US20020041218A1 - Complex electronic component - Google Patents

Complex electronic component Download PDF

Info

Publication number
US20020041218A1
US20020041218A1 US09/872,102 US87210201A US2002041218A1 US 20020041218 A1 US20020041218 A1 US 20020041218A1 US 87210201 A US87210201 A US 87210201A US 2002041218 A1 US2002041218 A1 US 2002041218A1
Authority
US
United States
Prior art keywords
filter
electronic component
complex electronic
multilayer substrate
component according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
US09/872,102
Other versions
US6424233B1 (en
Inventor
Ken Tonegawa
Harufumi Mandai
Tomoya Bando
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Murata Manufacturing Co Ltd
Original Assignee
Murata Manufacturing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Murata Manufacturing Co Ltd filed Critical Murata Manufacturing Co Ltd
Priority to US09/872,102 priority Critical patent/US6424233B1/en
Publication of US20020041218A1 publication Critical patent/US20020041218A1/en
Application granted granted Critical
Publication of US6424233B1 publication Critical patent/US6424233B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03HIMPEDANCE NETWORKS, e.g. RESONANT CIRCUITS; RESONATORS
    • H03H9/00Networks comprising electromechanical or electro-acoustic devices; Electromechanical resonators
    • H03H9/02Details
    • H03H9/05Holders; Supports
    • H03H9/10Mounting in enclosures
    • H03H9/1064Mounting in enclosures for surface acoustic wave [SAW] devices
    • H03H9/1071Mounting in enclosures for surface acoustic wave [SAW] devices the enclosure being defined by a frame built on a substrate and a cap, the frame having no mechanical contact with the SAW device
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03HIMPEDANCE NETWORKS, e.g. RESONANT CIRCUITS; RESONATORS
    • H03H9/00Networks comprising electromechanical or electro-acoustic devices; Electromechanical resonators
    • H03H9/02Details
    • H03H9/05Holders; Supports
    • H03H9/0538Constructional combinations of supports or holders with electromechanical or other electronic elements
    • H03H9/0547Constructional combinations of supports or holders with electromechanical or other electronic elements consisting of a vertical arrangement
    • H03H9/0552Constructional combinations of supports or holders with electromechanical or other electronic elements consisting of a vertical arrangement the device and the other elements being mounted on opposite sides of a common substrate
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03HIMPEDANCE NETWORKS, e.g. RESONANT CIRCUITS; RESONATORS
    • H03H9/00Networks comprising electromechanical or electro-acoustic devices; Electromechanical resonators
    • H03H9/02Details
    • H03H9/05Holders; Supports
    • H03H9/0538Constructional combinations of supports or holders with electromechanical or other electronic elements
    • H03H9/0547Constructional combinations of supports or holders with electromechanical or other electronic elements consisting of a vertical arrangement
    • H03H9/0557Constructional combinations of supports or holders with electromechanical or other electronic elements consisting of a vertical arrangement the other elements being buried in the substrate
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L2224/00Indexing scheme for arrangements for connecting or disconnecting semiconductor or solid-state bodies and methods related thereto as covered by H01L24/00
    • H01L2224/01Means for bonding being attached to, or being formed on, the surface to be connected, e.g. chip-to-package, die-attach, "first-level" interconnects; Manufacturing methods related thereto
    • H01L2224/42Wire connectors; Manufacturing methods related thereto
    • H01L2224/47Structure, shape, material or disposition of the wire connectors after the connecting process
    • H01L2224/48Structure, shape, material or disposition of the wire connectors after the connecting process of an individual wire connector
    • H01L2224/4805Shape
    • H01L2224/4809Loop shape
    • H01L2224/48091Arched

