ADG918BRMZ-500RL7 Overview
The ADG918BRMZ-500RL7 is a high-performance, low-voltage, single-pole double-throw (SPDT) analog switch designed for precision signal routing in demanding industrial and communication systems. This device offers a low on-resistance and fast switching speeds, ensuring minimal signal distortion and high linearity across a wide frequency range. With its robust electrical characteristics and small footprint, it is ideal for applications requiring reliable analog switching performance combined with low power consumption. Engineers and sourcing specialists will find this device well-suited for high-frequency multiplexing, instrumentation, and signal conditioning tasks. For more details, visit IC Manufacturer.
ADG918BRMZ-500RL7 Technical Specifications
| Parameter | Value |
|---|---|
| Switch Configuration | SPDT (Single Pole Double Throw) |
| Operating Voltage Range | +3 V to +5.5 V |
| On-Resistance (R_ON) | 4 ?? typical |
| Signal Bandwidth | Up to 2 GHz |
| Switching Time | 20 ns typical |
| Power Supply Current | 1.5 ??A maximum |
| Input Signal Range | 0 V to V_DD |
| Package Type | 32-lead LFCSP (5 mm x 5 mm) |
| Operating Temperature Range | -40??C to +85??C |
ADG918BRMZ-500RL7 Key Features
- Low On-Resistance: Minimizes signal loss and distortion, ensuring high signal integrity in sensitive analog paths.
- Wide Bandwidth Capability: Supports signal frequencies up to 2 GHz, suitable for RF and high-speed data applications.
- Low Power Consumption: Ultra-low supply current enhances overall system efficiency, critical for battery-powered or portable equipment.
- Fast Switching Speed: Typical switching time of 20 ns allows rapid signal routing and reduced latency in dynamic systems.
- Wide Input Voltage Range: Accepts signals from 0 V up to the supply voltage, enabling versatile interfacing across different circuit levels.
- Compact LFCSP Package: Saves board space while providing excellent thermal performance and ease of assembly.
- Industrial Temperature Range: Reliable operation from -40??C to +85??C ensures robustness in harsh environments.
ADG918BRMZ-500RL7 Advantages vs Typical Alternatives
This device offers a superior combination of low on-resistance and wide bandwidth compared to typical analog switches, resulting in enhanced signal fidelity and minimal insertion loss. Its low power consumption and fast switching times provide efficiency and responsiveness that meet the demands of modern industrial and communication systems. The small footprint and robust temperature rating further distinguish it from alternatives, making it a reliable choice for high-density, high-performance designs.
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Typical Applications
- High-frequency signal routing in RF and microwave communication systems, providing precise and low-loss switching for antenna multiplexing and test equipment.
- Instrumentation and measurement systems requiring accurate analog signal multiplexing with minimal distortion and latency.
- Data acquisition systems where fast, low-power analog switching enhances overall system responsiveness and energy efficiency.
- Portable and battery-powered devices benefiting from the low supply current and compact package for space- and power-constrained designs.
ADG918BRMZ-500RL7 Brand Info
The ADG918BRMZ-500RL7 is part of a comprehensive family of high-quality analog switches designed and manufactured by a leading IC supplier known for innovation and reliability in semiconductor components. This product line emphasizes precision analog signal management with a focus on low power consumption, fast switching, and robust performance in demanding industrial and communication applications. The brand??s commitment to quality and advanced process technologies ensures consistent device performance and long-term reliability across various operating environments.
FAQ
What is the typical on-resistance of this analog switch, and why is it important?
The typical on-resistance is approximately 4 ohms. This low resistance is crucial because it reduces signal attenuation and distortion, ensuring that the switched analog signals maintain their integrity, which is vital for high-precision applications.


