CN116866791A - Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof - Google Patents

Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof Download PDF

Info

Publication number
CN116866791A
CN116866791A CN202310977468.5A CN202310977468A CN116866791A CN 116866791 A CN116866791 A CN 116866791A CN 202310977468 A CN202310977468 A CN 202310977468A CN 116866791 A CN116866791 A CN 116866791A
Authority
CN
China
Prior art keywords
magnet
magnetic circuit
magnetic
voice coil
ring magnet
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.)
Pending
Application number
CN202310977468.5A
Other languages
Chinese (zh)
Inventor
杨磊
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.)
Anhui Huayun Acoustics Technology Co ltd
Original Assignee
Anhui Huayun Acoustics Technology 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 Anhui Huayun Acoustics Technology Co ltd filed Critical Anhui Huayun Acoustics Technology Co ltd
Priority to CN202310977468.5A priority Critical patent/CN116866791A/en
Publication of CN116866791A publication Critical patent/CN116866791A/en
Pending legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R9/00Transducers of moving-coil, moving-strip, or moving-wire type
    • H04R9/06Loudspeakers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R9/00Transducers of moving-coil, moving-strip, or moving-wire type
    • H04R9/02Details
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R2400/00Loudspeakers
    • H04R2400/11Aspects regarding the frame of loudspeaker transducers

Landscapes

  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Audible-Bandwidth Dynamoelectric Transducers Other Than Pickups (AREA)

Abstract

The invention discloses a magnetic circuit vibration loudspeaker with a sandwich structure and a use method thereof, and belongs to the technical field of loudspeakers. The utility model provides a sandwich structure's magnetic circuit vibration loudspeaker, includes vibrating plate, shell fragment and basin frame, still includes the magnetic circuit subassembly, and it sets up in the inside of basin frame, the top at the basin frame is installed to the shell fragment. The magnetic circuit of vibration horn is composed of internal or external magnet, magnetic conducting sheet adhered to the magnet for conducting magnetic force, voice coil in the middle of magnetic conducting sheet for vibration up and down under the action of magnetic force line. Each group of magnetic circuits consists of an inner magnetic circuit and an outer magnetic circuit, and each group of washer consists of an inner washer and an outer washer, so that the upper magnetic circuit system and the lower magnetic circuit system can generate magnetic force lines. The magnetic lines of force of the upper magnetic circuit and the lower magnetic circuit are the same in direction and are magnetically conducted through the middle washer, so that the magnetic field of the middle magnetic circuit system is stronger, the voice coil is placed in the middle magnetic circuit, the force of the received magnetic field is larger, and the force of loudspeaker vibration is also larger.

