A.2 Recycling information ...................................................................................................15
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ETH1000-SW-10G Rev. E
Microcontroller
10G uplink port
Remote control
SFP+
Switch/
multiplexer
Port 1
10/100/
1000Base-T
10/100/
1000Base-T
10/100/
1000Base-T
10/100/
1000Base-T
10/100/
1000Base-T
Port 2
Port 3
Port 4
Port 5
1 Product overview
The ETH-1000-SW-10G is a 5 port Ethernet Switch with a 10G uplink port. The ETH-1000SW-10G provides a highly integrated solution for aggregating and transporting up 5 Gigabit
Ethernet (GbE) signals over an 10G Ethernet or fiber based network. The 5 Gigabit Ethernet
ports are aggregated onto a single 10-Gigabit Ethernet (10GbE) network facing port which
can be populated with Nevion SFP+ modules to facilitate optical transmission over a range
of distances and optical wavelengths.
All Gigabit Ethernet ports can auto-negotiate 10/100/1000 BASE-T (full duplex) signals and
the 10-Gigabit Ethernet port can auto-negotiate between Gigabit Ethernet and 10-Gigabit
Ethernet signals (full duplex) when interfacing with an Ethernet network.
Figure 1 Block diagram of the ETH-1000-SW-10G
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ETH1000-SW-10G Rev. E
2 Specifications
Due to the amount of heat generated from these units, they need to be mounted in a
frame with adequate airflow to avoid damage to the unit. On 11107 FR-2RU-10-2
external airflow support like 11131/11132 FR-FAN-1RU are recommended.
2.1 General
Power +5V DC / 11W
Control Control system for access to setup and module status
with BITE (Built-In Test Equipment)
GPI 1 in, 3 out
Temperature range 0 to +40 °C
Size 2 slot in a Flashlink chassis
2.1 Application Layer Ethernet Ports
Number of ports 5
Connector RJ45
Format IEE 802.3, 10BASE-T, 100BASE-T, 1000BASE-T
Speed Auto sensing, 10/100/1000Mbps
Cables Auto sensing, MDI/MDI-X
2.2 Network/Fiber Transport Layer
Number of ports 1
Connector Dual SC/UPC
Wavelength 850nm, 1310nm or CWDM
Optical power See relevant SFP+ datasheet
Laser type See relevant SFP+ datasheet
Extinction ratio See relevant SFP+ datasheet
Transmission circuit fiber Single mode or Multimode
ER
«Jumbo» Frames Up to 10kB packet length supported.
VLAN tags IEEE_802.1ad VLAN tags pass through unmodified in
both the switch and the MUX mode.
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ETH1000-SW-10G Rev. E
Ethernet switch
Microcontroller
10G uplink port
Remote control
SFP+
Demultiplexer/Vlan de-tagging
Port 1
10/100/
1000Base-T
10/100/
1000Base-T
10/100/
1000Base-T
10/100/
1000Base-T
10/100/
1000Base-T
Port 2
Port 3
Port 4
Port 5
Multiplexer/V-
lan tagging
3 Operation
3.1 Switch mode
With DIP1 set to OFF, the board works as a normal Ethernet switch, routing traffic between
all ports based on MAC addresses. See figure 1 for block diagram.
3.2 Multiplexer mode
With DIP1 set to ON, the board becomes an Ethernet aggregator, through the use of VLAN
tags. See figure 2 for block diagram in this mode.
Figure 2 Block diagram of the ETH-1000-SW-10G in MUX mode
Each Ethernet port/stream is VLAN tagged at the input and presented in an aggregated
port/stream at the 10G network port. On the incoming 10G network port/stream the VLAN is
removed and sent to the corresponding Ethernet port. No traffic from one gigabit port is
allowed to enter another gigabit port inside the product. The VLAN tags used are marked as
“0x8800” instead of the usual “0x8100” so that existing VLAN tags will pass through
unnoticed. There should therefore not be any problem mixing the MUX mode with an existing
VLAN setup.
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ETH1000-SW-10G Rev. E
Switch #
Label
Function, DIP = ON
Function, DIP = OFF
Comment
1
M/S
MUX
SWITCH
Ethernet switch or
Ethernet aggregator
2-4
LED
See table in chapter 6.2
Used to control LED
usage
5
DIP5
To be defined
6
DIP6
To be defined
7
DIP7
To be defined
8
OVR
Override GYDA
control.
Configuration with
DIP switch
GYDA control.
Configuration with
GYDA
Select configuration
from GYDA
4 Configuration
The correct configuration can either be set with a DIP switch or with the GYDA Control
System. The layout of ETH-1000-SW-10G is shown in the drawing below with the DIP switch
to the upper left position.
Figure 3 ETH-1000-SW-10G board layout
Table 1: DIP switches
All DIP switches are off when pointing towards the release handle.
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ETH1000-SW-10G Rev. E
Terminal
Function
Supported Format
Mode
OPT1
Optical input
10GBase-XR
Input
OPT2
Bi-directional
10GBase-XR
Output
ETH1 to 5
Electrical Ethernet
10/100/1000Base-T(x)
Bi-directional
GPIO
Open Collector Alarms
Laser off input
Wired alarms
Configuration
OC Output
TTL input
5 Connections
Figure 4 Connector module for ETH-1000-SW-10G
5.1 Mounting the connector module
The details of how the connector module is mounted, is found in the user manual for the subrack frame FR-2RU-10-2.
This manual is also available from our web site:
http://www.nevion.com/.
