Weekend20m · 15m · 10m

3-Element 12m Yagi

A W6SAI-derived gamma-match Yagi scaled from this site's 10m design — ~7.5 dBd gain on the quiet, contest-free 12m WARC band.

Intermediate~$100Weekend12m

3-Element 15m Yagi

The same proven design scaled up for 15m — a meaningfully larger beam delivering the same ~7.5 dBd gain on a reliable daytime DX band.

Intermediate~$120Weekend15m

3-Element 17m Yagi

The largest Yagi in this scaled family, stepped up to thicker element stock for mechanical strength — real gain on a quiet WARC band.

Advanced~$150Full weekend17m

Bisquare Loop Antenna

A full-wave loop bent into a diamond and strung between two supports — real gain and a low-angle vertically polarized pattern, no tower needed.

Intermediate~$60Half day40m–10m

2-Element Yagi Antenna

A gamma-match 20m Yagi delivering 3–5 dBd gain and 10–15 dB front-to-back rejection from the shortest boom in this site's Yagi progression.

Intermediate~$150Weekend20m

3-Element Yagi Antenna

A beta-match 20m Yagi with tapered elements delivering 6–8 dBd gain and 20–25 dB front-to-back ratio — a serious step up from the 2-element version.

Advanced~$220Full weekend20m

5-Element Yagi Antenna

A direct 50-ohm OWA-fed 20m Yagi with a boom truss, delivering 9–11 dBd gain and flat SWR across the band — the top of this site's Yagi progression.

Advanced~$380Full weekend20m

Moxon Rectangle Antenna

A general-purpose Moxon build guide for 20m, 15m, or 10m — 70% narrower than a comparable 2-element Yagi with 5–6 dBd gain and over 30 dB front-to-back ratio.

Intermediate~$45Half day20m · 15m · 10m

Quad Loop and Quad Beam Antenna

A general-purpose cubical quad build guide using wire and fibreglass spreaders instead of aluminium tubing — up to 7 dBd gain with broader SWR bandwidth than a comparable Yagi.

Advanced~$120Weekend20m

Hex Beam Antenna

A G3TXQ hex beam covering 20m–6m from an 18-foot, under-10-lb structure — 5–6 dBd multiband gain on just a light-duty rotator.

Advanced~$180Weekend20m–6m

Log Periodic Dipole Array (LPDA)

An 8-element LPDA covering 14–30 MHz (20m–10m) from a single rotatable feedpoint with 6–8 dBd gain — no traps, no band switching, no tuner needed.

Advanced~$280Full weekend20m–10m

6m Half-Wave Dipole

A 9-foot wire dipole for the Magic Band. Simple to build, effective for Sporadic-E, meteor scatter, and regional SSB. Often the first VHF antenna an HF operator builds when propagation opens.

Beginner~$151 hr6m (50–54 MHz)

6m Halo / Turnstile

An omnidirectional horizontally polarized antenna for 6m — ideal for multi-direction Sporadic-E contacts without a rotator. Two phased dipoles at right angles provide near-circular horizontal coverage.

Intermediate~$253 hrs6m

6m 5-Element Yagi

Aluminum tube beam for 50–54 MHz. ~10 dBd gain on a manageable 12-foot boom. Excellent for weak-signal SSB, EME attempts, and working rare Sporadic-E openings at the edge of propagation.

Intermediate~$80Weekend6m

2m J-Pole

The most popular VHF antenna build in amateur radio. Copper pipe, one afternoon, no ground plane needed. Omnidirectional, unity gain, 50Ω feed. Perfect for 2m FM and local repeater use.

Beginner~$152 hrs2m (144–148 MHz)

2m Slim Jim

A folded J-pole variant with slightly lower angle of radiation than the standard J-pole — makes more of its gain at the horizon where it counts for repeater and simplex work. Built from 300-ohm twin-lead.

Beginner~$81–2 hrs2m

2m Colinear — 5/8 Wave Stack

A stacked collinear vertical delivering 3–5 dBd over a simple dipole with omnidirectional coverage. Built from coax or copper tubing. Excellent fixed-station antenna for 2m FM and digital modes.

Intermediate~$30Half day2m

2m 5-Element Yagi

Aluminum tubing beam for 144–148 MHz delivering ~10 dBd. Suitable for satellite (SO-50, AO-91), SSB weak-signal work, and EME first steps. NEC2-modeled design with gamma match feed.