Description

Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof
Technical Field
The invention relates to the technical field of speakers, in particular to a magnetic circuit vibration horn with a sandwich structure and a using method thereof.
Background
The speaker is a transducer device for converting an electric signal into an acoustic signal, and the performance of the speaker has a great influence on sound quality, and the speaker is the weakest device in the earphone and the sound equipment, and is the most important component for sound effect. The variety of the loudspeaker is various, the price is quite different, and the audio electric energy makes the cone or the diaphragm vibrate and generate resonance (resonance) with the surrounding air to make sound through electromagnetic, piezoelectric or electrostatic effect;
the Chinese patent with publication number CN201248131Y discloses a moving magnet loudspeaker, wherein the voice coil part on the loudspeaker cone is removed, a permanent magnet or rare earth permanent magnet is changed into be tightly combined with a dustproof cover at the middle part of the loudspeaker cone, a loudspeaker voice coil frame is directly fixed at the middle part position in an antimagnetic cover at the rear part of a loudspeaker cone frame, and the moving magnet loudspeaker is used for generating an excitation magnetic field for driving the permanent magnet at the center of the loudspeaker cone to vibrate so as to drive the loudspeaker cone to emit sound waves, so that the broadband electroacoustic conversion effect of the loudspeaker can be technically improved.
1) In the above patent, the magnetic circuit of the vibration horn is composed of an inner magnet or an outer magnet, a magnetic conduction sheet is bonded on the magnet to conduct magnetic conduction, the voice coil is positioned in the middle of the magnetic conduction sheet and vibrates up and down under the action of magnetic force lines, and the vibration efficiency is relatively low;
2) The vibration horn consists of a voice coil and a group of magnetic circuits, the voice coil vibrates up and down under the action of magnetic force lines, and the vibration force is relatively low; therefore, the existing requirements are not met, and a magnetic circuit vibration loudspeaker with a sandwich structure is provided.
Disclosure of Invention
The invention aims to provide a magnetic circuit vibration loudspeaker with a sandwich structure, which can solve the problems in the prior art.
In order to achieve the above purpose, the present invention provides the following technical solutions: the utility model provides a sandwich structure's magnetic circuit vibration loudspeaker, includes vibrating plate, shell fragment and basin frame, still includes magnet assembly, and it sets up in the inside of basin frame, the top at the basin frame is installed to the shell fragment, and the shell fragment passes through the draw-in groove with the basin frame to be connected, the top at the shell fragment is installed to the vibrating plate, and the vibrating plate is connected with the shell fragment laminating.
Preferably, the magnetic circuit assembly comprises a first double-ring magnet and a second double-ring magnet, a washer is arranged between the first double-ring magnet and the second double-ring magnet, the washer is respectively attached to the first double-ring magnet and the second double-ring magnet, and the first double-ring magnet is located above the washer.
Preferably, the inner sides of the first double-ring magnet and the second double-ring magnet are provided with a first voice coil, the first voice coil is connected with the basin frame, and the first double-ring magnet is connected with the elastic sheet.
Preferably, the first voice coil is connected with the elastic sheet, and the second double-ring magnet is connected with the basin frame.
Preferably, the first tricyclic magnet, the second tricyclic magnet and the third tricyclic magnet of the magnetic circuit assembly are respectively attached to and connected with the first tricyclic magnet and the third tricyclic magnet, and the first tricyclic magnet is located above the second tricyclic magnet.
Preferably, the inner sides of the first tricyclic magnet, the second tricyclic magnet and the third tricyclic magnet are provided with a first voice coil and a second voice coil, the first voice coil and the second voice coil are connected with the basin frame, and the first tricyclic magnet is connected with the elastic sheet.
Preferably, the first voice coil and the second voice coil are connected with the elastic sheet, and the third ring magnet is connected with the basin frame.
The application method of the magnetic circuit vibration loudspeaker with the sandwich structure comprises the following steps:
step one: the magnetic circuit assembly is arranged in the basin frame and comprises two magnetic circuit structures, namely a double-ring magnet and a triple-ring magnet, wherein the magnetic circuit structure formed by the double-ring magnet consists of two groups of double-ring magnets and one group of warriors, and the magnetic circuit structure formed by the triple-ring magnets consists of six groups of magnets and two voice coils;
double ring magnet:
the magnetic circuit comprises an inner magnetic field and an outer magnetic field, the washer is divided into an inner group and an outer group, the upper magnetic circuit system and the lower magnetic circuit system can generate magnetic force lines, wherein the magnetic force lines of the upper magnetic circuit and the lower magnetic circuit have the same direction and are magnetically conducted through the middle washer, the magnetic field of the middle magnetic circuit system is stronger, and the voice coil is placed in the middle magnetic circuit;
a tricyclic magnet:
each group of magnetic circuits is composed of inner magnetic circuits and outer magnetic circuits, six groups of magnetic circuit systems can generate magnetic force lines, a voice coil is arranged in the middle of each group of magnetic circuits, leads of the voice coils are connected onto a circuit board on the back of the loudspeaker in a serial mode, magnetic forces received between the two voice coils can be overlapped, and the vibration force is increased by two times;
step two: in the magnetic circuit structure of the double-ring magnet and the triple-ring magnet, the distribution mode of the voice coil and the magnets comprises:
