Showing posts with label wireless antenna. Show all posts
Showing posts with label wireless antenna. Show all posts

10/05/2012

Wireless WIFI WI-FI BOOSTER ANTENNA ETHERNET LAN CARD AP SMA SMA AP D-link DWL520, Linksys WMP11, WET11, Netgear MA311, or D-link Aps, 2400-2483 MHz Review

Wireless WIFI WI-FI BOOSTER ANTENNA ETHERNET LAN CARD AP SMA SMA AP D-link DWL520, Linksys WMP11, WET11, Netgear MA311, or D-link Aps, 2400-2483 MHz
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I purchised this item to hook up to an external wifi adaptor for my laptop, so that I would have more range than the antenna that came with it. Even after hooking it up outside, I got less range than the antenna that came with the adaptor. For a few extra cents, you can get an antenna that comes with a 9 dBi antenna, and is interchangeable, which this one is not!

Click Here to see more reviews about: Wireless WIFI WI-FI BOOSTER ANTENNA ETHERNET LAN CARD AP SMA SMA AP D-link DWL520, Linksys WMP11, WET11, Netgear MA311, or D-link Aps, 2400-2483 MHz



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8/07/2012

+9dBi 15" 3x WiFi Booster Antenna for Netgear FM114P FVM318 FWG114P MA311 ME101 ME103 WG302 WG311 with RP-SMA Connector Review

+9dBi 15 3x WiFi Booster Antenna for Netgear FM114P FVM318 FWG114P MA311 ME101 ME103 WG302 WG311 with RP-SMA Connector
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+9dB 15" Booster Antenna for "Linksys" with RP-TNC Connector
To solve the mystery of how you can get gain out of what might appear to be a omni-directional whip: This is a collinear antenna which has coils built into it so that it acts like several vertical antennas are stacked on top of one another, each creating more gain as the radiation pattern is squashed down into the shape of a toroid or doughnut so that little power is received or transmitted either directly above or below the antenna and instead concentrated in a band around the center. If the Wi-Fi antenna you want to receive from is elevated above you then you would want this kind of a antenna to be swiveled in such a manner as to put the whip at a 90 degree orientation to the remote station to allow signal reception or transmission off of the sides of the whip where the power is greatest.
Due to the way the receive and transmit pattern is in the shape of a toroid or doughnut this type of antenna can give good gain while at the same time being omni-directional, except above and below the antenna where you don't need to waste the power anyway. If you want a antenna which has much higher gain look for a more directional antenna such as the flat panel antennas, Yagi or a parabolic reflector type of antenna which depending upon the size, can have 20 dB (or more) of gain which is a factor of 100 making a 100 milliwatt or 1/10 of a watt signal seem as powerful as a 10 watt signal, or a 1 watt signal as powerful as 100 watts. If you buy a flat panel Wi-Fi antenna and get one rated for 20 dBi of gain the half power beam width for both receive and transmit will be about 20 degrees. With a 20 dBi gain flat panel directional antenna, if you point it 10 degrees to the left or right from where it should be pointed for maximum signal you will have the equivalent of 17 dB of gain but that apparent gain will quickly drop off the further away the antenna is pointed from the proper direction. Note: It is a coincidence that a 20 dBi gain antenna has a 20 degree wide half power beamwidth, normally gain and half power beamwidth do not correlate to the same numbers except in the case of a 20 dBi gain antenna.
If you want to receive or transmit to two different locations at the same time but want each to have the best signal possible using a single high gain flat panel antenna, you can cut the difference between them sacrificing some of the gain to each one and point the antenna to an area in the middle. As long as the two stations are close enough together to be within a healthy portion of the antennas area of gain this should work out fine. Obviously, you wouldn't expect to be able to use that antenna for two different locations if one was behind you and the other in front but if both are within 30 degrees from you and not too far away a 20 dBi gain antenna could be used by cutting the difference between them. If they are too far separated in azimuth direction from you use a high gain collinear antenna with more power on each end, or perhaps using a lower gain antenna which has a much wider beamwidth or separate antennas for each radio shot. You can also use a splitter designed for 2.4 GHz and combine the receive and transmit from two separate antennas together into one feedline going back to your equipment, if necessary, but there will be a 3+ dB penalty or loss of signal level when doing so but to me this seems like the best solution if you need all the gain you can get from a flat panel or highly directional antenna to each station when using a common or single Wi-Fi transmitter and receiver such as a LinkSys or other wireless router.
Here is a good rule of thumb for line of sight radio shots without buildings or other terrain in between, every time you half the distance you increase the received power from a remote location by six dB, or if you double the distance you lose six more dB of signal level. In areas where there are trees and buildings or hills between each location this rule does not apply as the signal losses can be very great for short distances.


