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The ATEK250P3 is an absorptive Single Pole Double Throw (SPDT) switch tailored for high-frequency applications, featuring a varied frequency range from low to 14 GHz. This versatile switch integrates superior isolation capabilities of up to 43 dB alongside a low insertion loss at 1.5 dB, making it highly efficient for managing signal paths in complex RF designs. Its integrated IP1dB of 27 dBm and IIP3 of 44 dBm confer robust performance in demanding scenarios. It operates with a positive control voltage, packaged in a compact 3x3mm QFN. The ATEK250P3 is designed for use in advanced telemetry, satellite communications, and test instrumentation systems, offering pivotal functionality for switching RF signals without introducing significant signal loss or distortion. Its design optimizes switches between signal paths while maintaining the integrity of the RF signals, ensuring minimal interference is introduced during the switch operation. Moreover, this switch's compact design and efficient performance metrics make it a flexible choice for engineers looking to improve their systems' performance metrics, particularly in frequency-agile applications. ATEK250P3's ease of use and reliability play key roles in facilitating seamless signal management across diverse RF environments.
The ATEK367P4 is an analog phase shifter known for its precision in controlling phase angles across frequencies between 2 and 4 GHz. Featuring a loss of 3 dB, it supports phase adjustments from 0 to 375 degrees, making it incredibly useful for applications where precise phase alignment is critical. This device incorporates innovative control voltage mechanisms, facilitating smooth and accurate phase transitions. Encased in a 4x4mm QFN package, it offers flexibility and efficiency in RF path management. Ideal for phased arrays and radar systems, the ATEK367P4 caters to complex RF designs that demand high accuracy in signal phase control. It plays a crucial role in enhancing the functional scalability of RF systems, lending itself to advanced modulation techniques and beamforming applications. This phase shifter addresses the need for dynamic and reliable signal manipulation in environments where timely signal processing and adaptive algorithms are central to system performance. The ATEK367P4 provides engineers with the tools to achieve meticulous control over RF signals, promoting improved performance in sophisticated communication platforms.
The ATEK552 is a high-performance, Wideband GaN Power Amplifier designed to deliver substantial power in high-frequency applications ranging from 3 to 17 GHz. Suitable for demanding RF systems, this amplifier provides a power output of 6 Watts, elevating its potential to manage substantial RF signals effectively. With a gain of 21 dB, it ensures significant amplification of input signals while maintaining quality and minimal distortion. Thanks to its robust design, the ATEK552 is an ideal choice for satellite communications, defense applications, and broadband RF systems that require reliable power amplification. It is fabricated as a die, which allows integration into miniaturized RF systems without compromising performance. Engineers can rely on the ATEK552 for its consistent delivery of high-quality amplification across the specified frequency range, making it indispensable for systems demanding high output power and efficiency. Its integration capability with existing RF architectures further enhances its utility in next-generation communication platforms.
The ATEK350N4 is an advanced Variable Voltage Attenuator (VVA), adept in managing a wide frequency range extending from 2 to 40 GHz. This attenuator exhibits an insertion loss of 1.9 dB and an attenuating range that supports varied levels of signal control without distinct steps, enabling fine-tuned signal management. With an IP1dB performance of 22 dBm and an IIP3 of 32 dBm, it operates efficiently under high-power conditions, benefiting RF designs requiring precise signal modulation over extensive frequency bands. Packaged in a 4x4mm QFN, it utilizes a negative control voltage. The design of the ATEK350N4 integrates seamlessly with communication systems where precision in signal control and modulation is paramount. Its application spans satellite communications, defense systems, and high-frequency test instruments, providing reliable performance over a broad spectrum. With unparalleled flexibility and control, the ATEK350N4 allows for the precise adaptation of signal levels, enhancing the performance of RF systems designed for next-generation telecommunication and radar solutions. Engineers benefit from its superior integration functionality, meeting the demands of complex RF designs and operations.
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