Thank you for choosing the OSD2258P 10-Port Redundant Ring Gigabit Ethernet Switch. This Quick
Start Guide is designed to guide you through the installation and basic software function.
2 INSTALLATION
ELECTROMAGNETIC COMPATIBILITY
WARNING: This is a Class A product. In a domestic environment this product may cause radio
interference in which case the user may be required to take adequate measures.
OPTICAL OUTPUT OPERATION
WARNING: Laser Safety: Class 1 Laser Product (SFP) per IEC 60825-1:2014 standard.
Class 1
The OSD2258P is a Class 1 laser product.
PRECAUTIONS
▲
All service personnel should be provided training as to the hazards of direct viewing of laser
radiation and of the precautionary measures during servicing of equipment
▲
Areas where laser products are installed should be restricted in access to trained service
personnel only and appropriate warning signs posted in the work area.
▲
All laser apertures should be covered by protective covers when not connected to optical
fibers. Never leave outputs uncovered.
▲
Laser equipment should be positioned above or below eye level where possible. Apertures
should be positioned away from personnel.
▲
Protective eyewear should be worn in the vicinity of laser equipment.
2.1 LOCATION
As with any electric device, the OSD2258P should be placed where it will not be subjected to extreme
temperatures, humidity, or electromagnetic interference. Specifically, the site selected should meet the
following requirements:
• The ambient temperature should be between -20°C to 75℃ (-4℉ to 167℉).
• The relative humidity should be less than 95 percent, non-condensing.
• Surrounding electrical devices should not exceed the electromagnetic field (RFC) standards.
• Make sure that the switch receives adequate ventilation. Do not block the ventilation holes on
any side of the switch.
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LED
LED (x 8)
(x 10)
(x 8)
Ports
Ports
OPTICAL SYSTEMS DESIGN
3 OSD2258P FRONT AND REAR PANELS
3.1 FRONT PANEL
Power
Ports 1-4
RJ45 Copper
Ports 5-8
RJ45 Copper
Ports 9-10
SFP Fiber
FIGURE 1: FRONT PANEL
Ring LED
Activity
Link LED
PoE LED
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1 LED
2 LED
3.2 TOP PANEL
Alarm
Output
(1&2)
3.3 BOTTOM PANEL
Configuration
OPTICAL SYSTEMS DESIGN
Power
FIGURE 2: TOP PANEL
8-Way
Switches
FIGURE 3: BOTTOM PANEL
Mini USB
Programming
Power
Power Input
CLI USB
Console
Port
Dual
Redundant
Port
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OPTICAL SYSTEMS DESIGN
4 Power Supply Connections
Connect the dual redundant power to the 8-way terminal block located on the top of the unit.
The OSD2258P requires external 46 to 57VDC @5VA maximum (no PoE in use) to 500VA maximum
(All 8 ports supplying 60W PoE++ power). > 52VDC recommended for PoE+ or ≥55VDC for PoE++
(60W).
FIGURE 4: POWER CONNECTION
TABLE 1: DC POWER CONNECTION
1 2 3 4 5 6 7 8
External Power Pin Specification
Pin 1,2,5,6 0V (Ground Isolated)
Pin 3,4,7,8 46 to 57VDC @ up to 500VA
5 Alarm Connections
The OSD2258P has two monitoring alarm outputs: 1) Ring/Bus Alarm and 2) Temperature Alarm. The
alarm connections and conditions for alarm outputs are as set out in Table 2. There are four pins on the
3.5mm terminal block used alarm output. Maximum ratings the relay can drive is 100mA @ 46V
Note: Alarm output has no polarity.
TABLE 2: ALARM CONNECTIONS
Alarm
Output
Open Ring
Closed Bus*
*Note: Bus alarm is only triggered after a ring connection is established.
Alarm Ch1
Ring /Bus Status
Alarm CH2
Temperature
Less than 80°C
Higher than 80°C
(max)
.
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OPTICAL SYSTEMS DESIGN
6 Switch Configuration
The OSD2258P has an 8-way DIP switch located on the bottom of the unit to control a number of
functions. Table 3 outlines the function of each switch. Default position of switch 1-8 is as shown on
Figure 5 and Table 3.
ON
OFF
1 2 3 4 5 6 7 8
FIGURE 5: SWITCH DEFAULT POSITION
TABLE 3: SWITCH SETTINGS
SWITCH
NUMBER
1
2
3
4
5
6
7
8
* Default settings.
ϯ
EEE- Energy Efficient Ethernet (IEE802.3az standard) - enabling this function lowers the power
consumption around 10% on ports 1-8 only.
DESCRIPTION FUNCTION SWITCH POSITION
GUI Mode
Not Used
Not Used
High PoE
Not Used
Ring/Non-Ring
EEEϯ Disable
Reserved
Enable WebGUI On*
Disable WebGUI Off
- On
- Off*
- On
- Off*
60W per port On
Auto Mode Off*
- On
- Off*
Ring Mode Disabled On
Ring Mode Enabled Off*
Disable EEE Function On
Enable EEE Function Off*
Programming Mode On
User Mode Off*
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7 LED Indicators
LED Function
OPTICAL SYSTEMS DESIGN
TABLE 4: LED FUNCTION
Redundant
Power 1 and 2
Power
Ring
Link (speed)
Copper Port 1-8
PoE Port 1-8
Act Copper Port
1-8
SFP Ports 9-10
Off Power is Not Applied to Corresponding Input
Green Power Connected to Corresponding Input
Off Unit is Off
Green Unit is Powered On
Off Non-Ring Mode (SW6 On)
Green Redundant Ring
Amber Bus
Green/Amber Initializing
Off 10Mb or No Link
Blink Amber 100Mb
Amber 1Gb
Green PD Detected
Off PD not Detected
Off No Connection/No Activity
Green Link Established
Blink Activity
Off No Link Established
Blink SFP Link OK/Activity
8 Fitting SFP Connectors
Care should be taken when inserting/removing the SFP connectors from the SFP port as SFP modules
are Electrostatic (ES) sensitive and Electrostatic Discharge (ESD) precautions should be taken when
installing. Ensure that the SFP is fully engaged and latched into position.
