Laser Communication
Laser Communication
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Top Laser Communication Companies

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73 companies for Laser Communication

Mynaric's Logo

Gilching, Germany

101-250 Employees

2009

Mynaric offers jobs in a broad range of technical as well as in non-technical areas. Mynaric’s success rests on the shoulders of its exceptionally gifted workforce. Mynaric is a laser communication company which develops and manufactures laser products allowing for high data rate and long-distance wireless data transmission between moving objects for terrestrial, airborne and space applications. As part of the technical team you will work on the development and production of next-generation optical communication systems that will shape communication networks of the future. But no matter which area you are in, working at Mynaric always means being part of a talented and highly diverse team that pushes the state-of-the-art and works with distinguished partners around the globe. Laser communication can be thought of as optical fiber for the skies and Mynaric’s products provide backbone connectivity to link aircraft, unmanned aerial vehicles (UAVs), high altitude platforms (HAPs), satellites and their respective ground stations. They are designed to meet the demanding conditions of aerial and space applications and offer world class performance in terms of data rate, power consumption, size and weight.

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Core business
Image for Mynaric – Laser communication. Made scalable.

Mynaric – Laser communication. Made scalable.

... Mynaric – Laser communication. Made scalable. ...

Chanelink's Logo

Special Capital Region of Jakarta, Indonesia

1-10 Employees

2014

Chanelink is here for everyone interested in laser and also a good platform for technology learning, information sharing and work display. Using nanodiamonds to monitor the temperature inside cells. Using nanodiamonds to monitor the temperature inside cells. Ortur Laser - What You Need to Know About Laser Safety Glasses! Crazy difference between 5W LASER and 5W LED!

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Core business
Image for Laser learning and communication community- Chanelink

Laser learning and communication community- Chanelink

... Chanelink provides a learning and communication community for laser cutting, laser engraving, laser welding, laser marking, laser processing practitioners and enthusiasts, and provides a variety of laser technology materials, video tutorials, picture materials, software downloads and ...

Kelvin Hughes's Logo

London, United Kingdom

501-1000 Employees

1947

HENSOLDT UK, formerly Kelvin Hughes, is a world leader in the development, manufacture and supply of maritime navigation and surveillance radar systems. HENSOLDT UK employs over 170 employees and are headquartered in Enfield, North London. HENSOLDT UK’s Kelvin Hughes SharpEye radars set the international standard in solid-state radar sensor technology. HENSOLDT UK, formerly Kelvin Hughes, has a proud and enviable history dating back over 250 years tracing its roots back to Thomas Hughes, a Master of the Clock-makers Company, and Lord Kelvin, a prolific inventor and one of the world’s greatest scientists. HENSOLDT UK has a proud and enviable history dating back over 250 years tracing its roots back to Thomas Hughes, a Master of the Clock-makers Company, and Lord Kelvin, a prolific inventor and one of the world’s greatest scientists. HENSOLDT UK, formerly Kelvin Hughes Limited, is a world leader in the development, manufacture and supply of maritime navigation and surveillance radar systems. HENSOLDT UK recognises that delivering a first-time-fix and value for money are fundamental expectations of our customers. HENSOLDT UK has a wide range of employment opportunities in all areas and at all levels in the business.

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Product
Image for Laser Communication Terminal

Laser Communication Terminal

... Laser Communication Terminal - High-Speed Data Transfer | ...

TRL Space's Logo

Brno, Czechia

11-50 Employees

2014

During our mission we want to cooperate and strengthen relationships between industry, universities, scientific institutions and to create added value, together. We are developing a Flash LiDAR system for vegetation and topography mapping as well as object detection. Each year, we are becoming more reliant on satellites, and space-based applications are now utterly critical to the large and growing range of services on which our citizens and economies depend. We are working on an end-to-end solution for access management and secured communication to protect your assets. We are building a Moon mission to explore Lunar sub-surface structures by 2030. Our mission includes also testing the technologies for space laser communication from the Moon will help build laser communication systems between satellites, ground and deep space missions. By that time we will have our products and services on every continent. Due to our know-how and experience we have capabilities to cover the full project/mission: mission definition and analysis, mechanical design, structural and thermal analysis, development, manufacturing, integration, assembly, testing, qualification and launch.

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Image for Deep Space laser communication system

Deep Space laser communication system

... Deep Space laser communication ...

