Summer 2026
Posted on 4/18/2026
Manufactures sensors, imaging systems, and avionics
$24.33 - $32.45/hr
Newark, CA, USA
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Teledyne designs and manufactures sensors, imaging cameras, and electronics for aerospace, defense, environmental monitoring, and medical imaging. Its products combine core sensing and imaging capabilities into integrated solutions, including digital imaging sensors, high-reliability cameras, instrumentation, aerospace and defense electronics, and engineered systems for harsh environments. The company differentiates itself by growing through targeted acquisitions, building a diversified portfolio with specialized capabilities and high barriers to entry. Its goal is to expand capabilities and market reach by acquiring complementary technologies while delivering reliable sensing and imaging technology for critical industries.
Company Size
11-50
Company Stage
IPO
Headquarters
Thousand Oaks, California
Founded
1960
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Hybrid Work Options
Teledyne Space Imaging has surpassed 1,000 scientific imaging sensors in space following NASA's Nancy Grace Roman Space Telescope launch on 30 August aboard a SpaceX Falcon Heavy rocket. The company supplied detector technologies for both of Roman's primary instruments under a $23 million contract awarded in 2018, later expanded to deliver 28 sensor chip assemblies. For Roman's Wide Field Instrument, Teledyne provided 18 H4RG-10 infrared detector arrays, creating the largest infrared focal plane ever flown in space with over 300 million pixels. The company also supplied three CCD311-20 detectors for the telescope's advanced Coronagraph Instrument. Roman will survey billions of galaxies to investigate dark energy and identify thousands of exoplanets. Teledyne's imaging sensors also support missions including Hubble, James Webb, and ESA's Sentinel programmes.
Teledyne FLIR to develop new uncooled thermal imagers for US Army. Program award under 'DUTCH' initiative is intended to enhance next-generation sensors. 27 August 2026 Teledyne FLIR OEM says that the US Army's 'DUTCH' award strengthens the trusted domestic US thermal imaging industrial base, critical to defense modernization and drone priorities. Image: Teledyne FLIR OEM. Teledyne FLIR's OEM division has announced its selection under the US military's so-called "Delivering Unmatched Thermal Capability Hastened" (DUTCH) initiative, for which it is set to develop compact new uncooled imagers. Focused on strengthening thermal sensor performance, the program will also look to reduce size, weight, power, and cost (SWaP-C) requirements, while maintaining high-volume production capability. California-headquartered Teledyne FLIR OEM adds that the work will build on its prior investment in advanced small-pixel pitch uncooled thermal architectures, including recent product innovations intended to scale integration across defense missions, one example being uncrewed platforms. Paul Clayton, the president of Teledyne FLIR OEM, commented: "Teledyne FLIR OEM is proud to contribute to the US Army's efforts to accelerate next-generation uncooled thermal performance while strengthening a secure, resilient domestic industrial base. "Our ability to deliver state-of-the-art, NDAA-compliant thermal imaging solutions on time and at scale helps reduce program risk and ensure reliable long-term access for critical defense programs, like Drone Dominance." NDAA compliance relates to the 2019 US National Defense Authorization Act, which bans the use of equipment made by a number of international suppliers, notably China's Huawei and ZTE. Secure supply chains Examples of Teledyne FLIR OEM's NDAA-compliant uncooled thermal imaging products include the Boson+ platform with zoom lens capability, the dual-sensor Hadron 640 that combines infrared and visible imaging, and the firm's cost-effective Lepton camera modules. The company says that its AI-ready architecture, with optional factory-integrated continuous zoom lenses, provide superior performance for drones, handheld thermal devices, weapon sights, and loitering munitions. According to Teledyne the DUTCH initiative aligns with the Pentagon's priorities to strengthen secure microelectronics supply chains while restoring domestic manufacturing capacity for mission-critical technologies. Teledyne FLIR OEM, which operates out of locations in Santa Barbara, Boston, and Charlotte, describes itself as a "non-traditional" defense contractor providing high-volume manufacturing and system-level integration for uncooled thermal imaging systems, helping expand a scalable, low-risk domestic supply base for infrared components. George Bobb, the CEO and president of parent company Teledyne Technologies, added: "A trusted, scalable, and resilient domestic supply of high-performance thermal imaging camera modules is vital to US national security. "Across Teledyne, we are committed to moving quickly to develop and deliver the critical defense technologies needed by our war fighters." Last month Teledyne Technologies announced record-breaking quarterly sales of $1.66 billion, with the company's digital imaging segment accounting for $869 million of that total, a rise of 13 per cent year-on-year thanks largely to higher sales of infrared imaging detectors, components, and subsystems for both defense and commercial applications.
