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Technical Specifications
Mechanical active
Content
substance
Precipitable dust
= 20.0 mg/m²·h
Gravel
= 300 mg/m³
The density of the chemical active substances complies with the requirements listed
in Table 7-16.
Table 7-16 Density requirements for chemical active substances
Chemical active
Content
substance
SO2
= 0.30 mg/m³
H2S
= 0.10 mg/m³
NO2
= 0.50 mg/m³
NH3
= 1.00 mg/m³
Cl2
= 0.10 mg/m³
HCl
= 0.10 mg/m³
HF
= 0.01 mg/m³
O3
= 0.05 mg/m³
7-13
Technical Specifications
4. Mechanical stress
Table 7-17 Requirements for mechanical stress
Item
Sub-item
Range
Shift
= 7.0mm
-
Sinusoidal vibration
Acceleration
-
= 20.0m/s²
Frequency range
2 ~ 9Hz
9 ~ 200Hz
Impact response
= 250m/s²
spectrum II
Non-steady impact
Static load
= 5kPa
Note:
Impact response spectrum: the curve of the maximum acceleration response generated
by the equipment under the stipulated impact motivation. Impact response spectrum II
indicates the duration of semi sinusoidal impact spectrum is 6ms.
Static load: The pressure from upside, that the equipment with package can endure
when the equipment is piled as per stipulation.
7.9.2 Environment for Transportation
1. Climate
Table 7-18 Climate requirements
Item
Range
Altitude
= 5000m
Air pressure
70 ~ 106kPa
Temperature
-40°C ~ +70°C
Temperature change rate
= 3°C/min
Relative humidity
10% ~ 100%
Solar radiation
= 1120W/s²
Heat radiation
= 600W/s²
Air speed
= 30m/s²
2. Biological environment
Avoid multiplication of microbe, such as eumycete and mycete.
Avoid the rodent, e.g., mice.
7-14
Technical Specifications
3. Air cleanliness
No explosive, electric-conductive, magnetic-conductive or corrosive duct.
The density of the mechanical active substances complies with the requirements
listed in Table 7-19.
Table 7-19 Density requirements for mechanical active substances
Mechanical active
Content
substance
Suspending dust
No requirement.
Precipitable dust
= 3.0 mg/m²·h
Gravel
= 100 mg/m³
The density of the chemical active substances complies with the requirements listed
in Table 7-20.
Table 7-20 Density requirements for chemical active substances
Chemical active
Content
substance
SO2
= 0.30 mg/m³
H2S
= 0.10 mg/m³
NO2
= 0.50 mg/m³
NH3
= 1.00 mg/m³
Cl2
= 0.10 mg/m³
HCl
= 0.10 mg/m³
HF
= 0.01 mg/m³
O3
= 0.05 mg/m³
7-15
Technical Specifications
4. Mechanical stress
Table 7-21 Requirements for mechanical stress
Item
Sub-item
Range
Shift
= 7.5mm
-
-
Sinusoidal
Acceleration
-
= 20.0m/s²
= 40.0m/s²
vibration
Frequency range
2 ~ 9Hz
9 ~ 200Hz
200 ~ 500Hz
Acceleration
10m²/s³
3m²/s³
1m²/s³
Random
spectral density
vibration
Frequency range
2 ~ 9Hz
9 ~ 200Hz
200 ~ 500Hz
Impact response
= 300m/s²
Non-steady
spectrum II
impact
Static load
= 10kPa
Note:
Impact response spectrum: the curve of the maximum acceleration response
generated by the equipment under the stipulated impact motivation. Impact response
spectrum II indicates the duration of semi sinusoidal impact spectrum is 6ms.
Static load: The pressure from upside, that the equipment with package can endure
when the equipment is piled as per stipulation.
7.9.3 Environment for Operation
1. Climate
Table 7-22 Requirements for temperature and humidity
Temperature
Relative humidity
Equipment
Long-term
Short-term
Long-term
Short-term
name
operation
operation
operation
operation
OptiX OSN 3500
0°C ~ 40°C
-5°C ~ 55°C
10% ~ 90%
5% ~ 95%
Note:
The temperature and humidity values are obtained 1.5m above the floor and 0.4m in
front of the equipment.