Definitions

  • the present invention relates to a complex electronic devices, especially to a complex electronic component in which a surface acoustic wave element is mounted in a concave portion of a multilayer substrate and a filter comprising a passive element is disposed within the multilayer substrate.
  • a concave portion for mounting the surface acoustic wave element and a flat portion for mounting the IC and capacitor should be provided on the top surface of the multilayer substrate in the conventional complex electronic component as described above.
  • the size of the multilayer substrate becomes large due to two-dimensional arrangement of a plurality of components on the top surface of the multilayer substrate when the number of the component is increased, causing a problem that the size of the complex electronic component also becomes large.
  • the preferred embodiment of the present invention provides a complex electronic component, comprising; a multilayer substrate formed by laminating a plurality of dielectric layers; a first concave part being provided at least at the bottom surface of said multilayer substrate; a filter comprising at least one first passive element disposed within said multilayer substrate; an external terminal provided on at least one of the flat portion of the bottom surface and the side face of said multilayer substrate; either one of an active element or a second passive element mounted on the top surface of said multilayer substrate, a surface acoustic wave element multilayer substrate; and a flat cap provided at the opening of said first concave portion of said multilayer substrate so as to cover said opening said first concave portion.
  • the function required for the multilayer substrate can be allotted to the top and bottom surfaces to compact the multilayer substrate accommodating the filters. Consequently, the complex electronic component can be made compact thereby compacting the mobile communication device mounting the complex electronic component.
  • the above described complex electronic component may further comprise a second concave portion on said top surface of said multilayer substrate, and either said active element or said second passive element may be mounted on said second concave portion.
  • the second concave portion is provided on the top surface of the multilayer substrate accommodating a filter comprising the passive element and either one of the active element or the passive element is mounted in the second concave portion, the height of the multilayer substrate can be made low, allowing the complex electronic component to be low height to result in a more compact size. Consequently, the mobile communication device mounting the complex electronic component becomes more compact.
  • FIG. 1 is a cross section of the complex electronic component according to the first preferred embodiment of the present invention.
  • FIG. 2 is a cross section of the complex electronic component according to the second preferred embodiment of the present invention.
  • FIG. 3 is a block diagram of the compact size portable telephone as a mobile communication device.
  • FIG. 4 is a cross section showing the conventional complex electronic component.
  • FIG. 1 shows the cross section of the complex electronic component in the first preferred embodiment according to the present invention.
  • the complex electronic component 10 is provided with a multilayer substrate 11 inside of which a LC filter (not shown in the drawing) comprising a transfer circuit and capacitor are disposed, a first concave portion 12 being provided on the bottom surface of the multilayer substrate 11 and external electrodes 13 being provided on the faces from the bottom surface through the side face of the multilayer substrate 11 .
  • the multilayer substrate 11 as described above is produced, for example, by the following method.
  • Dielectric layers from 11 a through 11 d are prepared by laminating green sheets composed of a ceramic material sintered at a low temperature. Then, a required wiring pattern, strip electrodes for forming transfer circuits, a capacitor electrode for forming a capacitor and a ground electrode (not shown in the drawing) are printed on the dielectric layers from 11 a through 11 d using a copper paste. In the next step, a hole to serve as a first concave portion is provided in the dielectric layers from 11 a through 11 d by punching along with providing a hole for forming required via-hole electrodes (not shown in the drawing). The copper paste is filled into the hole for forming the via-hole electrode.
  • the dielectric layers from 11 a through 11 d thus obtained are laminated and pressed, followed by baking at 960° C. for 1 hour in a neutral or weakly reducing atmosphere. Finally, the external electrodes 13 are formed by coating, followed by baking, the copper caste on the prescribed portion of the dielectric layer from the bottom surface through the side face.
  • a surface acoustic wave filter 14 (referred to a SAW filter hereinafter, or a surface acoustic wave filter, is disposed as a bare tip inside of the first concave portion 12 of the multilayer substrate 11 obtained as described above.
  • the filter is fixed by a tie-bonding and electrical continuity of the filter is accomplished through bonding wires 15 formed by a wire-bonding.
  • the tie-bonding may also serve for electrical continuity.
  • the first concave portion 12 is sealed with a flat cap 16 .
  • the flat cap 16 is composed of an arbitrary material such as a metal, a resin or a ceramic.
  • a metal film is previously formed on the portion of the multilayer substrate 11 making a contact with the flat cap 16 to join with the flat cap 16 by burying a solder into the gap between the flat cap 16 and the multilayer substrate 11 .
  • the flat cap 16 is composed of a resin or a ceramic, the flat cap 16 is adhered to the multilayer substrate 11 with a heat curing type adhesive. Otherwise, The first concave portion 12 may be filled with a resin.
  • the complex electronic component 10 is completed by mounting an IC 17 as an active element and a capacitor 18 as a passive element on the flat top surface of the multilayer substrate 11 after sealing the first concave portion 12 provided on the bottom surface of the multilayer substrate 11 with the flat cap 16 .
  • Characteristics of the complex electronic component are evaluated thereafter for respective complex electronic components 10 via the external electrodes 13 provided on the side faces of the multilayer substrate 11 to discriminate between the good and defective products.
  • the first concave portion 22 is sealed with the flat cap 27 after mounting the SAW filter 25 in the first concave portion 22 .
  • the flat cap 27 is constructed of an arbitrary material such as a metal, a resin or a ceramic.
  • a metal film is previously formed on the portion of the multilayer substrate 21 to make a contact with the flat cap 27 to join the multilayer substrate 21 with the flat cap 27 by burying a solder into the gap between the flat cap 27 and multilayer substrate 21 when the flat cap 27 is composed of a metal.
  • the flat cap 27 is composed of a resin or a ceramic
  • the flat cap 16 is adhered to the multilayer substrate 21 with a heat curing type adhesive. Otherwise,
  • the first concave portion 21 may be filled with a resin.
  • FIG. 3 shows a block diagram of a compact size portable telephone (Portable Handyphone System; PHS) as an example of mobile communication devices.
  • ANT is an antenna
  • SW is a switch for allotting and coupling high frequency signals in different frequency bands
  • LPF 1 is a low-pass filter as a first filter of a transmission (Tx) side
  • PA is a high output amplifier at the Tx side
  • BPF is a band-pass filter as a second filter at the Tx side
  • LNA is a low-noise amplifier at the transmission (Rx) side
  • LPF 2 is a low-pass filter as a filter at the Rx side.
  • the LC filter (FIG. 1 and FIG. 2) accommodated in the multilayer substrate 11 or 21 of the complex electronic component 10 or 20 corresponds to the low-pass filter LPF 1
  • the SAW filter 14 or 25 (FIG. 1 and FIG. 2) mounted in the concave portion 12 or 22 on the bottom surface of the multilayer substrate 11 or 21 corresponds to the band-pass filter BPF
  • the IC 17 or 28 (FIG. 1 and FIG. 2) mounted on the top surface or in the second concave portion 23 of the multilayer substrates 11 or 21 corresponds to the high output amplifier PA in the PHS having the construction as described above
  • the part indicated by the broken line in FIG. 3 can be constructed by one complex electronic component 10 or 20 (FIG. 1 or FIG. 2) to enable compacting the PHS.

