cc/td/doc/product/ong/15200/15200des
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Table of Contents

Product Hardware
3.1   Modularity and Ancillary Equipment
3.2   Physical Layout
3.3   Power and Grounding
3.4   Environmental Compliance
3.5   Electromagnetic Compatibility
3.6   Safety Specifications
3.7   Wavelength Grid

Product Hardware


This chapter describes the Cisco ONS 15200 mechanical components. It also provides electrical, electromagnetic, and safety information about the ONS 15200.

3.1   Modularity and Ancillary Equipment

Equipment in the ONS 15200 system is modular in design. Each system function is carried out by modules located in either an ONS 15252 MCU or an ONS 15201 SCU. Sites in the ONS 15200 system consist of either an ONS 15252 MCU, an ONS 15201 SCU, or a combination of the two. ONS 15200 site configurations may also include a power distribution panel (PDP).

3.1.1   ONS 15252 MCU

The ONS 15252 MCU communicates with the other nodes in the ONS 15200 system on one or several channels. Each channel occupies a wavelength, and some ONS 15200 system configurations reuse a wavelength. As shown in Figure 3-1, several channels of information, each occupying a wavelength, enter the node from the DWDM layer. Each channel can enter the ONS 15252 MCU from the A side, the B side, or the A side and B side.

The ONS 15252 MCU communicates with the other nodes in the ONS 15200 system on one or more wavelengths. Information originates at the ONS 15252 MCU Client Layer Interface Port (CLIP) module. For optically-protected channels, the Network Adaptation module (NAM) splits the information and transmits it in opposite directions through two Hub Filter Modules (HFMs) and two Line Modules (LMs) at a specific wavelength.

For unprotected channels, the NAM transmits the information to either an A-side HFM or a B-side HFM and then through the associated LM. Information carried on a wavelength intended for another ONS 15200 site passes through the ONS 15252 MCU without interference except for the insertion loss of the ONS 15252 MCU, if a BM or a CMX is used. If the ONS 15252 MCU is equipped with Termination modules (TMs) instead of a BM, the TMs block any wavelength or channel not dropped to the ONS 15252 MCU.


Figure 3-1   Functional view of the ONS 15252 Multichannel Unit (protected version)


Two versions of the ONS 15252 MCU mechanical shelf exist: Release 1.0 and Release 1.0.1. Cisco currently ships only the Release 1.0.1 shelf and no longer ships the Release 1.0 shelf.

Release 1.0.1 and later shelves includes a baffle. The baffle is a partially-perforated, angled metal plate that is mounted below and behind the metal support beam and is mechanically attached to the back of the shelf. It runs the width of the shelf. To view the baffle, look up through the ventilation cavities at the back of the shelf. Figure 3-2 illustrates a shelf with a bafffe (Release 1.0.1), and a shelf without a baffle (Release 1.0).


Figure 3-2   Release 1.0.1 (and later) shelf baffle compared to the Release 1.0 shelf without baffle


ONS 15252 Releases 1.0.1 and later include a fan unit. Before using the Release 1.0.1 shelf, you must install the fan unit. Do not use the fan unit with a Release 1.0 shelf. See the "Fan Unit" section for more information about the fan unit.


Caution   You must install the fan unit in a Release 1.0.1 shelf. Running the Release 1.0.1 shelf without the fan unit will result in a unit that is not compliant to any specifications, nor is warranted or supported by Cisco. In addition, such usage may result in equipment damage.


Caution   Do not install the fan unit in a Release 1.0 shelf. Running the Release 1.0 shelf with a fan unit will result in a unit that is not compliant to any specifications, nor is warranted or supported by Cisco. In addition, such usage may result in equipment damage.

ONS 15252 Releases 1.0.1and later include an updated Network Adaptation module (NAM). The Release 1.0.1 NAM has a "NEBS-3 compliant" label on the faceplate, whereas the previous version of the NAM does not have a faceplate label. The Release 1.0.1 shelf requires the Release 1.0.1 NAM. You can also use Release 1.0.1 NAMs in the Release 1.0 shelf. See the Cisco ONS 15200 Module Handbook for more information about the NAM.


Caution   Placing NAMs without the "NEBS-3 compliant" label into an Release 1.0.1 shelf may result in equipment damage.

3.1.2   ONS 15201 SCU

The ONS 15201 SCU communicates with the other nodes in the ONS 15200 system on a specific wavelength or channel. The SCU uses a single CLIP module. From the DWDM layer, several channels of information, each occupying a wavelength, enter the ONS 15201 SCU. Each DWDM channel of information can enter the ONS 15201 SCU from the A side, the B side, or the A side and B side.

The Collector Filter module (CFM) drops and transfers the specific channel or wavelength intended for the ONS 15201 SCU to the CLIP module. For protected channels, the CFM drops the channel from the A side and B side. For unprotected channels, the CFM drops the channel from either the A side or B side.