Inserting SFP – Ensure that the SFP lever is in the locked position and insert into appropriate SFP
port. Gently push the SFP until it locks into place. Remove plastic/rubber dust cap and fit appropriate
fiber cable.
Removing SFP – Remove fiber connector. Pull the SFP lever down to unlock SFP from housing.
Using the lever, gently pull the SFP out.
Fiber SFP
1
Inserting
SFP
FIGURE 6: FITTING/REMOVING SFP CONNECTORS
Removing
SFP
2
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OPTICAL SYSTEMS DESIGN
9 CLI OVERVIEW
9.1 CONNECT TO CLI
The Silicon Laboratories CP210x VCP Drivers is needed to be installed on the PC before connecting
the switch.
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OPTICAL SYSTEMS DESIGN
1. Connect the Console Port on UUT to PC with USB cable (Type A to Type B).
2. Using HyperTerminal to set up the following parameters.
• Baud Rate: 57600
• Data Bits: 8
• Parity: None
• Stop Bits: 1
• Flow Control: None
3. Check the link by pressing <ENTER>. The line should jump to the next line.
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OPTICAL SYSTEMS DESIGN
9.2 CLI COMMANDS FOR IP CONFIGURATION
Typing ? at the prompt will display all user CLI commands together with the input format
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OPTICAL SYSTEMS DESIGN
10 GUI Overview
10.1 DEFAULT SETTING
•
IP Address: 192.168.0.99
•
Subnet Mask: 255.255.255.0
•
Gateway: 192.168.0.1
10.2 LOG INTO THE SWITCH
•
Connect a switch port to a PC, Change the PC’s network IP address to connect to the switch
(i.e.: 192.168.0.2).
•
Using a web browser, enter the URL default 192.168.0.99 in the address bar
•
The GUI should now have access to the OSD2258P through the web browser
•
Configuration settings, Monitoring and Maintenance can all be accessed vis the drop down
menu titles located on the left of the screen
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OPTICAL SYSTEMS DESIGN
10.3 IP CONFIGURATION
The IP can be configured to user requirements/settings. Click “Save” button to save changes.
10.4 POE CONFIGURATION
To enable PoE and modify/set Power Limitation, Legacy Devices and Hi-PoE Mode settings, click the
PoE Enabled box and set appropriate values. Click “Save” button to save changes.
11 Reset to Factory Default
Changes made to settings, IP, PoE etc through the GUI are saved when in default position. If for any
reason the unit requires to be reset to factory settings the following command using the CLI (see
section 9) should be used. Note: All previous settings will be erased!
default_setting
Function: Reset configuration to default.
Format: {ds}
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OPTICAL SYSTEMS DESIGN
12 WARRANTY
Thank you for purchasing equipment designed, manufactured and serviced by Optical Systems Design
(OSD). OSD warrants that at the time of shipment, its products are free from defects in material and
workmanship and conforms to specifications. Our Warranty conditions are outlined below:
12.1 WARRANTY PERIOD
For warranty period, please call your local OSD distributor.
12.2 REPAIRS
Optical Systems Design reserves the right to repair or replace faulty modules/units. Please obtain a
“Return Material Authorisation” (RMA) form and number before returning goods.
Goods must be returned in adequate packing material to Optical Systems Design, Warriewood or its
nominated authorised representative, for all repairs.
12.2.1 WARRANTY REPAIRS
Return shipments to OSD shall be at customer's expense and freight back to the customer will be at
OSD expense.
12.2.2 OUT-OF-WARRANTY REPAIRS
OSD reserves the right to repair or replace any faulty goods. Freight costs and insurance for both
journeys are met by the user. All equipment repaired by OSD will have a 3-Month Warranty from the
date of dispatch.
12.2.3 SITE REPAIRS
By agreement site repairs may be undertaken for which out of pocket, hotel and travel expenses will be
charged.
12.2.4 EXCLUSIONS
This warranty does not apply to defects caused by unauthorized modifications, misuse, abuse or
transport damage to the equipment. All modifications to OSD’s standard product will need written
authorization and will be charged at normal repair rates. All modifications are to be carried out by OSD
Technicians. Warranty is void if unauthorized removal and/or tampering with serial number and/or
repair labels is evident.
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Optical Systems Design Pty. Ltd.
7/1 Vuko Pl. Warriewood 2102
P.O. Box 891 Mona Vale
N.S.W. Australia 2103
Telephone: +61 2 9913 8540
Facsimile: +61 2 9913 8735
Email: sales@osd.com.au
Web Site: www.osd.com.au
OPTICL
SYSTEMS
DESIGN
PTY LTD A.B.N. 83 003 020 504
Printed in Australia
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