Highly integrated microwave system has input frequency shunt for separating relative low-frequency signal part-signal of microwave-input signal
Simple SummaryContent extracted from patent full text and abstract with AI.
This patent describes a highly integrated microwave system using an input frequency shunt to separate low-frequency components from the microwave input. It includes filtering for high-frequency components and a mixer to combine these with a local oscillator, generating an intermediate frequency signal suitable for further use or processing.
Use CasesContent extracted from patent full text and abstract with AI.
- High-frequency communication receivers (such as radar or satellite receivers)
- Microwave signal analysis equipment
- Telecommunication infrastructure handling wide-band microwave signals
- Scientific instruments requiring separation of signal frequency components
- RF front-ends in wireless communication devices
BenefitsContent extracted from patent full text and abstract with AI.
- Improved integration reduces device size and complexity
- Efficiently separates signal components, helping in precise signal processing
- Enables accurate frequency conversion for downstream processing
- May reduce noise and interference in low-frequency and high-frequency paths
- Potentially lowers production costs by combining multiple functions in one system
Technical Classifications (CPCs)
Main Classifications
Electrical & Electronic Tech
Sub Classifications
Electric Elements
CPC Codes
Inventors & Applicants
Applicants
Rohde & Schwarz
Univ Friedrich Alexander Er
Patent Abstract
The highly integrated microwave system has an input frequency shunt (12) for separating the relative low-frequency signal part-signal (14) of a microwave-input signal (11). A filter is tuned for a relative high-frequency part-signal (13) of the microwave-input signal. A mixer (17) is provided for mixing the filtered high-frequency part-signal (16) with a local oscillator signal (20) in an intermediate frequency signal (19) and output frequency shunt (18).
Key Information
Publication No.
DE102009009655A1
Family ID
42557668
Publication Date
2010-09-16
Application No.
DE102009009655A
Application Date
2009-02-19
Priority Date
2009-02-19
Granted
Yes (1/2)
Possible Cooperation
For further information please contact the transfer office.