ELECTRO-ACOUSTIC RF FILTER WITH INCREASED FLANK STEEPNESS, MULTIPLEXER AND METHOD OF DESIGNING AN ELECTRO-ACOUSTIC RF FILTER
An electro-acoustic RF filter allowing improved filter skirts is provided. The filter has a flank between a transmission band and a rejection band and a ladder type like topology. A first inductive element and a second inductive element of the topology are arranged in a respective shunt path and electro-magnetically coupled such that the coupling creates an additional transmission zero.
1 . An electro-acoustic RF filter (EAF), comprising
a first transmission band, a first rejection band and a first flank between the first transmission band and the first rejection band,
a ladder type like topology with one or more electro-acoustic series resonators (SR) electrically connected in a signal path (SIP), a first inductive element (IE 1 ) connected in a first shunt path (SHP) between the signal path (SIP) and ground, and a second inductive element (IE 2 ) connected in a second shunt path (SHP) between the signal path (SIP) and ground, where
the first inductive element (IE 1 ) and the second inductive element (IE 2 ) are electromagnetically coupled such that the coupling creates an additional transmission zero.
2 . The filter of claim 1 , where the additional transmission zero is positioned in the vicinity of the first flank.
3 . The filter of claim 1 , comprising
a second rejection band such that the filter is a band pass filter having a second flank or
a second transmission band such that the filter is a band rejection filter having a second flank.
4 . The filter of claim 3 , where the first flank is positioned at a higher frequency than the second flank.
5 . The filter of claim 1 , where the number of shunt paths (SHP) between the first shunt path (SHP) and the second shunt path (SHP) is 1, 2, 3, 4, 5, or larger than 5.
6 . The filter of one claim 1 , where the electro-acoustic resonators are selected from SAW resonators, BAW resonators and GBAW resonators.
7 . The filter of claim 1 , where the inductive elements (IE 1 , IE 2 ) are realized as metallized structures in one or more metallized layers in a multilayer carrier substrate.
8 . A multiplexer comprising the filter (EAF) of claim 1 as a band pass filter.
9 . A method of designing a ladder type like topology with one or more electro-acoustic series resonators (SR) electrically connected in a signal path (SP), a first inductive element (IE 1 ) connected in a first shunt (SHP) path between the signal path (SIP) and ground, and a second inductive element (IE 2 ) connected in a second shunt path (SHP) between the signal path (SIP) and ground,
the method comprising the steps of
establishing an electromagnetic coupling M between the first inductive element (IE 1 ) and the second inductive element (IE 2 ) to create an additional transmission zero,
varying the strength of the coupling M such that the additional transmission zero is positioned at a flank.
10 . The method of claim 9 , where the additional transmission zero is positioned to increase the steepness of an upper passband filter flank or band rejection filter flank.