Short-term operation means the consecutive working time of the equipment does not
exceed 96 hours, and the accumulated working time every year does not exceed 15
days.
7-16
Technical Specifications
Table 7-23 Other climate requirements
Item
Range
Altitude
= 4000m
Air pressure
70 ~ 106kPa
Temperature change rate
= 5°C/h
Solar radiation
= 700W/s²
Heat radiation
= 600W/s²
Air speed
= 1m/s²
2. Biological environment
Avoid multiplication of microbe, such as eumycete and mycete.
Avoid the rodent, e.g., mice.
3. Air cleanliness
No explosive, electric-conductive, magnetic-conductive or corrosive duct.
The density of the mechanical active substances complies with the requirements
listed in Table 7-24.
Table 7-24 Density requirements for mechanical active substances
Mechanical active
Content
substance
Dust particle
= 3 × 105 particles/m³
Suspending dust
=0.4 mg/m³
Precipitable dust
= 15 mg/m²·h
Gravel
= 100 mg/m³
The density of the chemical active substances complies with the requirements listed
in Table 7-25.
Table 7-25 Density requirements for chemical active substances
Chemical active substance
Content
SO2
= 0.20 mg/m³
H2S
= 0.006 mg/m³
NH3
= 0.05 mg/m³
Cl2
= 0.01 mg/m³
HCl
= 0.10 mg/m³
7-17
Technical Specifications
Chemical active substance
Content
HF
= 0.01 mg/m³
O3
= 0.005 mg/m³
CO
= 5.0 mg/m³
4. Mechanical stress
Table 7-26 Requirements for mechanical stress
Item
Sub-item
Range
Shift
= 3.5mm
-
Sinusoidal vibration
Acceleration
-
= 10.0m/s²
Frequency range
2 ~ 9Hz
9 ~ 200Hz
Impact response
= 100m/s²
spectrum II
Non-steady impact
Static load
0
Note:
Impact response spectrum: the curve of the maximum acceleration response generated
by the equipment under the stipulated impact motivation. Impact response spectrum II
indicates the duration of semi sinusoidal impact spectrum is 6ms.
Static load: The pressure from upside, that the equipment with package can endure
when the equipment is piled as per stipulation.
7-18
A Compliant Standards
The OptiX OSN 3500 product conforms to the following standards:
1. Relevant standards of International Telecommunication Union -
Telecommunication Standardization Sector (ITU-T)
The indices of system performance and board performance of the OptiX OSN 3500
are formulated according to relevant existing standards in ITU-T.
G.957:
Optical interfaces of equipments and systems relating to the Synchronous
Digital Hierarchy
G.702:
Digital hierarchy bit rates
G.703:
Physical/electrical characteristic of hierarchical digital interfaces
G.704:
Synchronous frame structures used at 1544, 6312, 2048, 8448 and
44736kbit/s hierarchical levels
G.707:
Network node interface for the synchronous digital hierarchy (SDH)
G.775:
Loss of signal (LOS) and alarm indication signal (AIS) defect detection and
clearance criteria
G.773:
Protocol suites for Q-interfaces for management of transmission systems
G.774
Synchronous Digital Hierarchy (SDH) management information model for
1 ~ 5:
the network element view
G.783:
Characteristics of Synchronous Digital Hierarchy (SDH) equipment
functional blocks
G.784:
Synchronous Digital Hierarchy (SDH) management
A-1
Compliant Standards
G.803:
Architectures of transport networks based on the Synchronous Digital
Hierarchy (SDH)
G.813:
Timing characteristics of SDH equipment slave clocks (SEC)
G.823:
The control of jitter and wander within digital networks which are based on
the 2048kbit/s hierarchy.
G.824:
The control of jitter and wander within digital networks which are based on
the 1544kbit/s hierarchy.
