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- Differential or Single-Ended Gain Block
- Wide Supply Range 3V to 12.6V
- Output Swings Rail-to-Rail
- Input Common Mode Range Includes Ground
- 600V/µs Slew Rate
- –3dB Bandwidth = 75MHz, AV = ±2
- CMRR at 10MHz: >60dB
- Specified on 3.3V, 5V and ±5V Supplies
- High Output Drive: ±70mA
- Power Shutdown to 300µA
- Operating Temperature Range: –40°C to 85°C
- Available in 8-Lead SO and Tiny 3mm x 3mm x 0.8mm DFN Packages
The LT6552 is a video difference amplifier optimized for low voltage single supply operation. This versatile amplifier features uncommitted high input impedance (+) and (–) inputs and can be used in differential or single-ended configurations. A second set of inputs gives gain adjustment and DC control to the differential amplifier.
On a single 3.3V supply, the input voltage range extends from ground to 1.3V and the output swings from ground to 2.9V while driving a 150Ω load. The LT6552 features 75MHz – 3dB bandwidth, 600V/µs slew rate, and ±70mA output current making it ideal for driving cables directly. The LT6552 maintains its performance for supplies from 3V to 12.6V and is fully specified at 3.3V, 5V and ±5V supplies. The shutdown feature reduces power dissipation to less than 1mW and allows multiple amplifiers to drive the same cable.
The LT6552 is available in the 8-lead SO package as well as a tiny, dual fine pitch leadless package (DFN). The device is specified over the commercial and industrial temperature ranges.
Applications
- Differential to Single-Ended Conversion
- Video Line Driver
- Automotive Displays
- RGB Amplifiers
- Coaxial Cable Drivers
- Low Voltage High Speed Signal Processing
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LT6552
Documentation
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Data Sheet 1
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Application Note 1
Design Note 1
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal. View our quality and reliability program and certifications for more information.
Part Model | Pin/Package Drawing | Documentation | CAD Symbols, Footprints, and 3D Models |
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LT6552CDD#PBF | 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP) |
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LT6552CDD#TRPBF | 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP) |
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LT6552CS8#PBF | 8-Lead SOIC (Narrow 0.15 Inch) |
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LT6552CS8#TRPBF | 8-Lead SOIC (Narrow 0.15 Inch) |
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LT6552IDD#PBF | 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP) |
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LT6552IDD#TRPBF | 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP) |
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LT6552IS8#PBF | 8-Lead SOIC (Narrow 0.15 Inch) |
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LT6552IS8#TRPBF | 8-Lead SOIC (Narrow 0.15 Inch) |
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- LT6552CDD#PBF
- Pin/Package Drawing
- 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552CDD#TRPBF
- Pin/Package Drawing
- 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552CS8#PBF
- Pin/Package Drawing
- 8-Lead SOIC (Narrow 0.15 Inch)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552CS8#TRPBF
- Pin/Package Drawing
- 8-Lead SOIC (Narrow 0.15 Inch)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552IDD#PBF
- Pin/Package Drawing
- 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552IDD#TRPBF
- Pin/Package Drawing
- 8-Lead DFN (3mm x 3mm x 0.75mm w/ EP)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552IS8#PBF
- Pin/Package Drawing
- 8-Lead SOIC (Narrow 0.15 Inch)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT6552IS8#TRPBF
- Pin/Package Drawing
- 8-Lead SOIC (Narrow 0.15 Inch)
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
Filter by Model
Part Models
Product Lifecycle
PCN
Oct 12, 2022
- 22_0255
Epoxy Change from Henkel 8290 to 8290A for 8-Lead SOIC Package (PCN part 2 of 2)
LT6552CS8#PBF
PRODUCTION
LT6552CS8#TRPBF
PRODUCTION
LT6552IS8#PBF
PRODUCTION
LT6552IS8#TRPBF
PRODUCTION
Jun 16, 2021
- 21_0026
Laser Top Mark for 8SOICN Assembled in ADPG, UTL and CRM
LT6552CS8#PBF
PRODUCTION
LT6552CS8#TRPBF
PRODUCTION
LT6552IS8#PBF
PRODUCTION
LT6552IS8#TRPBF
PRODUCTION
Filter by Model
Part Models
Product Lifecycle
PCN
Oct 12, 2022
- 22_0255
Epoxy Change from Henkel 8290 to 8290A for 8-Lead SOIC Package (PCN part 2 of 2)
LT6552CS8#PBF
PRODUCTION
LT6552CS8#TRPBF
PRODUCTION
LT6552IS8#PBF
PRODUCTION
LT6552IS8#TRPBF
PRODUCTION
Jun 16, 2021
- 21_0026
Laser Top Mark for 8SOICN Assembled in ADPG, UTL and CRM
LT6552CS8#PBF
PRODUCTION
LT6552CS8#TRPBF
PRODUCTION
LT6552IS8#PBF
PRODUCTION
LT6552IS8#TRPBF
PRODUCTION
Software & Part Ecosystem
Evaluation Kits 2
DC815A
LT6552CDD LT6552CS8 | Video Line Driver and Receiver
Product Detail
DC815A: Demo Board for the LT6552 3.3V Single Supply Video Difference Amplifier.
Resources
DC417B
DIP8, MS8, S8, SOT23-6 | Multi-Footprint General Purpose Board for Single Op. Amp
Product Detail
DC417B: Demo Board
Resources
Tools & Simulations 1
LTspice® is a powerful, fast and free simulation software, schematic capture and waveform viewer with enhancements and models for improving the simulation of analog circuits.
To launch ready-to-run LTspice demonstration circuits for this part:
Step 1: Download and install LTspice on your computer.
Step 2: Click on the link in the section below to download a demonstration circuit.
Step 3: If LTspice does not automatically open after clicking the link below, you can instead run the simulation by right clicking on the link and selecting “Save Target As.” After saving the file to your computer, start LTspice and open the demonstration circuit by selecting ‘Open’ from the ‘File’ menu.