KYLAND Technology SICOM3000 Hardware Installation Manual

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Hardware Installation Manual
SICOM3000 Industrial Ethernet Switch
Hardware Installation Manual
Publication Data: Jun. 2013
Version: V1.0
No.: 1.12.02.-0
SICOM3000 Industrial Ethernet Switch
Hardware Installation Manual
Disclaimer:
Kyland Technology Co., Ltd. tries to keep the content
of this manual as accurate and as updated as possible. This
document is not guaranteed to be error-free, and we reserve the
right to amend it without notice to users.
All rights reserved.
No part of this documentation may be excerpted, reproduced,
translated, annotated or duplicated, in any form or by any means
without the prior written permission of KYLAND Corporation.
Copyright © 2013 Kyland Technology Co., Ltd.
Notice for Safety Operation
The product performs reliably as long as it is used accord-
ing to the guidance. Artificial damage or destruction of the
device should be avoided. Before using the device, read
this notice carefully for personal and equipment safety.
Please keep the manual for further reference. Kyland is
not liable to any personal or equipment damage caused
by violation of this notice.
Do not place the device near water sources or damp areas. Keep
the ambient relative humidity within the range from 5% to 95%
(non-condensing).
Do not place the device in an environment with high magnetic field,
strong shock, or high temperature. Keep the working and storage
temperatures within the allowed range.
Install and place the device securely and firmly.
Please keep the device clean; if necessary, wipe it with a soft cotton
cloth.
Do not place any irrelevant materials on the device or cables. Ensure
adequate heat dissipation and tidy cable layout without knots.
Wear antistatic gloves or take other protective measures when
operating the device.
Avoid any exposed metal wires because they may be oxidized
or electrified.
Install the device in accordance with related national and local
regulations.
Before power-on, make sure the power supply is within the allowed
range of the device. High voltage may damage the device.
Power connectors and other connectors should be firmly interconnected.
Do not plug in or out the power supply with wet hands. When the device
is powered on, do not touch the device or any parts with wet hands.
Before operating a device connected to a power cable, remove all
jewelry (such as rings, bracelets, watches, and necklaces) or any
other metal objects, because they may cause electric shock or burns.
Do not operate the device or connect or disconnect cables during
an electrical storm.
Use compatible connectors and cables. If you are not sure, contact
our sales or technical support personnel for confirmation.
Do not disassemble the device by yourself. When an anomaly
occurs, contact our sales or technical support personnel.
If any part is lost, contact our sales or technical support personnel
to purchase the substitute. Do not purchase parts from other channels.
Dispose of the device in accordance with relevant national provisions,
preventing environmental pollution.
In the following cases, please immediately shut down
your power supply and contact your Kyland represen-
tative:
Water gets into the equipment.
Equipment damage or shell damage.
Equipment operation or performance has abnormally changed.
The equipment emits odor, smoke or abnormal noise.
1 Product OverviewĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ Ă Ă 1
2 Structure and InterfaceĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ 2
2.1 Front PanelĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ 2
2.2 Top PanelĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ 6
3 MountingĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ 7
3.1 Dimension Drawing
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
7
3.2 Mounting Modes and Steps
ĂĂĂĂĂĂĂĂĂĂĂĂĂ
8
3.2.1 Mounting
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
8
3.2.2 Panel Mounting
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
10
4 Connection
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
12
4.1 10/100Base-T(X) Ethernet Port
ĂĂĂĂĂĂĂĂĂĂĂĂ
12
4.2 100Base-FX Ethernet Port
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
14
4.3 1000Base-X, 10/100/1000Base-T(X) SFP Slot
ĂĂĂĂĂ
15
4.3.1 Gigabit SFP Optical ModuleĂĂĂĂĂĂĂĂĂĂĂ
16
4.3.2 Gigabit SFP Electrical ModuleĂĂĂĂĂĂĂĂĂĂ
18
4.4 Console Port
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
19
4.5 Grounding
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
20
4.6 Power Terminal Block
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
21
4.7 Alarm Terminal Block
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
24
5 LEDs
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
26
6 Switch Access
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
27
6.1 Access through Console Port
ĂĂĂĂĂĂĂĂĂĂĂĂĂ
27
6.2 Access through Telnet
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
30
6.3 Access through Web
ĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂĂ
30
7 Basic Features and Specifications
ĂĂĂĂĂĂĂĂĂĂĂĂĂ
31
Contents
1 Product Overview
SICOM3000 includes a series of industrial Ethernet switches applied
in the wind power, distribution network automation, subway PIS and AFC,
power SCADA, sewage treatment, highway, metallurgy, hydroelectric
power, photovoltaic generation, subway CBTC, plant automation,
intelligent transportation, and many other industries.SICOM3000 is
applicable to harsh and hazardous industrial environments due to its
high-performance switching engine, solid closed housing, fanless but heat
dissipation-capable single-rib shaped chassis, overcurrent, overvoltage,
and EMC protection for power input, and sound EMC protection of RJ45
ports. The redundant network and power input support guarantees the
reliable operation of the system.
