CN113758651A - Quality detection method for processing production of buzzer for communication equipment - Google Patents

Quality detection method for processing production of buzzer for communication equipment Download PDF

Info

Publication number
CN113758651A
CN113758651A CN202111008216.9A CN202111008216A CN113758651A CN 113758651 A CN113758651 A CN 113758651A CN 202111008216 A CN202111008216 A CN 202111008216A CN 113758651 A CN113758651 A CN 113758651A
Authority
CN
China
Prior art keywords
buzzer
passive
active
test
steps
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
CN202111008216.9A
Other languages
Chinese (zh)
Inventor
钱苏文
钱江萍
李欢
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.)
Jiangsu Xinchanglong Electromechanical Co ltd
Original Assignee
Jiangsu Xinchanglong Electromechanical 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 Jiangsu Xinchanglong Electromechanical Co ltd filed Critical Jiangsu Xinchanglong Electromechanical Co ltd
Priority to CN202111008216.9A priority Critical patent/CN113758651A/en
Publication of CN113758651A publication Critical patent/CN113758651A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M3/00Investigating fluid-tightness of structures
    • G01M3/02Investigating fluid-tightness of structures by using fluid or vacuum
    • G01M3/26Investigating fluid-tightness of structures by using fluid or vacuum by measuring rate of loss or gain of fluid, e.g. by pressure-responsive devices, by flow detectors
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M3/00Investigating fluid-tightness of structures
    • G01M3/02Investigating fluid-tightness of structures by using fluid or vacuum
    • G01M3/04Investigating fluid-tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/84Systems specially adapted for particular applications
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/003Environmental or reliability tests

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Examining Or Testing Airtightness (AREA)

Abstract

The invention discloses a quality detection method for processing and producing a buzzer for communication equipment, which sequentially comprises the following steps: a material preparation step; an appearance detection step; testing the electroacoustic characteristics of the active buzzer; testing the electroacoustic characteristics of the passive buzzer; preparing waterproof tests of the active buzzer and the passive buzzer; a waterproof test connection step of the active buzzer and the passive buzzer; testing the waterproof and airtight performance of the active buzzer and the passive buzzer; the method comprises the steps of testing the active buzzer and the passive buzzer in a waterproof and soaking mode, and testing the active buzzer and the passive buzzer in a waterproof and water mist mode. According to the quality detection method for processing and producing the buzzer for the communication equipment, the buzzer is tested through various test environments of water inflow and water mist, the applicable condition of the buzzer in outdoor rainy days, water immersion and humid environments can be tested, the applicable environment of the buzzer can be judged, and the method is more stable and reasonable.