Landscapes

  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Surface Acoustic Wave Elements And Circuit Networks Thereof (AREA)
  • Piezo-Electric Or Mechanical Vibrators, Or Delay Or Filter Circuits (AREA)
  • Structures For Mounting Electric Components On Printed Circuit Boards (AREA)
  • Transceivers (AREA)

Abstract

The invention provides a complex electronic component, comprising; a multilayer substrate formed by laminating a plurality of dielectric layers; a first concave part being provided at least at the bottom surface of said multilayer substrate; a filter comprising at least one first passive element disposed within said multilayer substrate; an external terminal provided on at least one of the flat portion of the bottom surface and the side face of said multilayer substrate; either one of an active element or a second passive element mounted on the top surface of said multilayer substrate, a surface acoustic wave element mounted inside of said first concave portion of said multilayer substrate; and a flat cap provided at the opening of said first concave portion of said multilayer substrate so as to cover said opening said first concave portion. The size of the above complex electronic component is compact.

Description

    BACKGROUND OF THE INVENTION
  • 1. Field of the Invention [0001]
  • The present invention relates to a complex electronic devices, especially to a complex electronic component in which a surface acoustic wave element is mounted in a concave portion of a multilayer substrate and a filter comprising a passive element is disposed within the multilayer substrate. [0002]
  • 2. Description of the Related Art [0003]
  • FIG. 4 shows a common cross section of conventional complex [0004] electronic components 50 provided with a multilayer substrate 51 inside of which a LC filter is disposed. A concave portion 52 is provided on the top surface of the multilayer substrate 51 and a surface acoustic wave filter 53 as a bare tip is mounted inside of the concave portion 52. an IC 54 and a capacitor 55 being mounted on the top surface the flat portion of the multilayer substrate 51 except the concave portion 52. The concave portion 52 is covered with a flat cap 56 made of a metal.
  • However, a concave portion for mounting the surface acoustic wave element and a flat portion for mounting the IC and capacitor should be provided on the top surface of the multilayer substrate in the conventional complex electronic component as described above. In other words, the size of the multilayer substrate becomes large due to two-dimensional arrangement of a plurality of components on the top surface of the multilayer substrate when the number of the component is increased, causing a problem that the size of the complex electronic component also becomes large. [0005]
  • SUMMARY OF THE INVENTION
  • The object of the present invention, carried out for solving the foregoing problems, is to provide a complex electronic component capable of being compacted. [0006]
  • The preferred embodiment of the present invention provides a complex electronic component, comprising; a multilayer substrate formed by laminating a plurality of dielectric layers; a first concave part being provided at least at the bottom surface of said multilayer substrate; a filter comprising at least one first passive element disposed within said multilayer substrate; an external terminal provided on at least one of the flat portion of the bottom surface and the side face of said multilayer substrate; either one of an active element or a second passive element mounted on the top surface of said multilayer substrate, a surface acoustic wave element multilayer substrate; and a flat cap provided at the opening of said first concave portion of said multilayer substrate so as to cover said opening said first concave portion. [0007]
  • According to the above described complex electronic component, since either one of the active element or the passive element is mounted on the top surface of the multilayer substrate accommodating a filter comprising a passive element and the surface acoustic wave filter is mounted in the concave portion provided on the bottom surface of the multilayer substrate, the function required for the multilayer substrate can be allotted to the top and bottom surfaces to compact the multilayer substrate accommodating the filters. Consequently, the complex electronic component can be made compact thereby compacting the mobile communication device mounting the complex electronic component. [0008]
  • The above described complex electronic component may further comprise a second concave portion on said top surface of said multilayer substrate, and either said active element or said second passive element may be mounted on said second concave portion. [0009]
  • In the above structure, since the second concave portion is provided on the top surface of the multilayer substrate accommodating a filter comprising the passive element and either one of the active element or the passive element is mounted in the second concave portion, the height of the multilayer substrate can be made low, allowing the complex electronic component to be low height to result in a more compact size. Consequently, the mobile communication device mounting the complex electronic component becomes more compact. [0010]
