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Introducing the Si2170: Highest Performance, Hybrid TV Tuner

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... silicon tuners only successful in less strenuous set-top box and PC ... reception for both analog and digital broadcasts Industry leading integration ... – PowerPoint PPT presentation

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Title: Introducing the Si2170: Highest Performance, Hybrid TV Tuner


1
Introducing the Si2170 Highest Performance,
Hybrid TV Tuner
  • June 2009

2
Decade of Innovation in Mixed-Signal CMOS RF ICs
RF Synthesizer GSM/GPRS EDGE RF Transceiver DVB-S/DSS Satellite TV Receiver FM Radio Receiver AeroFONE single-chip GSM phone DVB T/C DTVDemod EZRadioPRO Wireless Receivers Hybrid TV Tuner
1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009 1999 Silicon Labs Single-chip RF solutions in Standard CMOS 2009
  • State-of-the-art design expertise
  • Patented, high performance digital low-IF
    receiver architecture
  • Core intellectual property in LNAs, mixers, VCOs,
    PLLs, ADCs, DSP, demodulation
  • Single-chip integration of complex mixed-signal
    functions
  • Digital-intensive architectures displace discrete
    and analog IC solutions
  • Innovation in standard CMOS enables integration
    without performance compromises
  • Standard CMOS manufacturing flow leverages
    Moores law
  • Eliminates external components to reduce system
    cost and complexity
  • Improves yield, reliability and manufacturability
  • Proven track record
  • More than 1 billion CMOS RF ICs sold

3
TV TunersRipe for Innovation
  • RF front end has resisted integration due to
    performance
  • Previous attempts could not match the performance
    of traditional discrete tuners and hybrid iDTVs
    increase performance challenges
  • To date, silicon tuners only successful in less
    strenuous set-top box and PC-TV applications,
    discrete tuners still used in iDTV for highest
    performance
  • Catalysts for change include
  • Transition from analog to hybrid
    createsadditional complexity and cost
  • Continuous pressure to reduce system and
    manufacturing costs
  • Slimmer TV form factors creating space
    constraints

4
Introducing the Si2170 Hybrid TV Tuner
  • Addresses worldwide TV tuner market
  • Hybrid (analog digital), terrestrial cable
  • Supports ATSC/QAM, DVB-T/C and ISDB-T/C
  • NTSC/PAL/SECAM analog TV demodulator
  • Highest performance
  • Superior picture quality and better reception for
    both analog and digital broadcasts
  • Industry leading integration results in lowest
    bill of materials
  • Eliminates hand/manual tuning calibration
  • Simplifies design and manufacturing
  • Tiny form factor enables slimmest TVs
  • Standard CMOS enables path to fullreceiver
    integration

Hybrid TV tuner delivers highest performance and
lowest system cost
Si2170
2.2 cm2
Hybrid TV Tuner with ATV Demod
5
iDTV System Overview
Silicon Labs Products
6
Si2170 10x PCB Area Savings
Hybrid MOPLL
Analog TV Demod
Si2170
2.2 cm2 1/10th the PCB area
Custom traces (RF design)
Trimmed coils
  • Si2170 replaces
  • 3 SAW filters
  • 3 LNAs
  • 3 tracking filters
  • 1 ATV demod IC
  • 1 MOPLL IC
  • 14 trimmed coils
  • 200 R,L,C, transistors
  • 90 of PCB area
  • Complex shield design cost

IF SAWs (3x)
Traditional discrete tuner25 cm2
7
Hybrid Receiver Roadmap
CVBS/SIF
SoC
Universal Source (MPEG) Decoder/ Host Processor
Hybrid Receiver
ATVDemod
Full CMOS Implementation
Hybrid TV Tuner
TS
DTVDemod
TS
Other Receivers
  • Full receiver integration delivers performance
    and cost benefits
  • Optimized channel filtering, fast scan, AGC,
    synchronization
  • Tuner uses information from demod to adapt to
    various reception conditions
  • Enables future system cost reductions, footprint
    reductions
  • Enables universal, cost-optimized, worldwide SoC
  • Leverages CVBS/SIF TS which are
    standard/universal interfaces
  • Modular HW SW design (worldwide SoC SW stack)
  • Simplifies customer design by eliminating the
    need for multiple region-stack specific SoC
    versions

8
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