Description

Quality detection method for processing production of buzzer for communication equipment
Technical Field
The invention relates to the technical field of buzzer production detection, in particular to a quality detection method for processing and production of a buzzer for communication equipment.
Background
The buzzer is an electronic buzzer with an integrated structure, adopts direct current voltage for power supply, and is widely applied to electronic products such as computers, printers, copiers, alarms, electronic toys, automobile electronic equipment, communication equipment, timers and the like as a sounding device. The buzzer is mainly divided into two types, namely a piezoelectric buzzer and an electromagnetic buzzer. The piezoelectric buzzer is formed by adhering a piezoelectric material to a metal sheet, when a voltage is applied to two ends of the piezoelectric material and the metal sheet, the piezoelectric material and the metal sheet generate mechanical deformation to generate sound due to a piezoelectric effect, and the electromagnetic buzzer is different from the piezoelectric buzzer, is an electronic sound device which generates sound by utilizing the action of an electromagnetic coil on the piezoelectric material and is used for serving as a sound generating device for an electronic product.
However, the quality detection method in the processing production of the buzzer for the communication equipment in the market at present cannot meet the requirements of people due to relatively imperfect technology, and in the prior art, the buzzer for the communication equipment often only performs certain tests on the circuit and decibel of the buzzer when performing quality detection, so that the detection of the waterproof performance of the buzzer is ignored, the produced buzzer cannot be widely applied to the market, and the buzzer is damaged after being used for a period of time, and the normal use of a user is influenced, and unnecessary loss and waste are caused. Therefore, we propose a quality inspection method for processing production of a buzzer for communication equipment so as to solve the problems set forth above.
Disclosure of Invention
The invention aims to provide a quality detection method for processing and producing a buzzer for communication equipment, which solves the problems that the quality detection method for processing and producing the buzzer for the communication equipment in the prior art is relatively incomplete in technology and cannot meet the requirements of people, and in the prior art, the buzzer for the communication equipment is often subjected to certain tests on the circuit and decibels of the buzzer during quality detection, so that the detection of the waterproof performance of the buzzer is ignored, the produced buzzer cannot be widely applied to the market, and the normal use of a user is influenced and unnecessary loss and waste of the user are caused due to the fact that the buzzer is damaged after the buzzer is used for a period of time.
In order to achieve the purpose, the invention provides the following technical scheme: a quality detection method for processing and producing a buzzer for communication equipment sequentially comprises the following steps:
(1) material preparation: preparing an active buzzer, a passive buzzer, a set of air tightness detector equipment and a set of buzzer tester equipment for standby;
(2) and (3) appearance detection: performing simple and convenient detection on the appearances and pins of the active buzzer and the passive buzzer in the step (1) through observation, preventing damage from influencing the following test, and then waiting for standby;
(3) testing the electroacoustic characteristics of the active buzzer: connecting a stitch below the active buzzer in the step (1) with a direct current signal output test connecting line of a buzzer tester, then sending a direct current signal through the tester, receiving a sound source sent by the active buzzer through a microphone, and then collecting and processing data through a computer;
(4) testing the electroacoustic characteristics of the passive buzzer: connecting a pin of the passive buzzer in the step (1) with an alternating current signal output test connecting line of a buzzer tester, sending an alternating current signal through the tester, and then collecting and processing data with the step (3);
(5) the waterproof test preparation steps of the active buzzer and the passive buzzer are as follows: taking the active buzzer and the passive buzzer which are subjected to the electro-acoustic characteristic test in the step (3) and the step (4) down from the test connecting line, starting the prepared air tightness detector equipment in the step (1), and waiting for standby;
(6) the waterproof test connection steps of the active buzzer and the passive buzzer are as follows: placing the active buzzer and the passive buzzer taken out in the step (5) in a test fixture of the air tightness detector, and connecting an air outlet at the bottom of the test fixture to a test port of the air tightness detector for standby;
