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Fulling Mill Salty Shrimp Brush – 5 per packetAdd to cart
This SMA male right-angle connector is designed for crimping onto LMR 400 cables. It ensures a secure and stable connection for high-frequency signal transmission, suitable for RF applications with space constraints.
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H2O Polar Fibre Brush Articulated Combo PackAdd to cart
Impedance – 50Ω, Frequency – 6.5Ghz, VSWR – 1.15:1 (Max), Dielectric Resistance – ≥5000MΩ,country of origin-Made in India, packaging Type- Box, Colour-Silver, Usage- Connector Cable and Microwave Parts..
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Enrico Puglisi Articulated Brush – 1.5 Inch – 6 per packAdd to cart
Magnetic Base Antenna 3dBi 800-2500Mhz 5 Mtr | The Magnetic Base Antenna 3dBi 800-2500MHz with 5 Mtr Cable is designed to enhance wireless communication for GSM, CDMA, and LTE networks. With a 3dBi gain, it offers improved signal reception across a broad frequency range. The strong magnetic base ensures secure attachment to metal surfaces, while the 5-meter cable provides ample flexibility in positioning the antenna for optimal performance. This antenna is perfect for mobile applications, remote monitoring, and other scenarios where reliable wireless connectivity is essential. |
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Enrico Puglisi Shrimp Dub Brush – 2 InchAdd to cart
This SMA male connector is designed for crimping onto LMR 100 cables. It ensures a secure and stable connection for high-frequency signal transmission, ideal for telecommunications and other professional RF applications.
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Fulling Mill Leggy Shrimp BrushAdd to cart
| **18dBi Yagi Antenna 800-2500MHz 10 Mtr Wire** | This Yagi antenna, offering 18dBi gain, covers the 800-2500MHz frequency range. It has vertical polarization, 50Ω impedance, and a VSWR of ≤ 1.5. The antenna is equipped with a 10-meter RG-58 cable and an N Female connector, ensuring high performance over long distances. ROHS compliant, it’s ideal for demanding applications requiring extended reach. |
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Enrico Puglisi Articulated Brush Set – 6 per packAdd to cart
The Cold Shrink Tube by RF CONNECTOR HOUSE is made from high-quality silicon rubber, offering superior insulation and protection for cables. With a 2:1 shrink ratio, it provides a secure fit around cables without the need for heat during installation. Rated for 220V and capable of withstanding temperatures from -55°C to +120°C, this tube offers durable protection against environmental factors like moisture, dust, and abrasion. Customizable in diameter, length, and thickness, it is ideal for cable repairs, insulation protection, and electrical applications in industrial, commercial, and residential environments.
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Enrico Puglisi Anadromus Brush – 2.5 InchAdd to cart
The Rubber Mastic Tape by RF CONNECTOR HOUSE is a high-performance, double-sided waterproof tape designed for sealing and insulating electronic components. Featuring a pressure-sensitive hot melt adhesive, it delivers strong bonding to steel, PVC, and other surfaces. With exceptional tensile strength (2400 psi), elongation (500%), and tear resistance (200 pli), this tape is flame-retardant and withstands high temperatures, ensuring reliable performance in harsh environments. Ideal for industrial and electrical applications, it provides superior protection against water, dust, and mechanical stress. Customizable in thickness and dimensions, this versatile tape meets diverse insulation and sealing needs.
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Enrico Puglisi Wooly Critter Dub Brush – 1/2 InchAdd to cart
The 3 dBi WiFi Internal Antenna with a 10 cm cable is designed for 2.4/5.8 GHz wireless applications, providing reliable and strong connectivity for devices such as routers, IoT systems, smart home devices, and wireless access points. With a 3 dBi gain, it ensures improved signal strength and extended coverage for seamless performance. The compact design, combined with a 10 cm cable, makes it ideal for integration into space-constrained devices. This antenna is perfect for enhancing WiFi communication in a wide range of applications, including consumer electronics, industrial systems, and IoT networks, offering reliable and stable wireless connectivity.
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Enrico Puglisi Crustaceous Brush with Micro Legs – 1.5 InchAdd to cart
The 3 dBi Internal WiFi Antenna is designed for 2.4/5.8 GHz wireless applications, providing reliable and efficient connectivity for devices like routers, IoT systems, and smart home products. With a 3 dBi gain, it ensures strong signal strength and extended coverage, making it ideal for stable WiFi performance. Its compact design allows for easy integration into space-constrained environments, offering an excellent solution for a variety of wireless communication needs. Perfect for enhancing connectivity in modern technology.
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H2O Nymph Dub Flash BrushAdd to cart
The 3 dBi PCB Antenna is designed for 2.4 GHz applications, offering reliable performance for IoT, wireless connectivity, GPS, and navigation systems. Ideal for remote control, automation, and wireless medical devices, it ensures stable signal transmission and reception. Its compact PCB design is perfect for space-constrained applications, while its high efficiency enhances device connectivity. This antenna is an excellent choice for modern wireless technologies, ensuring optimal performance across diverse applications.
