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Fine Art Print : MEMS production, metal evaporation

MEMS production, metal evaporation



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MEMS production, metal evaporation

MEMS production. Inside of a metal evaporation machine that is being used to produce MEMS (microelectromechanical systems) devices. MEMS devices are constructed on a microscopic scale using technologies such as wet and dry etching and thin film deposition. This technique involves the use of an electron beam to evaporate metals and deposit them on a substrate, and is called e-beam metal evaporation. Applications of MEMS devices include sensors and optical displays. Materials used to construct MEMS devices include silicon and polymers such as plastics. Photographed at an INEX facility. INEX is a British microsystems and nanotechnology company that was founded in 2002

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 6438137

© COLIN CUTHBERT/SCIENCE PHOTO LIBRARY

2007 Clean Room Component Components Device Devices Electronics Factory Hi Tech Inex Machine Manufacture Manufacturing Mechanical Mechanics Mems Mems Device Micro Microelectromechanical Systems Micromechanical Micromechanics Microsystems Nanotechnology Producing Production Semi Conductor Sensor Sensors Silicon Electron Beam Laboratory


21"x14" (+3" Border) Fine Art Print

Experience the fusion of art and technology with Media Storehouse's Fine Art Prints. This captivating image from Science Photo Library showcases the intricate process of MEMS (Microelectromechanical Systems) production, as metal is meticulously evaporated to create the tiny, complex structures that power the future. Each print is meticulously crafted using high-quality materials and printing techniques, ensuring a stunning and long-lasting addition to any space. Let the beauty of science inspire you with this unique and thought-provoking piece.

21x14 image printed on 27x20 Fine Art Rag Paper with 3" (76mm) white border. Our Fine Art Prints are printed on 300gsm 100% acid free, PH neutral paper with archival properties. This printing method is used by museums and art collections to exhibit photographs and art reproductions.

Our fine art prints are high-quality prints made using a paper called Photo Rag. This 100% cotton rag fibre paper is known for its exceptional image sharpness, rich colors, and high level of detail, making it a popular choice for professional photographers and artists. Photo rag paper is our clear recommendation for a fine art paper print. If you can afford to spend more on a higher quality paper, then Photo Rag is our clear recommendation for a fine art paper print.

Estimated Image Size (if not cropped) is 53.3cm x 35.5cm (21" x 14")

Estimated Product Size is 68.6cm x 50.8cm (27" x 20")

These are individually made so all sizes are approximate

Artwork printed orientated as per the preview above, with landscape (horizontal) orientation to match the source image.


EDITORS COMMENTS
This print showcases the intricate process of MEMS production, specifically metal evaporation. Inside a state-of-the-art metal evaporation machine at an INEX facility, cutting-edge technology is employed to create microelectromechanical systems (MEMS) devices on a microscopic scale. Utilizing advanced techniques like wet and dry etching and thin film deposition, this particular method involves the use of an electron beam to evaporate metals onto a substrate – hence its name, e-beam metal evaporation. The result is the construction of highly precise components that find applications in various fields such as sensors and optical displays. The materials used for these remarkable MEMS devices range from silicon to polymers like plastics. This fusion of materials allows for exceptional performance and durability in these tiny yet powerful creations. Science Photo Library's snapshot captures the essence of this industrial marvel, showcasing the convergence of research, technology, and manufacturing prowess in one frame. It symbolizes the relentless pursuit of progress in 21st-century industries where nanotechnology plays a significant role. While not explicitly mentioned by Science Photo Library due to commercial restrictions, it is fascinating to imagine how these MEMS devices could revolutionize our lives with their potential applications across electronics, mechanics, and sensors. This image serves as a testament to human ingenuity at work within clean rooms and laboratories worldwide as we continue pushing boundaries towards new frontiers in microtechnology.

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