(7) the waterproof and airtight testing steps of the active buzzer and the passive buzzer are as follows: starting air tightness detection equipment, wherein the test is divided into a positive pressure test and a negative pressure test, the positive pressure test comprises the steps of air intake, stabilization and test, and the negative pressure test comprises the steps of suction, stabilization and test;
(8) the waterproof immersion test steps of the active buzzer and the passive buzzer are as follows: electrifying the active buzzer and the passive buzzer to detect whether the workpiece can be normally used, then taking down the active buzzer and the passive buzzer, soaking the active buzzer and the passive buzzer in water, taking out the active buzzer and the passive buzzer, wiping the water on the surface, electrifying again to detect, and observing whether the buzzer discharges water;
(9) the method comprises the following steps of testing the waterproof water mist of an active buzzer and a passive buzzer: and electrifying the active buzzer and the passive buzzer for testing, taking down the active buzzer and the passive buzzer, placing the active buzzer and the passive buzzer in the sealed and humid space, and taking out the active buzzer and the passive buzzer for electrifying detection again.
Preferably, the buzzer tester in the step (1) adopts AWA 6128B.
Preferably, the direct current voltage output by the buzzer tester in the step (3) is 0-10V, the frequency of the active buzzer is 20 Hz-20000 Hz, and the measuring time is controlled to be 1-5 s.
Preferably, the amplitude range of the passive buzzer in the step (4) is 20dB to 130dB, and the type of the signal output by the buzzer tester is a sine wave or a square wave.
Preferably, the pumping time in the step (7) is 5s, the air inlet time is 5s, the stabilizing time is 2-5 s, and the testing time is 3-7 s.
Preferably, the test pressure in the step (7) is 8-11 kpa, and the maximum allowable leakage amount is 0-0.3 kpa.
Preferably, the humidity of the closed humid space in the step (9) is 30% -90%, and the testing time is 30 min-2 h.
Compared with the prior art, the invention has the beneficial effects that: the quality detection method for processing and producing the buzzer for the communication equipment comprises the following steps:
(1) the initial detection is carried out on the test product through the appearance detection, so that the damage in the use process can be prevented, the detection efficiency and progress are prevented from being delayed, and the detection and the test are carried out by adopting two active buzzers and a passive buzzer, so that which one of the active buzzer and the passive buzzer can be more suitable for communication equipment, and the method is more practical;
(2) the airtightness detection equipment is used for detecting the airtightness of the buzzer, so that whether the airtightness performance of the buzzer reaches the standard can be detected, the buzzer can be suitable for different working conditions, and the phenomenon that the service life of the buzzer is reduced in an inapplicable environment to cause unnecessary loss is prevented;
(3) the buzzer is tested through various test environments of water inflow and water mist, the applicable conditions of the buzzer in outdoor rainy days, water immersion and humid environments can be tested, the applicable environment of the buzzer can be judged, and the buzzer is more stable and reasonable.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example one
The invention provides a technical scheme that: a quality detection method for processing and producing a buzzer for communication equipment sequentially comprises the following steps:
(1) material preparation: preparing a group of active buzzers, passive buzzers, air tightness detector equipment and a group of buzzer tester equipment, and waiting for standby application, wherein the buzzer tester adopts AWA 6128B;
(2) and (3) appearance detection: performing simple and convenient detection on the appearances and pins of the active buzzer and the passive buzzer in the step (1) through observation, preventing damage from influencing the following test, and then waiting for standby;
(3) testing the electroacoustic characteristics of the active buzzer: connecting a stitch below the active buzzer in the step (1) with a direct current signal output test connecting line of a buzzer tester, then sending a direct current signal through the tester, receiving a sound source sent by the active buzzer through a microphone, and then collecting and processing data through a computer, wherein the direct current voltage output by the buzzer tester is 2V, the frequency of the active buzzer is 5000Hz, and the measurement time is controlled to be 1 s;
(4) testing the electroacoustic characteristics of the passive buzzer: connecting a pin of the passive buzzer in the step (1) with an alternating current signal output test connecting line of a buzzer tester, sending an alternating current signal through the tester, and then collecting and processing data with the step (3), wherein the amplitude range of the passive buzzer is 20dB, and the type of the signal output by the buzzer tester is sine wave;