5.2 Terminal ports
Table 2: Terminal ports
Unused inputs should be terminated to avoid alarms triggered by noise.
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ETH1000-SW-10G Rev. E
6 Module status
The status of the module can be monitored in three ways.
1. GYDA System Controller (optional).
2. GPI at the rear of the sub-rack.
3. LED’s at the front of the sub-rack.
Of these three, the GPI and the LED’s are mounted on the module itself, whereas the GYDA
System Controller is a separate module giving detailed information on the card status.
6.1 GPI ALARM – Module Status Outputs
These outputs can be used for wiring up alarms for third party control systems. The GPI
outputs are open collector outputs, sinking to ground when an alarm is triggered. The GPI
connector is shown in figures below.
Electrical Maximums for GPI outputs
Max current: 100mA
Max voltage: 30V
Be careful when connecting cables to the backplane of ETH1000-SW-10G, as
the GPI connecter has 5V output. Do not connect the GPI to an Ethernet port on
another unit, as this will damage the unit.
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ETH1000-SW-10G Rev. E
Pin #
Signal
Name
Mode
Pin 1
Laser off
Turn off laser.
TTL input
Pin 4
Status
General error status for the module.
Closed under normal operation.
Open if:
Power is not present on module.
Firmware is invalid.
Open Collector
Pin 5
10G link
Loss of 10G link.
Open Collector
Pin 6
Laser fail
Laser fail
Open Collector
Pin 7
+5V
+5V pin
+5V
Pin 8
Ground
0V / gnd pin.
0V.
6.1.1 GPI connections
ETH-1000-SW-10G module GPI pinning:
Table 3: GPI pinning
Figure 5 GPI connector
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ETH1000-SW-10G Rev. E
MODE #
DIP2
DIP3
DIP4
Comment
0
ON
ON
ON
1: Status, 2: PIN, 3: LSR, 4: GbE ports link
1
ON
ON
OFF
Optical level displayed as bar graph
2
ON
OFF
ON
1: Status, 2: PIN, 3: LSR, 4: OPT port activity
3
ON
OFF
OFF
1: Status, 2-4: Ports 3-1 link/activity
4
OFF
ON
ON
1: Status, 2-4: Ports OPT,5,4 link/activity
6.2 Front panel – Status monitoring
The status of the module can be easily monitored visually by the LED’s at the front of the
module. The LEDs are visible through the front panel as shown in the figure below.
Figure 6: Led positions
The ETH-1000-SW-10G has 4 LED’s each showing a status corresponding to the GPI
pinning. Three DIPs are used to control what function the LEDs are displaying:
Table 4: Dip switches led control
All DIP switches are off when pointing towards the release handle.
For mode 3 and 4, red led means no link, yellow means link at reduced speed and green
means link at full (1G or 10G) speed.
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ETH1000-SW-10G Rev. E
Diode \ State
Red LED
Yellow LED
Green LED
No light
Status
Module is faulty, or
module is initializing.
N/A
Module is OK
Module power
is OK
Module
has no
power
10G input
No input signal and
no link
Present input
signal but no link
Link
No SFP+
present
10G output
Laser fail
Laser off or no
link
Link
No SFP+
present
1G ports
No 1G ports with link
1 to 4 ports with
link
All ports with
link
Table 5: LED states and meanings
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ETH1000-SW-10G Rev. E
1.
The equipment will meet the guaranteed performance specification under the
following environmental conditions:
-
Operating room temperature
range:
0°C to 45°C
-
Operating relative humidity range:
<90% (non-condensing)
2.
The equipment will operate without damage under the following environmental
conditions:
-
Temperature range:
-10°C to 55°C
-
Relative humidity range:
<95% (non-condensing)
General environmental requirements for Nevion equipment
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ETH1000-SW-10G Rev. E
Product Warranty
The warranty terms and conditions for the product(s) covered by this manual follow the
General Sales Conditions by Nevion, which are available on the company web site:
www.nevion.com
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ETH1000-SW-10G Rev. E
組成名稱
Part Name
Toxic or hazardous substances and elements
鉛
Lead
(Pb)
汞
Mercury
(Hg)
镉
Cadmium
(Cd)
六价铬
Hexavalent
Chromium
(Cr(VI))
多溴联苯
Polybrominated
biphenyls
(PBB)
多溴二苯醚
Polybrominated
diphenyl ethers
(PBDE)
ETH1000-SW-10GC1xxx,10km
O O O O O
O
O: Indicates that this toxic or hazardous substance contained in all of the homogeneous materials for this part is
below the limit requirement in SJ/T11363-2006.
X: Indicates that this toxic or hazardous substance contained in at least one of the homogeneous materials used
for this part is above the limit requirement in SJ/T11363-2006.
Appendix A Materials declaration and recycling
information
A.1 Materials declaration
For product sold into China after 1st March 2007, we comply with the “Administrative Measure
on the Control of Pollution by Electronic Information Products”. In the first stage of this
legislation, content of six hazardous materials has to be declared. The table below shows
the required information.
This is indicated by the product marking:
A.2 Recycling information
Nevion provides assistance to customers and recyclers through our web site
http://www.nevion.com/. Please contact Nevion’s Customer Support for assistance with
recycling if this site does not show the information you require.
Where it is not possible to return the product to Nevion or its agents for recycling, the following
general information may be of assistance:
Before attempting disassembly, ensure the product is completely disconnected from
power and signal connections.
All major parts are marked or labeled to show their material content.
Depending on the date of manufacture, this product may contain lead in solder.
Some circuit boards may contain battery-backed memory devices.
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