Micro Digital Satellite Receiver Manuel d'utilisateur

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ncorporates SuperFlash technology licensed from SST.
© Motorola, Inc., 2004
AN2677/D
3/2004
Digital Satellite Equipment
Control (DiSEqC ) using
MC68HC908QT/QY
Application Note
By Stanislav Arendarik
Motorola Czech System Application Laboratory
Roznov pod Radhostem, Czech Republic
Introduction
This document describes using the Motorola MC68HC908QT/QY series
microcontroller unit (MCU) as the DiSEqC (digital satellite equipment control)
slave. The in this application note is a twin satellite/LNB switch, but it could
easily be adapted to other applications, such as a dual LNB (twin LNB
integrated within same horn), or a four satellite/LBN switch (or quad LNB). With
appropriate hardware and software enhancements, many other features can
be implemented.
The DiSEqC system is divided to two main groups: level 1.x and level 2.x.
Level 1.x — One-way communication between integrated receiver
decoder (IRD) and satellite outdoor unit (ODU).
Level 2.x — Two-way communication that supports a return-signalling
path and multiple peripheral devices.
The DiSEqC system uses the existing coaxial cable as the communication bus
that connects satellite receivers and satellite peripheral equipment. DiSEqC
control is a standard solution that replaces other analog control systems and
wiring.
According to the DiSEqC bus specification, the advantages of DiSEqC are:
Standardized digital system with non-proprietary commands
Enables switching in multi-satellite installations
Backwards compatible with 13/18 volt and 22-kHz tone switching
Potential for reduced power dissipation and thus cost reduction and
improved reliability
No switching problems caused by incompatibility of system components
Simplified receiver installation using device recognition via optional
two-way communication
DiSEqC is a trademark of Eutelsat.
Freescale Semiconductor, I
Freescale Semiconductor, Inc.
For More Information On This Product,
Go to: www.freescale.com
nc
.
..
© Freescale Semiconductor, Inc., 2004. All rights reserved.
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Résumé du contenu

Page 1 - Freescale Semiconductor, I

ncorporates SuperFlash technology licensed from SST.© Motorola, Inc., 2004AN2677/D3/2004Digital Satellite Equipment Control (DiSEqC ) using MC68HC908

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AN2677/D10 Digital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QYSoftware OperationFigure 6. Software OperationSTARTBASIC INITIALIZATIONEN

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AN2677/DConclusionDigital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QY 11ConclusionThis application note explains the DiSEqC-control of

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AN2677/D Freescale Semiconductor, I Freescale Semiconductor, Inc.For More Information On This Produ

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AN2677/D2 Digital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QYDiSEqC IntroductionThe DiSEqC standard is a single master, single or multi

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AN2677/DDiSEqC IntroductionDigital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QY 3Application CharacteristicsThis application using the M

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AN2677/D4 Digital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QYFigure 1 shows the signal block diagram. There are two universal LNBs used

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AN2677/DDiSEqC IntroductionDigital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QY 5Figure 2. Functional Block DiagramThe MC68HC908QT4 MCU

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AN2677/D6 Digital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QYThe DSU in VFC mode is sensitive to tone burst signaling. This control sig

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AN2677/DDiSEqC IntroductionDigital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QY 7The high-frequency circuit comprises D1, D2, and C3 (D6

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MOTOROLA Digital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QYAN2677/DDiSEqC IntroductionFigure 3. DiSEqC Slave SchematicRTAC TC105 001

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AN2677/DDiSEqC IntroductionDigital Satellite Equipment Control (DiSEqC ) using MC68HC908QT/QY 9Figure 4. DiSEqC Slave PCBFigure 5. DiSEqC Slave Unit —

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