(5) the waterproof test preparation steps of the active buzzer and the passive buzzer are as follows: taking the active buzzer and the passive buzzer which are subjected to the electro-acoustic characteristic test in the step (3) and the step (4) down from the test connecting line, starting the prepared air tightness detector equipment in the step (1), and waiting for standby;
(6) the waterproof test connection steps of the active buzzer and the passive buzzer are as follows: placing the active buzzer and the passive buzzer taken out in the step (5) in a test fixture of the air tightness detector, and connecting an air outlet at the bottom of the test fixture to a test port of the air tightness detector for standby;
(7) the waterproof and airtight testing steps of the active buzzer and the passive buzzer are as follows: starting air tightness detection equipment, wherein the test is divided into a positive pressure test part and a negative pressure test part, the positive pressure test step comprises air inlet, stabilization and test, the negative pressure test step comprises suction, stabilization and test, the suction time is 5s, the air inlet time is 5s, the stabilization time is 2s, the test time is 7s, the test pressure is 8kpa, and the maximum allowable leakage amount is 0 kpa;
(8) the waterproof immersion test steps of the active buzzer and the passive buzzer are as follows: electrifying the active buzzer and the passive buzzer to detect whether the workpiece can be normally used, then taking down the active buzzer and the passive buzzer, soaking the active buzzer and the passive buzzer in water, taking out the active buzzer and the passive buzzer, wiping the water on the surface, electrifying again to detect, and observing whether the buzzer discharges water;
(9) the method comprises the following steps of testing the waterproof water mist of an active buzzer and a passive buzzer: and (3) electrifying the active buzzer and the passive buzzer for testing, taking down the active buzzer and the passive buzzer, placing the active buzzer and the passive buzzer in the closed humid space, taking out the active buzzer and the passive buzzer, electrifying for detecting again, wherein the humidity of the closed humid space is 30%, and the testing time is 2 h.
Example two
The invention provides a technical scheme that: a quality detection method for processing and producing a buzzer for communication equipment sequentially comprises the following steps:
(1) material preparation: preparing a group of active buzzers, passive buzzers, air tightness detector equipment and a group of buzzer tester equipment, and waiting for standby application, wherein the buzzer tester adopts AWA 6128B;
(2) and (3) appearance detection: performing simple and convenient detection on the appearances and pins of the active buzzer and the passive buzzer in the step (1) through observation, preventing damage from influencing the following test, and then waiting for standby;
(3) testing the electroacoustic characteristics of the active buzzer: connecting a stitch below the active buzzer in the step (1) with a direct current signal output test connecting line of a buzzer tester, then sending a direct current signal through the tester, receiving a sound source sent by the active buzzer through a microphone, and then collecting and processing data through a computer, wherein the direct current voltage output by the buzzer tester is 5V, the frequency of the active buzzer is 10000Hz, and the measurement time is controlled to be 3 s;
(4) testing the electroacoustic characteristics of the passive buzzer: connecting a pin of the passive buzzer in the step (1) with an alternating current signal output test connecting line of a buzzer tester, sending an alternating current signal through the tester, and then collecting and processing data with the step (3), wherein the amplitude range of the passive buzzer is 70dB, and the type of the signal output by the buzzer tester is a sine wave;
(5) the waterproof test preparation steps of the active buzzer and the passive buzzer are as follows: taking the active buzzer and the passive buzzer which are subjected to the electro-acoustic characteristic test in the step (3) and the step (4) down from the test connecting line, starting the prepared air tightness detector equipment in the step (1), and waiting for standby;
(6) the waterproof test connection steps of the active buzzer and the passive buzzer are as follows: placing the active buzzer and the passive buzzer taken out in the step (5) in a test fixture of the air tightness detector, and connecting an air outlet at the bottom of the test fixture to a test port of the air tightness detector for standby;
(7) the waterproof and airtight testing steps of the active buzzer and the passive buzzer are as follows: starting air tightness detection equipment, wherein the test is divided into a positive pressure test part and a negative pressure test part, the positive pressure test step comprises air inlet, stabilization and test, the negative pressure test step comprises suction, stabilization and test, the suction time is 5s, the air inlet time is 5s, the stabilization time is 3s, the test time is 5s, the test pressure is 10.2kpa, and the allowable maximum leakage amount is 0.1 kpa;
