CN214201667U - Automatic wafer testing device - Google Patents

Automatic wafer testing device Download PDF

Info

Publication number
CN214201667U
CN214201667U CN202023213095.5U CN202023213095U CN214201667U CN 214201667 U CN214201667 U CN 214201667U CN 202023213095 U CN202023213095 U CN 202023213095U CN 214201667 U CN214201667 U CN 214201667U
Authority
CN
China
Prior art keywords
module
wafer
tested
type
alarm
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.)
Active
Application number
CN202023213095.5U
Other languages
Chinese (zh)
Inventor
李洪亮
曹家勇
黄珊
张俊宝
宋洪伟
陈猛
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.)
Chongqing Advanced Silicon Technology Co ltd
Shanghai Chaosi Semiconductor Co ltd
Original Assignee
Chongqing Advanced Silicon Technology Co ltd
Shanghai Chaosi Semiconductor 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 Chongqing Advanced Silicon Technology Co ltd, Shanghai Chaosi Semiconductor Co ltd filed Critical Chongqing Advanced Silicon Technology Co ltd
Priority to CN202023213095.5U priority Critical patent/CN214201667U/en
Application granted granted Critical
Publication of CN214201667U publication Critical patent/CN214201667U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Testing Of Individual Semiconductor Devices (AREA)
  • Testing Or Measuring Of Semiconductors Or The Like (AREA)

Abstract

The embodiment of the utility model discloses wafer automatic testing arrangement is disclosed. The automatic wafer testing device comprises an identification module, a control module, a testing module and an alarm module. The identification module, the test module and the alarm module are all connected with the control module; the identification module is used for identifying the target type of the wafer to be tested; the test module is used for detecting the actual type of the wafer to be tested; and when the actual type of the wafer to be tested is different from the target type, the control module controls the alarm module to warn. The embodiment of the utility model provides an improve silicon chip test equipment's degree of automation, and then improved production efficiency. Meanwhile, the use of wrong P/N type wafers in the manufacturing process is avoided, and therefore economic loss is avoided.