Advanced~$90Full weekend2m

1.25m (222 MHz) J-Pole

Copper pipe J-pole for the 222 MHz band — one of the least crowded VHF bands with a surprisingly active community. Simple construction identical to 2m J-pole but scaled for 222 MHz.

Beginner~$122 hrs1.25m (222 MHz)

Roll-Up J-Pole (2m)

A 2m J-pole built from ladder line or twin-lead instead of copper pipe — rolls up small enough for a backpack pocket. The go-to for SOTA activators and bug-out kits.

Beginner~$101 hr2m

Hentenna

An oddball Japanese loop-fed design that packs surprising gain into a compact vertical footprint — a fun build for anyone who wants something other than another J-pole.

Intermediate~$25Half day2m

Skeleton Slot Antenna

A wire-frame approximation of a resonant slot antenna — vertically polarized, omnidirectional, and mechanically simple to hang from a single mast.

Intermediate~$30Half day2m

Lindenblad Antenna

Four crossed dipoles tilted for near-hemispherical circular polarization — a favorite for low-earth-orbit satellite work when you don't want to chase the pass with a rotator.

Advanced~$70Weekend2m

Eggbeater Antenna

Two crossed turnstile loops feeding a single coax line for circularly polarized, near-omnidirectional coverage — the classic fixed-station answer to satellite spin fading.

Advanced~$60Weekend2m

Turnstile Antenna

Two dipoles crossed at right angles and phased 90° apart for horizontally polarized omnidirectional coverage — a simple single-band building block for the Eggbeater and Lindenblad designs above.

Intermediate~$35Half day2m

ZL Special (2-Element Beam)

A close-spaced, phased 2-element beam with gain approaching a 3-element Yagi from a boom half the length — a favorite portable and SOTA beam design.

Advanced~$70Weekend2m

HB9CV Antenna

A compact 2-element phased beam with a phasing line instead of a passive reflector — real front-to-back ratio and gain from a boom short enough for a handheld mast.

Advanced~$65Weekend2m

Quagi Antenna

A quad loop reflector and driven element combined with Yagi director rods — wider bandwidth than a pure Yagi with comparable gain, a favorite satellite and portable beam.

Advanced~$75Weekend2m

2m/70cm Mag-Mount Mobile

A dual-band magnetic-mount whip for the car roof — the simplest way to get a real VHF/UHF antenna above the vehicle's noise floor and metal without drilling a hole.

Beginner~$301 hr2m · 70cm

APRS Antenna

A Slim Jim tuned to 144.390 MHz (North America) or 144.800 MHz (Europe) and optimized for packet digipeaters and iGates — omnidirectional coverage with tap-tuning steps.

Beginner~$101–2 hrs2m (APRS)

Discone Antenna

A wideband discone covering 130 MHz to 1.3 GHz from one feedpoint — wire spoke construction on an SO-239 hub, NanoVNA-verified SWR across the whole range.

Intermediate~$40Half day130 MHz–1.3 GHz

Portable Tape Measure Yagi

A 3-element 2m Yagi built from a folding tape measure for fox hunting and ARDF — folds flat, costs under $10, and delivers 7+ dBd gain with a sharp rear null.

Intermediate~$102 hrs2m

2m Copper Cactus Antenna

A collinear built from copper pipe with a hand-wound phasing coil — 4–5 dBd omnidirectional gain that beats a J-pole in range for about $32.

Intermediate~$32Half day2m

2m Flower Pot Antenna

A coaxial collinear built from RG-58 coax inside a PVC housing — about 3 dBd gain and a low-angle pattern for under $18.

Beginner~$182 hrs2m

2m Ground Plane Antenna

A quarter-wave ground plane from aluminum rod, built in under an hour — hub plate fabrication, radial droop angle, and NanoVNA tuning for about $9.

Beginner~$91 hr2m

Dual-Band J-Pole Antenna

A 2m/70cm J-pole from copper pipe using the N9TAX split-stub design — one feedpoint, one coax run, no duplexer needed.

Intermediate~$242–3 hrs2m · 70cm

70cm J-Pole (440 MHz)

A compact copper pipe J-pole for the 70cm band. Used for FM repeaters, D-Star, DMR, System Fusion, and APRS. Often paired with a 2m J-pole on the same mast for dual-band coverage.

