Snap On Split Beads

ZS6BKW Center Fed Antenna, 80-6 Meters, 500/1.5KW/5KW PEP rated - FREE shipping in USA

PAL-ZS68006-500
$149.95
In stock
1
Product Details
Brand: Palomar Engineers
Frequency Band(s): 80-6
Country/Region of Manufacture: USA
Freq Range (MHz):: 3.5-54 Mhz
Power (PEP watts):: 500/1500/5000
Length (ft):: 88 feet Wire and 40 feet Ladder Line

Excellent features:

*** Covers 40-20-17-12-10 meter ham bands under 2:1 at most heights no tuner required, 80, 15, 6 meter bands require wide range tuner

*** Great digital/FT8 antenna on many bands without tuner

*** Low SWR on many bands or use antenna tuner

*** 500 watts/1.5KW/5KW PEP (SSB-ICAS) options

*** Stainless Steel hardware for long life

*** Halyard Hoist hole for ease of center support installation or hang at ends only

*** Insulated #14 wire for durability

*** High Strength insulators (may be black, white or gray)

*** Ladder Line to 1:1 Balun (Note 1500/5000 Watts CUBE Balun can be mounted to a wall, 500 watts MB-1-500 is supported by ladder line

Super convenient and quick – great for contest operation! Choose 500, 1500 or 5000 watt PEP (use 5KW model for digital modes over 1000 watts).


INSTALLATION

For best results support center at 30+ feet and ends over 15 feet. Angle of feed each side must be great than 45 degrees or 120 – 180 degrees total between each side preferred. Any length of 50 ohm feed line ok (from the matching unit) but longer feed lines over 50 feet may show reduced SWR on some bands due to losses in feed line and soil conductivity, nearby objects, etc. Due to local ground conditions, antenna height and feed line length, SWR may vary from samples shown and an antenna tuner may be required or some bands to bring SWR at end of feed line to acceptable levels.

Antenna Length Note:These antennas are shipped from the factory with each side at 46 feet long (92 feet total) so that you may adjust(shorten) the length for your personal installation.The SWR graph shown for this product is for a side length of 44 feet as this length provides a lower SWR in the 17 meter band than the 46 foot length. The longer 46 foot length tends to shift the SWR curves to the left (lower frequency) which can sometimes be offset by reducing the length of the ladder line (up to 2 feet max). Each antenna installation is unique – try the antenna lengths as received and shorten the wire length by bending back the wires on themselves at the ends as needed.

Use an antenna tuner for 80, 30, 15 meters and reduce power if balun saturation occurs.

FREE USA Shipping on orders over $100

Insulators may be black, grey or white depending on stock at hand when order is placed. Wire is stranded, AWG#14, insulated and black or grey color.




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Often it is difficult to slip beads on a cable because of a plug or connector. Split beads solve this problem. They come in two halves that fit over the cable. A plastic snap cover holds the two halves together and holds the assembly on the cable.

For RFI use, mix 31 is effective from 1-300 Mhz, mix 43 works from 20-250 Mhz, Mix 61 is for 200-2000 Mhz, and mix 77 favors .1-20 MHz. These frequencies are those of the interfering signal to be eliminated, not the operating frequencies of the equipment to be protected.

Not sure of what sizes you need or solving a RFI problem with devices using multiple size cables?  Try the Ferrite Snap On Combo Pack which has sizes from 1/4″ to 3/4″ with either Mix 31 (1-300 MHz) or Mix 61 (200-2000 MHz) or Mix 75 (150 KHz – 10 MHz).

 NOW WITH QUANTITY PRICING FOR CLUB , VOLUME PURCHASERS!

Bead dimensions are shown in the picture below and in the table as A, B, C

FAIR RITE 185M CLIP ON FERRITE BEAD SPLIT CORE - Snap On Split Beads

Ferrite Split Bead Dimensions

Application Notes

Application Note for using these Snap On split beads: How Many Chokes do I need?

You can very effectively increase the choking impedance of smaller cable by using a large hole ferrite bead and wrapping the cable through several times.  For particularly difficult common mode current/RFI problems you may need a choking impedance as high as 5-10K ohms.  Using multiple beads and multiple turns through each bead will give higher impedances up to a point.  At higher frequencies, when the number of turns approaches an electrical wavelength, the choke becomes resonant due to stray capacitance and the inductance of the cable and limits the high end impedance values to less than the above table points.

Some example of ways to wrap cable are shown below.

Ferrite Split Beads with multiple turns of RG-58/59

FSB14 1 150x150 - Snap On Split Beads

FSB-1/4 – 1 turn

FSB 12 1 150x150 - Snap On Split Beads

FSB-1/2 1 turn

FSB12 1 Open 150x150 - Snap On Split Beads

FSB-1/2 Open Shell

FSB 12 2 150x150 - Snap On Split Beads

FSB-1/2 2 turns

FSB 12 3 150x150 - Snap On Split Beads

FSB-1/2 3 turns

FSB12 4 150x150 - Snap On Split Beads

FSB-1/2 4 turns

—–//—–

More examples of split bead use

20131210 1148191 300x180 - Snap On Split Beads

Ethernet Cable on FSB-1/4

20131210 114800 300x180 - Snap On Split Beads

Ethernet Cable on FSB-1/2 – 3 turns for 9X Impedance good filter for 15-30 mhz between 2K-3K ohms choking Z

Three Effective Radio Interference Filters

Effective RFI/EMI Chokes

20131219 110956 150x150 - Snap On Split Beads

FSB-1/4 or FSB-1/2 4 turns for 14-50 Mhz 2K-3K Z

20131219 111243 150x150 - Snap On Split Beads

FSB-1/2-5 turns for 10-30 Mhz 2K-4.5K choking Z

20131219 105947 150x150 - Snap On Split Beads

FT240-43 – 14 turns for 3-14 Mhz or use two FT240-43 for 1.8-10 Mhz

These snap-on chokes are useful for reducing RFI in public address system amplifiers, speaker wires, mic cables, mixer panels, coax cable, telephone wires, computer sound card speakers, dsl/cable connections, remote control heads for ham transceivers (Especially FT-100, FT900, IC-706, IC-7000), AC power cables, DC power cables, home theater cables, video cables, HI Fi cables, guitar amps, linear amp cables, etc.

 

They are also helpful in suppressing common mode noise/RFI in radio and TV receivers, audio and RF amplifiers.  They can also help suppress noise generated by treadmills, exercise equipment, fish tank heaters, oil heater pumps, fluorescent lights, motors, cable modems, DSL modems, computers, and many other electrical devices.  Common mode current reduction in computer cables often helps speed up computers.