Thinklogical VX160 Velocitydvi System-3 A/V+ Velocityrgb System-9 Velocitykvm-24 Quick Start Guide User Manual

Vx 160, Quick-start guide, Router

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QUICK-START GUIDE

VX160 Router KVM Matrix Switch Chassis, 16 Rack Units, 850 Watts

Copyright c 2009. All rights reserved. Printed in the U.S.A. All

trademarks and service marks are the property of their respective

owners.

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RS232

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RS232

CONTROLLER

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POWER POWER POWER POWER POWER POWER POWER POWER

POWER POWER POWER POWER POWER POWER POWER POWER

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Single-Link DVI

/

Audio Source

KVM Matrix Switch

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MRTS

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RGB IN

Single Head RGB Video & Audio Source

Velocity

VEL-9 RGB,

Audio, Serial

Transmitter

Local RGB

Display

VGA 1 (PRIMARY)

VGA 2 (SECONDARY)

Video 1 &

Video 2

Video 2

Data Downstream

Video 1 & Data Downstream

Data Upstream

Data Upstream

Velocity

Tx

Switch

Fabric

SFP+ A

(Video/data IN,

data OUT)

SFP+ A

(Video/data OUT,

data IN)

SFP+ B

(Video IN)

SFP+ B

(Video OUT)

Digital Crosspoint Switch

Dual Head or Dual

Link DVI Source

DCS input

T

T

T

R

R

R

Velocity

Rx

Audio OUT►

Single-Link DVI

/

Audio

Destinations

VX

160

router

QUICK-START GUIDE

1

STEP 1:

Depending

on your configuration,

connect your audio,

serial & video devices (monitors,

cameras, speakers, etc.) to the

Velocity

dvi

-3 A/V+ Receiver

using standard cables. Turn all the

devices ON.

Power Supply

(PWR-000022-R)

Power Supply

(PWR-000022-R)

STEP 1:

Connect

your output devices

(monitors, audio

speakers, projector,

etc.) to the

Velocity

rgb

Receiver

using

standard cables. Turn

all the devices ON.

5

STEP 5:

Connect your Audio cables to the Velocity

rgb

Transmitter’s

LINE IN and MIC OUT ports.

5

STEP 5:

Connect your

Audio and Serial

devices from the

Source CPU to

the appropriate

Transmitter ports

using standard

cables.

STEP 4:

Connect the RGB IN cable from the CPU to

the Velocity

rgb

Transmitter

and the Local Display

Cable from the Transmitter to your local monitor.

STEP 9: Connect both supplied AC Power Cords (PWR-

0000056-R) to the receptacles located on the

VX

160's power

supplies. Plug each of them into a standard AC source. Verify

that all system functions are

operating properly.

L1

L2

L1

L2

6

STEP 6:

Connect the 5VDC

Power Supply and plug it into a

standard AC source.

3

Dual Head or Dual

Link DVI Destination

DCS output

UPSTREAM

UPSTREAM

DOWNSTREAM

DOWNSTREAM

CONTROLLER

AUDIO►

ALARM

1-20

21-40

41-60

61-80

1-20

21-40

41-60

61-80

81-100 101-120

121-140 141-160

81-100 101-120

121-140 141-160

20

AUDIO

7

2

9

UPSTREAM

DOWNSTREAM

8

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L2

L1

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POWER SUPPLY 1 (LEFT):

POWER SUPPLY 2 (RIGHT):

FANS:

TEMPERATURE WARNING:

TEMPERATURE SHUTDOWN:

CPU:

INPUT/OUTPUT CARDS:

ANY OF THE ABOVE

COMMOM

GROUND

The

VX

160 Router

Critical Hardware Alarms:

(Located at the top, left rear of the unit.)

Fan failure, temperature spikes, DC voltage and/or current out of range, AC power input interruption and module removed

Fan failure, temperature spikes, DC voltage and/or current out of range, AC power input interruption and module removed

Individual fan monitoring

Chassis over temperature, multiple sensors

Chassis over temperature causing shutdown

Card failure (Only with a redundant card)

SFP+ failure, laser output fault

SERIAL PORT

+

_

5VDC

L1

L2

FIBER

TO LOCAL

DISPLAY

FROM CPU

LOS

LINE IN

MIC OUT

DOWNLOAD

POWER

CNTRL

SERIAL PORT

+

_

5VDC

L2

L1

FIBER

VGA 2

VGA 1

LOS

LINE OUT

MIC IN

DOWNLOAD

POWER

CNTRL

rgb

VEL-9 RGB,

Audio, Serial

Receiver

Velocity

rgb

Thinklogical’s™

VX

160

KVM Matrix Switch features redundant Power Supplies and Fail-Over

Controller

Modules for uninterrupted performance, even during system reconfiguration, updates or debug. The

VX

160

remains fully functional with only one Power Supply installed or with one Controller activated.

NOTE: When

using a single Controller, the

module on the left

must be used.

◄AUDIO

4

◄AUDIO IN

*If the VX160 is mounted

in a rack that restricts air

intake, additional vents

are located at the bottom

rear of the unit. These

can be opened or closed

with sliding thumb-

screws to adjust air flow.

VX160_VEL-3AV+_VEL-9_VEL-24_Quick_Start_Rev_B

DDC MODE

LCL REM

ACQUIRE

SELECT

L1

POWER

5 VDC

STATUS

+

_

L2

DVI from CPU

DVI to Local Display

MIC

OUT

IN

LINE

SERIAL

CAT5 Serial

L1

L2

Power Supply

(PWR-000022-R)

DDC MODE

LCL REM

ACQUIRE

SELECT

L2

POWER

5 VDC

STATUS

+

_

L1

DVI to Display DDC DVI to Display

MIC

IN

OUT

LINE

SERIAL

L1

L2

Power Supply

(PWR-000022-R)

▼ ▲

PROJECTOR

(Primary DDC Port)

Optional Secondary DVI Port

Optional

Serial

Device

STEP 2:

Connect the

5VDC Power Supply and

plug it into a standard AC

source.