Beginner~$101–2 hrs70cm (420–450 MHz)

70cm 9-Element Yagi

A high-gain 70cm Yagi for satellite (AO-91, AO-92, SO-50), weak-signal SSB, and long-range repeater access. At 70cm, a 9-element Yagi fits on a 3-foot boom delivering ~13 dBd.

Intermediate~$50Half day70cm

Dual-Band Satellite Array — 2m/70cm

Cross-Yagi antennas for 2m and 70cm mounted together for LEO satellite operation. Includes phasing harness for circular polarization to combat satellite spin fading. The standard serious satellite station setup.

Advanced~$180Weekend2m · 70cm

33cm (902 MHz) Yagi

A Yagi for the 902–928 MHz band — one of the lesser-known but active weak-signal bands. Compact construction with PCB material elements. Used for long-distance tropo, grid expeditions, and microwave contests.

Intermediate~$40Half day33cm (902 MHz)

23cm (1296 MHz) Yagi

A precision-machined Yagi for 1296 MHz. Dimensional tolerances are critical at 23cm — construction accuracy becomes essential. Used for microwave contesting, EME, and long-range tropo propagation experiments.

Advanced~$60Weekend23cm (1296 MHz)

23cm Dish Feed — EME

A feedhorn and matching network for illuminating a surplus satellite dish on 1296 MHz. The entry point to EME (moonbounce) on microwave bands — a dish of 6 feet or larger brings 23cm EME into reach.

Expert~$100Multiple days23cm EME

Arrow/Elk-Style Handheld Satellite Yagi

A tape-measure dual-band Yagi you hold in your hands to work FM satellites with a handheld radio — the cheapest realistic path into satellite operating, built from hardware-store tape measure and PVC.

Intermediate~$35Half day2m · 70cm

Helical Antenna (Satellite/EME)

An axial-mode helix wound around a boom for high-gain circularly polarized reception — used behind dishes for deep-space and EME work, and standalone for demanding satellite passes.

Expert~$90Weekend70cm · 23cm

70cm Flower Pot Antenna

A coaxial dipole hidden inside PVC pipe for stealth installs, with sleeve balun dimensions delivering 3–4 dBd gain for under $15.

Intermediate~$152 hrs70cm

70cm Slim Jim Antenna

A 300-ohm twin-lead Slim Jim covering the full 432–440 MHz band with roughly 3 dBd gain and no ground plane needed, for about $5.

Beginner<$51–2 hrs70cm

Tools You Actually Need

For wire antenna builds (beginner to intermediate) the tool list is short and inexpensive:

  • Wire cutters and diagonal pliers — cutting and stripping wire
  • Soldering iron (25–40W) and rosin-core solder — feedpoint terminations
  • Self-amalgamating tape — essential weatherproofing for all outdoor connections
  • PVC electrical tape — UV protection layer over self-amalgamating tape
  • Tape measure — accurate wire cutting
  • Multimeter — continuity check before connecting to radio
  • NanoVNA or antenna analyzer — finding resonance and trimming

For aluminum Yagi and UHF builds, add: hacksaw or tubing cutter, hand drill, deburring tool, and a vise. A drill press improves element hole accuracy but is not required.

NanoVNA setup guide →

Calculating Wire Length

Every guide links to the appropriate calculator, but these are the fundamental formulas:

Dipole total (ft) = 468 / f(MHz) Each dipole leg (ft) = 234 / f(MHz) Quarter-wave (ft) = 234 / f(MHz) Full-wave loop (ft) = 1005 / f(MHz) EFHW wire (ft) = 468 / f(MHz) at lowest band

Always cut 3–5% longer than calculated and trim to resonance after installation. Height above ground, wire insulation, and nearby objects all shift the actual resonant frequency in ways that cannot be predicted before installation.

Open the antenna calculators →

Wire and Materials Selection

  • #14 AWG stranded CCS — best all-around choice for permanent HF wire antennas. Strong, low-stretch, good conductivity
  • #14 AWG stranded bare copper — excellent conductivity, slightly less tensile strength than CCS
  • #22–26 AWG magnet wire — lightweight for portable and SOTA builds where weight is critical
  • PVC-insulated wire — adds ~2–3% electrical shortening due to dielectric effect — account for this when calculating
  • Aluminum tubing (6061-T6) — standard for VHF/UHF Yagi elements. Strong, lightweight, machines cleanly
  • Copper pipe (½" type M) — standard for J-poles and ground-mounted elements
  • RG-8X coax — practical standard for most HF and VHF feedlines under 100 feet
  • LMR-400 — for longer runs or microwave frequencies where loss matters

Weatherproofing — The Critical Step

Moisture at outdoor connections is the leading cause of antenna failure. A feedpoint that works perfectly at installation can develop high resistance within months without proper sealing.

