ADGM1304JCPZ-R2 Overview
The ADGM1304JCPZ-R2 is a high-performance analog MEMS switch designed for RF and microwave signal routing applications. This device delivers low insertion loss and high isolation, making it ideal for signal integrity in demanding environments. With a compact 6-lead LFCSP package and CMOS-compatible control logic, it offers seamless integration into modern electronic systems. The switch supports operating frequencies up to 6 GHz, enabling versatile use across wireless communication, test equipment, and sensor systems. Engineered for reliability and low power consumption, the ADGM1304JCPZ-R2 provides an efficient, robust solution for high-frequency switching needs. For detailed specifications, visit Производитель ИС.
ADGM1304JCPZ-R2 Technical Specifications
Параметр | Технические характеристики |
---|---|
Operating Frequency Range | DC to 6 GHz |
Insertion Loss | 0.8 dB (typical at 2 GHz) |
Isolation | 45 dB (typical at 2 GHz) |
Control Voltage | 3 V to 5 V CMOS compatible |
Switch Type | SPST (Single Pole Single Throw) |
Пакет | 6-lead LFCSP (Lead Frame Chip Scale Package) |
Потребляемая мощность | Low quiescent current |
Диапазон рабочих температур | -40??C до +85??C |
Contact Resistance | 0.3 ?? (typical) |
Напряжение изоляции | Up to 30 V |
ADGM1304JCPZ-R2 Key Features
- Broad frequency coverage: Supports DC to 6 GHz enabling use in a wide range of RF applications for flexible signal routing.
- Low insertion loss: Minimizes signal attenuation ensuring high signal fidelity and improved system performance.
- High isolation: Provides excellent channel separation to reduce crosstalk and interference in multi-channel systems.
- CMOS-compatible control logic: Facilitates easy integration with common microcontrollers and digital circuits without level shifting.
- Compact package: The 6-lead LFCSP allows space-saving PCB layouts for dense system designs.
- Wide operating temperature: Ensures reliability across industrial and commercial temperature ranges.
- Низкое энергопотребление: Supports energy-efficient designs critical in battery-powered and portable applications.
ADGM1304JCPZ-R2 Advantages vs Typical Alternatives
This analog MEMS switch stands out by offering superior isolation and low insertion loss compared to traditional mechanical or semiconductor switches. Its CMOS-compatible control input simplifies circuit design and reduces system complexity. The compact LFCSP package supports high-density layouts, while the broad frequency range and robust temperature tolerance enhance reliability for industrial and wireless communication applications.
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Типовые применения
- Wireless communication systems requiring high-frequency signal routing with minimal loss and interference, such as cellular infrastructure and Wi-Fi equipment.
- Test and measurement equipment where precise RF switching is essential for accurate signal characterization.
- Sensors and instrumentation systems that benefit from low-power, reliable analog switching in harsh environments.
- RF front-end modules in portable devices demanding compact, low-power switches for antenna selection and signal path control.
ADGM1304JCPZ-R2 Brand Info
The ADGM1304JCPZ-R2 is a precision analog MEMS switch engineered by Analog Devices, a leader in high-performance semiconductor solutions. This product reflects the brand??s commitment to innovation and quality in RF and microwave components, providing engineers with reliable, compact, and energy-efficient devices tailored for complex signal routing challenges in modern electronic systems.
ЧАСТО ЗАДАВАЕМЫЕ ВОПРОСЫ
What is the maximum operating frequency of this MEMS switch?
The device supports operating frequencies up to 6 GHz, enabling use in a variety of RF and microwave signal routing applications where high-frequency performance is critical.
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How does the control voltage interface with typical microcontrollers?
This switch features CMOS-compatible control inputs operating at 3 to 5 volts, allowing direct interfacing with common microcontrollers and logic circuits without requiring additional voltage level