BPL Broadband data communication in the low-voltage grid

China BPL Broadband data communication in the low-voltage grid, Find details about China BPL Powerline Ethernet Bridge, BPL power line carrier from BPL Broadband data communication in the low-voltage grid

Model NO.
WD-1001M-BPL
Security
128-AES
Modulation
OFDM
Transfer Rate(Phy)
200Mbps
Trademark
Wondertek
Transport Package
Inner Box and Paper Carto
Specification
120*90*45mm(LxWxH)
Origin
China
HS Code
8517699000
Model NO.
WD-1001M-BPL
Security
128-AES
Modulation
OFDM
Transfer Rate(Phy)
200Mbps
Trademark
Wondertek
Transport Package
Inner Box and Paper Carto
Specification
120*90*45mm(LxWxH)
Origin
China
HS Code
8517699000
 

Brief introduction:
BPL Smart Powerline Ethernet Bridge is an industrial powerline communication product developed by WonderTek. The product adopts the ITU-T G.9960 G.hn communication protocol standard, at present has been widely used in intelligent manufacturing, intelligent building, intelligent city street light monitoring, smart meters, solar panels and communications in dangerous environment, Marine applications, automotive applications, aerospace applications, railway, mining, intelligent storage, intelligent sorting, automatic garage cable or sliding contact line, and many other field.

An intelligent power grid needs reliable data communication. With state-of-the-art broadband powerline (BPL) technology, the power grid becomes an omnipresent data network for smart metering and smart grid applications. A headend device in the local network station is the starting point for setting up a broadband powerline cluster. It manages the communication between intelligent measurement systems as well as installed measuring and switching devices in the low-voltage grid and the IT backend of the network operator. All intelligent measuring systems can be connected to the Wide Area Network (WAN) via the BPL network. In addition, the G.hn-BPL technology with its very short response times is ideal for network applications and switching operations. Compared to other BPL technologies, G.hn ensures a much more stable PLC network. The devolo multi-phase coupling uses two channels for data communication. This makes the connection between the BPL devices much more robust and more performant.


1.1 Highlight
1.1.1 Technical parameters             
  1. Support G.hn
  2. Industrial DIN rail style installation.
  3. Up to 6 levels of relay can be achieved
  4. Self-adapt the rate.l
1.1.2 Manageability
  1. Support Remote Firmware update(TR069).
  2. 802.3D Ethernet Bridge.
  3. 802.1Q VLAN.
  4. Quality of Service(QoS) .
  5. IGMO(IPv4)Snooping&MLD(IPv6)Snooping.
1.1.3 Operating environment
  1. Working temperature:  -40ºC-85ºC.
  2. Operating humidity: 10%-85% no condense.
  3. Storage humidity:5%-90% no condense.l
1.1.4 Design standards
  1. ITU-T G.9960
  2. IEC 60529
  3. IEC 50022
  4. IEC 60068-2-6                         
            
Specification:
Interface1*LAN 10/100Base-TX  self adaption  RJ45 port,MDI/MDX support
LED display lightsPWR(power light), PLC(PLC signal light), ETH(Ethernet light) 
Transfer band2-50MHz and MIMO
protocol(PHY)ITU-T G.9960 (G.hn) IEEE802.3,IEEE802.3x, IEEE802.3u
Security128-AES
Transfer rate(PHY)200Mbps
Number of each group60
ModulationOFDM
Maximum effective data transfer rateTCP/IP  100Mbps
ManageabilityRemote Firmware update,support TR-069(optional)
802.1D Ethernet Bridge
802.1Q VLAN
Quality of Service(QoS)
Operating temperature-40ºC-85ºC
Size120*90*45mm(L×W×H)
WeightAbout 0.30kg
Operating environmentworking temperature:-10ºC-85ºC
working humidity 5%-90% non-condensed state
CertificationFCC,CE class B,WEEE,RoHS
Relay numberMaximum level 10 relay
Transmission distance About 5000m
Transmission lineThree-wire transmission MIMO Mode

1.2 Features
(1) Packet loss:≤0.1%(100M,load 70%);
(2) Support 7*24 hours all weather operation;
(3) Hardware watch dog function;
(4) PING<20MS.

1.3 Immunity of ESD
The testing voltage which the device should be beared: ±6kV direct Discharge, ±8kV air discharge;
Discharge number in Each sensitive testing point: Plus-n-Minus 10 times each;
Every time the discharge interval is 1 s.
According to B/T 17626.2-2006.

1.4 Immunity of electrical fast transient impulse group(Common mode)
The testing voltage which the device should be beared:
Between the power supply voltage port and ground: ±2.0kV;
Between signal circuit and ground: ±1.0kV;
Repetition frequency: 5KHz;
Test duration: 1 min/ time;
Testing times: Plus-n-Minus 5 times each.
According to GB/T 17626.4-2008.

1.5 Anti interference of surge impact
The testing voltage which the device should be beared: ±2kV;
The interval of continuous impulses: 1min/time;
Test number: Plus-n-Minus 5 times each.
According to GB/T 17626.5-2008.(protection: all models protection and varistor series of discharge tube type)

1.6Anti- vibration
Meet the demand of MX3 in TB1433(0-200Hz,2g acceleration,  maximum amplitude 7mm), interface with no loose, device with no Sealing off and drop in the test.


1.7 System topology

BPL Broadband data communication in the low-voltage gridBPL Broadband data communication in the low-voltage grid


                                     
1.8 Installation diagram

BPL Broadband data communication in the low-voltage grid
BPL Broadband data communication in the low-voltage grid
1.9 Product model selection
ModelEthernet PortLine EnvironmentVoltage
WD-1001M-BPL-AM1AC MasterAC85-520V
WD-1001M-BPL-AS1AC SlaveAC85-520V
WD-1001M-BPL-DM1DC MasterDC10-80V
WD-1001M-BPL-DS1DC SalveDC10-80V
                                          
                          

BPL Broadband data communication in the low-voltage grid