  • Apply self-amalgamating tape from below the connector upward — water runs off, not in
  • Overlap each layer by 50% for a continuous seal with no gaps
  • Add PVC electrical tape as an outer UV protection layer
  • Apply Noalox or similar anti-oxidant to all aluminum-to-copper connections
  • Use stainless steel hardware — zinc-plated corrodes rapidly outdoors
  • Leave a drip loop in coax below the feedpoint
  • Inspect all outdoor connections annually — UV, thermal cycling, and corrosion degrade even good weatherproofing over time

Building Your First HF Dipole

The most important antenna any HF operator can build — complete from wire cutting to verified resonance.

1

Calculate and Cut Wire

For 14.200 MHz: 468 ÷ 14.2 = 32.96 ft total. Cut two legs at 17 feet each — intentionally long. The extra length allows trimming to resonance after installation.

Tip: Use #14 AWG stranded copper-clad steel. Pure copper stretches under tension; CCS holds its length through seasonal temperature cycling.
2

Build a Current Choke (1:1 Balun)

Wind 8–10 turns of RG-8X through an FT-240-31 toroid to create a current choke. This prevents RF from flowing on the coax shield outer surface — without it, SWR readings are unreliable and the feedline radiates.

Tip: Wind turns tightly and consistently. Exit the coax perpendicular to the toroid face. Target at least 1000Ω of choking impedance at your operating frequency.
3

Terminate the Feedpoint

Connect coax center conductor to one leg, braid to the other. Solder both connections — heat the wire first, then apply solder. Cold joints appear dull and grainy; good joints are shiny and flow completely around the wire.

4

Attach End Insulators and Rope

Secure end insulators to each wire tip. Attach UV-resistant Dacron rope to each insulator. Leave 12+ inches of rope between the insulator and support to prevent the support structure from detuning the element.

5

Raise the Antenna

Get the feedpoint as high as possible. An inverted-V with legs angled at 30–45° below horizontal needs only one center support and performs very well. Run coax downward with a drip loop before the support point.

Tip: Every 10 feet of additional height measurably improves DX performance. If your supports allow more height — use it.
6

Initial SWR Sweep

Connect a NanoVNA at the shack end. Sweep 13.5–15 MHz and find the frequency of minimum SWR — this is actual resonance. SWR at the dip should be 1.5:1 or better if the feedpoint assembly and choke are correct.

7

Trim to Target Frequency

Resonance below target = antenna too long — trim both legs equally in 2-inch increments. On 20m, removing 1 inch per side raises resonance ~10–15 kHz. Re-sweep after each trim at full installation height.

Tip: Always trim both legs equally. Unequal legs shift the current balance point and create pattern distortion.
8

Weatherproof All Connections

Wrap every outdoor connection with self-amalgamating tape from below, overlapping 50% per layer, ending well above the coax entry. Add PVC electrical tape outer layer. Verify with a final SWR sweep — readings should be unchanged.

Antenna Wire / Material Key Hardware Approx Cost Build Time Guide
20m Dipole#14 AWG CCS, ~35 ftFT-240-31 toroid, 2× insulators, Dacron rope$20–$302–3 hrsGuide →
40m Dipole#14 AWG CCS, ~70 ftFT-240-31 toroid, 2× insulators, Dacron rope$25–$352–3 hrsGuide →
80m Dipole#14 AWG CCS, ~135 ftFT-240-31 toroid, 2× insulators, Dacron rope$35–$503–4 hrsGuide →
EFHW 40m–10m#22 AWG wire, ~35 ftFT-240-43 toroid, 43pF cap, SO-239 chassis$25–$454–6 hrsGuide →
Fan Dipole 3-band#14 AWG CCS, ~200 ft totalFT-240-31 toroid, multi-wire center, insulators$45–$604–5 hrsGuide →
OCFD#14 AWG CCS, ~135 ft4:1 current balun, off-center feed connector$50–$703–4 hrsGuide →
40m Delta Loop#14 AWG CCS, ~140 ft4:1 balun or ladder line, 3× insulators$55–$75Half dayGuide →
40m Vertical + RadialsAluminum tubing; #14 CCS radialsGround spike, 16–32 radial wires ~33 ft each$70–$100Full dayGuide →
HF Magnetic LoopCopper pipe or RG-213 loopButterfly capacitor, coupling loop, SO-239$70–$110WeekendGuide →
10m Moxon#14 AWG wire on PVC framePVC pipe, wire, center connector, 1:1 choke$25–$40Half dayGuide →
2m J-Pole½" copper pipePipe fittings, SO-239, hose clamps$12–$202 hrsGuide →
2m Slim Jim300Ω twin-lead, ~5 ftSO-239, strain relief, mount hardware$6–$121–2 hrsGuide →
2m 5-El Yagi3/8" aluminum tubing elements3/4" boom, U-bolts, gamma match, mast clamp$80–$110WeekendGuide →
70cm J-Pole½" copper pipePipe fittings, SO-239, hose clamps$8–$151–2 hrsGuide →
Dual-Band Sat ArrayAluminum tubing, 2m + 70cm YagisCross-boom, phasing harness, mast rotator mount$160–$220WeekendGuide →
NVIS Dipole#14 AWG CCS, per band lengthFT-240-31 toroid, low supports (8–12 ft)$25–$352 hrsGuide →