The CLIP transfers information originating at the ONS 15201 to the CFM for protected channels. The CFM splits the information and transmits it at a specific wavelength or channel in opposite directions on the A side and B side. The CFM does not split unprotected channels; it transmits them directly to either the A side or B side. Information carried on a wavelength or channel intended for another ONS 15200 node passes through the ONS 15201 SCU without interference except for the insertion loss caused by the unit. Figure 3-3 shows a functional representation of an ONS 15201 SCU.


Figure 3-3   A functional view of the ONS 15201 SCU


3.1.3   Power Distribution Panel

ONS 15200 site configurations can include a power distribution panel (PDP). The PDP distributes power to the ONS 15200 site and provides power redundancy. It uses input and output fusing to provide system protection.

3.1.4   Fan Unit

All Release 1.0.1 (or later) ONS 15252 MCU site configurations require a fan unit mounted above the ONS 15252 MCU in the equipment rack; Release 1.0 shelves do not use the fan unit. The fan unit contains eight small fans that run simultaneously at constant speed. The fans push air down through the MCU to cool the CLIP modules. The fan unit is powered by its own dual -48 VDC power inlets independently of the MCU. If the fan unit fails, it generates an alarm to indicate multi- or single-fan failure. Located on the front panel of the fan unit are three LEDs to indicate alarm status. Table 3-1 lists the LED status and cause of alarm.

Table 3-1   Fan Unit LED Status

LED Status Cause

Red

Major alarm

Multi-fan failure

Yellow

Minor alarm

Single-fan failure and/or single 48 VDC failure

Green

Normal

Power on


Caution   You must install the fan unit in a Release 1.0.1 shelf. Running the Release 1.0.1 shelf without the fan unit will result in a unit that is not compliant to any specifications, nor is warranted or supported by Cisco. In addition, such usage may result in equipment damage.


Caution   Do not install the fan unit in a Release 1.0 shelf. Running the Release 1.0 shelf with a fan unit will result in a unit that is not compliant to any specifications, nor is warranted or supported by Cisco. In addition, such usage may result in equipment damage.

3.1.5   Fiber Organizer

The fiber organizer distributes the client fiber-optic cables to the ONS 15252 MCU CLIP modules. Additionally, the fiber organizer provides tension relief for the client fiber-optic cables. You can also install a fiber organizer between additional ONS 15252 MCUs or ONS 15201 SCUs located at a site. A fiber organizer is always included with an ONS 15252 MCU.

You can place the fiber organizer on the fan unit front. This placement does not interfere with fan unit filter replacement.

3.2   Physical Layout

This section describes the physical configuration of the ONS 15252 MCU and ONS 15201 SCU.

3.2.1   ONS 15252 MCU Physical Configuration

The ONS 15252 MCU physical configuration consists of a Network Control Board (NCB) module, Network Adaptation modules (NAMs), a Communication Interface module (CIM), Client Layer Interface Port (CLIP) modules, Hub Filter modules (HFMs), a pair of Line modules (LMs), and one Bridge module (BM) (see Figure 3-4). A pair of Termination modules (TMs) replace the BM when all optical signal channels or wavelengths are dropped at the ONS 15252 MCU. Additionally, when multiple ONS 15252 MCUs are interconnected, Connection Module X (CMX) and/or Connection Module Y (CMY) replace the BM. The type of connection module used depends on the specific ONS 15200 system configuration.


Figure 3-4   Configuration of the ONS 15252 Multichannel Unit


The lower portion of the ONS 15252 MCU is referred to as the passive optical shelf. The passive optical shelf has an A side and B side. The A side of the ONS 15252 MCU is located on the left side of the passive optical shelf, as seen from the front. The A-side LM contains one line IN port (FC), one line OUT port (FC), and two line-monitoring ports (SC). The line-monitoring ports make it possible to monitor the A-side incoming and outgoing DWDM optical signals.

The B side of the ONS 15252 MCU is located on the right side of the passive optical shelf, as seen from the front. The B-side LM contains one line IN port (FC), one line OUT port (FC), and two line-monitoring ports (SC). The line-monitoring ports make it possible to monitor the B-side incoming and outgoing DWDM optical signals. The passive optical shelf also contains the A-side and B-side HFMs and TMs, BMs, CMXs, or CMYs in various combinations. Figure 3-5 shows the typical arrangement of the modules.


Figure 3-5   Typical arrangement of the ONS 15252 MCU modules


3.2.2   ONS 15201 SCU Physical Configuration

The ONS 15201 SCU physical configuration consists of a CLIP module and a CFM (Figure 3-6). The A side of the ONS 15201 SCU is the two far-left optical line connectors on the front or back of the ONS 15201 SCU. The B side of the ONS 15201 SCU is the two far-right optical line connectors on the front or back of the ONS 15201 SCU. The ONS 15201 SCU is normally delivered with optical connections on the front (SC type). Optionally, you can order the ONS 15201 SCU with the optical connections on the back of the unit (FC type). Back placement is optional for SC connectors.