Teledyne FLIR Marine introduces FLIR M364C-USV camera for autonomous and uncrewed vessels. Business Wire 26-Aug-2026 7:49 PM Purpose-built multispectral maritime camera system helps autonomous and uncrewed vessel operators navigate safely, detect hazards earlier and accelerate deployment of next-generation maritime autonomy solutions Teledyne FLIR Marine, part of Teledyne Technologies Incorporated (NYSE:TDY), today introduced the FLIR M364C-USV, a multispectral maritime camera system designed to help autonomous and uncrewed surface vessel (USV) operators navigate safely, detect hazards sooner and maintain situational awareness in demanding marine environments. Combining thermal and visible imaging in a rugged, mission-ready platform, the M364C-USV enables reliable operation day or night and in challenging conditions such as glare, haze and low visibility. Built specifically for remote, autonomous and uncrewed operations, the M364C-USV delivers the clear, actionable imagery needed for navigation, obstacle avoidance, surveillance, security, environmental monitoring and scientific research. Its reinforced pan-and-tilt system and continuous-duty design help ensure critical visual intelligence remains available throughout extended missions. "Autonomous and uncrewed vessels depend on reliable sensing technologies to operate safely and effectively in dynamic maritime environments," said Michelle Hildyard, General Manager of Teledyne FLIR Marine. "The M364C-USV delivers the real-time visibility and situational awareness operators need to make better decisions, avoid hazards and support mission success, while providing the durability required for continuous operation at sea." Designed specifically for autonomous and uncrewed vessel applications, the M364C-USV helps developers accelerate deployment by simplifying integration with autonomy, remote-control and mission-management systems. The camera delivers high-quality thermal and visible imagery that supports advanced analytics, AI-enabled workflows and machine-vision applications, while aligned video and telemetry data provide more reliable inputs for tracking, navigation and situational awareness. Combined with a design that is built for demanding marine environments, the M364C-USV gives operators a dependable imaging solution for long-duration autonomous missions. The M364C-USV helps vessel operators maintain awareness and navigate successfully in changing environmental conditions. By combining thermal and visible imaging, the camera system improves the detection of vessels, navigation markers and other obstacles during daylight, darkness and low-visibility conditions, helping support safer and more effective operations. M364C-USV camera systems are available to order now and are backed by a two-year limited warranty tailored to the continuous, high-duty-cycle operating profiles typical of USV platforms. To learn more about the Teledyne FLIR M364C-USV camera and Teledyne FLIR Marine's complete portfolio of maritime imaging solutions, visit marine.flir.com. About Teledyne FLIR Marine Teledyne FLIR Marine is a global leader in marine thermal imaging, delivering advanced camera solutions that enhance safety and situational awareness for mariners in all conditions. Its systems provide clear, reliable vision in darkness, glare and challenging weather conditions, supporting safer navigation for commercial operators, first responders and recreational boaters. The portfolio includes advanced thermal and low-light imaging technologies designed specifically for demanding marine environments. To learn more, visit marine.flir.com. About Teledyne Technologies Teledyne Technologies is a leading provider of sophisticated digital imaging products and software, instrumentation, aerospace and defense electronics, and engineered systems. Teledyne's operations are primarily located in the United States, the United Kingdom, Canada, and Western and Northern Europe. For more information, visit Teledyne's website at www.teledyne.com. For high-resolution images, as well as additional editorial requests, please contact: Andrew GoldenPrincipalRushton Gregory [email protected]
Anschütz and Teledyne SevenCs partner for the S-100 era of navigation. SYNAPSIS (W)ECDIS NX prepares ships for next-generation maritime data - turning new information into safer, smarter decisions. Tuesday - 18 August 2026 The maritime industry is entering a new phase of digital navigation. With the introduction of the IHO S-100 standard, ship navigation is evolving from a chart-based approach towards a dynamic, data-driven environment. To actively shape this transition, Anschütz has partnered with Teledyne SevenCs, combining deep expertise in integrated navigation systems with decades of experience in hydrographic data processing and chart technology. With the transition to S-100, maritime navigation is entering a new phase, driven by richer and more dynamic data on the bridge. Anschütz and Teledyne SevenCs - two German maritime technology specialists - continue their longstanding cooperating to leverage these capabilities and deliver next-generation navigation solutions made in Germany. Turning S-100 data into a reliable operational picture requires the combination of structured data processing and system integration, bringing together the complementary strengths of Anschütz and Teledyne SevenCs. Within SYNAPSIS (W)ECDIS NX, Anschütz integrates the hydrographic software capabilities of Teledyne SevenCs into a coherent system environment, enabling precise and clearly presented information for navigators. "SYNAPSIS ECDIS and WECDIS are designed to support the transition to the IHO S-100 standard," said Matthias Grote, Product Manager for SYNAPSIS software at Anschütz. "S-100 brings a significant increase in available data. The important question is how this data is handled within the navigation system and how it supports the navigator in the respective situation. SYNAPSIS is design to combine multiple data inputs into a clear, consistent