What is the best first antenna to build?

A half-wave dipole for 20m is the ideal first build — it requires only wire, coax, a current choke, and two support points. The construction process involves only basic soldering, cost is under $30, and build time is 2–3 hours. It performs excellently on 20m, and with an antenna tuner it also covers 40m, 15m, and 10m. Once you have built and tuned a dipole, every other antenna type makes more sense because you understand resonance, SWR, and feedpoint matching from hands-on experience.

20m dipole build guide →

What is the difference between an EFHW and a G5RV?

An EFHW (end-fed half-wave) uses a 49:1 impedance transformer to feed a resonant wire at one end — it resonates on the fundamental and all harmonics with no tuner needed on covered bands. A G5RV uses a specific length of ladder line as a matching section to bring a 102-foot wire to a manageable SWR on multiple bands, but still typically requires a tuner on most bands. The ZS6BKW (improved G5RV) optimizes the matching section length for better no-tuner coverage. The EFHW is generally simpler to deploy and more portable; the G5RV/ZS6BKW offers more even coverage across a wider range.

ZS6BKW build guide →

Why build a J-pole instead of just buying a vertical?

A homebrew J-pole costs $12–$20 in copper pipe and performs identically to commercial verticals selling for $60–$150. The J-pole needs no ground plane (unlike a quarter-wave vertical), presents a 50Ω feedpoint naturally, and is mechanically simple — solder five pipe joints and it is done. Building your own also means you understand exactly what it is and can repair it if damaged. The J-pole is one of the best return-on-investment builds in all of amateur radio.

2m J-pole build guide →

Can I operate on the lesser-known bands like 33cm and 23cm?

Yes — the 33cm (902–928 MHz) and 23cm (1240–1300 MHz) bands have active communities, particularly for weak-signal SSB, microwave contesting, EME, and APRS experimentation. Both bands have lower activity than 2m and 70cm, which makes them attractive for grid-square hunters and those interested in long-distance propagation experiments. Antennas for these bands are small and relatively easy to build with precise fabrication. A 33cm Yagi with 10+ elements fits in your hand.

33cm Yagi guide →

What is NVIS and why does it need a special antenna?

NVIS (Near Vertical Incidence Skywave) is an HF propagation mode where signals radiate nearly straight up, reflect off the ionosphere, and return to earth covering roughly 0–600 miles. It is essential for regional emergency communication when ground-wave range is insufficient. Standard HF antennas optimized for DX radiate at low angles, which is wrong for NVIS — too little energy goes straight up. A NVIS antenna is simply a dipole mounted very low (8–12 feet above ground) so that ground reflection reinforces high-angle radiation. No special materials are needed — just a normal dipole at intentionally low height.

NVIS dipole guide →

Is a magnetic loop antenna actually worth building?

For operators in apartments, condos, or HOA-restricted properties where no outdoor antenna is possible, a magnetic loop is genuinely worth building. It is significantly less efficient than a full-size wire antenna — typically 10–20 dB less gain — but it can make real contacts on HF from inside a room, which a dipole cannot. The key variables are the quality of the main loop conductor (larger diameter = lower loss), the quality of the tuning capacitor (higher Q = better efficiency), and the tightness of all connections. A well-built magnetic loop using copper pipe and a butterfly capacitor performs noticeably better than commercial small-loop products at the same price.