SICOM3000 provides powerful network management functions. The
device can be managed through CLI, Telnet, Web, SNMP-based and
OPC network management software.
The series switches support DIN rail and panel mounting.SICOM3000
provides up to two 1000Base-X, 10/100/1000Base-T(X) SFP slots
(gigabit SFP slots), two 100M cooper or fiber (optional) ports, and six
10/100Base-T(X) Ethernet ports. For details, see the following table.
Product Overview
1
Table 1 SICOM3000 Models
Note:
We reserve the right to amend the product information listed in this table without notice.
To obtain the latest information, contact our sales or technical support personnel.
Structure and Interface
2
2 Structure and Interface
Figure 1 Front Panel of SICOM3000-2GX-2S/M-6T
2.1 Front Panel
(1)(2)(3)(4)
(8)
(5)
G2
G1
Speed
Link/ACT
(7)
(6)
3
8
7
6
5
4
2
1
(9)
(10)
(11)
ƽ
Front Panel of SICOM3000-2GX-2S/M-6T
Caution:
It is recommended to purchase the port dustproof shield
(optional) to keep ports clean and ensure switch performance.
Structure and Interface
3
Table 2 Description of the Front Panel of SICOM3000-2GX-2S/M-6T
No. Identifie
r
Description
(1) PWR1 Power 1 LED
(2) PWR2 Power 2 LED
(3) Run Running LED
(4) Alarm Alarm LED
(5)
G2
Gigabit SFP slot (G2) and its connection
status LED
(6)
G1
Gigabit SFP slot (G1) and its connection
status LED
(7)
7
100Base-FX Ethernet port 7 and its
connection status LED
(8)
8
100Base-FX Ethernet port 8 and its
connection status LED
(9) 1-6 Six 10/100Base-T(X) Ethernet ports
(10)
Speed
10/100Base-T(X) Ethernet port speed
LED (yellow)
(11)
Link/ACT
10/100Base-T(X) Ethernet port connection
status LED (green)
Note:
The appearance of SICOM3000-MA-C-2GX-2S/M-6T is
identical with that of SICOM3000-2GX-2S/M-6T.
Structure and Interface
4
Figure 2 Front Panel of SICOM3000-2GX-8T
(1)(2)(3)(4)
(8)
(5)
G2
G1
Speed
Link/ACT
(7)
(6)
3
8
7
6
5
4
2
1
(9)
ƽ
Front Panel of SICOM3000-2GX-8T
Structure and Interface
5
Table 3 Description of the Front Panel of SICOM3000-2GX-8T
No. Identifie
r
Description
(1) PWR1 Power 1 LED
(2) PWR2 Power 2 LED
(3) Run Running LED
(4) Alarm Alarm LED
(5)
G2
Gigabit SFP slot (G2) and its connection
status LED
(6)
G1
Gigabit SFP slot (G1) and its connection
status LED
(7) 1-8 Eight 10/100Base-T(X) Ethernet ports
(8)
Speed
10/100Base-T(X) Ethernet port speed
LED (yellow)
(9)
Link/ACT
10/100Base-T(X) Ethernet port
connection status LED (green)
Structure and Interface
6
Figure 3 Top Panel
Table 4 Description of the Top Panel
2.2 Top Panel
PWR1 PWR2
+/L -/N -/N +/L
FAULT
Console
(1) (2) (3)
(4)
FAULT
+/L -/N -/N +/L
PWR1 PWR2
No. Identifie
r
Description
(1) Power terminal block
(2) Alarm terminal block
(3) Console Console port
wercs gnidnuorG -- )4(
Mounting
7
Figure 5 Dimensions for Panel Mounting (unit:mm)
Figure 4 Dimensions for DIN-Rail Mounting (unit:mm)
3 Mounting
3.1 Dimension Drawing
70
123
56
4
6.5
75
140
178
195
12375 75
6
35
140
Caution:
ƽ
As part of the heat dissipation system, the switch housing
becomes hot during operation. Please use caution when
coming in contact and avoid covering the switch housing
when the switch is running.
ƽ
The figures in this manual are only for reference.
Mounting
8
3.2 Mounting Modes and Steps
The series switches support DIN-rail and panel mounting. Before
installation, make sure that the following requirements are met.
1) Environment:temperature (-40ć to 85ć), ambient relative humidity
(5% to 95%, non-condensing)
2) Power requirement:The power input is within the voltage range of
the switch.
3) Grounding resistance:<5
Ω
4) No direct sunlight, distant from heat source and areas with strong
electromagnetic interference.
Step 1:Select the mounting position for the device and guarantee adequate
space and heat dissipation (dimensions:75mm×140mm×123mm).
Step 2:Insert the connecting seat onto the top of the DIN rail, and push
the bottom of the device inward and upward to ensure the DIN
rail fits in the connecting seat. Make sure the device is firmly
installed on the DIN rail, as shown in the following figure.
