IPC Classification

Class code (prefix) Descriptions Number of results
H03H 1/00 Constructional details of impedance networks whose electrical mode of operation is not specified or applicable to more than one type of network
H03H 1/02 RC networks, e.g. filters
H03H 2/00 Networks using elements or techniques not provided for in groups
H03H 3/00 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators
H03H 3/02 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks
H03H 3/04 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks for obtaining desired frequency or temperature coefficient
H03H 3/06 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of magnetostrictive resonators or networks
H03H 3/007 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks
H03H 3/08 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of resonators or networks using surface acoustic waves
H03H 3/10 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of resonators or networks using surface acoustic waves for obtaining desired frequency or temperature coefficient
H03H 3/013 Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for obtaining desired frequency or temperature coefficient
H03H 5/00 One-port networks comprising only passive electrical elements as network components
H03H 5/02 One-port networks comprising only passive electrical elements as network components without voltage- or current-dependent elements
H03H 5/10 One-port networks comprising only passive electrical elements as network components without voltage- or current-dependent elements comprising at least one element with prescribed temperature coefficient
H03H 5/12 One-port networks comprising only passive electrical elements as network components with at least one voltage- or current-dependent element
H03H 7/00 Multiple-port networks comprising only passive electrical elements as network components
H03H 7/01 Frequency selective two-port networks
H03H 7/03 Frequency selective two-port networks comprising means for compensation of loss
H03H 7/06 Frequency selective two-port networks including resistors
H03H 7/07 Bridged T-filters
H03H 7/09 Filters comprising mutual inductance
H03H 7/12 Bandpass or bandstop filters with adjustable bandwidth and fixed centre frequency
H03H 7/13 Frequency selective two-port networks using electro-optical elements
H03H 7/18 Networks for phase shifting
H03H 7/19 Two-port phase shifters providing a predetermined phase shift, e.g. "all-pass" filters
H03H 7/20 Two-port phase shifters providing an adjustable phase shift
H03H 7/21 Networks for phase shifting providing two or more phase shifted output signals, e.g. n-phase output
H03H 7/24 Frequency-independent attenuators
H03H 7/25 Frequency-independent attenuators comprising an element controlled by an electric or magnetic variable
H03H 7/27 Frequency-independent attenuators comprising a photo-electric element
H03H 7/30 Time-delay networks
H03H 7/32 Time-delay networks with lumped inductance and capacitance
H03H 7/34 Time-delay networks with lumped and distributed reactance
H03H 7/38 Impedance-matching networks
H03H 7/40 Automatic matching of load impedance to source impedance
H03H 7/42 Balance/unbalance networks
H03H 7/46 Networks for connecting several sources or loads, working on different frequencies or frequency bands, to a common load or source
H03H 7/48 Networks for connecting several sources or loads, working on the same frequency or frequency band, to a common load or source
H03H 7/52 One-way transmission networks, i.e. unilines
H03H 7/54 Modifications of networks to reduce influence of variations of temperature
H03H 7/065 Parallel T-filters
H03H 7/075 Ladder networks, e.g. electric wave filters
H03H 9/00 Networks comprising electromechanical or electro-acoustic elements; Electromechanical resonators
H03H 9/02 Networks comprising electromechanical or electro-acoustic elements; Electromechanical resonators - Details
H03H 9/05 Holders or supports
H03H 9/08 Holders with means for regulating temperature
H03H 9/09 Elastic or damping supports
H03H 9/10 Mounting in enclosures
H03H 9/12 Mounting in enclosures for networks with interaction of optical and acoustic waves
H03H 9/13 Driving means, e.g. electrodes, coils for networks consisting of piezoelectric or electrostrictive materials
H03H 9/15 Constructional features of resonators consisting of piezoelectric or electrostrictive material