Click Here to see more reviews about: +9dBi 15" 3x WiFi Booster Antenna for Netgear FM114P FVM318 FWG114P MA311 ME101 ME103 WG302 WG311 with RP-SMA Connector



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2/15/2012

eForCity Wi-Fi Booster Antenna for D-link DWL520, Linksys WMP11, WET11, Netgear MA311, or D-link Aps, 2400-2483 MHz, 6ft Review

eForCity Wi-Fi Booster Antenna for D-link DWL520, Linksys WMP11, WET11, Netgear MA311, or D-link Aps, 2400-2483 MHz, 6ft
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At first, I wasn't sure if I liked this little antenna or not. There isn't much to it... it's got a connector, a cord, a magnetic base (which is pretty strong by the way) and of course the antenna itself. It didn't seem to give me much of an improvement until I learned how to pick the correct location for it...
The biggest benefit of having one of these is flexibility of placement. With antennas, correct placement is crucial. I bought two: one for my desktop PC and one for my router. These antennas aren't necessarily any more sensitive than the little plastic ones that come with wifi cards and access points, but being able to move the antenna location from behind the PC on the floor (which is where most people with wireless cards have their antennas) to the top of your desk or on top of your monitor makes a big difference right away.
Now, if you are really serious about getting the best performance out of this antenna, I would suggest you download a program called NetStumbler. It will let you see the S/N ratio in dBm and it updates in real-time. This lets you get perfect placement with your antenna. You'd be amazed what a difference an inch to the left or right can make. I have a feeling a lot of people who have problems with aftermarket wifi antennas are not placing them properly.
For $5.54 each plus a couple bucks for shipping, this antenna can't be beat.

Click Here to see more reviews about: eForCity Wi-Fi Booster Antenna for D-link DWL520, Linksys WMP11, WET11, Netgear MA311, or D-link Aps, 2400-2483 MHz, 6ft



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1/01/2012

GSKY High Power 500mW 27dBm 802.11b/g USB Wireless WiFi LAN Adapter With Bonus Screw-On Swivel 9dBi Rubber Antenna Review

GSKY High Power 500mW 27dBm 802.11b/g USB Wireless WiFi LAN Adapter With Bonus Screw-On Swivel 9dBi Rubber Antenna
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I purchased this item after recently purchasing the Alfa, also offered by this seller on Amazon. (USB 500mW WiFI Adapter for Wardriving & Range Extension *Strongest on the Market* $51.99)
I liked the Alfa but this one had a bigger antenna and was cheaper and looked almost identical to my Alfa so I decided to give it a try. I'm not loving it. The setup was much more difficult and I couldn't get it working on my desktop running XP at all. The Alfa plugged right in and runs like a dream on it. Also, I actually get worse reception with the big antenna than I do with the small one.
All and all, I would recommend the Alfa over this one for ease of installation (installed on XP with no additional work and installed on Vista with driver from website pretty easily). Also the Alfa seems to more consistently maintain the signal and I got more bars with it then I am getting with this GSky.
Spend the extra few dollars and go with the Alfa. (By the way, I am a SAH mom, not a computer geek, so keep that in mind when I talk of ease of install and setup.)


Click Here to see more reviews about: GSKY High Power 500mW 27dBm 802.11b/g USB Wireless WiFi LAN Adapter With Bonus Screw-On Swivel 9dBi Rubber Antenna



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12/13/2011

D-Link ANT24-0700 2.4 GHz Omni-Directional 7 dBi Indoor Antenna Review

D-Link  ANT24-0700 2.4 GHz Omni-Directional 7 dBi Indoor Antenna
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My wireless router is in my office in the basement. When I took my laptop to the first floor the signal strength was "Very Good" or "Good". When I first installed this antenna, it didn't make a difference and I was going to write it off, but I went through the instruction manual. The key to making this antenna work is the way you position it. For example if you keep the antenna vertical as you see in the picture on amazon, it transmits the signal in a horizontal circle. Like a dinner plate set on the dining table. If you are trying to send the signal to other rooms on the same level, this helps. However, it doesnt help if you are trying to send boost the signal to a level above or below the route. You need to position the antenna horizontally, (i.e, parallel to the floor) to send the signal in a vertical circle. My signal strength is now excellent to very good on the first floor and very good to good on the second level with the router in the basement. Hope this helps.

Click Here to see more reviews about: D-Link ANT24-0700 2.4 GHz Omni-Directional 7 dBi Indoor Antenna

The D-Link ANT24-0700 is a 7dBi High-Gain Omni-Directional Antenna designed to provide 360 of enhanced wireless signal coverage. For greater flexibility in placement, the ANT24-0700 is accompanied by a magnetic based with 1.5m extension cable. For any 2.4GHz wireless networking device with a SMA or TNC connector, the ANT24-0700 is the ideal solution to help increase wireless reception. Place the antenna in a prime location where maximum signal coverage can be attained.