Featured Products
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Enrico Puglisi Predator Brush – 1.75in – 2 per packAdd to cart
Frequency – 698 – 960 / 1710 – 2700 MHz, Gain- 10~12dbi, VSWR- ≤ 2.0, Polarization- Vertical, Material- plastic, Storage- Channel 10kM…..
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H2O Frenzy Brush Articulated Combo PackAdd to cart
Magnetic Base Antenna 6dBi 800-2500Mhz 3 Mtr | The Magnetic Base Antenna 6dBi 800-2500MHz with 3 Mtr Cable is a high-performance antenna designed for enhancing signal reception across GSM, CDMA, and LTE networks. With a 6dBi gain, it offers significant improvements in connectivity. The magnetic base allows for easy installation on metal surfaces, while the 3-meter cable provides flexibility in positioning the antenna for optimal performance. Ideal for mobile communication, IoT systems, and other applications, this antenna ensures stable and efficient wireless communication in areas with weak signals. |
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Enrico Puglisi Articulated Brush Set – 6 per packAdd to cart
The MIMO antenna patch with 7/9 dBi gain operates within the frequency range of 698-2700 MHz, making it suitable for a wide range of applications including cellular networks, LTE, 4G, and potentially 5G frequencies.
Frequency Range: 698-2700 MHz
Gain: 7 dBi (on lower frequencies) / 9 dBi (on higher frequencies)
Type: MIMO (Multiple Input, Multiple Output) Antenna -
Enrico Puglisi Anadromus Brush – 2.5 InchAdd to cart
| N M RA LMR 400 CRIMP | A crimp connector for LMR 400 cables with RA design, ensuring a strong and dependable electrical connection, crucial for maintaining performance. |
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Enrico Puglisi Wooly Critter Dub Brush – 1/2 InchAdd to cart
Frequency – 800 – 2500Mhz Polarization – Vertical VSWR – ?1.8 Gain – 3dbi, MateriaL- Metal, Color- White, Size-8-10ft, Feature- Waterproof, Mounting Type- Wall Mounted……
Introduction
In the ever-evolving field of radio frequency (RF) engineering, collaboration between academia and industry plays a crucial role in advancing technology. A shining example of this is the recent successful testing of a 2.4 GHz T-shaped PCB antenna. This remarkable project, a collaborative effort between the esteemed professors of Sharda University, the innovative minds at Synergy Telecom Pvt. Ltd., and the industry-leading expertise of Antennix, has yielded impressive results in the field of antenna testing.
The rigorous testing process involved comprehensive Voltage Standing Wave Ratio (VSWR) measurements and detailed S11 Parameter (Return Loss) analysis, confirming the antenna’s efficiency and reliability. In this blog, we will walk you through the testing process, the key findings, and the significance of this collaboration.
The Antenna Testing Process
1. Overview of the 2.4 GHz T-Shaped PCB Antenna
The antenna in focus is a 2.4 GHz T-shaped PCB antenna, designed to deliver optimal performance across a range of frequencies. This antenna was meticulously designed by the professors at Sharda University, leveraging their deep expertise in RF engineering.
- Antenna Model: 2.4 GHz T-shaped PCB antenna
- Design Lead: Sharda University Professors
- Prototype Manufactured By: Synergy Telecom Pvt. Ltd.
2. Testing Setup and Equipment
The testing was conducted at Synergy Telecom Pvt. Ltd. using state-of-the-art equipment to ensure accuracy and reliability.
Test Date: August 1-5, 2024
Test Location: Synergy Telecom Pvt. Ltd. (Vikaspuri, New Delhi)
Testing Equipment:
- Vector Network Analyzer (VNA)
- Load
- Antenna
- Cable
Testing Procedure:
- Connection to VNA: The antenna was connected to the Vector Network Analyzer to measure its VSWR and S11 parameters.
- Calibration: Calibration of the VNA was performed using standard calibration kits to ensure precision.
- Frequency Sweep: The antenna was tested across its operating frequency range.
- Data Collection: Multiple readings were taken to ensure accuracy and repeatability.
Key Findings from the Antenna Testing
Below are the crucial findings from the VSWR and S11 Parameter testing. These results affirm the antenna’s performance and its potential applications.
3. VSWR Measurement Results
The VSWR values were measured at various frequencies, with the goal of ensuring that they remained within the acceptable range of <2, which indicates minimal signal reflection and optimal performance.
| Frequency (MHz) | VSWR | Gain |
|---|---|---|
| 2.4 GHz | 1.4 | 1.8 |
| 5.8 GHz | 1.3 | 1.9 |
| 6.7 GHz | 3.0 | 3.5 |
| 7.2 GHz | 1.7 | 4.0 |
| 8.3 GHz | 1.8 | 4.8 |
VSWR readings confirm that the antenna performs exceptionally well within its designated frequency range, with values comfortably below 2.0, ensuring efficient signal transmission.
