X-Band high power, low loss and fast switching twin-toroid type ferrite phase shifter is designed and fabricated. Differential phase shift (DPS), insertion loss, high power characteristics and impedance matching are determined and optimized using finite element solver in CST Microwave Studio. The effect of high order modes propagating in the structure is examined and methods to suppress these modes are investigated. 15dB return loss is obtained for all phase states and operating temperature range in 12% bandwidth at X-Band. Switching time smaller than 10us is achieved using a digitally controlled high current driver circuit
High power vector modulators enable independent control of radio frequency (RF) power to each accele...
International audienceThis letter presents the design, fabrication and measurement of a KTN-based ph...
This paper presents a new type of robust GaN HEMT-based high power phase shifter operating at X-band...
Three ferrite phase shifters – – the twin toroid, the dual-mode and the rotary-field – – which have ...
Abstract Following successful testing of a concept prototype of a waveguide-based high power phase s...
Following successful testing of a concept prototype of a waveguide-based high power phase shifter, a...
shifters A 180 ° nonreciprocal ferrite phase shifter with stepped dielec-tric impedance transformer ...
A low-cost and externally controlled planar microstrip ferrite phase shifter is designed, where the ...
Key factors influencing the design of a rotary-field ferrite phase shifter are the required r-f perf...
There are two distinct parts to this thesis; the first investigates the use of ferrite tiles in the ...
Abstract—Ferroelectric materials (FEM’s) are very attractive because their dielectric constant can b...
One of major limitations of traditional phase shifters based on pin diode or FET, is the low power l...
Superconductor ferrite phase shifters are attractive for phased array radar systems. The huge reduct...
Fast phase shifters are described that use a novel barium strontium titanate ceramic that can rapidl...
Construction and installation of a cavity radio frequency (RF) power distribution system in a high p...
High power vector modulators enable independent control of radio frequency (RF) power to each accele...
International audienceThis letter presents the design, fabrication and measurement of a KTN-based ph...
This paper presents a new type of robust GaN HEMT-based high power phase shifter operating at X-band...
Three ferrite phase shifters – – the twin toroid, the dual-mode and the rotary-field – – which have ...
Abstract Following successful testing of a concept prototype of a waveguide-based high power phase s...
Following successful testing of a concept prototype of a waveguide-based high power phase shifter, a...
shifters A 180 ° nonreciprocal ferrite phase shifter with stepped dielec-tric impedance transformer ...
A low-cost and externally controlled planar microstrip ferrite phase shifter is designed, where the ...
Key factors influencing the design of a rotary-field ferrite phase shifter are the required r-f perf...
There are two distinct parts to this thesis; the first investigates the use of ferrite tiles in the ...
Abstract—Ferroelectric materials (FEM’s) are very attractive because their dielectric constant can b...
One of major limitations of traditional phase shifters based on pin diode or FET, is the low power l...
Superconductor ferrite phase shifters are attractive for phased array radar systems. The huge reduct...
Fast phase shifters are described that use a novel barium strontium titanate ceramic that can rapidl...
Construction and installation of a cavity radio frequency (RF) power distribution system in a high p...
High power vector modulators enable independent control of radio frequency (RF) power to each accele...
International audienceThis letter presents the design, fabrication and measurement of a KTN-based ph...
This paper presents a new type of robust GaN HEMT-based high power phase shifter operating at X-band...