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STV0367B
Low-power and ultra-compact combo DVB-T/C single-chip receiver
Data briefSeptember 2011 Doc ID 018891 Rev 1 1/4
STV0367Low-power and ultra-compact
combo DVB-T/C single-chip receiver
Features Combined DVB-T/-C receiver DVB-T demodulation DVB-C demodulation I²C serial bus interface Compatible with low- to high-IF tuners Flexible clock management ADC for RF signal strength indicator Flexible and DVB-CI compliant TS output Ultra-compact TQFP64 package
DescriptionThe STV0367 inherits the functionality of the
industry-leading enhanced STV0362 terrestrial
and STV0297E cable demodulators in one single
advanced combo receiver.
The STV0367 COFDM section of the receiver is
fully compliant with the DVB-T standard framing
structure, channel coding and modulation. The
symbol, timing and carrier recovery loops are
completely digital and tailored to comply with
state-of-the-art RF down-converting tuner
devices.
The STV0367 DVB-C section is a complete QAM
(quadrature amplitude modulation) demodulation
and FEC (forward error correction) solution that
performs IF-to-transport stream block processing
of QAM signals.
The demodulator provides error-corrected MPEG
transport-stream outputs which can be routed to
the transport sub-system.
Figure 1. STV0367 block diagram
Table 1. Device Summary
Introduction STV03672/4 Doc ID 018891 Rev 1
1 IntroductionIntended mainly for use in iDTV sets and set-top boxes for the expanding European and
Asian markets, the STV0367 combines in one single digital receiver chip, all the legacy of
the popular and market-proven STV0362 and STV0297E devices.
The design of the STV0367 is optimized, in terms of cost and performance, for the most
advanced CAN tuners and silicon tuners available on the market and is compliant with both
DVB-T and DVB-C standards.
The STV0367 provides all demodulation and FEC functions required for the recovery of
DVB-C bitstreams with outstanding BER results. In addition, it includes several features that
give simple and immediate access to various quality and status monitoring parameters. It is
intended for the digital transmission of compressed television, video, sound, and data
services over cable and is fully compliant with ITU-T J.83 Annexes A/C or DVB-C
specification bitstreams.
For terrestrial DVB-T networks the STV0367 embeds robust algorithms to cope with multiple
interference sources as well as impulse noise effects. The channel equalizer is capable of
static and dynamic echo cancellation even in severe urban environments. The embedded
algorithms are enhanced to cope with out-of-guard interval echoes. Furthermore, specific
channel quality monitoring is available for acquisition and survey.
The RF signal level is monitored by a dedicated single-ended 8-bit ADC. The RF power can
be left under the control of the tuner, or it can be derived from the baseband power using a
dedicated power-split algorithm. If required, the tuner serial I²C bus can be isolated using
the STV0367 I²C bus repeater.
The STV0367 handles a wide range of symbol rates, ranging from the highest practical
rates to rates as low as 0.87 Mbaud, even when there is a significant frequency offset.
Combines a configurable DVB-C/DVB-T
demodulator with STB decoding and display
functions.
This highly integrated SoC helps to reduce board
area and manufacturing cost, allowing low cost and
small size STBs to be designed for either DVB-C or
DVB-T networks.
AGC derived from IF or demodulated signal. Flexible AGC for different signal environments.
Low-power process, design and architecture. Best-in-class, low-power standby mode, to meet
emerging energy standards for STBs.
Clock-rate management and improvements in
channel acquisition efficiency enable a power-
efficient standby mode.
Includes full suite of low-level drivers and
application software, detailed user manuals and
reference design schematics.
Enables fast and seamless integration in complex
digital TV systems such as iDTV, set-top boxes or
PCTV dongles.
STV0367 Revision historyDoc ID 018891 Rev 1 3/4
Figure 2. Typical application
2 Revision history
Table 2. Document revision history
STV03674/4 Doc ID 018891 Rev 1
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