  • Other features and advantages of the present invention will become apparent from the following description of the invention which refers to the accompanying drawings.[0011]
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • FIG. 1 is a cross section of the complex electronic component according to the first preferred embodiment of the present invention. [0012]
  • FIG. 2 is a cross section of the complex electronic component according to the second preferred embodiment of the present invention. [0013]
  • FIG. 3 is a block diagram of the compact size portable telephone as a mobile communication device. [0014]
  • FIG. 4 is a cross section showing the conventional complex electronic component.[0015]
  • DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
  • FIG. 1 shows the cross section of the complex electronic component in the first preferred embodiment according to the present invention. The complex [0016] electronic component 10 is provided with a multilayer substrate 11 inside of which a LC filter (not shown in the drawing) comprising a transfer circuit and capacitor are disposed, a first concave portion 12 being provided on the bottom surface of the multilayer substrate 11 and external electrodes 13 being provided on the faces from the bottom surface through the side face of the multilayer substrate 11. The multilayer substrate 11 as described above is produced, for example, by the following method.
  • Dielectric layers from [0017] 11 a through 11 d are prepared by laminating green sheets composed of a ceramic material sintered at a low temperature. Then, a required wiring pattern, strip electrodes for forming transfer circuits, a capacitor electrode for forming a capacitor and a ground electrode (not shown in the drawing) are printed on the dielectric layers from 11 a through 11 d using a copper paste. In the next step, a hole to serve as a first concave portion is provided in the dielectric layers from 11 a through 11 d by punching along with providing a hole for forming required via-hole electrodes (not shown in the drawing). The copper paste is filled into the hole for forming the via-hole electrode. The dielectric layers from 11 a through 11 d thus obtained are laminated and pressed, followed by baking at 960° C. for 1 hour in a neutral or weakly reducing atmosphere. Finally, the external electrodes 13 are formed by coating, followed by baking, the copper caste on the prescribed portion of the dielectric layer from the bottom surface through the side face.
  • A surface acoustic wave filter [0018] 14 (referred to a SAW filter hereinafter, or a surface acoustic wave filter, is disposed as a bare tip inside of the first concave portion 12 of the multilayer substrate 11 obtained as described above. The filter is fixed by a tie-bonding and electrical continuity of the filter is accomplished through bonding wires 15 formed by a wire-bonding. The tie-bonding may also serve for electrical continuity.
  • After mounting the [0019] SAW filter 14 in the first concave portion 12, the first concave portion 12 is sealed with a flat cap 16. The flat cap 16 is composed of an arbitrary material such as a metal, a resin or a ceramic. When the flat cap 16 is composed of a metal, a metal film is previously formed on the portion of the multilayer substrate 11 making a contact with the flat cap 16 to join with the flat cap 16 by burying a solder into the gap between the flat cap 16 and the multilayer substrate 11. When the flat cap 16 is composed of a resin or a ceramic, the flat cap 16 is adhered to the multilayer substrate 11 with a heat curing type adhesive. Otherwise, The first concave portion 12 may be filled with a resin.
  • The complex [0020] electronic component 10 is completed by mounting an IC 17 as an active element and a capacitor 18 as a passive element on the flat top surface of the multilayer substrate 11 after sealing the first concave portion 12 provided on the bottom surface of the multilayer substrate 11 with the flat cap 16.
  • Characteristics of the complex electronic component are evaluated thereafter for respective complex [0021] electronic components 10 via the external electrodes 13 provided on the side faces of the multilayer substrate 11 to discriminate between the good and defective products.
  • The construction of the complex electronic component according to the first preferred embodiment of the present invention, mounting the IC and capacitor on the top surface of the multilayer substrate accommodating the LC filter and the SAW filter in the first concave portion provided on the bottom surface of the multilayer substrate, allows the function required for the multilayer substrate to be allotted to the top and bottom surfaces, thereby making the multilayer substrate accommodating the filter small to result in a compact size complex electronic component. [0022]
