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Teledyne DALSA is an international leader in high performance digital imaging and semiconductors. The company designs, develops, manufactures, and markets digital imaging products and solutions, in addition to providing semiconductor products and services.

Teledyne DALSA's core competencies are in specialized integrated circuit and electronics technology, software, and highly engineered semiconductor wafer processing.

"With our combination of leading image sensor technology and camera and image processing expertise, we can produce superior products with competitive pricing. Our commitments to customer service and the success of our partners have earned us a reputation as the supplier of choice for machine vision components and solutions."
 
Product Line Up
Cameras
Teledyne DALSA offers powerful, innovative CCD and CMOS cameras combining industry leading performance with industry leading feature sets and value.
 
BOA Pro
Smart Camera with Sherlock Power and Flexibility
Robust, flexible, tiny vision system
BOA Pro combines the robustness of our highly integrated BOA smart camera with the power and flexibility of our advanced Sherlock™ inspection software. The result is a compact industrial vision solution with diverse applicability across all manufacturing segments.

Easy to Set Up, Ready to Run

The BOA smart camera is offered with a range of sensor resolutions, performance grades and software to accommodate the needs of both application and user. The embedded software is setup via a local PC connection to BOA using Ethernet. Once configured for runtime, the Ethernet link can be disconnected or used to communicate with other devices on the factory floor, such as PLCs, Robots and HMIs. In addition to Ethernet, BOA cameras provide direct connections for RS-232 serial, discrete I/O and lamp control. BOA cameras are supported by various hardware and software accessories to simplify factory integration

Sherlock: Power and Flexibility

Sherlock's extensive library of instructions, preprocessors and advanced algorithms can be combined in a variety of ways to solve simple or very demanding tasks. Maximum design flexibility is provided to allow users to customize algorithms, construct scripts and develop operator interfaces.
Falcon2
Global Shutter Cameras
The Falcon2 series is Teledyne DALSA's latest high-performance area camera family. Featuring our latest CMOS technology for high speed, high resolution imaging with true global shutter operation, the Falcon2 cameras deliver high quality images of fast-moving objects without smear or distortion.

DALSA's Falcon2 cameras also provide an extensive feature set including programmable exposure time via Camera Link interface or additionally by external hardware signals, and selectable aspect ratios (4:3 and 1:1). Wrapped in a remarkably compact, rugged, thermally efficient body that has been optimized for industrial applications, the Falcon2 cameras deliver outstanding performance and value.
  • High resolution and frame rate
  • Superior image quality
  • Reduced dark noise levels and improved dark offset
  • Improved sensitivity
  • In-camera image pre-processing (flat field correction)
  • Global shutter imaging to crisply capture moving objects
  • Selectable 4:3 or 1:1 aspect ratios while maintaining the same resolution (for 8M and 4M models)
  • Customizable user settings
  • Rugged and reliable
Genie TS Cameras
Introducing the most powerful,
versatile GigE camera ever - the Genie TS

Genie TS is a next-generation camera platform engineered to meet the critical performance and environmental requirements of challenging applications such as ITS. Powered by the latest image sensors including Teledyne DALSA's own advanced CMOS devices, the Genie TS family offers resolution from VGA up to 12 megapixel with extremely high quality resolution and frame rates as high as 300 fps, all with true global shutter functionality for crisp, smear-free images of high-speed action.

Genie TS also provides remarkable dynamic range to ensure optimized image capture from sun-to-shade. Integrated features like motorized lens control with image-to-image aperture, zoom and focus functionality, auto iris, image compression, image transfer-on-demand, and both RS-485 and RS-232 ports, are all built into a tough compact body equipped with a GigE Vision Compliant, direct to PC, interface making high speed data transfer and multi-camera networks easy to deploy.
 
Icon
User Programmable Camera Series for Embedded Imaging Applications
The Icon™ camera series gives vision system developers unprecedented power and flexibility to develop their own embedded imaging applications. Combining Teledyne DALSA's expertise in image sensors, cameras and image processing with off-the-shelf development tools and libraries, Icon brings a powerful, familiar application development environment and extensive set of imaging libraries to allow developers and OEMs to create and deliver cost effective, customized embedded vision system applications.

Icon begins with high quality image sensors and an extensive camera feature set. But Icon is more than a camera--it is an embedded vision system platform offering control of the hardware and image data to developers through Embedded Sapera™ Vision SDK, a suite of embedded image acquisition, processing, analysis and control libraries using conventional programming languages like C/C++. The Embedded Sapera Vision SDK package also features powerful tools, making it easier to configure, develop, debug and deploy vision applications.
Piranha4 Cameras
Teledyne DALSA raises the performance bar once again with the Piranha4. Powered by our latest high performance CMOS dual line scan imager, the Piranha4 offers resolutions from 1k to 8k pixels in a variety of pixel sizes to let you inspect and detect with unrivalled precision, speed, and responsivity.

Built for Maximum Throughput with Dual Line Scan CMOS
Teledyne DALSA 8k CMOS dual line scan image sensorTeledyne DALSA's unique dual line scan CMOS architecture delivers a 2x increase in responsivity. Large full-well capacity maximizes signal coverage for bright light , while low read noise and on-chip CDS ensures superior signal-to-noise at low light. This new image sensor's high dynamic range, combined with on-chip ADC for high speed, gives Piranha4 unprecedented performance.

Precise Sensor Alignment and Programmability for Easy Integration
The Piranha4 is built for the real world with features to ease system integration. Precise sensor alignment across X/Y/Z axes allows reliable, optimized performance in multi-camera systems, while an advanced GenICam compliant user interface makes it easy to set up and control camera parameters such as exposure control, FFC, white balance, gain, test patterns, diagnostics and more.

Xcelera-CL VX4 Vision Processor
The Xcelera-CL VX4 is the next generation user programmable vision processor based on the PCI Express X4 platform. It features powerful embedded processing architecture for real-time high-performance machine vision applications. The Xcelera-CL VX4 combines features field proven image acquisition and with onboard processing capabilities.

The X64 Xcelera-CL VX4 Full is a Camera Link vision processor that is based on the PCI Express x4 interface. Compatible with a Base, Medium or Full Camera LinkŪ camera, the X64 Xcelera-CL VX4 Full supports a wide variety of multi-tap area and line scan colour and monochrome cameras. The X64 Xcelera-CL VX4 Full board can interface with advanced Camera Link cameras output formats including 10-taps of 8-bit at 85MHz pixel clock rates.

Sophisticated Embedded Processing Platform

The Xcelera-CL VX4 Full features FPGA hardware processing platform that combines ACU(Acquisition Control Unit), DTE (Data Transfer Engine) and IPU(Image Processing Unit) and state of the memory architecture. As a result, Xcelera-CL VX4 is capable of handling variety of complex, real-time image processing topologies including iterative processing loops. While the FPGA technology provides ability to adapt to variety of high-speed, compute intensive real-time processing applications, the Xcelera-CL VX4 hardware design have been implemented using standard off-the-shelf components with long term availability.
         

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