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Axiom SFP+ DAC Cable for Meraki 0.5m
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Axiom SFP+ DAC Cable for Meraki 0.5m
  • Brand: Axiom
  • Part Number: MA-CBL-TA-50CM-AX
  • Compatible Brand: Printer
  • Transfer Rate: 10 gigabits_per_second
  • Model #: MA-CBL-TA-50CM-AX
  •  
  • 646.29SR 
  • 262.50SR Shipping
ENET SFP+ Module
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ENET SFP+ Module
  • Model #: MA-SFP-10GB-SR-ENC
  •  
  • 566.94SR 
  • 262.50SR Shipping
Axiom J4858A-AX 1000BASE-SX SFP Transceiver for HP
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Axiom J4858A-AX 1000BASE-SX SFP Transceiver for HP
  • Brand: Axiom
  • Part Number: J4858A-AX
  • Weight: 0.6 ounces
  • Model #: J4858A-AX
  •  
  • 676.19SR 
  • 825.10SR Shipping
Perle S-100-S1ST20D Transceiver/Media Converter
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Perle S-100-S1ST20D Transceiver/Media Converter
  • Package Contents: S-100-S1ST20D Transceiver/Media Converter 100-240v AC, Regulated DC Adapter
  • Parts: Lifetime
  • Model #: 05040794
  •  
  • 3,183.19SR 
  • 375.02SR Shipping
IBM 49Y4216 Brocade 10Gb SFP+ SR Optical Transceiver
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IBM 49Y4216 Brocade 10Gb SFP+ SR Optical Transceiver
  • Device Type: Transceiver
  • Transfer Rate: 10 Gbps
  • Model #: 49Y4216
Axiom SFP+ Module
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Lenovo
Axiom SFP+ Module
  • Model #: SFP-10G-BX40U-AX
  •  
  • 16,614.04SR 
  • 262.50SR Shipping
Axiom 100BASE-FX SFP for RuggedCom
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Lenovo
Axiom 100BASE-FX SFP for RuggedCom
  • Model #: SFP1131-1FX20-AX
  •  
  • 796.94SR 
  • 262.50SR Shipping
Perle S-110PP-M1ST2U Transceiver/Media Converter
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Perle S-110PP-M1ST2U Transceiver/Media Converter
  • Package Contents: S-110PP-M1ST2U Transceiver/Media Converter 100-240v AC, Adapter
  • Parts: Lifetime
  • Model #: 05081304
  •  
  • 5,590.14SR 
  • 487.54SR Shipping
Transition Networks Stand-alone Gigabit Ethernet Remotely Managed NID
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Transition Networks Stand-alone Gigabit Ethernet Remotely Managed NID
  • Package Contents: Stand-alone Gigabit Ethernet Remotely Managed NID North America Power Supply
  • Parts: Lifetime
  • Model #: S3221-1040-T-NA
  •  
  • 5,338.29SR 
  • 375.02SR Shipping
LENOVO - SFP (MINI-GBIC) TRANSCEIVER MODULE - 8GB FIBRE CHANNEL (SHORT WAVE) - 00MJ103
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  •  
  • 1,229.13SR 
  • 164.24SR Shipping
Lenovo 4XC0F28735 Thinkserver 10GB Optical Module By Intel
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Lenovo
Lenovo 4XC0F28735 Thinkserver 10GB Optical Module By Intel
  • Transfer Rate: 10 Gbps
  • Package Contents: ThinkServer 10 Gb Optical Module by Intel Publication
  • Model #: 4XC0F28735
  •  
  • 564.97SR 
  • 293.20SR Shipping
Transition Networks C3210-1014 Gigabit Ethernet Media Converter
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Transition Networks C3210-1014 Gigabit Ethernet Media Converter

OUT OF STOCK

  • Ports: 1 x RJ-45 Network 1 x SC Network
  • Max Distance: 6.21 Mile
  • Dimensions: 3.4' Height x 0.9' Width x 6.5' Depth
  • Parts: Lifetime
  • Model #: C3210-1014
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  • 2,855.44SR 
  • Free Shipping
  • Network Transceivers

Network Transceivers

Communication needs have always revolved around two parties. There is a long history of the digital sender/receiver relationship, dating back to the introduction of tools like radio and walkie-talkies. The technology that goes into networks of this caliber was - and continues to be - defined by the need for a signal to be delivered to another location from its point of origin. As such, devices called transmitters and receivers came into being in order to facilitate this.

But this method of connection is not suitable for all forms of telecom and media due to its inability to open channels in both directions simultaneously. Radios are only able to receive signals, despite the fact that there is a station somewhere broadcasting them. In contrast, telephones allow two people to speak to each other in real time. This is because landline and cellular networks use transceivers to facilitate these calls.

Transceivers are - like the name that they possess - a combination of transmitters and receivers. They have existed for a number of years in various incarnations, but are particularly valuable components in wireless networking set-ups. Network transceivers make many of the varied functions of computers possible, enabling a world of interconnectivity that was only dreamed of at the time that the technology behind these devices was first being realized.

In order to expand a Wi-Fi network into new areas, it may be necessary to invest in a transceiver. They are already in use all over by major companies and Internet providers, and have proven useful in trying to bring everyone in the world onto the World Wide Web.

Analog Transceiver vs. Wireless Transceiver

Much like other aspects of network connectivity, there are options regarding what kind of connection is desired. There are some instances where it makes the most sense to use a wired, analog connection. In these situations, distance or mobility are probably not as big of factors as they could be elsewhere, and the importance of uninterrupted service is critical. But as Wi-Fi connectivity becomes less of an extra perk and more of an expected amenity, providers are seeking out new ways in which to bolster the range of their coverage. Wireless transceivers are going to be absolutely critical in expanding quality access to the Internet.

To provide you with a better idea of how transceivers are being applied today, here is a list of some of the machines they help empower:

  • PC and Console Gaming - One of the biggest benefits to the Gaming world was the inception of Internet-enabled play on a wide scale. Because there is so much data now that needs to be coming and going to and from any console at a given time, video game devices are absolutely enabled by transceivers.
  • Eyeglasses and Wristwatches - Wearable devices are making huge waves in the technology world, and many of them have yet to even be released! Regardless, they are already expected to become major parts of everyday life, and that means more transceivers moving through the world.
  • Cars, buses and people - Some potential places that these transceivers could end up are on public transportation vehicles like buses, which would bring the signal all over the city in which they run. Similarly, rental car participants could receive incentives for carrying a transceiver in their car and parking it in a designated location. This kind of ingenuity could increase global access to the Internet in a big way, and may be instrumental to the development of technology as a whole.