  • FIG. 2 shows the cross section of the complex electronic component according to the second preferred embodiment of the present invention. The complex [0023] electronic component 20 is provided with a multilayer substrate 21 inside of which a LC filter (not shown in the drawing) comprising a transfer circuit and a capacitor is disposed, the first concave portion 22 and the second concave portion 23 being provided on the top and bottom surfaces of the multilayer substrate 21, respectively, and external electrodes being provided on the side faces of the multilayer substrate 21. The multilayer substrate 21 is produced by the same method as described in producing the multilayer substrate 11 in the first embodiment.
  • The surface acoustic wave filter [0024] 25 (referred to a SAW filter hereinafter), or a surface acoustic wave element, is disposed within the first concave portion 22 provided at the bottom surface of the multilayer substrate 21 as a bare tip, which is fixed with a tie-bonding forming an electric continuity with the bonding wire 26 formed of a wire bonding. The tie-bonding may also serve for electric continuity.
  • The first [0025] concave portion 22 is sealed with the flat cap 27 after mounting the SAW filter 25 in the first concave portion 22. The flat cap 27 is constructed of an arbitrary material such as a metal, a resin or a ceramic. Likewise the case in the first embodiment, a metal film is previously formed on the portion of the multilayer substrate 21 to make a contact with the flat cap 27 to join the multilayer substrate 21 with the flat cap 27 by burying a solder into the gap between the flat cap 27 and multilayer substrate 21 when the flat cap 27 is composed of a metal. When the flat cap 27 is composed of a resin or a ceramic, the flat cap 16 is adhered to the multilayer substrate 21 with a heat curing type adhesive. Otherwise, The first concave portion 21 may be filled with a resin.
  • After sealing the first [0026] concave portion 22 provided on the bottom surface of the multilayer substrate 21 with the flat cap 27, the LC 28 as an active element and the capacitor 29 as a passive element are mounted in the second concave portion 23 provided on the top surface, thereby completing the complex electronic component 20.
  • Characteristics of the complex electronic component are evaluated thereafter for respective complex [0027] electronic components 20 via the external electrodes 24 provided on the side faces of the multilayer substrate 21 to discriminate between the good and defective products.
  • According to the complex electronic component in the second preferred embodiment hitherto described, the second concave portion is provided on the top surface of the multilayer substrate accommodating the LC filter to allow the IC and capacitor to be mounted in the second concave portion, thereby enabling to make the height of the multilayer substrate low for more compacting the component. [0028]
  • FIG. 3 shows a block diagram of a compact size portable telephone (Portable Handyphone System; PHS) as an example of mobile communication devices. In FIG. 3, ANT is an antenna, SW is a switch for allotting and coupling high frequency signals in different frequency bands, LPF[0029] 1 is a low-pass filter as a first filter of a transmission (Tx) side, PA is a high output amplifier at the Tx side, BPF is a band-pass filter as a second filter at the Tx side, LNA is a low-noise amplifier at the transmission (Rx) side and LPF2 is a low-pass filter as a filter at the Rx side.
  • On the premise that the LC filter (FIG. 1 and FIG. 2) accommodated in the [0030] multilayer substrate 11 or 21 of the complex electronic component 10 or 20 corresponds to the low-pass filter LPF1, the SAW filter 14 or 25 (FIG. 1 and FIG. 2) mounted in the concave portion 12 or 22 on the bottom surface of the multilayer substrate 11 or 21 corresponds to the band-pass filter BPF and the IC 17 or 28 (FIG. 1 and FIG. 2) mounted on the top surface or in the second concave portion 23 of the multilayer substrates 11 or 21 corresponds to the high output amplifier PA in the PHS having the construction as described above, the part indicated by the broken line in FIG. 3 can be constructed by one complex electronic component 10 or 20 (FIG. 1 or FIG. 2) to enable compacting the PHS.
  • While the cases in which both of the active and passive elements are mounted on the top surface of the multilayer substrate or in the concave portion formed on the top surface of the multilayer were explained in the foregoing embodiments, the same effect can be obtained when only the active element or the passive element is mounted. [0031]
  • Although the case when the active and passive elements to be mounted on the top surface or in the concave portion on the top surface of the substrate are tip components was described, the same effect can be attained when the tips are mounted as bare-tips. Reliability may be well improved by covering the active and passive elements as bare-tips with a resin. [0032]
  • While the LC filter composed of a transfer circuit and capacitor was shown as a filter composed of passive elements accommodated in the multilayer substrate, the same effect can be obtained by the LC filter merely composed of a transfer circuit and a RC filter composed of a built-in resistor and a capacitor. [0033]
  • While the invention has been particularly shown and described with reference to preferred embodiments thereof, it will be understood by those skilled man in the art that the forgoing and other changes in form and details may be made therein without departing from the spirit of the invention. [0034]