Figure 6 DIN-Rail Mounting
ƽ
DIN-Rail Mounting
3.2.1 Mounting
1
2
DIN rail
connecting seat
DIN rail
Mounting
9
Step 1: Insert the head of a screwdriver into the opening of the spring
locking piece at the bottom from the left. Lift the handle of the
screwdriver to open the spring locking piece of the connecting
seat, as shown on the left of the following figure.
Step 2: Move the device in direction 2 until the bottom of the device
is detached from the DIN rail. Then move the device in
direction 3 and uplift the device until the top of the connecting
seat is detached from the DIN rail.
Figure 7 DIN-Rail Dismounting
ƽ
DIN-Rail Dismounting
1
2
3
Screwdriver
DIN rail
connecting seat
DIN rail
Mounting
10
Figure 8 Panel Mounting
ƽ
Panel Mounting
3.2.2 Panel Mounting
Screw
Screw
2
1
Ф6.5
Ф4
Note:
Purchase the plate (optional) for panel mounting.
Step 1:Use screws to secure the plate for panel mounting to the rear
panel of the device.
Step 2:Select the mounting position (on a wall or inner wall of a
cabinet) for the device and guarantee adequate space and heat
dissipation (dimensions:75mm×140mm×123mm).
Step 3:Punch four holes in the selected position according to the
dimensions for panel mounting. Insert four screws into the four holes
respectively, and turn the screws with a screwdriver until about
a 5mm distance is left between each screw head and the wall.
Step 4:Align the four mounting holes on the plate for panel mounting
with the four screws. Insert the screws through the Ф6.5 positions
in the following figure. Move the device in direction 1 until the
screws are in the Ф4 positions. Then tighten the screws.
Mounting
11
Figure 9 Panel Dismounting
ƽ
Panel Dismounting
Screw
Screw
2
1
Ф6.5
Ф4
Step 1:Loosen the four screws with a screwdriver. Pull the device
upward until the four screws are in the Ф6.5 positions in the
following figure. Then remove the plate for panel mounting
from the four screws to detach the device from the wall or
inner wall of the cabinet.
Step 2:Loosen the screws completely with a screwdriver. Remove
them from the wall or inner wall of the cabinet. Then remove
the plate for panel mounting from the rear panel to complete
dismounting the device.
Connection
12
10/100Base-T(X) Ethernet port is equipped with RJ45 connector.
The port is self-adaptive. It can automatically configure itself to work
in 10M or 100M state, full or half duplex mode. The port can also
adapt to MDI or MDI-X connection automatically. You can connect
the port to a terminal or network device with a straight-through or
cross-over cable.
The following figure shows the pin numbers of the RJ45 port.
The following table lists the pin definitions of the 10/100Base-T(X)
RJ45 port.
4 Connection
4.1 10/100Base-T(X) Ethernet Port
Figure 10 RJ45 Port
Table 5 Pin Definitions of 10/100Base-T(X) RJ45 Port
ƽ
Pin Definition
Note:
"+" and "-" indicate level polarities.
Pin MDI-X Signal MDI Signal
1 Receive Data+ (RD+) Transmit Data+ (TD+)
2 Receive Data- (RD-) Transmit Data- (TD-)
3 Transmit Data+ (TD+) Receive Data+ (RD+)
6 Transmit Data- (TD-) Receive Data- (RD-)
4, 5, 7, 8 Unused Unused
Connection
13
ƽ
Wiring Sequence
Figure 11 Connection Using Straight-through/Cross-over Cable
RJ45 connector
Straight-through cable
Wiring sequence
Cross-over cable
Wiring sequence
RJ45 connector
8
1
1
2
3
6
1
2
3
6
1
2
3
6
3
6
1
2
Note:
The color of the cable for RJ45 connector meets the 568B
standard:1-orange and white, 2-orange, 3-green and white,
4-blue, 5-blue and white, 6-green, 7-brown and white, and 8-brown.
Connection
14
4.2 100Base-FX Ethernet Port
Figure 12 Connection of 100Base-FX Ethernet Port
Caution:
The device uses laser to transmit signals in fibers. The laser
meets the requirements of level 1 laser products. Routine
operation is not harmful to your eyes, but do not look directly
at the fiber port when the device is powered on.
Device A
SC-port
Device B
SC-port
SC-SC cable
Wiring sequence
TX
RX
TX
RX
TX
RX
TX
RX
100Base-FX Ethernet port is equipped with FC/ST/SC connector,
and each port consists of TX (transmit) port and RX (receive) port. To
enable data transmission between Device A and Device B, connect
the TX port of Device A to the RX port of Device B, and the RX port
of Device A to the TX port of Device B. The following uses an SC port
as an example. The wiring sequence of an ST/FC port is the same
with that of the SC port.
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KYLAND Technology SICOM3000 Hardware Installation Manual

Categorie
Comutatoare de rețea
Tip
Hardware Installation Manual

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