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    Researchers developed a polymer capacitor by combining two cheap, commercially available plastics. The new polymer capacitor makes use of the transparent material — pictured here, with vintage Penn State athletic marks visible through it — to store four times the energy and withstand significantly more heat.  Credit: Penn State

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    Modelithics Library for MATLAB: Measurement-Based Models for Microwave and RF Passive Components

    Bourns Extends Multilayer Chip Inductors Offer for RF and Wireless Designs

    Researchers developed a polymer capacitor by combining two cheap, commercially available plastics. The new polymer capacitor makes use of the transparent material — pictured here, with vintage Penn State athletic marks visible through it — to store four times the energy and withstand significantly more heat.  Credit: Penn State

    Penn State Demonstrated Polymer Alloy Capacitor Film with 4× Energy Density up to 250C

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IQD adds 5 V atomic clock to its portfolio

18.1.2021
Reading Time: 2 mins read
A A

The new IQRB-4 bridges the gap between the 12 V powered IQRB-1, IQRB-2 and IQRB-3 and the recently released 3.3 V powered ICPT-1.

IQD, a subsidiary of the Würth Elektronik eiSos Group, has been active in the frequency products market for over 45 years and in recent years developed its know-how to specialize in the field of atomic clocks. The company has invested in its design and technical measurement capabilities at its head office in the UK, which also acts as the center of excellence for frequency products within the Wurth Elektronik eiSos Group. This means that customers and interested parties can be offered the maximum possible service that IQD and Wurth eiSos are widely known for. This service combined with excellent quality and reliability makes IQD the best choice for rubidium atomic clocks.

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The IQRB-4 offers very good short term and long term stability as well as good phase noise, all combined in a compact package of only 50.8 x 50.8 x 25 mm. In addition to the 5 V supply voltage, the IQRB-4 comes with a standard CMOS signal output. This is ideal for most applications, as they require a CMOS signal anyway.

The IQRB-4 is perfectly suited as a stand-alone time reference, for example for communication applications or in network structures. In addition, atomic clocks are an important component of smart and autonomous networks, as well as everywhere where exact time and phase synchronization is required. More information about the IQRB-4 and the other Rubidium oscillators can be found at www.iqdfrequencyproducts.com.

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Source: Würth Elektronik

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