Geost's Logo

Tucson, United States

11-50 Employees

Within our specialties, GEOST has extensive technical capabilities on par with large industry primes and provided at a lower cost. We are enabled by a small business mindset that is nimble and willingly tailors end-solutions to meet customer mission needs. GEOST is an operating unit of LightRidge Solutions, a parent company whose constituent businesses provide small, affordable and increasingly autonomous domain awareness and protection sensors, space electronics, and C4ISR Solutions. GEOST and sister operating units Ophir and Trident together have been solving customers’ mission critical space and airborne sensor and payload challenges for over 50 years. GEOST solves our customer’s difficult problems through cutting-edge ground and space-based sensor payloads and mission support solutions. GEOST is revolutionizing the space market with innovative and novel solutions for space and terrestrial missions. GEOST will continue to expand its mission impact by being a world-leading provider of solutions addressing survivability & resiliency, ISR, mission autonomy, and laser communications. GEOST strives to be a valuable member of the local community through giving back where our employees live and work, with both time and resources.

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Image for GEOST – EO Sensors…Systems…Solutions

GEOST – EO Sensors…Systems…Solutions

... Laser Communications ...

Marble Arch Partners's Logo

Reston, United States

2002

We are comfortable with technologies and complex projects that are long term and highly disruptive of current business models. We are always seeking new ideas, and the people who bring them to us. Marble Arch Partners, LLC is a leader in identifying and sourcing advanced technology innovations for further development and launch into the global marketplace. Founded in 2002, Marble Arch has evolved into a technology development firm specializing in sourcing early–stage innovations from public and private sources which can be translated into viable products & services for commercial and government customers – domestically and internationally. Laser Light is a new approach to a proven business model – global data transport – offering higher security, lower underlying costs, on a dynamic, automated, advanced operating platform as an alternative to legacy transport networks. Laser Light's HALO Global Network is an evolution in global data transport, offering highest level of security, lowest cost, “greenest footprint” whilst equivalent to any legacy transport network service. It will provide a proving ground for technologies arising from federal laboratories, universities, not-for-profit technology centers, federal departments and agencies, and the private sector. Pegasus Global Strategic Solutions LLC ("Pegasus") is a Department of Defense recognized Prime Vendor with proven success in design, development, test and evaluation of highly sophisticated technologies.

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Image for Portfolio | Marble Arch Partners, LLC

Portfolio | Marble Arch Partners, LLC

... Laser Light ™ Communications, ...

Twisted creative's Logo

Eindhoven, Netherlands

11-50 Employees

1998

Located in Eindhoven, we work directly for clients and co-work with agencies and production companies. Wij zijn een creatief productiehuis voor animatie, film en immersive content.

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Image for TNO Worldwide High-Speed Laser Satellite Communication

TNO Worldwide High-Speed Laser Satellite Communication

... TNO - Worldwide High-Speed Laser Satellite Communication - ...

Solmirus Corporation's Logo

Colorado Springs, United States

1-10 Employees

2004

Since 2004, Solmirus has developed world-class infrared & visible imaging systems that have pushed the technology and science to new levels. Solmirus was created to design and engineer products and solutions for science, engineering and industrial applications utilizing infrared technologies. Solmirus instruments utilize an upward-looking all-sky lens coupled with an insulated hatch cover for uniform blackbody subtraction. Delivering the world's first infrared all-sky system for 24/7 monitoring, our systems are used globally by science and industry. Klebe is a co-founder of Solmirus and has a rich background in developing custom astronomical instrumentation as well as a frequent contributor to the scientific community, through active participation in local initiatives, public out reach and education. Brooks is a co-founder of Solmirus and is a computer and software engineer with 25+ years of industry experience spanning embedded systems development to large scale complex solutions. Industrial designer specializing in electro-mechanical devices, product prototypes and interactive exhibits. Pauliquevi's group owns an ASIVA instrument and permanently works in the generation of new products with the Sky Camera, as well as investigation on the diurnal cycle of clouds in the context of deep convection.

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Core business
Image for Laser Communications

Laser Communications

... Laser Communications ...

GT Lasers's Logo

Hangzhou City, China

251-500 Employees

2009

Zhejiang GT Lasers Tech. co., ltd located in Hangzhou Zijingang Science and Technology City, which is a national new high-tech enterprise, concentrating on research & develop laser system application technology and laser device, laser optics core component. In the optic fiber laser industry, it is a famous manufacture and service provider with great strength on technology research and development, and scale production capability. Company’s predecessor is mainly dedicated in laser communication, has a Hangzhou laser communication research & development center. We accumulate almost 20-year practical experience on fiber optics R&D and scale mass production; come into being a capable product R&D team, also with highly qualified technical staffs in production line. GT Lasers, pursuit in providing top-ranking products and service for customers in laser technology field, to be a leading enterprise with continuous technological innovation and product innovation. GT Lasers with good after-sale service and excellent cost performance is the ideal choices for system integrators and device manufactures, also is the best sincere partner. GT single mode 3KW anti-high reflection fiber laser, demonstrating the use of high-pressure oxygen to cut copper. GT hand-held welding system on-site demonstration, carbon steel, stainless steel, aluminum processing weld perfect.

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Product
Image for PRODUCT  /  Laser Communication  /  FTTH/B CATV TX & RX  /  EPON  OLT_Zhejiang GT Lasers Tech. Co., Ltd.

PRODUCT / Laser Communication / FTTH/B CATV TX & RX / EPON OLT_Zhejiang GT Lasers Tech. Co., Ltd.

... PRODUCT / Laser Communication / FTTH/B CATV TX & RX / EPON OLT_Zhejiang GT Lasers Tech. Co., Ltd. ...

HighTechXL's Logo

Eindhoven, Netherlands

11-50 Employees

2016

We merge the unique skills of our global ecosystem with deep tech and entrepreneurship to build deep-tech ventures that tackle grand societal challenges. We support teams as they progress through our venture building program and connect them with essential resources, such as investors, advisors and customers. We seek visionary entrepreneurs who are passionate about solving society’s most pressing challenges with cutting-edge technology. We scout advanced technologies from world-renowned research institutions and tech companies, assess them based on patent position, novelty, manufacturability and knowledge transfer, then explore applications for each one to begin the venture-building process. HighTechXL fosters deep-tech ventures aimed at solving societal challenges by leveraging a global ecosystem that includes the Eindhoven Startup Alliance, technology and program partners and a vast network of industry experts, advisors and investors.

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Product
Image for CERN Accelerating News: from laser alignment to laser communication

CERN Accelerating News: from laser alignment to laser communication

... CERN Accelerating News: from laser alignment to laser communication | ...


Related searches for Laser Communication

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Facts about those Laser Communication Results

Some interesting numbers and facts about the results you have just received for Laser Communication

Country with most fitting companiesUnited States
Amount of fitting manufacturers54
Amount of suitable service providers41
Average amount of employees11-50
Oldest suiting company1947
Youngest suiting company2016

Geographic distribution of results





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Things to know about Laser Communication

What is Laser Communication?

Laser communication, often referred to as optical communication, utilizes light for the transmission of data over distances. This technology employs lasers to encode and send information in the form of light beams, differing fundamentally from traditional radio frequency (RF) communications by offering significantly higher bandwidths and the capability to secure data more effectively. The core advantage of laser communication lies in its ability to transmit large volumes of data at speeds much greater than those achievable through current RF technology, making it particularly relevant in areas where rapid data transfer is essential, such as between satellites in space, or for high-speed internet services in remote or underserved regions. Moreover, due to the focused nature of laser beams, this method of communication is inherently more secure, as the narrow beam width limits the potential for interception. This characteristic is especially valuable in military and strategic communications, where maintaining the confidentiality of information is paramount. The impact of laser communication within its field is transformative, heralding a new era of connectivity that promises to enhance global communication networks, improve the efficiency of information exchange, and bolster security measures against eavesdropping and data breaches. As technology progresses, the adoption of laser communication systems is expected to increase, further embedding its importance in the future of global telecommunications.


Advantages of Laser Communication

1. Higher Data Rates
Laser communication, utilizing light to transmit data, allows for significantly higher bandwidth compared to traditional radio frequency (RF) systems. This results in the ability to support higher data rates, making it ideal for transmitting large volumes of data quickly and efficiently.

2. Enhanced Security
The focused beam of laser communication offers a higher level of security. Unlike RF signals, which can spread out and be intercepted more easily, laser beams are directed precisely between transmitting and receiving points. This narrow transmission path makes it considerably more difficult for unauthorized entities to intercept the data, ensuring enhanced security for sensitive information.

3. Reduced Interference and Improved Reliability
Laser communication systems are less prone to interference from other electronic devices and do not suffer from the RF spectrum congestion. This leads to a more reliable communication link with fewer interruptions or degradation in quality, especially in densely populated or highly industrialized areas.

4. Lower Power Consumption
Operating on light energy, laser communication systems often require less power than their RF counterparts. This efficiency not only reduces operational costs but also supports greener and more sustainable communication technologies.


How to select right Laser Communication supplier?

While evaluating the different suppliers make sure to check the following criteria:

1. Technology Compatibility
Ensure the supplier's laser communication technology is compatible with your current systems and protocols for seamless integration.

2. Performance Metrics
Examine the data throughput rates, range, and reliability of the laser communication systems to meet your operational requirements.

3. Security Features
Evaluate the encryption and data security measures in place to protect sensitive information transmitted via laser communication.

4. Scalability
Consider the supplier’s capability to scale the solution as your communication needs grow or change over time.

5. Support and Maintenance
Assess the level of technical support and maintenance services provided to ensure long-term operational stability.

6. Cost Efficiency
Analyze the cost-effectiveness of the solution, including initial setup costs, operational expenses, and potential savings over traditional communication methods.

7. Regulatory Compliance
Verify that the laser communication systems comply with relevant regulations and standards in your jurisdiction or industry.


What are common B2B Use-Cases for Laser Communication?

Laser communication, characterized by its high-speed data transmission capabilities, is revolutionizing the telecommunications industry. Firms are leveraging this technology to facilitate ultra-fast, secure communication channels across vast distances, making it pivotal for global operations. This innovation is particularly beneficial in remote areas where traditional fiber optic cables are challenging to deploy, offering a reliable alternative for maintaining consistent communication. In the realm of satellite communication, laser technology is making significant strides. Businesses utilize laser communication for real-time data exchange between satellites and ground stations, enhancing the efficiency of satellite networks. This application is crucial for industries reliant on precise, up-to-the-minute data, such as meteorology, maritime, and aviation sectors, where accurate weather forecasting and navigation are paramount. Another notable B2B use case is in the field of defense and security. Military operations depend on secure, discreet communication channels, and laser communication provides an undetectable mode of data transfer. Its immunity to eavesdropping and interception makes it an invaluable asset for national security operations, facilitating the safe transmission of classified information. Lastly, the financial sector benefits from laser communication through high-frequency trading (HFT) applications. In HFT, milliseconds can translate into significant financial gains or losses. Laser communication offers the low latency and high-speed data transmission essential for executing trades faster than competitors, providing a critical edge in the intensely competitive financial markets.


Current Technology Readiness Level (TLR) of Laser Communication

Laser communication, a method of transmitting data using laser beams, is considered to be at a Technology Readiness Level (TRL) of approximately 6 to 7. This assessment is based on the successful demonstration of this technology in relevant environments, particularly in space-based applications and terrestrial point-to-point communications. The progression to these levels stems from the technology's proven ability to provide high-bandwidth communication links over long distances with significantly greater security and efficiency than traditional radio frequency (RF) systems. The technical reasons anchoring laser communication at this TRL include the development and testing of robust laser transmitters and receivers that can withstand the rigors of space, advancements in optical technology that allow for precise beam steering and alignment, and the mitigation of atmospheric interference, which is a critical challenge for terrestrial applications. Despite these advancements, the technology has yet to achieve widespread operational use, primarily due to remaining challenges such as cloud interference, the need for precise alignment due to the narrow beam width, and the high cost of deployment and maintenance. These factors are currently being addressed through ongoing research and development efforts aimed at enhancing the technology's reliability, cost-effectiveness, and operational flexibility, which could potentially elevate its TRL in the near future.


What is the Technology Forecast of Laser Communication?

In the Short-Term, laser communication technology is set to witness significant advancements in ground-to-satellite transmission efficiency. Researchers are focusing on enhancing data transfer rates, aiming to achieve gigabit-per-second speeds that could revolutionize real-time communication and data exchange. These improvements are expected to mitigate the impact of atmospheric interference, a longstanding challenge for laser-based systems, through adaptive optics and sophisticated error correction algorithms. The Mid-Term phase will see the expansion of laser communication networks into deep space missions. This development is driven by the need for high-bandwidth communication capabilities to support manned and unmanned missions to Mars and beyond. Innovations in miniaturized, power-efficient laser transmitters and receivers are anticipated, enabling spacecraft to send high-definition video and large data packets back to Earth, thus greatly enhancing scientific research and public engagement with space exploration. In the Long-Term, the integration of quantum encryption technologies within laser communication systems is expected to usher in a new era of ultra-secure global communication networks. These networks will be impervious to traditional eavesdropping techniques, providing a backbone for secure governmental and financial communications. Additionally, the establishment of a lunar-based laser communication relay could facilitate a permanent human presence on the Moon, serving as a stepping stone for further exploration of the solar system.


Frequently asked questions (FAQ) about Laser Communication Companies

Some interesting questions that has been asked about the results you have just received for Laser Communication

Based on our calculations related technologies to Laser Communication are Magnets, Printed Electronics, Industrial Amplifiers, Electronic Transducers, Electronic Oscillators

The most represented industries which are working in Laser Communication are Manufacturing, Hardware, Science and Engineering, Government and Military, Consumer Electronics

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