4. S11 Parameter (Return Loss) Analysis
The S11 Parameter was also measured across various frequencies to assess the antenna’s impedance matching and signal reflection properties.
| Frequency (MHz) | Return Loss (dB) | Gain |
|---|---|---|
| 7.87 GHz | -15.74 | 4.6 |
| 7.79 GHz | -15.10 | 4.65 |
| 2.25 GHz | -15.02 | 1.8 |
| 7.05 GHz | -12.00 | 4.0 |
| 5.92 GHz | -12.06 | 3.85 |
| 5.06 GHz | -11.26 | 3.5 |
| 1.01 GHz | -6.94 | 1.5 |
| 6.51 GHz | -5.52 | 4.2 |
The S11 Parameter readings indicate excellent return loss characteristics at higher frequencies, particularly at 7.87 GHz and 7.79 GHz, suggesting effective impedance matching and minimal signal loss.
5. Collaboration Success and Appreciation
The success of this antenna testing project is a testament to the power of collaboration. Sharda University’s professors brought their extensive knowledge in RF design to the table, creating a robust antenna prototype. Synergy Telecom Pvt. Ltd. played a crucial role in manufacturing the prototype and providing a sophisticated testing environment, ensuring that the antenna was evaluated with the utmost precision.
Antennix, as a key player in the RF industry, recognizes and appreciates the contributions of both Sharda University and Synergy Telecom. Their combined efforts have not only validated the antenna’s design but also paved the way for its potential deployment in various communication systems.
6. Importance of Regular Testing and Future Recommendations
Regular testing is essential to maintain the antenna’s performance within the acceptable VSWR range. It is recommended that future installations follow the same rigorous testing procedure to validate antenna performance consistently.
Conclusion
The 2.4 GHz T-shaped PCB antenna has passed all critical tests, demonstrating its efficiency and reliability for modern communication needs. The collaboration between Sharda University, Synergy Telecom, and Antennix exemplifies the synergy that can be achieved when academia and industry work together. This project not only highlights the technical prowess of the teams involved but also sets a benchmark for future antenna designs.
Antennix is proud to be associated with this successful venture and looks forward to further innovative collaborations that push the boundaries of RF engineering.
Acknowledgments
We extend our sincere appreciation to the dedicated professors at Sharda University for their exceptional design expertise and to Synergy Telecom Pvt. Ltd. for their meticulous testing and unwavering support throughout this project. Together, we have achieved a significant milestone in the field of RF engineering.
Recognizing the Leadership of Mr. Mudit Aggarwal and Contributions of Hazrat Ali
A project of this magnitude and technical complexity requires not only design and testing expertise but also visionary leadership and meticulous documentation. At the forefront of this successful endeavor are Mr. Mudit Aggarwal and Hazrat Ali of Synergy Telecom Pvt. Ltd.
Mr. Mudit Aggarwal, the CEO of Synergy Telecom Pvt. Ltd., exemplifies exceptional leadership and is the driving force behind this project. His extensive knowledge in RF, business, and computer science, combined with a modern and forward-thinking approach, has been pivotal in steering this project to success. Mr. Aggarwal’s commitment to staying ahead of new technologies and innovations, coupled with his dedication to excellence, provided the foundation for this collaboration. His role as a supportive mentor and skilled businessman has been instrumental in guiding young talent and pushing the boundaries of what’s possible in the telecommunications industry.
Mr. Mudit Aggarwal’s visionary leadership continues to shape the future of Synergy Telecom, and his ability to balance professional achievement with a genuine passion for continuous learning and growth reflects the qualities of an outstanding leader and mentor. His support and guidance were crucial in making this project a reality, ensuring its success and setting a high standard for future endeavors.
Hazrat Ali, a key member of Synergy Telecom, played an instrumental role in the technical aspects of the project. His diligent efforts in conducting the tests, compiling data, and preparing a comprehensive report have been invaluable. Hazrat Ali’s meticulous work in analyzing the Voltage Standing Wave Ratio (VSWR) and S11 Parameter (Return Loss) measurements ensured that all findings were recorded with precision and accuracy. His detailed report, attached as a reference, serves as a vital resource for understanding the 2.4 GHz T-shaped PCB antenna’s capabilities and will guide future implementations and developments.
Together, the contributions of Mr. Mudit Aggarwal and Hazrat Ali have been essential in validating the performance of the 2.4 GHz T-shaped PCB antenna, ensuring its reliability in our communication systems. Their combined efforts have not only driven this project forward but have also set a high standard for excellence in the telecommunications industry.

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