s1: two kinds of voice coils are bonded with the basin frame, the magnet is bonded with the elastic sheet, magnetic field force is generated after the voice coils are electrified, the magnet drives the vibrating plate to vibrate through the elastic sheet, and the vibrating plate vibrates through the sticking of the eardrum on the surface of the bone, so that sound is transmitted into the sound ear;
s2: the magnet is different with the basin frame bonding, the voice coil is bonded with the elastic sheet, magnetic field force is generated after the voice coil is electrified, the voice coil drives the vibrating plate to vibrate through the elastic sheet, and the vibrating plate vibrates on the surface of the bone through the eardrum, so that sound is transmitted into the sound ear.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention discloses a magnetic circuit structure which consists of two groups of magnetic circuits and one group of warfarin. Each group of magnetic circuits consists of an inner magnetic circuit and an outer magnetic circuit, and each group of washer consists of an inner washer and an outer washer, so that the upper magnetic circuit system and the lower magnetic circuit system can generate magnetic force lines. The magnetic lines of force of the upper magnetic circuit and the lower magnetic circuit are the same in direction and are magnetically conducted through the middle washer, so that the magnetic field of the middle magnetic circuit system is stronger, the voice coil is placed in the middle magnetic circuit, the force of the received magnetic field is larger, and the force of loudspeaker vibration is also larger;
2. the magnetic circuit structure of the invention consists of six groups of magnetic circuits and two voice coils, each group of magnetic circuits consists of inner and outer magnets, so that the six groups of magnetic circuit systems can generate magnetic force lines, one voice coil is placed in the middle of each group of magnetic circuits, the leads of the voice coils are connected on the circuit board at the back of the loudspeaker in a parallel or serial mode, the advantages of the two voice coils are equivalent to the superposition of the force applied by the voice coils, and the vibration force is increased by two times.
Drawings
FIG. 1 is an overall front view of the present invention;
FIG. 2 is a schematic diagram of a dual ring magnet according to the present invention;
FIG. 3 is a schematic view of a first dual ring magnet mounting structure according to the present invention;
FIG. 4 is a schematic view of a second dual ring magnet mounting structure according to the present invention;
FIG. 5 is a schematic diagram of the magnetic direction structure of a dual-ring magnet according to the present invention;
FIG. 6 is a schematic diagram of a three-ring magnet according to the present invention;
FIG. 7 is a schematic view of a first tricyclic magnet mounting structure of the present invention;
FIG. 8 is a schematic view of a third tricyclic magnet mounting structure of the present invention;
fig. 9 is a schematic view of the magnetic direction structure of the tricyclic magnet of the present invention.
In the figure: 1. a vibration plate; 2. a spring plate; 3. a basin stand; 4. a first voice coil; 5. a magnet assembly; 6. washer; 401. a second voice coil; 5011. a first tricyclic magnet; 5012. a second tricyclic magnet; 5013. a third tricyclic magnet; 5021. a first double-ring magnet; 5022. and a second double-ring magnet.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Example 1:
please refer to fig. 1, a sandwich structure's magnetic circuit vibration loudspeaker, including vibrating plate 1, shell fragment 2 and basin frame 3, still include magnet assembly 5, it sets up in the inside of basin frame 3, and shell fragment 2 installs at the top of basin frame 3, and shell fragment 2 passes through the draw-in groove with basin frame 3 to be connected, and vibrating plate 1 installs in the top of shell fragment 2, and vibrating plate 1 is connected with the laminating of shell fragment 2.
Referring to fig. 2-3 and 5, the magnetic circuit assembly 5 includes a first double-ring magnet 5021 and a second double-ring magnet 5022, a washer 6 is disposed between the first double-ring magnet 5021 and the second double-ring magnet 5022, the washer 6 is respectively attached to the first double-ring magnet 5021 and the second double-ring magnet 5022, the first double-ring magnet 5021 is located above the washer 6, a first voice coil 4 is disposed inside the first double-ring magnet 5021 and the second double-ring magnet 5022, the first voice coil 4 is connected with a basin frame 3, and the first double-ring magnet 5021 is connected with a spring plate 2;
the voice coil is fixedly bonded with the basin frame 3, the magnet is bonded with the elastic sheet 2, magnetic field force is generated after the voice coil is electrified, the magnet is driven to vibrate up and down, the magnet drives the vibrating plate 1 to vibrate through the elastic sheet 2, and the vibrating plate 1 is attached to the surface of a bone through the eardrum to vibrate, so that sound is transmitted into the sound ear.
Example 2:
please refer to fig. 1, a sandwich structure's magnetic circuit vibration loudspeaker, including vibrating plate 1, shell fragment 2 and basin frame 3, still include magnet assembly 5, it sets up in the inside of basin frame 3, and shell fragment 2 installs at the top of basin frame 3, and shell fragment 2 passes through the draw-in groove with basin frame 3 to be connected, and vibrating plate 1 installs in the top of shell fragment 2, and vibrating plate 1 is connected with the laminating of shell fragment 2.
Referring to fig. 2 and 4-5, the magnetic circuit assembly 5 includes a first double-ring magnet 5021 and a second double-ring magnet 5022, a washer 6 is disposed between the first double-ring magnet 5021 and the second double-ring magnet 5022, the washer 6 is respectively attached to the first double-ring magnet 5021 and the second double-ring magnet 5022, the first double-ring magnet 5021 is located above the washer 6, a first voice coil 4 is disposed inside the first double-ring magnet 5021 and the second double-ring magnet 5022, the first voice coil 4 is connected with the spring plate 2, and the second double-ring magnet 5022 is connected with the basin stand 3;