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11/16/2011

Wireless Router RP SMA 7dbi Antenna For D-Link Netgear Review

Wireless Router RP SMA 7dbi Antenna For D-Link Netgear
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The product did not do anything, and might have even made the internet connection worse! But since it only cost $5, it would have been more trouble than it was worth to ship it back.

Click Here to see more reviews about: Wireless Router RP SMA 7dbi Antenna For D-Link Netgear



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8/15/2011

Hawking HiGain Directional Corner Antenna, indoor, 15dBi - HAI15SC Review

Hawking HiGain Directional Corner Antenna, indoor, 15dBi - HAI15SC
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This is a "deconstructive" review of Hawking's corner reflector. Basically I took it apart so you don't have to! BTW - I am an RF engineer, so I apologize if it gets too technical.
First let me provide a explanation of what a "corner reflector antenna" is. A corner reflector antenna is a very simple, but high gain type of antenna. It consists of a dipole antenna (a dipole is just a straight piece of wire cut in a precise way) and behind the dipole is an angled metal screen or plate which is called the reflector. The angle of the reflector is typically 90 degrees, which forms a corner and thus the name. The reflector focuses the signal so it is more concentrated, which results in higher gain versus a simple dipole.
Taking apart the corner reflector is straightforward, but it does take some time and muscle. I carefully but forcefully pulled on the gray plastic end caps. After some time, the end caps finally came off. This revealed an unlabeled, rather ordinary black "stick" antenna inside the white plastic pipe. It's probably a 5dBi collinear dipole. The antenna is connected to the coax cable via a panel mount SMA connector. I was able to remove this antenna, but it does take some torque because Hawking applied thread locking glue.
Based on it's construction, I have no reason to doubt the 15dbi gain claim. However, I seriously doubt the 90 degree vertical and horizontal beamwidths that the manual seems to claim. I guesstimate that 3dB beamwidths are in the order of 40 degrees horizontal and 30 degrees vertical, based on my experience with similar corner reflectors. This makes orientation MUCH more critical. If you are 15-20 degrees off, you could be losing half (3dB) of your signal! On the other hand, such a narrow beamwidth is a good thing if other people's AP's/client's are interfering. Any other transmitters outside of the main beam will be weakened, reducing your noise and improving signal quality.
Now to analyze the coax cable. The outer jacket is unlabeled white plastic, so you can't tell who made it or what type of cable it is. It's thin, about 1/8" thick . I cut off one end to see what's inside. The shielding is quite good. It's a dual shield, foil plus braid. The foil provides complete coverage. The braid is tin plated copper and has excellent coverage, probably 95%. The center conductor looks and cuts like pure solid copper, not copper clad steel. The center insulator (the dielectric) is a clear translucent, solid (not foam) plastic. When I soldered on an SMA pin, the dielectric easily melted! It's probably NOT teflon, but cheaper, higher loss polyethylene. Based on this, it's probably a RG-174 type cable, not the lower loss RG-316. Cables of this type generally have a loss of 0.6dB per foot at 2.4Ghz. The cable is 6 feet long , so you lose more than half (3.6dB) of your signal in the coax! Making a shorter cable and/or using better cable would help.
Considering how it's made, a lot of the negative reviews make sense. It's a 15dBi antenna, but you lose 3.6dBi in the cable so effectively it's only 11.4dBi. Plus if you don't point it within 15 to 20 degrees of your target (both horizontally AND vertically), you will lose even more signal. Used indoors, there is so much RF scatter that the actual direction of maximum signal can very often NOT be in the direction of the target due to signals being bounced around. You'll have to rotate the antenna in different directions vertically and horizontally to find the maximum signal. Used outdoors or in unobstructed area, just point it at the target and you're done. However, keep in mind that this IS NOT a weatherproof antenna, so don't leave out outside where the rain and sun will beat down on it.
Used properly, this antenna really shines. It provides a tremendous value for under $50. Antennas with similar gain will cost MUCH more.

Click Here to see more reviews about: Hawking HiGain Directional Corner Antenna, indoor, 15dBi - HAI15SC

Increase Your Wireless Network Strength, Works with 2.4GHz 802.11b /g Wireless Standards, Extend your Network Range, Great for Large Conference Rooms or Open Spaces, East Installation (No Software Required).Main FeaturesManufacturer: Hawking Technologies, IncManufacturer Part Number: HAI15SCManufacturer Website Address: www.hawkingtech Product Type: High-Gain AntennaFrequency: 2.4 GHzGain: 15 dBiImpedance: 50 ohm NominalConnectors: 1 x Reverse SMAStandard Warranty: 1 Year(s)

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