Data & Networking Devices
part#
description
manufacturer
EMIO-100TL
1-Ch, 18/24-bit LVDS to RGB TTL module; 18/24-bit LVDS interface; Full size Mini PCIe form factor (w/o golden finger); LVDS to RGB TTL module
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SQF-SMS 640
SQFlash mSATA 640, SATA Gen. 3 (6.0Gbps); MO-300 mSATA Module; Compliant with SATA III and SATA v 3.2 standard; Supports LDPC & RAID ECC; Supports Fragment Writing Technology and Flush Manager; Shock resistance, anti-vibration and low power consumption; G
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EMIO-200U3
PCIe to 2-Ch USB 3.0 Port Module; PCIe to 2 channel USB 3.0 port; Full size Mini PCIe; MiniPCIe thru PCIe signal; Each USB port supplies maximum +5V/ 900mA; Widely temperature from -40 ~ 85 degree
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AMR-UD4P (CHINA REGION ONLY)
AMR delivers China localized Memory to adopted China Brand CXMT DRAM IC and Hynix IC chip, as well as AMR is produce in China; 288pin UDIMM DDR4 2666; Capacity: 8/16GB; Operating temperature: 0 °C ~ 85 °C; China CXMT DRAM IC / Hynix IC; Made in China
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IMC-370I-2SFP
Mini Hardened Media Converter, 1000Mbps, SFP (also known as IE-MiniMc 854-19619); Metal enclosure with compact size; Industrial grade design that supports extended operating temperature(IMC-370I series); Provides status LED; Supports multiple power option
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EKI-9528G-4GMX
EN50155 Managed Ethernet Switch with 28xGE, 24-110VDC; M12 connector with ruggedized IP54 certified housing; Complies with EN50155 and EN50121-3-2 standards; Wide nominal power input range: 24 ~ 110VDC; Operating power input range: 16.8 ~ 137.5VDC; X-Ring
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EKI-9510G-2GPH
EN50155 Unmanaged PoE Ethernet Switch with 10xGE(2bypass), 72-110 VDC; 8 x M12 X-Coded 10/100Mbps PoE ports + 2 x M12 X-Coded 10/100/1000Mbps ports with Bypass function; Complies with EN50155 & EN50121-3-2; Operating Temperature: -40~70℃; Operating Voltag
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IMC-595PS-160
100-240V to 56V, 159W adapter power supply; 100-240V to 56V, 159W adapter power supply
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BB-485FPP
Serial Surge Protector, RS-422/485 Data Line, Fused; Protects RS-422 or RS-485 ports; 600W serial circuit surge suppression; 125 mA fast-acting PCB fuses; Simple in-line installation; One time use, disposable unit
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EKI-7708E-4FP
4FE PoE and 4G SFP Managed Ethernet Switch, IEEE802.3af/at, 46~57VDC; 4 x IEEE 802.3 af/at PoE Fast Ethernet ports + 4 SFP ports; SFP socket for Easy and Flexible Fiber Expansion; Redundancy: X-Ring Pro (ultra high-speed recovery time < 20 ms), RSTP/STP (
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EKI-2742FPI
2GE PoE, SFP Injector, IEEE802.3af/at, 24~48VDC, -40~75℃; Supports multi-rate for SFP slot; IEEE 802.3af/at compliant; Power input 48 VDC, supply 30W per port; Provides slim size and DIN-rail/Wall mount with IP31 metal mechanism; Supports operating temper
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EKI-2701MPI-5G
Hardened multi-speed Mega PoE Injector; Supports multi data rate 10M/100M/1G/2.5G/5G for Data in and PoE out; IEEE 802.3af/at/bt compliant; Force mode power supports up to 90W by DIP switch; Power input 54~57 VDC, injects power up to 90W; Provides slim si
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EKI-9508E-PH
EN50155 Unmanaged PoE Ethernet Switch with 8FE, 72-110 VDC; 8 x M12 D-coded 10/100Mbps ports; Complies with EN50155 & EN50121-3-2; Operating temperature range -40 ~ 70°C; Operating Voltage: 50.4~137.5 VDC; X-Ring Pro supports rapid and predictable converg
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1970004537N001