HF magnetic loop guide →
20m Half-Wave Dipole 40m Half-Wave Dipole 80m Half-Wave Dipole 160m Inverted-L Fan Dipole — 40/20/10m Trap Dipole — 80/40/20m Off-Center-Fed Dipole 40m Delta Loop 80m Full-Wave Square Loop W3EDP End-Fed Wire ZS6BKW / G5RV Improved EFHW Portable — 40m–10m EFHW — 80m–10m Linked Dipole — SOTA Telescoping Vertical — Portable Homebrew PAC-12 Vertical 40m Quarter-Wave Vertical 20m Quarter-Wave Vertical 80m Base-Loaded Vertical Radial System Installation Multi-Band Trap Vertical 4-Square Phased Array HF Magnetic Loop 20m Portable Magnetic Loop Shielded Receive Loop 10m 3-Element Yagi 10m Moxon Rectangle 20m Moxon Rectangle 2-El Delta Loop Beam 2-El Cubical Quad 6m Half-Wave Dipole 6m Halo / Turnstile 6m 5-Element Yagi 2m J-Pole 2m Slim Jim 2m Collinear Vertical 2m 5-Element Yagi 1.25m (222 MHz) J-Pole 70cm J-Pole 70cm 9-Element Yagi Dual-Band Satellite Array 33cm (902 MHz) Yagi 23cm (1296 MHz) Yagi 23cm Dish Feed — EME NVIS Dipole Attic Dipole — Stealth Indoor Magnetic Loop Beverage Receive Antenna KD9SV Pennant / Flag Loop Random Wire w/ 9:1 Unun W3DZZ Trap Dipole Extended Double Zepp Cobweb (5-Band) Classic Windom Sloper Antenna Folded Dipole Double Bazooka W5GI Mystery Antenna Rhombic Fractal Antenna (Koch) Vee Beam Sloping V Antenna 10m Half-Wave Dipole 12m Half-Wave Dipole 15m Half-Wave Dipole 17m Half-Wave Dipole 30m Half-Wave Dipole 60m Half-Wave Dipole Buddipole-Style Portable Dipole Buddistick-Style Portable Vertical AX1-Style Ultra-Portable HF Slinky Portable Vertical Emergency/Go-Kit Antenna Isotron-Style Compact HF EH Antenna Bobtail / Sterba Curtain Crossed Field Antenna (CFA) 6m Quarter-Wave Vertical 10m Quarter-Wave Vertical 12m Quarter-Wave Vertical 15m Quarter-Wave Vertical 17m Quarter-Wave Vertical 30m Quarter-Wave Vertical 60m Quarter-Wave Vertical 12m 3-Element Yagi 15m 3-Element Yagi 17m 3-Element Yagi Bisquare Loop Roll-Up J-Pole (2m) Hentenna Skeleton Slot Antenna Lindenblad Antenna Eggbeater Antenna Turnstile Antenna ZL Special (2-El Beam) HB9CV Antenna Quagi Antenna 2m/70cm Mag-Mount Mobile Arrow/Elk Handheld Sat Yagi Helical Antenna (Sat/EME) HF Mobile Screwdriver Hamstick-Style Mobile Whip Bugstick Mobile Whip Base-Loaded Mobile Whip Tactical/Surplus-Style Whip W8JK Bidirectional Array Lazy H Stacked Array Bruce Array EWE Antenna Pennant Antenna Flag Antenna Gutter-Mounted Stealth Window Screen Antenna Flagpole Vertical (Stealth) Spiral Loop Antenna Carolina Windom All-Band Doublet G5RV Dipole Inverted-V Dipole T2FD EFHW for SOTA/POTA Portable EFHW Portable Linked Dipole Inverted-L (160m/80m) 160m Vertical Portable Magnetic Loop 2-Element Yagi 3-Element Yagi 5-Element Yagi Moxon Rectangle Quad Loop / Quad Beam Hex Beam Log Periodic Dipole Array APRS Antenna Discone Antenna Portable Tape Measure Yagi 2m Copper Cactus 2m Flower Pot 2m Ground Plane Dual-Band J-Pole 70cm Flower Pot 70cm Slim Jim Half-Square Antenna K9AY Receive Loop
Need WiFi in a detached shack? See our shack network antenna guides (not ham radio antennas): Cantenna · BiQuad

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