3

Digital Video Extension System-3 A/V+ RECEIVER

RGB Video & Audio

Destinations

2

STEP 2:

Connect the 5VDC

Power Supply and plug it

into a standard AC source.

Velocity

dvi

Digital Video Extension System-3 A/V+ TRANSMITTER

4

STEP 4:

Connect your DVI cable from the

Source CPU to the DVI from CPU

Transmitter port. If desired, connect a local

video device to the Transmitter’s DVI to

Local Display port.

STEP 6:

Connect the 5VDC Power

Supply and plug it into a standard

AC source.

Audio OUT ►

◄Audio IN

DVI Out from CPU

Local DVI

(optional)

Velocity

dvi

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MRTS

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Powered by

MRTS

Technology

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MRTS

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MRTS

Technology

1

VGA 2

As used with Thinklogical’s™

Velocity

dvi

Video Extension System-3 A/V+

,

Velocity

rgb

Video Extension System-9

and the

Velocity

kvm

Fiber Extension System-24

DVI

IN 1

DVI

IN 2

USB HID, PS/2 (Keyboard / Mouse)

Velocity

kvm

Audio IN/OUT

DEV

LINE IN

MIC OUT

HID

P
S
2

LOCAL

FROM CPU

USB HID

HOST

CNTRL

UPDATES

SER IAL PORT

DVI OUT 1

DVI OUT 2

DVI IN 2

DVI IN 1

5

STEP 5:

Connect the

VIDEO IN

cables and any

local VIDEO

OUT devices

as shown.

L1

L2

L3

LOCAL KEYBOARD/MOUSE

L1

L2

L3

-24

TRANSMITTER

L1: Data Tx to Rx and Video 1

L2: Data Rx to Tx

L3: Video 2

SOURCE

CPU

7

USB 1.1

U
P
D
A
T
E
S

LINE OUT

MIC IN

PS

2

USB HID

HOST

CNTRL

SER IAL PORT

DVI OUT 1

DVI OUT 2

DVI OUT 2 DDC

DVI OUT 1 DDC

1

STEP 1:

Depending on your

configuration, connect your KMASS

devices (audio, keyboard, mouse, etc.) to

the Velocity

kvm

Receiver

using

standard cables as shown in the

examples below. Turn all the devices ON.

STEP 2:

Connect your VIDEO

output devices (monitor, projector,

etc.) to the Velocity

kvm

Receiver

. Install the Receiver’s

power cord and plug it into a

standard AC source. Turn the

Receiver ON.

AUDIO

L1

Velocity

kvm

-24

RECEIVER

DVI OUT 1 DDC

2

USB 1.1

6

STEP 6:

Connect the Velocity

kvm

Transmitter’s Power cord and plug it into a

standard AC source. Turn the Transmitter ON.

STEP 4:

Connect any desired

local KMASS devices to the

Velocity

kvm

Transmitter

ports (optional).

4

Optional

DVI OUT 2

Optional

DVI OUT 1

DVI OUT

2 DDC

L2

L1

L3

L2

L3

3

Dual Head DVI KVM Source

Dual Head DVI KVM Destinations

PHONE: (800) 291-3211

WEBSITE: www.thinklogical.com

EMAIL: [email protected]

Linux Operating System

6

7

STEP 7:

Connect your

Velocity Transmitter to a

VX

160 Upstream Card using multi-mode

fiber-optic cables (up to 1000 meters). Connect

L1

to any Receive Port and

L2

to the same

numbered Transmit Port. (See the Digital Crosspoint Switch detail diagram, right.)

STEP 3:

Connect your

Velocity Receiver to a

VX

160 Downstream Card using multi-mode

fiber-optic cables (up to 1000 meters).

Connect

L1

to any Transmit Port and

L2

to the

same numbered Receive Port. (See the Digital

Crosspoint Switch detail diagram, left.)

STEP 7:

Connect your

Velocity Transmitter to a

VX

160 Upstream Card using

multi-mode fiber-optic cables

(up to 1000 meters). Connect

L1

to any Receive Port and

L2

to the same numbered

Transmit Port. (See the Digital

Crosspoint Switch detail

diagram, below.)

STEP 7:

Connect your

Velocity

Transmitter to the

VX

160 using multi-mode

fiber-optic cables (up to 1000 meters).

Connect cable

L1

to any Upstream Receive

Port and cable

L2

to the same numbered

Upstream Transmit Port. Connect cable

L3

to any other Upstream Receive Port. (See

the Digital Crosspoint Switch detail diagram,

below.)

STEP 3:

Connect your

Velocity Receiver to a

VX

160 Downstream

Card using multi-mode

fiber-optic cables (up to

1000 meters). Connect

L1

to any Transmit Port

and

L2

to the same

numbered Receive Port.

(See the Digital

Crosspoint Switch detail

diagram, below.)

STEP 3:

Connect your

Velocity

Receiver to the

VX

160 using multi-

mode fiber-optic cables (up to 1000

meters). Connect

L1

to any

Downstream Transmit Port and

L2

to

the same numbered Downstream

Receive Port. Connect

L3

to any

other Downstream Transmit Port.

(See the Digital Crosspoint Switch

detail diagram, below left.)

STEP 8: Connect the Controller

Card LAN Port to your Linux

CPU with a CAT5 cable. (IP

address:

192.168.13.15)

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