and operationally usable picture that really supports navigation." Stephan Dimke, General Manager, Teledyne SevenCs GmbH comments; "The transition to S-100 is one of the most significant developments in maritime navigation in decades. We are proud that Teledyne SevenCs technology will support Anschütz in this transformation. This partnership demonstrates the strength of German maritime innovation and highlights how collaboration between leading companies can help shape the future of digital navigation." From ECDIS toolbox to data-driven navigation. Today's ECDIS has established itself as a comprehensive toolbox on the bridge, combining chart data and integrated sensor inputs into navigation functions. While these capabilities are well proven, they remain largely based on static information. In practice, navigators must interpret and mentally combine multiple data sources to build a reliable picture of the situation. S-100 significantly extends this foundation by introducing a broader range of dynamic and heterogeneous data sources, including high-resolution bathymetry, dynamic water levels and surface currents. These new data capabilities can support bridge teams in narrow and challenging waters and open up additional functionality and operational use cases for navigation on the bridge. In this context, the key challenge is no longer access to data, but how this information is combined and used within the navigation system. Turning additional data into operational context. The key challenge is to ensure that additional data does not increase complexity on the bridge but instead improves clarity and supports decision-making. With SYNAPSIS, Anschütz addresses this by integrating S-100 data with sensor inputs and vessel-specific parameters into a consistent operational context. This provides a clear and structured presentation of information, allowing navigators to use S-100 data directly in their practical navigation context. Depth information is evaluated in relation to draft and safety settings, water level updates are reflected in safety-relevant calculations, and currents are considered in route assessment and manoeuvring. With S-100, data from different sources are combined in a structured manner to support situational awareness and to reduce the need for manual interpretation. Technology foundation: SYNAPSIS S-100 integration with SevenCs. The Teledyne SevenCs Nautilus Kernel provides the structured processing of hydrographic data as the technical basis for S-100 data handling. Anschütz integrates these data into a consistent operational context within SYNAPSIS. Anschütz is following a clear development roadmap aligned with the regulatory S-100 timeline ensuring that SYNAPSIS (W)ECDIS NX meets the mandatory requirements for new installations while continuing to evolve in line with operational needs.
Teledyne DALSA launches 67 MP Falcon4-CLHS camera for scientific imaging. Teledyne DALSA, a Teledyne Technologies company and provider of machine vision technology, has launched the Falcon4-CLHS M8200-Scientific, a new 67-megapixel area scan camera designed for life sciences, scientific imaging and precision measurement applications. The new camera expands Teledyne DALSA's Falcon4-CLHS family and combines high resolution, low noise, strong sensitivity and fast image capture. It is designed to support applications where image quality, measurement accuracy and high throughput are critical. The Falcon4-CLHS M8200-Scientific is built around a customized version of Teledyne e2v's Emerald 67 MP CMOS image sensor. The camera delivers approximately 3 electrons of read noise, up to 64 dB of dynamic range and quantum efficiency of up to 70% at 550 nm. Factory calibration at the pixel level helps maintain consistent image quality for demanding quantitative imaging applications. With an 8,192 x 8,192 square sensor and 2.5-micron pixels, the camera provides a large imaging area suited to high-resolution microscopy and other scientific applications. It can operate at speeds of up to 65 frames per second, supporting high-throughput workflows. The new camera is designed for applications including whole-slide imaging, genomics, spatial omics, fluorescence microscopy, high-content screening, automated cell analysis, imaging cytometry and light-sheet microscopy. Its combination of low noise, high sensitivity and wide dynamic range also makes it suitable for precision metrology, semiconductor inspection, materials analysis and other industrial imaging applications. "The Falcon4-CLHS M8200-Scientific extends the Falcon4-CLHS platform into demanding quantitative imaging applications," said Manny Romero, Senior Product Manager at Teledyne. "It delivers 67 MP resolution together with high sensitivity, dynamic range, image consistency and measurement accuracy." The camera is supported by Teledyne's broader imaging ecosystem, which includes image sensors, frame grabbers and software. This provides OEM developers with an integrated platform for building life science, scientific, semiconductor and industrial imaging systems. The Falcon4-CLHS M8200-Scientific also supports manufacturers seeking consistent performance and long-term product availability for advanced imaging equipment. Its high-resolution sensor and high-speed operation are intended to improve the capture and analysis of detailed images while maintaining reliable performance. The camera is available for customers worldwide. Teledyne Vision Solutions brings together Teledyne DALSA, Teledyne e2v CMOS image sensors, FLIR IIS, Lumenera, Photometrics, Princeton Instruments, Judson Technologies, Acton Optics and Adimec. The group provides imaging technologies for industrial, scientific and other demanding applications. Teledyne Technologies Incorporated (NYSE: TDY) provides digital imaging products and software, instrumentation, aerospace and defence electronics, and engineered systems. The company operates across the United States, Canada, the United Kingdom and Western and Northern Europe.