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- Single-Ended to Differential Conversion
- Low Noise: 1.4nV/√Hz
- 20µVRMS Total Wideband Noise in Filter with 2MHz fC
- Dynamic Range: 104dB SNR at ±5V
- Total Supply Voltage: 2.7V to 12V
- Rail-to-Rail Outputs
- DC Accurate: Op Amp VOS 0.5mV (Typ)
- Trimmed Bandwidth for Accurate Filters
- MSOP-8 Surface Mount Package
- No External Clock Required
The LT1567 is an analog building block optimized for very low noise high frequency filter applications. It contains two wideband rail-to-rail operational amplifiers, one of them internally configured as a unity-gain inverter. With the addition of a few passive components, the LT1567 becomes a flexible second order filter section with cutoff frequency (fC) up to 5MHz, ideal for antialiasing or for channel filtering in high speed data communications systems. A spreadsheet-based design tool is available for designing lowpass and bandpass filters using the LT1567.
In addition to low noise and high speed, the LT1567 features single-ended to differential conversion for direct driving of high speed differential input A/D converters. The LT1567 operates from a total power supply voltage of 2.7V to 12V and supports signal-to-noise ratios above 100dB.
The LT1567 is available in an 8-lead MSOP package.
Applications
- Low Noise, High Speed Filters to 5MHz
- Low Noise Differential Circuits
- Communication Channel or Roofing Filters
- Antialias or Reconstruction Filtering
- Video Signal Processing
- Single-Ended to Differential Conversion
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LT1567
Documentation
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Data Sheet 1
Reliability Data 1
User Guide 1
Technical Articles 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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LT1567CMS8#PBF | 8-Lead MSOP |
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LT1567CMS8#TRPBF | 8-Lead MSOP |
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LT1567IMS8#PBF | 8-Lead MSOP |
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- LT1567CMS8#PBF
- Pin/Package Drawing
- 8-Lead MSOP
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT1567CMS8#TRPBF
- Pin/Package Drawing
- 8-Lead MSOP
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT1567IMS8#PBF
- Pin/Package Drawing
- 8-Lead MSOP
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
- LT1567IMS8#TRPBF
- Pin/Package Drawing
- 8-Lead MSOP
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
Filter by Model
Part Models
Product Lifecycle
PCN
Jun 5, 2024
- 24_0003
Epoxy Change from Henkel 8290 to 8290A for MSOP Package (2)
LT1567CMS8#PBF
PRODUCTION
LT1567CMS8#TRPBF
PRODUCTION
LT1567IMS8#PBF
PRODUCTION
LT1567IMS8#TRPBF
PRODUCTION
Feb 3, 2020
- 20_0128
Laser Top Mark for 8 Lead MSOP Packages Assembled in ADPG and UTAC
LT1567CMS8#PBF
PRODUCTION
LT1567CMS8#TRPBF
PRODUCTION
LT1567IMS8#PBF
PRODUCTION
LT1567IMS8#TRPBF
PRODUCTION
Filter by Model
Part Models
Product Lifecycle
PCN
Jun 5, 2024
- 24_0003
Epoxy Change from Henkel 8290 to 8290A for MSOP Package (2)
LT1567CMS8#PBF
PRODUCTION
LT1567CMS8#TRPBF
PRODUCTION
LT1567IMS8#PBF
PRODUCTION
LT1567IMS8#TRPBF
PRODUCTION
Feb 3, 2020
- 20_0128
Laser Top Mark for 8 Lead MSOP Packages Assembled in ADPG and UTAC
LT1567CMS8#PBF
PRODUCTION
LT1567CMS8#TRPBF
PRODUCTION
LT1567IMS8#PBF
PRODUCTION
LT1567IMS8#TRPBF
PRODUCTION
Software & Part Ecosystem
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.