(8) the waterproof immersion test steps of the active buzzer and the passive buzzer are as follows: electrifying the active buzzer and the passive buzzer to detect whether the workpiece can be normally used, then taking down the active buzzer and the passive buzzer, soaking the active buzzer and the passive buzzer in water, taking out the active buzzer and the passive buzzer, wiping the water on the surface, electrifying again to detect, and observing whether the buzzer discharges water;
(9) the method comprises the following steps of testing the waterproof water mist of an active buzzer and a passive buzzer: and (3) electrifying the active buzzer and the passive buzzer for testing, taking down the active buzzer and the passive buzzer, placing the active buzzer and the passive buzzer in the closed humid space, taking out the active buzzer and the passive buzzer, electrifying for detecting again, wherein the humidity of the closed humid space is 60%, and the testing time is 1 h.
EXAMPLE III
The invention provides a technical scheme that: a quality detection method for processing and producing a buzzer for communication equipment sequentially comprises the following steps:
(1) material preparation: preparing a group of active buzzers, passive buzzers, air tightness detector equipment and a group of buzzer tester equipment, and waiting for standby application, wherein the buzzer tester adopts AWA 6128B;
(2) and (3) appearance detection: performing simple and convenient detection on the appearances and pins of the active buzzer and the passive buzzer in the step (1) through observation, preventing damage from influencing the following test, and then waiting for standby;
(3) testing the electroacoustic characteristics of the active buzzer: connecting a stitch below the active buzzer in the step (1) with a direct current signal output test connecting line of a buzzer tester, then sending a direct current signal through the tester, receiving a sound source sent by the active buzzer through a microphone, and then collecting and processing data through a computer, wherein the direct current voltage output by the buzzer tester is 10V, the frequency of the active buzzer is 20000Hz, and the measurement time is controlled to be 5 s;
(4) testing the electroacoustic characteristics of the passive buzzer: connecting a pin of the passive buzzer in the step (1) with an alternating current signal output test connecting line of a buzzer tester, sending an alternating current signal through the tester, and then collecting and processing data with the step (3), wherein the amplitude range of the passive buzzer is 130dB, and the type of the signal output by the buzzer tester is square wave;
(5) the waterproof test preparation steps of the active buzzer and the passive buzzer are as follows: taking the active buzzer and the passive buzzer which are subjected to the electro-acoustic characteristic test in the step (3) and the step (4) down from the test connecting line, starting the prepared air tightness detector equipment in the step (1), and waiting for standby;
(6) the waterproof test connection steps of the active buzzer and the passive buzzer are as follows: placing the active buzzer and the passive buzzer taken out in the step (5) in a test fixture of the air tightness detector, and connecting an air outlet at the bottom of the test fixture to a test port of the air tightness detector for standby;
(7) the waterproof and airtight testing steps of the active buzzer and the passive buzzer are as follows: starting air tightness detection equipment, wherein the test is divided into a positive pressure test part and a negative pressure test part, the positive pressure test step comprises air inlet, stabilization and test, the negative pressure test step comprises suction, stabilization and test, the suction time is 5s, the air inlet time is 5s, the stabilization time is 5s, the test time is 3s, the test pressure is 11kpa, and the maximum allowable leakage amount is 0.3 kpa;
(8) the waterproof immersion test steps of the active buzzer and the passive buzzer are as follows: electrifying the active buzzer and the passive buzzer to detect whether the workpiece can be normally used, then taking down the active buzzer and the passive buzzer, soaking the active buzzer and the passive buzzer in water, taking out the active buzzer and the passive buzzer, wiping the water on the surface, electrifying again to detect, and observing whether the buzzer discharges water;
(9) the method comprises the following steps of testing the waterproof water mist of an active buzzer and a passive buzzer: and (3) electrifying the active buzzer and the passive buzzer for testing, taking down the active buzzer and the passive buzzer, placing the active buzzer and the passive buzzer in the closed humid space, taking out the active buzzer and the passive buzzer, electrifying for detecting again, wherein the humidity of the closed humid space is 90%, and the testing time is 30 min.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (7)

