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MX240 Chassis

MX240 Chassis Description

The router chassis is a rigid sheet metal structure that houses all the other router components (see Figure 1, Figure 2, Figure 3, Figure 4, and Figure 5). The chassis measures 8.71 in. (22.1 cm) high, 17.45 in. (44.3 cm) wide, and 24.5 in. (62.2 cm) deep (from the front-mounting brackets to the rear of the chassis). The chassis installs in standard 800-mm deep (or larger) enclosed cabinets, 19-in. equipment racks, or telco open-frame racks.

Figure 1: Front View of a Fully ConfiguredMX240 RouterFront View of a Fully ConfiguredMX240 Router
Figure 2: Rear View of a Fully Configured AC-PoweredMX240 Router (110 V)Rear View of a Fully Configured AC-PoweredMX240 Router (110 V)
Figure 3: Rear View of a Fully Configured AC-Powered MX240 Router (220 V)Rear View of a Fully Configured AC-Powered MX240 Router (220 V)
Figure 4: Rear View of a Fully Configured DC-PoweredMX240 RouterRear View of a Fully Configured DC-PoweredMX240 Router
Figure 5: Front View of a MPC Installed Horizontally in the MX240 RouterFront View of a MPC Installed Horizontally in the MX240 Router

MX240 Router Hardware and CLI Terminology Mapping

The MX240 router supports the components in Table 1.

Table 1: MX240 Router Hardware Components and CLI Terminology

Component

Hardware Model Number

CLI Name

Description

Chassis

CHAS-BP-MX240

MX240

MX240 Router Physical Specifications

MX240 Chassis Description

Cooling System

Fan tray

FFANTRAY-MX240

MX240 Fan Tray

MX240 Cooling System Description

FFANTRAY-MX240-HC

Enhanced Fan Tray

Filter kit

FLTR-KIT-MX240

N/A

Host Subsystem

MX240 Host Subsystem Description

Routing Engine

See Supported Routing Engines by Router.

MX240 Routing Engine Description

SCB

MX240-SCB-S

MX SCB

SCB-MX Description

Interface Modules

DPC

See DPCs Supported on MX240, MX480, and MX960 Routers in the MX Series Interface Module Reference.

MX240 Dense Port Concentrator (DPC) Description

FPC

MX-FPC2

MX FPC Type 2

FPCs Supported by MX240, MX480, and MX960 Routers

MX-FPC3

MX FPC Type 3

MIC

See MICs Supported by MX Series Routers in the MX Series Interface Module Reference.

MX240 Modular Interface Card (MIC) Description

MPC

See MPCs Supported by MX Series Routers in the MX Series Interface Module Reference.

MPCs Supported by MX Series Routers

Transceiver

See MX Series Interface Module Reference

Xcvr

Replacing an SFP or XFP Transceiver from an MX240 DPC, MPC, MIC, or PIC

Power System

MX240 Power System Description

AC power supply

PWR-MX480-AC

AC Power Entry Module

MX240 AC Power Supply Description

PWR-MX480-1200-AC

PS 1.2-1.7kW 100-240V AC in

PWR-MX480-2520-AC

PS 1.4-2.52kW; 90-264V AC in

DC power supply

PWR-MX480-DC

DC Power Entry Module

MX240 DC Power Supply Description

PWR-MX480-1600-DC

DC Power Entry Module

PWR-MX480-2400-DC

DC 2.4kW Power Entry Module

Power supply blank panel

PWR-BLANK-MX480

N/A

MX240 Power System Description

MX240 Component Redundancy

The MX240 chassis provides redundancy and resiliency. The hardware system is fully redundant, including power supplies, Routing Engines, and SCBs.

A fully configured router is designed so that no single point of failure can cause the entire system to fail. Only a fully configured router provides complete redundancy. All other configurations provide partial redundancy. The following major hardware components are redundant:

  • Host subsystem—The host subsystem consists of a Routing Engine functioning together with an SCB. The router can have one or two host subsystems. If two host subsystems are installed, one functions as the primary and the other functions as the backup. If the primary host subsystem (or either of its components) fails, the backup can take over as the primary. To operate, each host subsystem requires a Routing Engine installed directly into in an SCB.

  • In the high-line (220 V) AC power configuration, the MX240 router contains one or two AC power supplies, located horizontally at the rear of the chassis in slots PEM0 and PEM2 (left to right). The high-line configuration requires one power supply, with the second power supply providing redundancy. Each AC power supply provides power to all components in the router. When two power supplies are present, they share power almost equally within a fully populated system. If one power supply fails or is removed, the remaining power supply assumes the entire electrical load without interruption. One power supply can provide the maximum configuration with full power for as long as the router is operational.

  • In the low-line (110 V) AC power configuration, the MX240 router contains either two AC power supplies (nonredundant), located horizontally at the rear of the chassis in slots PEM0 and PEM1 (left to right); or four AC power supplies (redundant), located in slots PEM0 through PEM3 (left to right). The low-line configuration requires two power supplies, and the third and fourth power supplies provide redundancy. Each AC power supply provides power to all components in the router. When two power supplies are present in a non-redundant system or when four power supplies are present in a redundant system, they share power almost equally within a fully populated system. If one power supply in a redundant configuration fails or is removed, the remaining power supplies assume the entire electrical load without interruption. Two power supplies provide the maximum configuration with full power for as long as the router is operational.

  • Cooling system—The cooling system has redundant components, which are controlled by the host subsystem. If one of the fans fails, the host subsystem increases the speed of the remaining fans to provide sufficient cooling for the router indefinitely.