Claims (16)

What is claimed is:
1. A complex electronic component, including:
a first filter comprised of:
a multilayer ceramic structure formed of a plurality of ceramic green sheet layers;
at least one strip electrode;
a capacitor electrode, the strip electrode and the capacitor electrode being formed on surfaces of the green sheet layers; and
a second filter mounted inside a first cavity formed in a plurality of the layers of the first filter.
2. The complex electronic component according to claim 1, further comprising a circuit device mounted in a second cavity formed in a plurality of the layers of the first filter.
3. The complex electronic component according to claim 2, wherein the circuit device is an active electronic element.
4. The complex electronic component according to claim 3, wherein said second filter comprises an SAW element.
5. The complex electronic component according to claim 1, further including a circuit device mounted on the first filter on a side thereof opposite the second filter.
6. The complex electronic component according to claim 1, wherein the first cavity is formed at the bottom of the first filter which forms a base for mounting the complex electronic component on a circuit board.
7. The complex electronic component according to claim 6, wherein the second cavity is formed at the top of the first filter.
8. The complex electronic component according to claim 6, wherein the portion of the first filter which forms the base includes external conductors for electrically coupling the complex electronic component to the circuit board.
9. The complex electronic component according to claim 1, wherein said second filter comprises an SAW element.
10. The complex electronic component according to claim 1, wherein said strip electrode and capacitor electrode are cofired with said green sheet layers to form an integral unit.
11. An RF module comprising the transmission side of a radio communication device, the RF module including:
a low-pass filter comprised of:
a multilayer ceramic structure formed of a plurality of ceramic green sheet layers fired to produce an integral unit;
at least one strip electrode;
a capacitor electrode, the strip electrode and the capacitor electrode being formed on surfaces of the green sheet layers before the firing thereof; and
a band-pass filter comprised of a discrete circuit element mounted inside a 10 cavity formed in a plurality of the layers at the bottom of the first filter.
12. The RF module according to claim 11, wherein the band pass filter is a surface acoustic wave device.
13. The RF module according to claim 11, further comprising an amplifier circuit mounted in a second cavity formed in a plurality of the layers at the top of the low-pass filter.
14. The RF module according to claim 11, further comprising an amplifier circuit mounted on the opposite side of the low-pass filter from the band-pass filter.
15. The RF module according to claim 11, wherein the bottom surface of the low-pass filter which surrounds the first cavity forms a base for mounting the RF module on a circuit board.
16. The RF module according to claim 15, wherein the portion of the low-pass filter which forms the base includes external conductors for electrically coupling the RF module to the circuit board.
US09/872,102 1997-10-23 2001-06-01 Complex electronic component with a first multilayer filter having a cavity in which a second filter is mounted Expired - Lifetime US6424233B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US09/872,102 US6424233B1 (en) 1997-10-23 2001-06-01 Complex electronic component with a first multilayer filter having a cavity in which a second filter is mounted

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
JP9-291172 1997-10-23
JP9291172A JPH11127055A (en) 1997-10-23 1997-10-23 Composite electronic component
US09/177,026 US6252778B1 (en) 1997-10-23 1998-10-22 Complex electronic component
US09/872,102 US6424233B1 (en) 1997-10-23 2001-06-01 Complex electronic component with a first multilayer filter having a cavity in which a second filter is mounted

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
US09/177,026 Continuation US6252778B1 (en) 1997-10-23 1998-10-22 Complex electronic component

Publications (2)

Publication Number Publication Date
US20020041218A1 true US20020041218A1 (en) 2002-04-11
US6424233B1 US6424233B1 (en) 2002-07-23

Family

ID=17765391

Family Applications (2)

Application Number Title Priority Date Filing Date
US09/177,026 Expired - Lifetime US6252778B1 (en) 1997-10-23 1998-10-22 Complex electronic component
US09/872,102 Expired - Lifetime US6424233B1 (en) 1997-10-23 2001-06-01 Complex electronic component with a first multilayer filter having a cavity in which a second filter is mounted

Family Applications Before (1)

Application Number Title Priority Date Filing Date
US09/177,026 Expired - Lifetime US6252778B1 (en) 1997-10-23 1998-10-22 Complex electronic component

Country Status (3)

Country Link
US (2) US6252778B1 (en)
EP (1) EP0911965A3 (en)
JP (1) JPH11127055A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070170565A1 (en) * 2006-01-25 2007-07-26 Samsung Electronics Co., Ltd. RF module, multi RF module including the RF module, and method of manufacturing the RF module
US20080230859A1 (en) * 2006-04-20 2008-09-25 Mona Zaghloul Saw devices, processes for making them, and methods of use
US20090114798A1 (en) * 2007-04-20 2009-05-07 Onur Tigli Circular Surface Acoustic Wave (SAW) Devices, Processes for Making Them, and Methods of Use
US20090124513A1 (en) * 2007-04-20 2009-05-14 Patricia Berg Multiplex Biosensor
US20100007444A1 (en) * 2006-04-20 2010-01-14 Anis Nurashikin Nordin GHz Surface Acoustic Resonators in RF-CMOS
US8960004B2 (en) 2010-09-29 2015-02-24 The George Washington University Synchronous one-pole surface acoustic wave resonator