1. A quality detection method for processing and producing a buzzer for communication equipment is characterized by sequentially comprising the following steps:
(1) material preparation: preparing an active buzzer, a passive buzzer, a set of air tightness detector equipment and a set of buzzer tester equipment for standby;
(2) and (3) appearance detection: performing simple and convenient detection on the appearances and pins of the active buzzer and the passive buzzer in the step (1) through observation, preventing damage from influencing the following test, and then waiting for standby;
(3) testing the electroacoustic characteristics of the active buzzer: connecting a stitch below the active buzzer in the step (1) with a direct current signal output test connecting line of a buzzer tester, then sending a direct current signal through the tester, receiving a sound source sent by the active buzzer through a microphone, and then collecting and processing data through a computer;
(4) testing the electroacoustic characteristics of the passive buzzer: connecting a pin of the passive buzzer in the step (1) with an alternating current signal output test connecting line of a buzzer tester, sending an alternating current signal through the tester, and then collecting and processing data with the step (3);
(5) the waterproof test preparation steps of the active buzzer and the passive buzzer are as follows: taking the active buzzer and the passive buzzer which are subjected to the electro-acoustic characteristic test in the step (3) and the step (4) down from the test connecting line, starting the prepared air tightness detector equipment in the step (1), and waiting for standby;
(6) the waterproof test connection steps of the active buzzer and the passive buzzer are as follows: placing the active buzzer and the passive buzzer taken out in the step (5) in a test fixture of the air tightness detector, and connecting an air outlet at the bottom of the test fixture to a test port of the air tightness detector for standby;
(7) the waterproof and airtight testing steps of the active buzzer and the passive buzzer are as follows: starting air tightness detection equipment, wherein the test is divided into a positive pressure test and a negative pressure test, the positive pressure test comprises the steps of air intake, stabilization and test, and the negative pressure test comprises the steps of suction, stabilization and test;
(8) the waterproof immersion test steps of the active buzzer and the passive buzzer are as follows: electrifying the active buzzer and the passive buzzer to detect whether the workpiece can be normally used, then taking down the active buzzer and the passive buzzer, soaking the active buzzer and the passive buzzer in water, taking out the active buzzer and the passive buzzer, wiping the water on the surface, electrifying again to detect, and observing whether the buzzer discharges water;
(9) the method comprises the following steps of testing the waterproof water mist of an active buzzer and a passive buzzer: and electrifying the active buzzer and the passive buzzer for testing, taking down the active buzzer and the passive buzzer, placing the active buzzer and the passive buzzer in the sealed and humid space, and taking out the active buzzer and the passive buzzer for electrifying detection again.
2. The method for detecting the quality of the buzzer processing production for communication equipment according to claim 1, wherein the method comprises the following steps: the buzzer tester in the step (1) adopts AWA 6128B.
3. The method for detecting the quality of the buzzer processing production for communication equipment according to claim 1, wherein the method comprises the following steps: the direct current voltage output by the buzzer tester in the step (3) is 0-10V, the frequency of the active buzzer is 20-20000 Hz, and the measuring time is controlled to be 1-5 s.
4. The method for detecting the quality of the buzzer processing production for communication equipment according to claim 1, wherein the method comprises the following steps: the amplitude range of the passive buzzer in the step (4) is 20 dB-130 dB, and the type of the signal output by the buzzer tester is sine wave or square wave.
5. The method for detecting the quality of the buzzer processing production for communication equipment according to claim 1, wherein the method comprises the following steps: and (3) the pumping time in the step (7) is 5s, the air inlet time is 5s, the stabilizing time is 2-5 s, and the testing time is 3-7 s.
6. The method for detecting the quality of the buzzer processing production for communication equipment according to claim 1, wherein the method comprises the following steps: the testing pressure in the step (7) is 8-11 kpa, and the allowed maximum leakage amount is 0-0.3 kpa.
7. The method for detecting the quality of the buzzer processing production for communication equipment according to claim 1, wherein the method comprises the following steps: the humidity of the closed humid space in the step (9) is 30% -90%, and the testing time is 30 min-2 h.
CN202111008216.9A 2021-08-31 2021-08-31 Quality detection method for processing production of buzzer for communication equipment Pending CN113758651A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111008216.9A CN113758651A (en) 2021-08-31 2021-08-31 Quality detection method for processing production of buzzer for communication equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111008216.9A CN113758651A (en) 2021-08-31 2021-08-31 Quality detection method for processing production of buzzer for communication equipment

