Linear - Video Processing

Image Part Number Description / PDF Quantity Rfq
SI2178-B50-GMR

SI2178-B50-GMR

Silicon Labs

IC VIDEO TUNER 28QFN

0

SI21812-A55-GMR

SI21812-A55-GMR

Silicon Labs

IC DEMODULATOR ISDB-T 68QFN

0

SI21602-B55-GM

SI21602-B55-GM

Silicon Labs

IC VIDEO DEMODULATOR 68QFN

0

SI2127-A30-GM

SI2127-A30-GM

Silicon Labs

IC VIDEO TUNER 28QFN

0

SI21832-A55-GMR

SI21832-A55-GMR

Silicon Labs

IC DEMODULATOR ISDB-T 68QFN

0

SI2178-B40-GMR

SI2178-B40-GMR

Silicon Labs

IC RF VIDEO TUNER QFN

0

SI2127-A30-GMR

SI2127-A30-GMR

Silicon Labs

IC VIDEO TUNER 28QFN

0

SI2146-B30-GM

SI2146-B30-GM

Silicon Labs

IC VIDEO TUNER DGTL 24QFN

0

SI2196-A10-GM

SI2196-A10-GM

Silicon Labs

IC ATV/DTV TUNER HYBRID 40-QFN

0

SI2178-B50-GM

SI2178-B50-GM

Silicon Labs

IC VIDEO TUNER 28QFN

0

SI2164-B50-GMR

SI2164-B50-GMR

Silicon Labs

IC VIDEO DEMODULATOR 48QFN

0

SI2146-B30-GMR

SI2146-B30-GMR

Silicon Labs

IC VIDEO TUNER DGTL 24QFN

0

SI21602-B55-GMR

SI21602-B55-GMR

Silicon Labs

IC VIDEO DEMODULATOR 68QFN

0

SI21682-C55-GM

SI21682-C55-GM

Silicon Labs

IC VIDEO DEMODULATOR 68QFN

0

SI2138-A20-GM

SI2138-A20-GM

Silicon Labs

IC VIDEO TUNER 28QFN

0

SI21802-A55-GMR

SI21802-A55-GMR

Silicon Labs

IC DEMOD DVB-T/C/ISDB-T 68QFN

0

SI21672-C55-GM

SI21672-C55-GM

Silicon Labs

IC VIDEO DEMODULATOR 68QFN

0

SI21662-C55-GM

SI21662-C55-GM

Silicon Labs

IC VIDEO DEMODULATOR 68QFN

0

SI2148-A20-GMR

SI2148-A20-GMR

Silicon Labs

IC VIDEO TUNER 28QFN

0

SI21802-A55-GM

SI21802-A55-GM

Silicon Labs

IC DEMOD DVB-T/C/ISDB-T 68QFN

0

Linear - Video Processing

1. Overview

Linear video processing ICs are analog integrated circuits designed to process continuous video signals without digitization. They perform functions like amplification, filtering, and signal conditioning while maintaining signal integrity. These components are critical in applications requiring real-time video processing with minimal latency, forming the backbone of analog video systems in broadcast, surveillance, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Video AmplifiersHigh-bandwidth amplification with impedance matchingCamera signal boosting, distribution amplifiers
Active FiltersFrequency-selective signal conditioningNoise reduction in medical imaging
ADC/DAC ConvertersAnalog-digital signal conversion with linear responseHybrid video systems, digital signage
Synchronization ProcessorsTiming signal generation and separationBroadcast equipment, test instruments

3. Structure and Composition

Typical linear video ICs feature:

  • Multi-layer semiconductor substrate with precision analog circuits
  • Integrated operational amplifiers with controlled gain-bandwidth product
  • On-chip passive components (resistors, capacitors) for filtering
  • Differential input/output stages for noise rejection
  • Standard packages: TSSOP, QFN, or BGA for high-frequency applications

4. Key Technical Specifications

ParameterDescriptionImportance
BandwidthFrequency range (MHz) for signal processingDetermines video resolution capability
Slew RateVoltage change rate (V/ s)Impacts transient response and sharpness
THD+NTotal Harmonic Distortion + Noise (%)Measures signal fidelity
Power ConsumptionOperating current/voltage requirementsCrucial for portable devices

5. Application Fields

Major industries include:

  • Consumer Electronics: 4K TVs, gaming consoles
  • Industrial: Machine vision systems, test equipment
  • Medical: Ultrasound imaging, endoscopy devices
  • Broadcast: Professional cameras, switchers

Case Study: Analog Devices' ADV7180 SDTV video decoder enables seamless analog-to-digital transition in automotive infotainment systems.

6. Leading Manufacturers and Products

ManufacturerKey ProductsFeatures
TI (Texas Instruments)LMH6737Ultra-low distortion amplifier for 4K processing
Analog DevicesAD8321Differential driver for high-speed video transmission
STMicroelectronicsSTV6446AMulti-standard video decoder with on-chip PLL

7. Selection Guidelines

Key considerations:

  1. Match bandwidth to required video format (NTSC/PAL/HD)
  2. Assess power requirements vs. thermal limitations
  3. Evaluate THD+N for critical imaging applications
  4. Consider package size for high-density designs
  5. Verify temperature stability (-40 C to +85 C range)

8. Industry Trends

Emerging developments:

  • Integration with digital interfaces (HDMI 2.1, DisplayPort)
  • Development of 8K-compatible analog front-ends
  • Energy-efficient designs for IoT video sensors
  • AI-enhanced analog signal optimization algorithms
  • Advanced packaging for automotive camera systems
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