Compact Microstrip Bandpass Filter Improved by DMS and Ring Resonator
A compact bandpass filter using complementary split-ring resonators (CSRRs) at the bottom layer (ground plane) as band-stop elements, in combination with coupled microstrip lines as high- and low-pass elements, is designed and fabricated to achieve a very compact bandpass filter (BPF) with controllable characteristics. Defected Microstrip and Ring Resonator Structures have been used to eliminate spurious passbands at higher frequencies.
It is going to be a patent.
A sample of an AM Transceiver for industry applications.
Design of GPS-GPRS Delivering Data System Using UDP Protocol
Packet data will become a significant portion of emerging and future wireless/Internet traffic. However, network congestion and wireless channel errors yield tremendous packet loss and degraded data quality. This is an empirical design and implementation for interfacing between GPS and GPRS data systems by employing the User Datagram Protocol (UDP). It can be employed usefully by third-generation (3G) and higher generations of wireless networks in real time.
It is going to be a patent.
A circuit board for auditory sensing of the nerves. It is very helpful for educating even high school diploma holders in preparation for university.
The Telecom/IT services with experienced engineers in the miscellaneous projects at least for two famous Iranian operators, i.e. MCI and Irancell.
RF jamming is the intentional transmission of radio signals to disrupt or block wireless communication by overpowering a target frequency with noise or false signals. It can knock out cell networks, GPS, Wi-Fi, and an Unmanned Aircraft System (UAS), and is used both defensively - in electronic warfare and security - and illegally to disable consumer devices.
Electronic jamming is a form of electronic warfare where jammers radiate interfering signals toward an enemy's radar, blocking the receiver with highly concentrated energy signals.
Radar applications include the Arch Reflectivity Test.
The Naval Research Labs (NRL) utilize the swept-frequency arch method to evaluate the reflectivity performance of microwave absorbers. It is possible for us to design, fabricate, measure, and test any platforms of radar systems using the advanced laboratories in Iran.
AI-powered digital twin technology is being deployed across industries where real-time decision-making, predictive modeling, and continuous learning offer measurable operational advantages. Each domain brings unique data complexity and modeling requirements that AI helps address.
A research-based retinal prosthesis has already been established at K. N. Toosi University of Technology (KNTU) and Farabi Eye Hospital (Tehran University of Medical Sciences). It is moving forward through the entire Brain-Retina Axis via AI/ML and a Digital Twin, with famous institutions worldwide, as a business research project.
In the era of quantum computers, classical computers still have their capabilities. They need the maintenance/repairment operations in the Hardware and Software Sectors. It is our capability to do the aforementioned services perfectly for these devices:
● Desktop PCs
● Mini PCs
● Notebooks and Laptops
● etc
Design and Implementation of Wind Turbines and PV Solar Cell Power Plants at Different Scales:
● Low-Scale Power Plant (10KW)
● Medium-Scale Power Plant (50KW)
● Large-Scale Power Plant (100KW and higher)
Our mission is to transform science, technology, natural resources, and human expertise into innovative products, services, and integrated solutions that address critical needs across energy, healthcare, industry, agriculture, communications, information technology, transportation, space, advanced electronics, artificial intelligence, and computing. We pursue excellence in research, engineering, manufacturing, commercialization, and strategic services from oil, gas, petrochemicals, mining, pharmaceuticals, and agriculture to renewable energy, RF and microwave technologies, radar, telecommunications, satellites, AI/ML, digital twins, classical and quantum computing, and neurotechnology. Through innovation, integrity, sustainability, interdisciplinary collaboration, and responsible investment, we create lasting value for our customers, partners, employees, shareholders, and society while contributing to technological progress and economic development.
Vision
To become a globally recognized, innovation-driven technology and industrial enterprise that connects science, engineering, industry, and entrepreneurship to shape the technologies and industries of the future. We envision an integrated ecosystem capable of taking ideas from fundamental research and intellectual property through advanced engineering, prototyping, manufacturing, deployment, and global commercialization creating competitive solutions in strategic sectors including energy, healthcare, agriculture, advanced manufacturing, communications, space, renewable energy, intelligent transportation, artificial intelligence, and next-generation computing and neurotechnology. Our ultimate ambition is to build a sustainable, technologically advanced enterprise that contributes to human prosperity, scientific discovery, industrial competitiveness, and a better-connected and more intelligent world.