Teledyne DALSA

Waterloo, ON N2V 2E9

COMPANY OVERVIEW

About Teledyne DALSA

Contact

605 McMurray Rd
Waterloo, ON N2V 2E9
Canada
http://www.teledynedalsa.com
519-886-6000
519-886-8023

More Info on Teledyne DALSA

Teledyne DALSA is part of the Teledyne Imaging group and a world leader in the design, manufacture and deployment of digital imaging components for the machine vision market. Teledyne DALSA 3D image sensors, cameras, smart cameras, frame grabbers, software, and vision solutions combine industry-leading performance with cutting-edge feature sets and value.

Articles

(Image credit: Teledyne DALSA)
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Z-Trak 3D Apps Studio is a suite of software tools developed for in-line 3D machine vision applications.
(Image credit: Teledyne DALSA)
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The Linea HS2 line scan camera also delivers 16k/5-µm resolution.
(Image credit: Teledyne DALSA)
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The BOA3 smart camera includes iNspect no-code inspection development software.
(Image credit: Teledyne DALSA)
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The Linea Lite 8k super-resolution camera uses bilinear color architecture to provide 2 to 8k resolution.
(Image credit: Teledyne DALSA)
A radiometric version of the MicroCalibir LWIR compact camera platform provides absolute temperature information of sub-50 mK NETD.
Xtium2-XGV PX8 is a half-length, multi-port 10GigE frame grabber for PCI Express Gen 3.0 x 8 platforms.
Photo 91068180 © Nikola Fific | Dreamstime.com
FIGURE 1. SWIR imaging is useful for inspecting food with high water content.
Using shortwave-infrared (SWIR) imaging, engineers develop applications for inspecting food, detecting moisture, identifying methane gas, and more.
Teledyne Dalsa
The Linea2 4k multispectral 5GigE line scan camera uses a quadlinear CMOS sensor with 4096 × 4 pixel resolution and 7 × 7 μm pixel size.
Teledyne Dalsa
The Z-Trak LP2C 3D laser profiler for in-line 3D measurement and inspection applications uses 4K sensors to deliver 4096 samples/profile.

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Additional content from Teledyne DALSA

Teledyne Dalsa
Both monochromatic CMOS cameras measure 59 × 59 × 41 mm and have 2.5 µm pixel size.
Teledyne Dalsa
The AxCIS family of fully integrated line scan imaging modules use quad-linear CMOS image sensors.
(Courtesy of Teledyne FLIR)
FIGURE 1. North American hummingbirds average around 53 beats per second in normal flight. Every beat of a hummingbird’s wings is captured in thermal wavelengths at 1000 fps using FLIR’s midwave X6900 sc high-speed infrared camera for research and science.
Commercial high-speed imaging technology is continually improving in frame rate, resolution, and image processing ability, as shown in leading applications for evolving high-performance...
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The Linea HS 16k multifield time delay integration (TDI) camera captures up to three images simultaneously in a single scan using light sources at different wavelengths.
Teledyne Dalsa
The Falcon4-CLHS M4480 camera is engineered for industrial imaging applications requiring high-speed data transfer.
(Credit: SPIE)
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During the 2021 Prism Awards online event, awards were presented to groundbreaking technologies and products in 10 categories ranging from quantum and smart sensing to life sciences...
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LACera CMOS imaging technology has uses in applications such as next-generation genomics, astronomical photometry, and ultra-high-resolution x-ray and electron imaging.
Teledyne Dalsa
Genie Nano-5G M/C8100 45M GigE Vision cameras use ON Semiconductor XGS sensors and are designed for industrial imaging applications.
Teledyne
The Linea SWIR 512 shortwave-infrared (SWIR) line scan camera for machine vision features an InGaAs sensor in a compact format.
(Image credit: Leonardo DRS)
FIGURE 1. DRS’s Image Contrast Enhancement (ICE) algorithm, available on the company’s Tenum 640 (top) and other of its cameras, is based upon the company’s patented Enhanced Multiresolution Local Area Processing (emLAP); DRS says that emLAP stably preserves the maximum visual content throughout the spectrum of the original sensor output with a user-definable degree of detail enhancement (lower images). EmLAP maps wide-dynamic-range sensor data into a clear lower-dynamic-range image sequence with smooth and stable transitions, including between dramatically different scene dynamics and temperature extremes. Notice that in the typical image at left, the firefighter is almost invisible. More details are visible in the low mode at center. In the highly enhanced image at right, many more details are visible, including a building that can be seen through the open window.
Longwave-infrared focal-plane arrays enable a vast number of near-room-temperature thermal-imaging applications.
Calibir Dxm640 1 Web Upd
The Calibir GXM640 LWIR camera is based on VGA 17 µm microbolometer technology.
Teledyne Dalsa
The Genie Nano-CXP 4090 and C5100 CMOS cameras are based on the On-Semi 16M and 25M color sensors.
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The Piranha 4 8k trilinear color camera uses a CMOS 8k trilinear sensor.
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The GEVA400 vision system includes four Power-over-Ethernet (PoE)-compliant Gigabit camera ports.
NASA/JPL-Caltech
NASA's InSight Mars lander acquired this image using Teledyne's robotic arm-mounted, Instrument Deployment Camera (IDC). This image was acquired on November 27, 2018, Sol 1 where the local mean solar time for the image exposures was 13:32:45.
In addition to the IDC, Teledyne provided the Instrument Context Camera (ICC), also part of the InSight mission.
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The Calibir GX series of thermal cameras is available in 320 × 240 and 640 × 480 resolutions, and features shutterless operations.
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Two Piranha XL 16k models integrate multi-line CMOS time delay and integration (TDI) technology.
(Courtesy of Fastec Imaging)
FIGURE 1. An IL5 high-speed camera (a) images a microfluidic circuit (b) around its 5000 frames/s sweet spot-circuit control signals are being recorded by the camera and saved as part of the per-frame metadata.
High-speed cameras depend on novel detectors and image-processing techniques to reach several thousand up to one million frames/s.
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The Piranha4 color line scan camera has a trilinear CMOS image sensor, which provides three native colors.
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The Calibir uncooled, infrared (IR) camera measures 29 × 29 mm, and has low power consumption.
FIGURE 1. The input to an imaging system is light intensity that is reflected or transmitted through the subject, and the output of the system is a digital number with a scale determined by data digitization bit depth.
Designing the best possible vision system requires choosing among the parameters that define the performance of an imaging device: sensitivity, speed, noise, pixel bit depth, ...
A wholly owned subsidiary of Teledyne Technologies Incorporated (NYSE: TDY) is set to acquire digital imaging and microelectromechanical systems (MEMS) specialist DALSA Corporation...