Families Citing this family (26)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH11127055A (en) * 1997-10-23 1999-05-11 Murata Mfg Co Ltd Composite electronic component
JP2000165085A (en) * 1998-11-24 2000-06-16 Nec Corp Flexible board, unnecessary radiation preventing method therefor and portable telephone
JP2000307452A (en) * 1999-02-16 2000-11-02 Murata Mfg Co Ltd High-frequency composite component and portable radio equipment using same
US6754471B1 (en) * 1999-12-06 2004-06-22 Skyworks Solutions, Inc. Surface acoustic wave filter packaging
US6928718B2 (en) 2000-06-06 2005-08-16 Sawtekk, Inc. Method for array processing of surface acoustic wave devices
JP2002118487A (en) * 2000-10-06 2002-04-19 Matsushita Electric Ind Co Ltd High-frequency composite switch module
US6627966B2 (en) * 2000-11-29 2003-09-30 Samsung Electro-Mechanics Co., Ltd. Method and device for sealing ceramic package of saw filter
JP4582922B2 (en) * 2001-01-31 2010-11-17 京セラ株式会社 Electronic component device and manufacturing method thereof
JP4630517B2 (en) * 2001-05-16 2011-02-09 パナソニック株式会社 Multilayer filter, multilayer composite device, and communication apparatus
US6856007B2 (en) 2001-08-28 2005-02-15 Tessera, Inc. High-frequency chip packages
US7176506B2 (en) * 2001-08-28 2007-02-13 Tessera, Inc. High frequency chip packages with connecting elements
US6750737B2 (en) * 2001-10-02 2004-06-15 Matsushita Electric Industrial Co., Ltd. High frequency switch and radio communication apparatus with layered body for saw filter mounting
JP3910045B2 (en) * 2001-11-05 2007-04-25 シャープ株式会社 Method for manufacturing electronic component internal wiring board
JP4020644B2 (en) * 2002-01-09 2007-12-12 アルプス電気株式会社 SAW filter module
JP5024317B2 (en) * 2002-03-25 2012-09-12 セイコーエプソン株式会社 Electronic component and method for manufacturing electronic component
US7754537B2 (en) * 2003-02-25 2010-07-13 Tessera, Inc. Manufacture of mountable capped chips
DE10310617B4 (en) * 2003-03-10 2006-09-21 Infineon Technologies Ag Electronic component with cavity and a method for producing the same
TW200520201A (en) * 2003-10-08 2005-06-16 Kyocera Corp High-frequency module and communication apparatus
JP2005198051A (en) * 2004-01-08 2005-07-21 Hitachi Ltd High frequency module
US8143095B2 (en) 2005-03-22 2012-03-27 Tessera, Inc. Sequential fabrication of vertical conductive interconnects in capped chips
KR100747007B1 (en) * 2005-05-31 2007-08-07 엘지이노텍 주식회사 Duplexer
US7936062B2 (en) 2006-01-23 2011-05-03 Tessera Technologies Ireland Limited Wafer level chip packaging
JP2007306172A (en) * 2006-05-10 2007-11-22 Tdk Corp Bandpass filter element, and high frequency module
US8604605B2 (en) 2007-01-05 2013-12-10 Invensas Corp. Microelectronic assembly with multi-layer support structure
JP2011014951A (en) * 2009-06-30 2011-01-20 Kyocera Kinseki Corp Piezoelectric oscillator
US8865606B2 (en) 2010-04-16 2014-10-21 Ivoclar Vivadent Ag Process for the preparation of dental restorations