1U LGA1151/1200 Copper CPU Air Cooler; Compatible CPU Socket:LGA 1151/1200; Maximum CPU TDP (@ 60℃ Ta):55W; Fan:7.5 cm/11.83 CFM, 5500±10% RPM; Dimension:84 x 84 x 28 mm (3.3" x 3.3" x 1.1"); Minumum Chassis Height:1U; Supported Boards:PCE-3029/4129, PCE-
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EKI-9508E-L
EN50155 Unmanaged Ethernet Switch with 8FE, 24-48 VDC; 8 M12 D-coded 10/100Mbps ports; Complies with EN50155 & EN50121-3-2; Operating temperature range -40 ~ 70°C; Operating Voltage: 16.8~60 VDC; M12 connector with rugged housing
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NVIDIA L4
(Bundle Sale)Tesla L4 24GB PCIe SSLP w/ATX BKT (Part Number:SKY-TESL-L4-24P); NVIDIA Ada-Lovelace GPU architecture; Universal Compute & Graphics GPU; 7680 NVIDIA® CUDA® Cores; 240 NVIDIA® Tensor Cores; 60 NVIDIA® RT Cores; 24GB with ECC memory; Up to 300
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MIC-770 V3
Compact Fanless System with 12th/13th/14th Gen Intel® Core™ i CPU Socket (LGA 1700); Intel® 12th/13th/14th Gen Core™ i CPU socket-type (LGA1700) with Intel® R680E/ H610E chipset; Wide operating temperature (-20 ~ 60 °C); VGA and HDMI output;; 2 x GigaLAN,
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ITA-360L
Fanless System with 12th/13th Generation Intel® Core™ i Processors for Traffic Management Application; Intel® 12th/13th generation Core™ i9/i7/i5/i3 Processors; Support 2 x SO-DIMM slots, up to 64G DDR4; Support 4 x 2.5G LAN, 4 x USB3.2, 4 x COM ports; Su
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MIC-7500
Intel 6th Generation Core i Processor Compact Fanless System; Intel 6th Generation Core i7/i5/i3 BGA type CPU with Intel QM170PCH; I-Module expansion module; VGA & DVI Interface; 1 x 2.5" HDD/SSD, 1 x CFast, and 1 x mSATA; 2 Giga LANs and 8x USB 3.0; 2 x
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MIC-75M13
4-slot expansion i-Module with 1 PCIe x16, 3 PCI; 1x PCIEx16; 3x PCI; 1x SATA (2x 2.5" HDD bay); Support 1x 8cm FAN (Optional); Dimension (W x H x G): 90 x 192 x 230 mm
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Data & Networking Devices
General Guide & Overview
Networking devices come in various forms and play distinct roles in a network's infrastructure. They enable the efficient transmission of data, enhance network performance, and ensure network security. By knowing the types of networking devices, their examples, and their place in a computer network, you can optimize your network's connectivity, reliability, and overall functionality.
By gaining knowledge about data and networking devices, you will be equipped to build a network infrastructure that best suits your needs. You can enhance communication, secure your network from external threats, and create a reliable environment for data transmission.
Types of Networking Devices
In the world of computer networks, various types of networking devices play a crucial role in establishing and maintaining seamless connectivity. These devices are designed to facilitate efficient data transmission, enhance network performance, and ensure network security. By understanding the characteristics and capabilities of these devices, you can make informed decisions when setting up and managing your network.
Bridges
A bridge is a networking device that connects two separate networks and allows them to communicate with each other. It operates at the data link layer of the network and helps in directing network traffic between different segments.
Hubs
A hub is a simple networking device that connects multiple devices within a network. It operates at the physical layer of the network and works as a central point for data transmission, allowing devices to share information.
NICs (Network Interface Cards)
NICs, also known as network interface cards, are hardware devices that enable computers to connect to a network. They are responsible for translating data into a format that can be transmitted over the network and receiving data from the network.
Modems
A modem is a device that converts digital signals from a computer into analog signals that can be transmitted over telephone lines or cable lines. It is used to establish a connection to the internet or other remote networks.
Repeaters
A repeater is a networking device that regenerates and amplifies signals to extend the reach of a network. It receives signals, cleans them, and boosts their strength before transmitting them to another part of the network.
Switches
A switch is a networking device that connects multiple devices within a network and forwards data packets between them. It operates at the data link layer and improves network efficiency by transmitting data only to the intended recipient.
Routers
Routers are devices that connect different networks and facilitate the transfer of data between them. They operate at the network layer and use routing tables to determine the best path for data transmission.
Firewalls
A firewall is a security device that protects a network from unauthorized access and potential threats. It monitors incoming and outgoing network traffic and applies security rules to prevent malicious activities.
Gateways
A gateway is a networking device that connects two different types of networks, such as a local area network (LAN) and the internet. It acts as an intermediary and enables seamless communication between the networks.
Data and networking devices play a vital role in the world of modern connectivity. These devices are essential for efficient data transmission, ensuring optimal network performance, and providing network security. By utilizing networking hardware devices and incorporating advanced networking devices, individuals and organizations can establish a robust and reliable network infrastructure.
Understanding the different types of computer networking devices is key to optimizing your network. Bridges, hubs, network interface cards (NICs), modems, repeaters, switches, routers, firewalls, and gateways all have specific functionalities that contribute to seamless communication between devices.
Choosing the appropriate devices based on your network requirements is crucial. Whether you need to connect multiple devices in a local area network (LAN), connect remote networks, or secure your network from external threats, selecting the right networking devices is vital. Staying updated with the latest advancements in networking technology will also ensure that your network remains efficient and secure.
In summary, data and networking devices are the building blocks of modern connectivity. They facilitate seamless communication, enhance network performance, and keep your data secure. By understanding the various types of computer networking devices and their roles in networking, you can optimize your network and ensure smooth and reliable communication between all your devices.
FAQ
What are networking devices?
Networking devices are hardware or software components that facilitate communication and data exchange between devices in a computer network. They help establish and maintain connectivity, enhance network performance, and ensure data security.
What are some examples of networking devices?
Examples of networking devices include routers, switches, hubs, network interface cards (NICs), modems, repeaters, bridges, firewalls, and gateways.
What role do bridges, hubs, and NICs play in networking?
Bridges are devices that connect multiple network segments, allowing communication between devices in different segments. Hubs are central connection points that allow multiple devices to connect to a network. NICs, or Network Interface Cards, enable devices to connect to a network by providing the necessary communication interface.
What are the functions of modems, repeaters, and switches in networking?
Modems enable devices to connect to the internet by converting data signals between analog and digital formats. Repeaters amplify network signals, extending the reach of a network. Switches connect multiple devices within a network and facilitate efficient data transmission between them.
What is the role of routers, firewalls, and gateways in networking?
Routers are networking devices that direct data packets between different networks, enabling communication and data exchange between them. Firewalls protect networks by monitoring and filtering incoming and outgoing network traffic. Gateways connect networks with different protocols, facilitating communication between them.
How do networking devices contribute to network security and performance?
Networking devices play a crucial role in network security by implementing security protocols, filtering traffic, and monitoring network activity. They also enhance network performance by optimizing data transmission, managing network traffic, and ensuring reliable connectivity.
How can I choose the right networking devices for my network?
When choosing networking devices, consider factors such as network size, requirements, capacity, and security needs. Consult with network professionals or providers to determine the most suitable devices for your specific network setup.
Are there any advanced networking devices available?
Yes, advanced networking devices include technologies like load balancers, VPN concentrators, network accelerators, and intrusion detection systems (IDS). These devices offer specialized functionalities to enhance network performance, security, and scalability.
How can I stay updated with the latest advancements in networking technology?
Stay informed through technology news websites, industry publications, and professional networking events. Follow reputable networking equipment manufacturers and providers to learn about new products and technologies in the networking field.