New RF Components and Solutions from Analog Devices
ADI supports your designs with complete signal chain capability, including RF, microwave and millimeter wave from the broadest selection of discrete components and integrated solutions, including comprehensive antenna to bits portfolio for applications DC to beyond 100 GHz.
Discover the difference Analog Devices can make for your RF & Microwave designs in Communications, Test & Measurement Instrumentation, Industrial, and Aerospace and Defense.
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AD3530R: 8-Channel, 16-Bit Voltage Output DACs, On-Chip Reference, SPI
The AD3530/AD3530R are low power, 8-channel, 16-bit, buffered voltage output, digital-to-analog converters (DACs) that include software-programmable gain controls that result in full-scale output spans of 2.5V or 5V for reference voltages of 2.5V.
AD8412A: −2V to 50V Wide Input Voltage Range, 1.8MHz High Bandwidth, Current-Sense Amplifier with PWM Rejection and Gain 10V/V
The AD8412A is a high-voltage, high-bandwidth current sense amplifier. The device features an initial gain of 10V/V, with a 1.8MHz bandwidth with a maximum ±0.11% gain error over the entire temperature range.
ADF4382: Microwave Wideband Synthesizer with Integrated VCO
The ADF4382 is a high-performance, ultra-low-jitter, fractional-N phased-locked loop (PLL) with an integrated voltage-controlled oscillator (VCO), ideally suited for local oscillator (LO) generation in 5G applications or data converter clock applications.
LTC7893/LTC7892: 100V Low IQ, Synchronous Boost Controllers for GaN FETs
The LTC7893/LTC7892 are high-performance, step-up DC-to-DC switching regulator controllers that drive all N-channel synchronous gallium nitride (GaN) field-effect transistor (FET) power stages from output voltages of up to 100V.
ADAQ4224: 24-Bit, 2 MSPS, μModule Data Acquisition Solution
The ADAQ4224 is a μModule® precision data acquisition (DAQ) signal chain solution that reduces the development cycle of a precision measurement system by transferring the signal chain design challenge of component selection, optimization, and layout from the designer to the device. With a guaranteed maximum ±1.0 ppm INL and no missing codes at 24 bits, the ADAQ4224 achieves unparalleled precision performance from −40°C to +105°C.