MX240 Craft Interface Overview

The craft interface allows you to view status and troubleshooting information at a glance and to perform many system control functions. It is hot-insertable and hot-removable. The craft interface is located on the front of the router above the card cage and contains LEDs for the router components, the alarm relay contacts, and alarm cutoff button. See Figure 6.

Figure 6: Front Panel of the Craft InterfaceFront Panel of the Craft Interface
Note:

At least one SCB must be installed in the router for the craft interface to obtain power.

MX240 Alarm Relay Contacts on the Craft Interface

The craft interface has two alarm relay contacts for connecting the router to external alarm devices (see Figure 7). Whenever a system condition triggers either the red or yellow alarm on the craft interface, the alarm relay contacts are also activated. The alarm relay contacts are located on the upper right of the craft interface.

Figure 7: Alarm Relay ContactsAlarm Relay Contacts

MX240 Alarm LEDs and Alarm Cutoff/Lamp Test Button

Two large alarm LEDs are located at the upper right of the craft interface. The circular red LED lights to indicate a critical condition that can result in a system shutdown. The triangular yellow LED lights to indicate a less severe condition that requires monitoring or maintenance. Both LEDs can be lit simultaneously.

A condition that causes an LED to light also activates the corresponding alarm relay contact on the craft interface.

To deactivate red and yellow alarms, press the button labeled ACO/LT (for “alarm cutoff/lamp test”), which is located to the right of the alarm LEDs. Deactivating an alarm turns off both LEDs and deactivates the device attached to the corresponding alarm relay contact on the craft interface.

Table 2 describes the alarm LEDs and alarm cutoff button in more detail.

Table 2: Alarm LEDs and Alarm Cutoff/Lamp Test Button

Shape

Color

State

Description

Red

On steadily

Critical alarm LED—Indicates a critical condition that can cause the router to stop functioning. Possible causes include component removal, failure, or overheating.

Yellow

On steadily

Warning alarm LED—Indicates a serious but nonfatal error condition, such as a maintenance alert or a significant increase in component temperature.

Alarm cutoff/lamp test button—Deactivates red and yellow alarms. Causes all LEDs on the craft interface to light (for testing) when pressed and held.

MX240 Component LEDs on the Craft Interface

Host Subsystem LEDs on the MX240 Craft Interface

Each host subsystem has three LEDs, located in the middle of the craft interface, that indicate its status. The LEDs labeled RE0 show the status of the Routing Engine in slot 0 and the SCB in slot 0. The LEDs labeled RE1 show the status of the Routing Engine and SCB in slot 1/0. Table 3 describes the functions of the host subsystem LEDs.

Table 3: Host Subsystem LEDs on the Craft Interface

Label

Color

State

Description

MASTER

Green

On steadily

Host is functioning as the primary.

ONLINE

Green

On steadily

Host is online and is functioning normally.

OFFLINE

Red

On steadily

Host is installed but the Routing Engine is offline.

Off

Host is not installed.

Power Supply LEDs on the MX240 Craft Interface

Each power supply has two LEDs on the craft interface that indicate its status. The LEDs, labeled 0 through 3, are located on the upper left of the craft interface next to the PEM label. Table 4 describes the functions of the power supply LEDs on the craft interface.

Table 4: Power Supply LEDs on the Craft Interface

Label

Color

State

Description

PEM

Green

On steadily

Power supply is functioning normally.

Red

On steadily

Power supply has failed or power input has failed.

DPC and MPC LEDs on the MX240 Craft Interface

Each DPC or MPC has LEDs on the craft interface that indicate its status. The LEDs, labeled 1/0, 1, and 2, (1/0 shows status of either SCB1, DPC0, MPC0, or FPC0 depending on which component is installed in the slot), are located along the bottom of the craft interface. See Table 5.

Table 5: DPC and MPC LEDs on the Craft Interface

Label

Color

State

Description

OK

Green

On steadily

Card is functioning normally.

Blinking

Card is transitioning online or offline.

Off

The slot is not online.

FAIL

Red

On steadily

Card has failed.

FPC LEDs on the MX240 Craft Interface

An FPC takes up two DPC slots when installed in an MX Series router. An FPC LED located along the bottom of the craft interface indicates status. The LED corresponds to the lowest DPC slot number in which the FPC is installed. See Table 6.

Table 6: FPC LEDs on the Craft Interface

Label

Color

State

Description

OK

Green

On steadily

FPC is functioning normally.

Blinking

FPC is transitioning online or offline.

Off

The slot is not online.

FAIL

Red

On steadily

FPC has failed.

SCB LEDs on the MX240 Craft Interface

Each SCB has two LEDs on the craft interface that indicates its status. The SCB LEDs, labeled 0 and 1/0 (1/0 shows the status of either SCB1 DPC0, or FPC0 depending on which component is installed in the multifunction slot), are located along the bottom of the craft interface. Table 7 describes the functions of the SCB LEDs.

Table 7: SCB LEDs on the Craft Interface

Label

Color

State

Description

OK

Green

On steadily

SCB: Fabric and control board functioning normally.

Blinking

SCB is transitioning online or offline.

Off

The slot is not online.

FAIL

Red

On steadily

SCB has failed.

Fan LED on the MX240 Craft Interface

The fan LEDs are located on the top left of the craft interface. Table 8 describes the functions of the fan LEDs.

Table 8: Fan LEDs on the Craft Interface

Label

Color

State

Description

FAN

Green

On steadily

Fan is functioning normally.

Red

On steadily

Fan has failed.