H03H 9/17 Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator
H03H 9/19 Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator consisting of quartz
H03H 9/21 Crystal tuning forks
H03H 9/22 Constructional features of resonators consisting of magnetostricitve material
H03H 9/24 Constructional features of resonators of material which is not piezoelectric, electrostrictive, or magnetostrictive
H03H 9/25 Constructional features of resonators using surface acoustic waves
H03H 9/30 Time-delay networks
H03H 9/36 Time-delay networks with non-adjustable delay time
H03H 9/38 Time-delay networks with adjustable delay time
H03H 9/40 Frequency-dependent delay lines, e.g. dispersive delay lines
H03H 9/42 Time-delay networks using surface acoustic waves
H03H 9/44 Frequency-dependent delay lines, e.g. dispersive delay lines
H03H 9/46 Filters
H03H 9/48 Coupling means therefor
H03H 9/50 Mechanical coupling means
H03H 9/52 Electric coupling means
H03H 9/54 Filters comprising resonators of piezoelectric or electrostrictive material
H03H 9/56 Monolithic crystal filters
H03H 9/58 Multiple crystal filters
H03H 9/60 Electric coupling means therefor
H03H 9/62 Filters comprising resonators of magnetostrictive material
H03H 9/64 Filters using surface acoustic waves
H03H 9/66 Phase shifters
H03H 9/68 Phase shifters using surface acoustic waves
H03H 9/70 Multiple-port networks for connecting several sources or loads, working on different frequencies or frequency bands, to a common or source
H03H 9/72 Networks using surface acoustic waves
H03H 9/74 Multiple-port networks for connecting several sources or loads, working on the same frequency or frequency band, to a common load or source
H03H 9/76 Networks using surface acoustic waves
H03H 9/125 Driving means, e.g. electrodes, coils
H03H 9/135 Driving means, e.g. electrodes, coils for networks consisting of magnetostrictive materials
H03H 9/145 Driving means, e.g. electrodes, coils for networks using surface acoustic waves
H03H 9/205 Constructional features of resonators consisting of piezoelectric or electrostrictive material having multiple resonators
H03H 9/215 Crystal tuning forks consisting of quartz
H03H 11/00 Networks using active elements
H03H 11/02 Multiple-port networks
H03H 11/04 Frequency selective two-port networks
H03H 11/06 Frequency selective two-port networks comprising means for compensation of loss
H03H 11/08 Frequency selective two-port networks using gyrators
H03H 11/10 Frequency selective two-port networks using negative impedance converters
H03H 11/12 Frequency selective two-port networks using amplifiers with feedback
H03H 11/14 Frequency selective two-port networks using electro-optical devices
H03H 11/16 Networks for phase shifting
H03H 11/18 Two-port phase shifters providing a predetermined phase shift, e.g. "all-pass" filters
H03H 11/20 Two-port phase shifters providing an adjustable phase shift
H03H 11/22 Networks for phase shifting providing two or more phase shifted output signals, e.g. n-phase output
H03H 11/24 Frequency-independent attenuators
H03H 11/26 Time-delay networks
H03H 11/28 Impedance matching networks
H03H 11/30 Automatic matching of source impedance to load impedance
H03H 11/32 Balance-unbalance networks
H03H 11/34 Networks for connecting several sources or loads working on different frequencies or frequency bands, to a common load or source
H03H 11/36 Networks for connecting several sources or loads, working on the same frequency or frequency band, to a common load or source
H03H 11/38 One-way transmission networks, i.e. unilines
H03H 11/40 Impedance converters
H03H 11/42 Gyrators
H03H 11/44 Negative impedance converters
H03H 11/46 One-port networks
H03H 11/48 One-port networks simulating reactances
H03H 11/50 One-port networks simulating reactances using gyrators
H03H 11/52 One-port networks simulating negative resistances
H03H 11/54 Modifications of networks to reduce influence of variations of temperature
H03H 15/00 Transversal filters
H03H 15/02 Transversal filters using analogue shift registers
H03H 17/00 Networks using digital techniques
H03H 17/02 Frequency-selective networks
H03H 17/04 Recursive filters
H03H 17/06 Non-recursive filters
H03H 17/08 Networks for phase-shifting
H03H 19/00 Networks using time-varying elements, e.g. N-path filters
H03H 21/00 Adaptive networks