Publications (1)

Publication Number Publication Date
CN113758651A true CN113758651A (en) 2021-12-07

Family

ID=78791975

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202111008216.9A Pending CN113758651A (en) 2021-08-31 2021-08-31 Quality detection method for processing production of buzzer for communication equipment

Country Status (1)

Country Link
CN (1) CN113758651A (en)

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200269919Y1 (en) * 2001-10-25 2002-03-27 이건국 a circuit for outing & sensing of sound by piezo buzzer
CN104280062A (en) * 2013-07-02 2015-01-14 海洋王(东莞)照明科技有限公司 Testing method for piezoelectric type buzzer used for lamp
CN104456291A (en) * 2014-10-31 2015-03-25 广东泰卓光电科技股份有限公司 LED streetlamp assembling and testing process
CN107389281A (en) * 2017-08-30 2017-11-24 常州安智能科技有限公司 A kind of buzzer air-tightness automatic detection selects equipment
CN107525635A (en) * 2017-07-24 2017-12-29 佛山市毅丰电器实业有限公司 A kind of light fixture air-tightness waterproof testing method
CN210108513U (en) * 2019-07-12 2020-02-21 襄阳市东禾电子科技有限公司 Active buzzer testing device
CN111056063A (en) * 2019-12-31 2020-04-24 常州安一智能科技有限公司 Automatic detecting and braiding device for buzzer
CN214067298U (en) * 2020-12-26 2021-08-27 常州皇健自动化设备有限公司 Active buzzer testing device

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200269919Y1 (en) * 2001-10-25 2002-03-27 이건국 a circuit for outing & sensing of sound by piezo buzzer
CN104280062A (en) * 2013-07-02 2015-01-14 海洋王(东莞)照明科技有限公司 Testing method for piezoelectric type buzzer used for lamp
CN104456291A (en) * 2014-10-31 2015-03-25 广东泰卓光电科技股份有限公司 LED streetlamp assembling and testing process
CN107525635A (en) * 2017-07-24 2017-12-29 佛山市毅丰电器实业有限公司 A kind of light fixture air-tightness waterproof testing method
CN107389281A (en) * 2017-08-30 2017-11-24 常州安智能科技有限公司 A kind of buzzer air-tightness automatic detection selects equipment
CN210108513U (en) * 2019-07-12 2020-02-21 襄阳市东禾电子科技有限公司 Active buzzer testing device
CN111056063A (en) * 2019-12-31 2020-04-24 常州安一智能科技有限公司 Automatic detecting and braiding device for buzzer
CN214067298U (en) * 2020-12-26 2021-08-27 常州皇健自动化设备有限公司 Active buzzer testing device

Similar Documents

Publication Publication Date Title
CN107328528B (en) Ultrasonic air tightness detection system and method based on multiple sensors
TW201640919A (en) Low-cost method for testing the signal-to-noise ratio of MEMS microphones
CN102186134A (en) Method and device for testing air leakage of microphone
CN108401218A (en) Active noise reduction earphone method for diagnosing faults
CN111065035A (en) Bone conduction earphone testing method and testing system
CN113758651A (en) Quality detection method for processing production of buzzer for communication equipment
CN104869519A (en) Method and system for testing background noise of microphone
CN105228073B (en) Open air speakers gas leakage test macro and method
CN203327235U (en) Receiver automatic test system in mobile phone production line
CN110657880B (en) Novel hydrophone based on resonant air cavity
CN204463610U (en) A kind of infrasonic wave apparatus for demonstrating
CN211982136U (en) Structure of dustproof and waterproof sound-transmitting film of matrix type micro-electromechanical sensor
CN202135323U (en) Diaphragm test device
CN207937816U (en) A kind of environmental pollution improvement's detection device
CN214070144U (en) MEMS equipped with waterproof sound-transmitting membrane component
CN111551320B (en) Airtightness testing system and device based on product with loudspeaker
CN212693169U (en) Ultrasonic leakage safety detection system based on electrostatic ultrasonic sensor
CN108562530A (en) One kind is powered for TP reliabilities tests anti-pinboard corrosion short-circuiting means
CN109441823B (en) Device and method for detecting tiny leakage of scroll type air conditioner compressor
CN210071134U (en) Little motor noise decibel value test equipment
CN106197882A (en) The method judging Microspeaker module seal
CN209485627U (en) A kind of waterproof performance test device
CN111601222A (en) Structure of dustproof and waterproof sound-transmitting film of matrix type micro-electromechanical sensor
CN207586357U (en) The extrinsic fabry perot fiber optic sensor of external attaching type and test platform
CN206740346U (en) Contactless stiffness of structural member detection device

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