G.825:
The control of jitter and wander within digital networks which are based on
the Synchronous Digital Hierarchy (SDH).
G.826:
Error performance parameters and objectives for international, constant bit
rate digital paths at or above the primary rate.
G.831:
Management capabilities of transport networks based on the Synchronous
Digital Hierarchy (SDH).
G.841:
Types and characteristics of SDH network protection architectures
G.842:
Cooperation of the SDH network protection structures
G.958:
Digital line systems based on the synchronous digital hierarchy for use on
optical fibre cables
Q.811:
Lower layer protocol profiles for the Q3-interface
Q.812:
Upper layer protocol profiles for the Q3-interface
M.3010
Principles for a telecommunications management network
G.661:
Definition and test methods for the relevant generic parameters of optical
fibre amplifiers
G.662:
Generic characteristics of optical fiber amplifier devices and sub-systems
G.663:
Application related aspects of optical fibre amplifier devices and
sub-systems
X.86:
Ethernet over LAPS
G.7041:
Generic framing procedure (GFP)
A-2
Compliant Standards
2. Relevant standards of Institute for Electrical and Electronic Engineers
(IEEE)
IEEE Std
Carrier sense multiple access with collision detection (CSMA/CD)
802.3:
access method and physical layer specifications
IEEE802.3u:
Media Access Control (MAC) parameters, physical Layer, medium
attachment units, and repeater for 100 Mb/s operation, type
100Base-T
IEEE 802.3z:
Media Access Control (MAC) parameters, physical Layer, repeater
and management parameters for 1000 Mb/s operation
IEEE802.1 q:
Virtual bridged local area networks
IEEE802.3ad:
Aggregation of multiple link segments
IEEE802.1D:
Media Access Control (MAC) Bridges
IEEE802.1X:
Port based network access control
3. Relevant standards of Internet Engineering Task Force (IETF)
RFC2615(1999):
PPP over SONET/SDH
RFC1662(1994):
PPP in HDLC-like Framing
RFC1661(1994):
The Point-to-Point Protocol (PPP)
A-3
B Abbreviations
Abbreviation
Full name
ADM
Add/Drop Multiplexer
ALS
Automatic Laser Shutdown
BIOS
Basic input/output System
BITS
Building Integrated Timing Supply System
CMI
Coded Mark Inverted
DCC
Data Communication Channel
DCE
Data Connection Equipment
DTE
Data Terminal Equipment
ECC
Embedded Control Channel
EMC
Electromagnetic Compatibility
E/O
Electrical/Optical Conversion
EPL
Ethernet Private Line
EPLAN/EPLn
Ethernet Private LAN
ETSI
European Telecommunication Standards Institute
EVPL
Ethernet Virtual Private Line
EVPLAN/ENP
Ethernet Virtual Private LAN
Ln
B-1
Abbreviations
Abbreviation
Full name
FE
Fast Ethernet
FPGA
Field Programmable Gate Array
GE
Gigabit Ethernet
GFP
Generic Framing Procedure
HDB3
High Density Bipolar of order 3 code
HDLC
High-Level Data Link Control
IEEE
Institute for Electrical and Electronic Engineers
IP
Internet Protocol
ITU-T
International Telecommunication Union -Telecommunication Sector
L2
Layer 2
LAN
Local Area Network
LAPS
Link Access Procedure-SDH
LCAS
Link Capacity Adjustment Scheme
LSP
Label Switch Path
MAC
Media Access Control
MADM
Multi Add/Drop Multiplexer
MAN
Metropolitan Area Network
MSTP
Multi Service Transmission Platform
NE
Network Element
NG-SDH
Next Generation - Synchronous Digital Hierarchy
NM
Network Management
NRZ
Non Return to Zero
NRZI
Non Return to Zero Inversion
OAM
Operation, Maintenance and Management
O/E
Optical /Electrical conversion
P
Provider
PDH
Plesiochronous Digital Hierarchy
PE
Provider Edge
B-2
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