the magnet is fixed to the frame 3, the voice coil is fixed to the spring plate 2, magnetic force is generated after the voice coil is electrified, the voice coil drives the vibration plate 1 to vibrate through the spring plate 2, and the vibration plate 1 vibrates on the surface of the bone through the earmuff, so that sound is transmitted into the sound ear.
Based on the embodiment 1-2, the magnetic circuit structure is composed of two groups of magnets and one group of washer 6, each group of magnets is composed of inner and outer magnets, each group of washer 6 is divided into two groups, so that the upper and lower magnetic circuit systems can generate magnetic force lines, and the magnetic circuit system comprises an outer magnet 1 and an inner magnet 1, washer 1 and washer 2, and the outer magnet 2 and the inner magnet 2 are combined;
the magnetic directions of the outer magnet 1 and the inner magnet 1, the outer magnet 2 and the inner magnet 2 are up-and-down magnetic, the upper surface is N (S), the lower surface is S (N), the magnetism of the inner magnet and the outer magnet is opposite, and the magnetism of the up-and-down magnet is opposite;
the magnetic force lines generated by the inner magnetic force and the outer magnetic force of the upper magnetic circuit are conducted by the washer 6, and the magnetic force lines generated by the inner magnetic force and the outer magnetic force of the lower magnetic circuit are conducted by the washer 6, so that the magnetic field strength of the washer 6 is doubled, the magnetic field of the middle magnetic circuit system is stronger, the voice coil is placed in the middle magnetic circuit, the received magnetic field force is larger, and the force of loudspeaker vibration is also larger
Example 3:
please refer to fig. 1, a sandwich structure's magnetic circuit vibration loudspeaker, including vibrating plate 1, shell fragment 2 and basin frame 3, still include magnetic circuit assembly 5, it sets up in the inside of basin frame 3, and shell fragment 2 installs at the top of basin frame 3, and shell fragment 2 passes through the draw-in groove with basin frame 3 to be connected, and vibrating plate 1 installs in the top of shell fragment 2, and vibrating plate 1 is connected with the laminating of shell fragment 2.
Referring to fig. 6-7 and 9, the magnetic circuit assembly 5 includes a first three-ring magnet 5011, a second three-ring magnet 5012 and a third three-ring magnet 5013, the second three-ring magnet 5012 is respectively attached to the first three-ring magnet 5011 and the third three-ring magnet 5013, the first three-ring magnet 5011 is located above the second three-ring magnet 5012, the inner sides of the first three-ring magnet 5011, the second three-ring magnet 5012 and the third three-ring magnet 5013 are provided with a first voice coil 4 and a second voice coil 401, the first voice coil 4 and the second voice coil 401 are connected with the basin stand 3, and the first three-ring magnet 5011 is connected with the elastic sheet 2;
the voice coil is fixedly bonded with the basin frame 3, the magnet is bonded with the elastic sheet 2, magnetic field force is generated after the voice coil is electrified, the magnet is driven to vibrate up and down, the magnet drives the vibrating plate 1 to vibrate through the elastic sheet 2, and the vibrating plate 1 is attached to the surface of a bone through the eardrum to vibrate, so that sound is transmitted into the sound ear.
Example 4:
please refer to fig. 1, a sandwich structure's magnetic circuit vibration loudspeaker, including vibrating plate 1, shell fragment 2 and basin frame 3, still include magnet assembly 5, it sets up in the inside of basin frame 3, and shell fragment 2 installs at the top of basin frame 3, and shell fragment 2 passes through the draw-in groove with basin frame 3 to be connected, and vibrating plate 1 installs in the top of shell fragment 2, and vibrating plate 1 is connected with the laminating of shell fragment 2.
Referring to fig. 6 and 8-9, the magnetic circuit assembly 5 includes a first three-ring magnet 5011, a second three-ring magnet 5012 and a third three-ring magnet 5013, the second three-ring magnet 5012 is respectively attached to the first three-ring magnet 5011 and the third three-ring magnet 5013, the first three-ring magnet 5011 is located above the second three-ring magnet 5012, the inner sides of the first three-ring magnet 5011, the second three-ring magnet 5012 and the third three-ring magnet 5013 are provided with a first voice coil 4 and a second voice coil 401, the first voice coil 4 and the second voice coil 401 are connected with the spring plate 2, and the third three-ring magnet 5013 is connected with the basin stand 3;
the magnet is different with the bonding of basin frame 3, and voice coil and shell fragment 2 bond, produce magnetic field force after the voice coil circular telegram, and the voice coil passes through shell fragment 2 and drives vibration board 1 vibration, and vibration board 1 is through the auricle subsides on the bone surface vibration to in passing sound to the sound ear.
Based on embodiments 3-4, the magnetic circuit structure is composed of six groups of magnets and two voice coils, each group of magnets is composed of inner and outer magnets, so that the six groups of magnetic circuit systems can generate magnetic force lines, one voice coil is placed in the middle of each group of magnetic circuits, and the lead wires of the voice coils are connected onto the circuit board at the back of the loudspeaker in a parallel or serial mode. The advantages of the two voice coils are equivalent to superposition of forces applied to the voice coils, and the vibration force is increased by two times;
in addition, in order to simplify the structure, the structure is simple, the cost is low, but the performance is not good for six magnetic circuits, as long as the middle inner and outer magnetism is adopted, or as long as one of the middle magnetic circuit system and the upper and lower magnetic circuit system is adopted;
the magnetic circuit system is formed by combining six groups of magnetic circuits, namely a middle magnet 1, an inner magnet 1, a middle magnet 2, an inner magnet 2, a middle magnet 3, an inner magnet 3, a middle magnet 1, an outer magnet 1, a middle magnet 2, an outer magnet 2, a middle magnet 3, an outer magnet 3;
