In partnership with national recognized facilities and institutions, our engineering and research team develop and coordinate manufacture and product assembly with diverse set of requirements, as quality, accuracy, and precision control to ranging from the simplest to most complex. We aim to provide singular services, empowering customer-focused approach in product design and lifecycle support throughout the manufacturing process. Whether you have a feasibility study or are interested in assembling a conceptual design, TENGENA wants to provide solutions-based engineering support from applied research to commercialization to optimize primary nanomaterials design based on specific industrial application.
Our team employes collaboration in order to follow your goals and applies commercialization scalability through a phased development approach:
We evaluate optimal performance and production challenges during a preliminary product development process, focusing on a feasibility study of primary material or set of commercial materials to create and manufacture a new product or system. Our goal is to provide access to the exact material specifications and maximize the nanomaterial performance, followed by the product integration challenges.
TENGENA facilitates the trend-setting innovative strategies and high standards in process reliability, reproducibility, quality, and efficiency. Using advanced environmental nanoplasmonic technology, our team designed and generated innovative plasma system devices. Besides partially established application areas for atmospheric pressure plasma treatment technologies, such as layer deposition for electrical devices, antibio- or bio-material applications, and surface modification, we imply the gas/aerosol-through-plasma and gas/liquid plasma processing for synthesizing engineered nanofluids/colloids and inorganic nanoparticles. Nevertheless a large number of atmospheric pressure plasma synthesis methods using liquid-type precursors described in the literature, our cutting-edge approach in-solution plasma system, generated by the dielectric glow plasma discharge between pin-to-pin electrodes enable to produce highly concentrated nanoproducts over the large volume from any noble, alloy, or compound metal.
TENGENA applies high-performance sonication for sludge disintegration of agglomerated nano-sized dispersions and emulsions. We develop acoustic techniques, employing cross-correlated excitations to enable spatially encoded ultrasonic waves with specific frequency for nanoparticles production. Both programmable and physically aberrating, our method introduces customized time-waveform signal, formed by simultaneous beam from several elements of ultrasonic transducers, receiving distinguishable responses to each code. Besides the synthesis of nano-structured nanomaterials, adjusted ultrasonic processors are used for the fine-sized nanoparticles distribution and surface stabilization in the fluid systems. Our team applies batch and continuous inline direct and indirect procedures for the feasible biomass pretreatment as well as for the particle size reduction in nanosized dispersions and emulsions in situ or a previously prepared emulsions when ultrasound waves create a phenomenon which comprise the formation, growth, and implosive collapse of microbubbles or cavities in the medium.
TENGENA endeavor and encompass glass craftsmanship, partnering with well-established experts, which serve variety of residential and commercial projects. Our engineering and management team enables all necessary aspects of rapid product development, including feasibility studies, facility planning and design, scheduling, procurement, and construction management. While the project specifics vary for each client, the outcome is based on the design experts’ recommendations from our extensive glass compositions or portfolio. We could develop new compositions based on their manufacturability and their ability to meet your requirements as well. TENGENA employs an iterative approach to solve the toughest challenges and uses straightforward technology to maintain national and international standards. We assess the quality of our clients ’whether it is built internally or purchased from sub-suppliers’ and ensure that replacement parts and knowledgeable professionals are available from any part of the world. Our goal is to meet any client's strict requirements.
TENGENA optimizes and implies waveform and function generators, necessary for acquiring of our developed devices that generate specific waveform signal and characteristics for our most challenging measurements. We adjust the highest signal fidelity and flexibility for measurable signal generation to alter the amount of voltage it creates using the DC or AC offset setting based on application. We achieve a greater degree of synchronization and accuracy implying phase-lock capacities and testing the functionality of electronic equipment.
TENGENA has expertise in multi-discipline design engineering and implementation consultancy, providing mechanical and electrical services for the past few decades. The goal of our technical expertise is to improve the clients’ manufacturing processes, increase efficiency, and improve safety. Our crafting experience stands the test of time and efficiency in power and emergency distribution systems recognized at national institutional standards.
TENGENA applies different types of pneumatic circuits that can be used for air preparation, hand control applications, double-acting cylinders, continuous cycling, and subsystems in larger circuits. We define the overall functions and optimize modular systems, understanding both sequence of operations and the manual and automatic control requirements. Based on the application, the sequence conditions are adapted by using different control modular systems that are tailored to meet specific requirements, especially for our devices design and manufacture.
TENGENA empowers the principles of vector calculus for tracking challenging issues, from designing power systems to developing advanced technologies. We imply direct and indirect vector control to deliver detailed accurate condition assessments for complex circuit branches, crafting communication systems, modeling mechanical systems, and power systems design and analysis. Advanced knowledge of electromagnetic fields and electrostatics are vital for designing and modeling electric fields in our devices and systems.
Utilizing cutting-edge machining technology TENGENA offers a wide range of complex services, achieving customized precision and high-volume production in customized partnership. Our machining capabilities include computer numerical control milling and turning, wire cutting process, surface grinding of metallic and nonmetallic materials, three-dimensional rapid prototyping, and reverse engineering and replicating components upon analyzing machinery and component functionality.
TENGENA applies its experience in metal processing for complex part and comprehensive manufacturing, including material characterization and application, process development, reverse engineering, post processing, final machining, and inspection. Moving from transformative concept design to conventional production, our additive manufacturing oversees the combination of process types and variables to yield the highest quality in fabricated product or defect-free components.
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