Family Cites Families (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5438305A (en) * 1991-08-12 1995-08-01 Hitachi, Ltd. High frequency module including a flexible substrate
JPH05235688A (en) * 1992-02-20 1993-09-10 Hitachi Ltd Surface acoustic wave device and mobile radio terminal using same
US5422615A (en) * 1992-09-14 1995-06-06 Hitachi, Ltd. High frequency circuit device
US5459368A (en) * 1993-08-06 1995-10-17 Matsushita Electric Industrial Co., Ltd. Surface acoustic wave device mounted module
JP3301262B2 (en) * 1995-03-28 2002-07-15 松下電器産業株式会社 Surface acoustic wave device
JP3308759B2 (en) * 1995-04-10 2002-07-29 日本電気株式会社 Surface acoustic wave device
JP3139327B2 (en) * 1995-05-31 2001-02-26 株式会社村田製作所 High frequency composite parts
US5786738A (en) * 1995-05-31 1998-07-28 Fujitsu Limited Surface acoustic wave filter duplexer comprising a multi-layer package and phase matching patterns
DE19621353C2 (en) * 1995-05-31 2000-05-18 Fujitsu Ltd Duplexer and a method of making the same
JP3198252B2 (en) 1995-05-31 2001-08-13 富士通株式会社 Duplexer and manufacturing method thereof
JPH0998056A (en) * 1995-09-29 1997-04-08 Toshiba Corp Surface acoustic wave device
JPH09232904A (en) * 1996-02-28 1997-09-05 Oki Electric Ind Co Ltd Ceramic package for saw filter
JPH1032521A (en) * 1996-07-17 1998-02-03 Murata Mfg Co Ltd Duplexer
JP3222072B2 (en) * 1996-10-15 2001-10-22 富士通株式会社 Demultiplexer package
JPH10224174A (en) * 1997-01-31 1998-08-21 Sumitomo Kinzoku Electro Device:Kk Package for high-frequency device
JPH11127055A (en) * 1997-10-23 1999-05-11 Murata Mfg Co Ltd Composite electronic component
JPH11127052A (en) * 1997-10-24 1999-05-11 Murata Mfg Co Ltd Composite filter and radio equipment using it
JP3109477B2 (en) * 1998-05-26 2000-11-13 日本電気株式会社 Multi-chip module

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070170565A1 (en) * 2006-01-25 2007-07-26 Samsung Electronics Co., Ltd. RF module, multi RF module including the RF module, and method of manufacturing the RF module
US7675154B2 (en) * 2006-01-25 2010-03-09 Samsung Electronics Co., Ltd. RF module with multi-stack structure
US20080230859A1 (en) * 2006-04-20 2008-09-25 Mona Zaghloul Saw devices, processes for making them, and methods of use
US20100007444A1 (en) * 2006-04-20 2010-01-14 Anis Nurashikin Nordin GHz Surface Acoustic Resonators in RF-CMOS
US8143681B2 (en) 2006-04-20 2012-03-27 The George Washington University Saw devices, processes for making them, and methods of use
US20090114798A1 (en) * 2007-04-20 2009-05-07 Onur Tigli Circular Surface Acoustic Wave (SAW) Devices, Processes for Making Them, and Methods of Use
US20090124513A1 (en) * 2007-04-20 2009-05-14 Patricia Berg Multiplex Biosensor
US8018010B2 (en) * 2007-04-20 2011-09-13 The George Washington University Circular surface acoustic wave (SAW) devices, processes for making them, and methods of use
US8960004B2 (en) 2010-09-29 2015-02-24 The George Washington University Synchronous one-pole surface acoustic wave resonator

Also Published As

Publication number Publication date
EP0911965A2 (en) 1999-04-28
US6424233B1 (en) 2002-07-23
EP0911965A3 (en) 1999-05-26
US6252778B1 (en) 2001-06-26
JPH11127055A (en) 1999-05-11

Similar Documents

Publication Publication Date Title
US6252778B1 (en) Complex electronic component
US6456172B1 (en) Multilayered ceramic RF device
US5252882A (en) Surface acoustic wave device and its manufacturing method
KR100674793B1 (en) Multilayer ceramic device
KR100677005B1 (en) Integrated electronic circuit
EP1094538A2 (en) Multilayered ceramic RF device
WO1998019339A9 (en) Integrated electronic circuit
KR100711175B1 (en) High frequency circuit module and communication device
US6781484B2 (en) SAW filter module capable of being easily miniaturized
KR100541079B1 (en) Ceramic package and manufacturing method thereof
JPH09130103A (en) Band pass filter provided with multi-layered substrate-incorporated trap
JP2002094410A (en) Antenna switch module equipped with saw filter
JP3854095B2 (en) Multilayer circuit board
JPH05235689A (en) High frequency device
JP4399755B2 (en) High frequency switch module
JP2002158449A (en) High-frequency electronic circuit module and multilayer board therefor
JP4331634B2 (en) Antenna switching module and manufacturing method thereof
JP2000209120A (en) High frequency composite component and radio unit using it
JPH11126956A (en) Composite electronic parts
JPH11274876A (en) Low-pass filter and circuit board
JP2003163571A (en) Surface acoustic wave filter package
JPH09214202A (en) Dielectric filter
JP2002299829A (en) Composite electronic component
JPH05315835A (en) Voltage controlled oscillator and manufacture thereof
JP2003198320A (en) Package for acoustic surface wave filter

Legal Events

Date Code Title Description
STCF Information on status: patent grant

Free format text: PATENTED CASE

FPAY Fee payment

Year of fee payment: 4

FEPP Fee payment procedure

Free format text: PAYOR NUMBER ASSIGNED (ORIGINAL EVENT CODE: ASPN); ENTITY STATUS OF PATENT OWNER: LARGE ENTITY

FPAY Fee payment

Year of fee payment: 8

FPAY Fee payment

Year of fee payment: 12