the magnetic directions of the outer magnet 1, the middle magnet 2 and the inner magnet 1 are upper and lower magnetism, the upper surface is N (S), and the lower surface is S (N);
the magnetic directions of the outer magnet 2, the middle magnet 1 and the inner magnet 2 are upper and lower magnetism, the upper surface is N (S), and the lower surface is S (N).
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. The utility model provides a sandwich structure's magnetic circuit vibration loudspeaker, includes vibrating plate (1), shell fragment (2) and basin frame (3), its characterized in that;
still include magnetic circuit assembly (5), it sets up in the inside of basin frame (3), top at basin frame (3) is installed to shell fragment (2), and shell fragment (2) are connected through the draw-in groove with basin frame (3), vibration board (1) are installed in the top of shell fragment (2), and vibration board (1) are connected with shell fragment (2) laminating.
2. The sandwich structured magnetic circuit vibration horn of claim 1, wherein: magnet subassembly (5) are including first dicyclo magnet (5021) and second dicyclo magnet (5022), are provided with washer (6) between first dicyclo magnet (5021) and the second dicyclo magnet (5022), washer (6) are connected with first dicyclo magnet (5021) and the laminating of second dicyclo magnet (5022) respectively, and first dicyclo magnet (5021) is located the top of washer (6).
3. A sandwich structured magnetic circuit vibration horn as claimed in claim 2, wherein: the inner sides of the first double-ring magnet (5021) and the second double-ring magnet (5022) are provided with a first voice coil (4), the first voice coil (4) is connected with the basin frame (3), and the first double-ring magnet (5021) is connected with the elastic sheet (2).
4. A sandwich structured magnetic circuit vibration horn according to claim 3, wherein: the first voice coil (4) is connected with the elastic sheet (2), and the second double-ring magnet (5022) is connected with the basin frame (3).
5. The sandwich structured magnetic circuit vibration horn of claim 4, wherein: the magnet assembly (5) is characterized in that a first tricyclic magnet (5011), a second tricyclic magnet (5012) and a third tricyclic magnet (5013) are arranged on the magnet assembly, the second tricyclic magnet (5012) is respectively attached to the first tricyclic magnet (5011) and the third tricyclic magnet (5013), and the first tricyclic magnet (5011) is located above the second tricyclic magnet (5012).
6. The sandwich structured magnetic circuit vibration horn of claim 5, wherein: the novel voice coil loudspeaker is characterized in that a first voice coil (4) and a second voice coil (401) are arranged on the inner sides of the first three-ring magnet (5011), the second three-ring magnet (5012) and the third three-ring magnet (5013), the first voice coil (4) and the second voice coil (401) are connected with a basin frame (3), and the first three-ring magnet (5011) is connected with an elastic sheet (2).
7. The sandwich structured magnetic circuit vibration horn of claim 6, wherein: the first voice coil (4) and the second voice coil (401) are connected with the elastic sheet (2), and the third three-ring magnet (5013) is connected with the basin frame (3).
8. The application method of the sandwich-structured magnetic circuit vibration horn is realized based on the sandwich-structured magnetic circuit vibration horn as claimed in claim 7, and comprises the following steps:
step one: the magnetic circuit assembly (5) is arranged in the basin frame (3), the magnet assembly (5) comprises two magnetic circuit structures which are respectively a double-ring magnet and a triple-ring magnet, wherein the magnetic circuit structure formed by the double-ring magnet consists of two groups of double-ring magnets and one group of washer (6), and the magnetic circuit structure formed by the triple-ring magnet consists of six groups of magnets and two voice coils;
double ring magnet:
the magnetic circuit comprises an inner magnetic field and an outer magnetic field, the washer (6) is divided into an inner group and an outer group, the upper magnetic circuit system and the lower magnetic circuit system can generate magnetic force lines, wherein the magnetic force lines of the upper magnetic circuit and the lower magnetic circuit have the same direction and are magnetically conducted through the middle washer (6), the magnetic field of the middle magnetic circuit system is stronger, and the voice coil is placed in the middle magnetic circuit;
a tricyclic magnet:
each group of magnetic circuits is composed of inner magnetic circuits and outer magnetic circuits, six groups of magnetic circuit systems can generate magnetic force lines, a voice coil is arranged in the middle of each group of magnetic circuits, leads of the voice coils are connected onto a circuit board on the back of the loudspeaker in a serial mode, magnetic forces received between the two voice coils can be overlapped, and the vibration force is increased by two times;
step two: in the magnetic circuit structure of the double-ring magnet and the triple-ring magnet, the distribution mode of the voice coil and the magnets comprises:
s1: two kinds of voice coils are bonded with a basin frame (3) and are fixed, a magnet is bonded with an elastic sheet (2), magnetic field force is generated after the voice coils are electrified, the magnet drives a vibrating plate (1) to vibrate through the elastic sheet (2), and the vibrating plate (1) is attached to the surface of a bone through an earshell to vibrate, so that sound is transmitted into a sound ear;
s2: the magnet is different with the basin frame (3) bonding, the voice coil and the elastic sheet (2) are bonded, magnetic field force is generated after the voice coil is electrified, the voice coil drives the vibrating plate (1) to vibrate through the elastic sheet (2), and the vibrating plate (1) is attached to the surface of the bone through the earshell to vibrate, so that sound is transmitted into the sound ear.
CN202310977468.5A 2023-08-04 2023-08-04 Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof Pending CN116866791A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202310977468.5A CN116866791A (en) 2023-08-04 2023-08-04 Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202310977468.5A CN116866791A (en) 2023-08-04 2023-08-04 Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof

Publications (1)

Publication Number Publication Date
CN116866791A true CN116866791A (en) 2023-10-10

Family

ID=88226943

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202310977468.5A Pending CN116866791A (en) 2023-08-04 2023-08-04 Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof

Country Status (1)

Country Link
CN (1) CN116866791A (en)

Similar Documents

Publication Publication Date Title
US7447322B2 (en) Speaker having a transparent panel
CN202085300U (en) Mini loudspeaker with amplifiers
CN204741562U (en) Speaker unit
CN212086479U (en) Loudspeaker
CN220570682U (en) Magnetic circuit vibration loudspeaker of sandwich structure
CN1111896A (en) Method for improving property of loudspeaker and double magnetic field double push-pull loudspeaker
CN201467426U (en) Composite vibrating membrane for miniature receiver or loudspeaker
CN2266243Y (en) Coaxial double-field double-voice coil loudspeaker
WO2006078247A1 (en) Speaker having a transparent panel
CN116866791A (en) Magnetic circuit vibration loudspeaker with sandwich structure and application method thereof
CN204616080U (en) Speaker unit
CN211509282U (en) Vibration loudspeaker and equipment applying same
CN202334875U (en) Vibration speaker
CN202395975U (en) Speaker structure for miniature horn and earphone
CN216700307U (en) Multi-voice coil large-amplitude loudspeaker
CN218450528U (en) Loudspeaker of magnet and magnetic conductive sheet combination vibration
CN214960101U (en) FPCB centering support piece outgoing line type earphone speaker
CN213186402U (en) Flat double-sided loudspeaker
KR100769885B1 (en) The speaker
CN2230070Y (en) Loud-speaker with double voice coil, double magnetic field and double push-pull
CN213638200U (en) Increase speaker of low frequency channel
CN2072300U (en) Surface acting plane loudspeaker
CN101400010A (en) Novel audio converter
CN219227807U (en) Back-to-back loudspeaker
CN221043213U (en) Full-frequency high-power plane loudspeaker

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination