Key Features 8 10/100 Mbps auto-negotiation RJ45 ports, supports auto MDI/MDIX Green Ethernet technology saves the power up to 60% IEEE 802.3x flow control provides reliable data transfer Plastic case, desktop design Plug & play, no configuration required The TL-SF1008D Fast Ethernet Switch is designed for SOHO (Small Office/ Home Office) or workgroup users.. All 8 ports support auto MDI/MDIX, no need to worry about the cable type, simply plug & play. Moreover, with the innovative energy-efficient technology, the TL-SF1008D can save up to 60%* of the power consumption & 70% of the packaging material can be recycled, making it an eco-friendly solution for your business network. High Performance TL-SF1008D Fast Ethernet Switch provides 8 10/100 Mbps Auto-Negotiation RJ45 ports. All ports support Auto MDI/MDIX function, eliminating the need for crossover cables or Uplink ports. Featuring non-blocking switching architecture, TL-SF1008D forwards & filters packets at full wire-speed for maximum throughput. With 10K Jumbo frame, the performance of large files transfers is enhanced significantly. & IEEE 802.3x flow control for Full Duplex mode & backpressure for Half Duplex mode alleviate the traffic congestion & make TL-SF1008D work reliably. TP-LINK Green Technology This new generation TL-SF1008D Fast Ethernet Switch features the latest innovative energy-efficient technologies that can greatly expand your network capacity with much less power. It automatically adjusts power consumption according to the link status & cable length to limit the carbon footprint of your network. It also complies with the EU’S Ro HS, prohibiting the use of certain hazardous materials. Besides, 70% of the packaging material can be recycled. Easy to Use The auto features of this switch make installation plug & play & hassle-free. No configuring is required. Auto MDI/MDIX eliminates the need for crossover cables. Auto-negotiation on each port senses the link speed of a network device (10, 100 Mbps) & intelligently adjusts for compatibility & optimal performance.