Important safety instructions, Inputs/outputs/connections description, Introduction – Televes T.0X DVBS2-COFDM CI TWIN MUX 3TP(2SAT):2CH User Manual

Page 6: Technical specifications, General installation conditions

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MUX DVBS2 - QAM/COFDM CI Twin

6

Important safety instructions

General installation conditions

• Before handling or connecting the equipment, please read this

manual.

• In order to reduce the risk of fire or electric shock, do not expose the

equipment to rain or moisture.

• Do not take the cover off the equipment without disconnecting it

from the mains.

• Do not obstruct the equipment’s ventilation system.

• Please allow air circulation around the equipment.

• The equipment must not come into contact with water or even be

splashed by liquids. Do not place containers with water on or near the

equipment if it is not adequately protected.

• Do not place the equipment near sources of heat or in excessively

moisture conditions.

• Do not place the equipment where it may be affected by strong

vibrations or knocks.

• This symbol indicates that the equipment complies with

the requirements of CE mark.

Inputs/Outputs/Connections description

The unit (Fig. 1) is provided with:

1. IF satellite input
2. IF satellite input/output
3. RF input
4. RF output
5. Module power supply input
6. Status LED
7. Control BUS connector
8. Slot CAM
9. Programmer / PC connector

Introduction

The multiplexer can demodulate up to three DVBS or DVBS2 signals from one

or two satellite IF inputs.

The user selects which services will be transmodulated in each of the

two available outputs. Two transport stream are created, which are then

modulated in QAM (564401) or COFDM (564301) format and converted to

their respective output channels using an agile up-converter.

A Common Interface slot is available. A conditional access module (CAM) can

be inserted to descramble output services.

To configure the multiplexer operating parameters (input frequency, output

channel, modulation format and adaptation of services) the universal

programming unit (ref. 7234) or the TSuite software can be used.

Technical specifications

Satellite

demodulator

Input frequency

MHz

950 - 2150

Through losses (typ.)

dB

< 1.5

Symbol rate

Mbaud

2 - 45

Modulation

DVB-S2

QPSK, 8PSK

DVB-S

QPSK

Frequency steps

MHz

1

FEC inner code

LDPC

9/10, 8/9, 5/6, 4/5, 3/4, 2/3, 3/5, 1/2

IN/OUT connectors

tipo

“F” female

FEC outer code

Bose-Chaudhuri-Hocquenghem

Input impedance

ohm

75

Roll-off factor

%

20, 25, 35

LNB powering

Vdc/KHz 13-17- OFF / 22KHz (ON-OFF)

Return losses (min.)

dB

10

Satellite selection (DiSEqC)

Port

A, B, C, D

QAM modulator

(Ref. 564401)

Modulation format

QAM

16, 32, 64, 128, 256

Scrambling

DVB ET300429

Symbol rate

Mbaud

1 - 7.2 (select.)

Interleaving

DVB ET300429

Roll-off factor

%

15

Bandwidth (max.)

MHz

8.3

Block code

Reed Solomon (188, 204)

Spectral inversion (selectable)

Normal / Inverted

OFDM

modulator

(Ref. 564301)

Modulation format

QPSK, 16QAM, 64QAM

Scrambling

DVB ET300744

Guard interval

1/4, 1/8, 1/16, 1/32

Interleaving

DVB ET300744

FEC

1/2, 2/3, 3/4, 5/6, 7/8

Cell_id

Selectable

Bandwidth

MHz

6, 7, 8

Spectral inversion (selectable)

Normal / Inverted

RF output

Output frequency (selectable)

MHz

46 - 862

Through losses (typ.)

dB

< 1.5

Frequency

steps

564101

KHz

250

Return losses (typ.)

dB

> 12

564201

166 - 125 (selectable)

Max. output level

dBµV

80 ±5

IN/OUT connectors

tipo

“F” female

Attenuation (selectable)

dB

> 15

Output impedance

ohm

75

General

Consumptions @ 24Vdc

(with signal)*

mA

530 (564301) 540 (564401) => (LNB not powered/ CAM not inserted)

630 (564301) 640 (564401) => (LNB not powered/ CAM inserted)

880 (564301) 890 (564401) => (one LNB powered/ CAM inserted)

1130 (564301) 1140 (564401) => (two LNB powered/ CAM inserted)

Protection level

IP

20

* Power consumption is measured with input signal.

The power consumption indicated for CAM and LNB are highest; in any case, depend on the type of CAM and LNB for each facility.

The technical specifications are defined for an ambient temperature of 45 ° C (113 ° F). For higher temperatures forced ventilation will be used.

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