Note   You can order the ONS 15201 SCU with optical connectors located on either the front or the back of the unit but not on both the front and back.


Figure 3-6   Physical layout of the ONS 15201 SCU


3.3   Power and Grounding

This section describes power and grounding for the ONS 15200 system and includes the"ONS 15252 MCU Power and Grounding" section and the "ONS 15201 SCU Power and Grounding" section. The grounding connections for the ONS 15201 SCU and the ONS 15252 MCU are shown in Figure 3-7.


Figure 3-7   ONS 15201 SCU and ONS 15252 MCU grounding


3.3.1   ONS 15252 MCU Power and Grounding

Two power supply connectors are located on the backplane of the ONS 15252 MCU. The far-right power connector (as viewed from the rear of the ONS 15252 MCU) is called PS-1 (power supply one), and the far-left power connector is called PS 2 (power supply two), as shown in Figure 3-7. The equivalent PS-1 and PS-2 power supply connector terminals are designated 0V and -48V. Grounding for the ONS 15252 MCU chassis is provided by two lug-type grounding connectors (Figure 3-7).


Note   To prevent ground loops, use only one grounding connector.

3.3.2   ONS 15252 Fan Unit Power and Grounding

The fan unit back panel has two power supply connectors. The far-right power connector (as viewed from the rear of the fan unit) is the primary source, and the far-left power connector is the secondary source. These power connectors are designated as 0V and -48V. A pair of grounding pins (M4 screws) is located next to each of the power connectors on the fan-unit back panel.

3.3.3   ONS 15201 SCU Power and Grounding

The ONS 15201 SCU chassis has two power supply connectors. The power supply located on the front of the ONS 15201 SCU chassis is labeled PS-2 (power supply two), and the power supply connector located on the backplane of the ONS 15201 SCU chassis is labeled PS-1 (power supply one) (Figure 3-6). Lug-type grounding connectors located on the back of the chassis provide grounding. The power supplies convert AC to DC and provide a regulated -48 VDC to the ONS 15201 SCU.

3.4   Environmental Compliance

The ONS 15252 MCU is compliant with Network Element Building Systems (NEBS) Level 3 of Telcordia SR-3580 and applicable sections of Telcordia GR-63-CORE and Telcordia GR-1089-CORE. Additionally, the ONS 15200 system is compliant with ETS 300 019-1-1 (class 1.1), ETS 300 019-1-2 (class 2.3), and ETS 300 019-1-3 (class 3.1) for environmental requirements.

The ONS SCU 15201 is compliant with Network Element Building Systems (NEBS) Level 2 of Telcordia SR-3580 and applicable sections of Telcordia GR-63-CORE and Telcordia GR-1089-CORE. Additionally, the ONS 15200 system is compliant with ETS 300 019-1-1 (class 1.1), ETS 300 019-1-2 (class 2.3), and ETS 300 019-1-3 (class 3.1) for environmental requirements.

3.5   Electromagnetic Compatibility

The ONS 15200 system is compliant with Telcordia GR-1089-CORE and FCC Part 15 specifications for electromagnetic compatibility for NEBS Level 2 (SCU) and Level 3 (MCU). Additionally, the ONS 15200 system is complaint with ETS 300 386-1, classes 1 and 2 for electromagnetic compatibility.

3.6   Safety Specifications

This section provides ONS 15200 system laser and product safety specifications.

3.6.1   Laser Safety

The ONS 15200 system is compliant with IEC-60825-1, IEC 60825-2, and CFR 1040.10 requirements for laser safety.

3.6.2   Product Safety

The ONS 15200 system equipment complies with the product safety requirements in European Norm (EN) 60 950 and Underwriters Laboratory (UL) 1950. The equipment also adheres to the European Union (EU) low voltage directive LVD 73/23/ECC.

3.7   Wavelength Grid

The ONS 15200 system adheres to 200 GHz wavelength spacing and the wavelength specifications defined in ITU-T G.692. Table 3-2 shows the wavelength plan.

Table 3-2   ONS 15200 Wavelength Plan

Channel Number Frequency (THz) Wavelength (nm)

23

192.3

1558.98

25

192.5

1557.36

27

192.7

1555.75

29

192.9

1554.13

31

193.1

1552.52

33

193.3

1550.92

35

193.5

1549.32

37

193.7

1547.72

43

194.3

1542.94

45

194.5

1541.35

47

194.7

1539.77

49

194.9

1538.19

51

195.1

1536.61

53

195.3

1535.04

55

195.5

1533.47

57

195.7

1531.90


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Posted: Thu Apr 17 12:31:59 PDT 2003
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