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The ATEK367P4 functions as a versatile phase shifter component designed for RF systems working between 2 GHz to 4 GHz. This analog phase shifter provides an extensive phase range adjustable from 0 to 375 degrees, maximizing flexibility in phase alignment applications. It has a low insertion loss of 3 dB, ensuring minimal signal degradation during the shifting process. Encased in a 4×4 mm QFN package, it provides a compact footprint, enhancing its usability in space-constrained designs such as phased array antennas and electronic warfare systems. The phase shifter operates with variable control voltage, offering ease of integration with existing signal processing frameworks. ATEK367P4 is integral for applications demanding precise phase adjustments, notably in aerospace and defense communication systems where accuracy and agility are imperative. Its design facilitates seamless integration, ensuring reliability and performance consistency in complex signal processing tasks.
The ATEK250P3 is designed to function as an absorptive Single Pole Double Throw (SPDT) switch. Its operating frequency ranges from low frequencies up to 14 GHz. Noteworthy attributes include a minimal insertion loss of 1.5 dB and a high isolation of 43 dB, ensuring superior performance in managing signal routing tasks. Additionally, it features an impressive IP1dB of 27 dBm and an IIP3 of 44 dBm, making it a highly reliable choice for RF applications. With a positive control voltage and encased in a compact 3×3 mm QFN package, it provides ease of integration into various electronic systems. This product is optimal for use in telecommunication systems and devices that require efficient and reliable switching capabilities at microwave frequencies. The ATEK250P3 stands out due to its robustness and efficiency, offering solutions that enhance performance in RF systems while minimizing power consumption and signal loss. It is a critical component designed to meet the high standards of modern communication networks, ensuring seamless integration and operation.
The ATEK552 is a high-power Gallium Nitride (GaN) Power Amplifier with exceptional output capabilities. Operating within the range of 3 GHz to 17 GHz, this amplifier delivers a notable output power of 6 watts. With a gain of 21 dB, the ATEK552 is crafted to boost signal levels efficiently in demanding RF environments. Deprecated for its robust performance, the ATEK552 can adapt seamlessly into various applications due to its flexible power supply requirements, with Vdd set at 28V and a current draw of 510 mA. Its die-based construction facilitates easy integration into larger systems, making it a suitable choice for bands requiring high power amplification. This power amplifier is ideal for use in telecommunications, defense systems, and aerospace applications, where dependable amplification and high power are crucial. Its solid performance metrics ensure reliability and efficiency, supporting advanced communications infrastructure and secured data transmission.
The ATEK350N4 is an Analog Variable Voltage Attenuator (VVA) designed for optimal frequency performance, covering a wide range from 2 GHz to 40 GHz. This VVA introduces precise attenuation control with a minimal insertion loss of 1.9 dB while providing an extensive attenuation range up to 27 dB. Its linear operation enhances compatibility and integration into varied RF applications that require signal amplitude adjustments for optimal system performance. Operating at a negative control voltage, this attenuator is encapsulated in a compact 4×4 mm QFN package, facilitating ease of use in space-constrained environments. It supports robust IP1dB metrics at 22 dBm and an impressive IIP3 of 32 dBm, confirming its high performance in complex RF systems. Designed with advanced technology, the ATEK350N4 is suitable for telecom infrastructure, radar systems, and other critical applications that demand precise signal control over extensive bandwidths. Its adaptability to varying operational scenarios makes it a versatile component in enhancing signal quality and reducing distortion across different domains.
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