MACOM Extends PIN Diodes To 100 W

June 3, 2013
A series of PIN diodes handle power levels as high as 100 W to 12 GHz.

Among its many components on display at IMS booth No. 930 in Seattle, MACOM Technology Solutions will be demonstrating its capabilities in high-power broadband shunt PIN diodes. Suitable for high-power switching applications, these shunt PIN diodes are capable of handling power levels to 100 W at frequencies to 6 GHz, and they are usable for applications through 12 GHz. As an example, model MADP-011028-14150T is a silicon shunt PIN diode designed for applications from 50 MHz to 12 GHz. It is rated for minimum breakdown voltage of 200 V and maximum power dissipation of 4.3 W. The diodes are supplied in plastic packages measuring just 1.5 x 1.2 mm. According to Product Manager, Paul Wade, “This family of shunt PIN diodes offers an excellent combination of broadband performance, ease of use and low cost.” To learn more, visit M/A-COM Technology Solutions at IMS booth No. 930.

Editor's Note: For more show coverage, be sure to visit Microwaves & RF's IMS 2013 page.

Sponsored Recommendations

UHF to mmWave Cavity Filter Solutions

April 12, 2024
Cavity filters achieve much higher Q, steeper rejection skirts, and higher power handling than other filter technologies, such as ceramic resonator filters, and are utilized where...

Wideband MMIC Variable Gain Amplifier

April 12, 2024
The PVGA-273+ low noise, variable gain MMIC amplifier features an NF of 2.6 dB, 13.9 dB gain, +15 dBm P1dB, and +29 dBm OIP3. This VGA affords a gain control range of 30 dB with...

Fast-Switching GaAs Switches Are a High-Performance, Low-Cost Alternative to SOI

April 12, 2024
While many MMIC switch designs have gravitated toward Silicon-on-Insulator (SOI) technology due to its ability to achieve fast switching, high power handling and wide bandwidths...

Request a free Micro 3D Printed sample part

April 11, 2024
The best way to understand the part quality we can achieve is by seeing it first-hand. Request a free 3D printed high-precision sample part.