LT6552 (8)

The LT6552 is available from Analog Devices at Xecor. Designed for differential to single-ended conversion and video line driving, the LT6552 offers a wide supply range of 3V to 12.6V, rail-to-rail output swings, and a high slew rate of 600V/µs. With a -3dB bandwidth of 75MHz and high output drive of ±70mA, it is ideal for automotive displays, RGB amplifiers, coaxial cable drivers, and low-voltage high-speed signal processing. Available in 8-Lead SO and 3mm x 3mm DFN packages, this series ensures exceptional performance and flexibility for demanding applications. Whether used in automotive, telecommunications, or video processing, the LT6552 delivers reliability and efficiency. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the LT6552 series below.

Part Number Description Package Inventory Add To Bom
LT6552CDD#TRPBF Accurate signal replication and amplification for S-Video signals DFN-8 5,724
LT6552CDD#PBF Boost your video signal amplification capabilities with this single chip DFN-8 7,472
LT6552IS8#TRPBF LT6552IS8#TRPBF: Single 12.6V Video Amp for Automotive SOIC-8 2,616
LT6552CS8#PBF Single tube design for reliable and efficient video processing SOIC-8 3,115
LT6552CS8#TRPBF Optimal signal integrity with 3.3V operation SOIC-8 5,698
LT6552IDD#PBF Single-ended Video Amplifiers for S Video signals DFN-8 7,909
LT6552IS8#PBF Enhance video quality with this amplifier SOIC-8 6,978
LT6552IDD#TRPBF Amplifier for Video Signals with 3.3V Single Supply DFN-8 3,395

Key Featrues

Wide Supply Range (3V to 12.6V): The LT6552 operates across a broad voltage range, making it versatile for various applications, including low-voltage systems and automotive environments. This flexibility ensures compatibility with different power supplies, enhancing its usability in diverse scenarios.
Rail-to-Rail Output Swing: The amplifier's output can swing close to the supply rails, maximizing the dynamic range of the signal. This feature is particularly beneficial in low-voltage applications, ensuring minimal signal distortion and improved signal integrity.
High Slew Rate (600V/µs): With a high slew rate, the LT6552 can handle rapid signal changes, making it ideal for high-speed video and signal processing applications. This ensures clear and accurate signal reproduction, even for fast-moving video content.
Differential or Single-Ended Gain Block: The LT6552 can be configured for both differential and single-ended input signals, providing design flexibility. This allows it to be used in a wide range of applications, from differential signal processing to single-ended video amplification.
High Output Drive (±70mA): The amplifier can deliver high output current, enabling it to drive heavy loads such as coaxial cables or multiple displays. This feature ensures robust performance in demanding applications, such as automotive displays or video line driving.

Applications

Automotive Display Driver: The LT6552 is ideal for driving automotive displays, such as LCD or OLED panels, due to its high output drive capability and wide supply range (3V to 12.6V). Its rail-to-rail output swing ensures clear and accurate signal transmission, making it suitable for automotive infotainment and dashboard display systems.
Coaxial Cable Signal Amplifier: The LT6552 is well-suited for amplifying signals in coaxial cable drivers, particularly in video distribution systems. Its high slew rate (600V/µs) and wide bandwidth (75MHz) ensure minimal signal distortion, making it ideal for high-speed video transmission in broadcast and surveillance applications.
RGB Amplifier for Video Processing: The LT6552 excels in RGB amplification for video processing applications, such as in monitors and projectors. Its differential or single-ended gain block configuration allows for flexible signal processing, while its high common-mode rejection ratio (CMRR) ensures clean and accurate color representation.
Low Voltage High-Speed Signal Processor: The LT6552 is perfect for low-voltage, high-speed signal processing in portable electronics and IoT devices. Its ability to operate on a single 3.3V supply and its rail-to-rail input/output capabilities make it ideal for processing signals in battery-powered devices where power efficiency and signal integrity are critical.