Description

Automatic wafer testing device
Technical Field
The embodiment of the utility model provides a relate to wafer test technique, especially relate to an automatic testing arrangement of wafer.
Background
With the increasing emphasis on the semiconductor silicon wafer industry, the semiconductor silicon wafer manufacturing equipment and the semiconductor silicon wafer testing device receive the same attention.
The existing test equipment used in the semiconductor silicon wafer industry does not form automatic continuous operation between the links of conveying and detecting in the aspect of P/N type measurement. The production efficiency is low and the risk of P/N type mixing exists. In the wafer manufacturing process, different P/N type wafers need to be selected according to the actual requirements of customers, so that products meeting the actual requirements cannot be manufactured by using wrong P/N type wafers, and great economic loss is brought.
SUMMERY OF THE UTILITY MODEL
The utility model provides an automatic wafer testing device for improve silicon chip test equipment's degree of automation, improve production efficiency. Avoiding using wrong P/N type wafers in the manufacturing process and avoiding economic loss.
The embodiment of the utility model provides an automatic wafer testing device, which comprises an identification module, a control module, a testing module and an alarm module;
the identification module, the test module and the alarm module are all connected with the control module; the identification module is used for identifying the target type of the wafer to be tested; the test module is used for detecting the actual type of the wafer to be tested; and when the actual type of the wafer to be tested is different from the target type, the control module controls the alarm module to warn.
Furthermore, the automatic wafer testing device also comprises a counting module, and the counting module is connected with the control module; the counting module is used for counting the wafers to be tested detected by the testing module.
Further, the counting module comprises a fiber switch.
Further, the control module comprises a touch screen.
Further, the identification module comprises a scanning gun, and the scanning gun is used for identifying the target type according to the corresponding label of the wafer to be tested.
Further, the test module comprises a P/N type contactless test sensor.
Furthermore, the automatic wafer testing device also comprises a fixed support, and the testing module and the recognition module are fixed on the fixed support; the fixed bracket also comprises a mounting hole; the fixed support is used for being fixed on the test equipment through the mounting hole.
Furthermore, the alarm module comprises a control switch and an alarm, the control module is connected with the control switch, and the control switch is connected with the alarm.
Further, the control switch includes a relay.
The embodiment of the utility model provides a contrast is done through the target type of the examination of awaiting measuring wafer that will discern identification module and the actual type of the examination of awaiting measuring wafer that test module detected, and control module is not different at examination of awaiting measuring wafer actual type and target type, and control alarm module warns. Therefore, the use of wrong P/N type wafers in the manufacturing process is avoided, and further economic loss is avoided. And because this device degree of automation is higher, consequently improved production efficiency.
Drawings
Fig. 1 is a schematic structural diagram of an automatic wafer testing device according to an embodiment of the present invention;
fig. 2 is another schematic structural diagram of an automatic wafer testing apparatus according to an embodiment of the present invention;
fig. 3 is another schematic structural diagram of an automatic wafer testing apparatus according to an embodiment of the present invention;
fig. 4 is a schematic front view of a fixing bracket according to an embodiment of the present invention;
fig. 5 is a schematic side view of a fixing bracket according to an embodiment of the present invention;
fig. 6 is a flowchart of an automatic wafer testing method according to an embodiment of the present invention;
reference numerals:
100-identification module, 200-test module, 300-control module, 310-touch screen, 400-alarm module, 500-counting module, 600-fixing support, 610-screw fixing hole, 620-counting module fixing hole and 630-test module fixing hole
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the invention and are not limiting of the invention. It should be further noted that, for the convenience of description, only some of the structures related to the present invention are shown in the drawings, not all of the structures.
Fig. 1 is a schematic structural diagram of an automatic wafer testing device according to an embodiment of the present invention, and referring to fig. 1, an embodiment of the present invention discloses an automatic wafer testing device, which includes an identification module 100, a control module 300, a testing module 200, and an alarm module 400;
the identification module 100, the test module 200 and the alarm module 400 are all connected with the control module 300; the identification module 100 is used for identifying a target type of a wafer to be tested; the test module 200 is used for detecting the actual type of the wafer to be tested; when the actual type of the wafer to be tested is different from the target type, the control module 300 controls the alarm module 400 to alarm.
The identification module 100 is a module for identifying a label corresponding to a wafer, and the information recorded on the label may include a P/N type of the wafer and may also include identity information of the wafer. When the identity information of the wafer is recorded on the label, the control module 300 may find the pre-stored corresponding P/N type of the wafer according to the identity information of the wafer to determine the target type of the wafer to be tested. The label can comprise a bar code label, a two-dimensional code label and an NFC label; correspondingly, the identification module 100 may include a barcode identification module 100, may include a two-dimensional code identification module 100, and may also include an NFC identification module 100. The embodiment of the present invention does not limit the specific type of the recognition module 100. The test module 200 is a module for testing a wafer, and may include a P/N type contact test sensor or a P/N type non-contact test sensor. When the testing module 200 is a P/N type non-contact testing sensor, marks and scratches left in the contact process of the P/N type contact testing sensor can be avoided, and further the influence on the wafer product is avoided. Control module 300 can be one or more in single-chip microcomputer, microprocessor, microcontroller, system on chip and computer etc. processing computing device, it can to satisfy actual control demand, the embodiment of the utility model provides a do not prescribe a limit to control module 300's concrete constitution. The alarm module 400 may be a sounding alarm module 400, a light-emitting alarm module 400, or a sound and light alarm module 400.
Fig. 2 is another schematic structural diagram of an automatic wafer testing apparatus according to an embodiment of the present invention, referring to fig. 2, in another embodiment, the automatic wafer testing apparatus further includes a counting module 500, and the counting module 500 is connected to the control module 300; the counting module 500 is used for counting the wafers to be tested detected by the testing module 200.
The wafer can be placed in the wafer frame boxes during the transportation and transfer process, some wafer frame boxes can be placed with a plurality of wafers, and the counting module 500 can be used for counting the wafers to be tested in the single wafer frame box corresponding to one label and detected by the testing module 200; the number of wafers to be tested in the plurality of wafer frame boxes corresponding to one label, which are detected by the test module 200, may also be counted. Thereby, the specific number of wafers can be obtained while checking the type of the wafers.
On the basis of the previous embodiment, the counting module 500 comprises a fiber switch.
The optical fiber switch can count the wafers under the state of not contacting the wafers, and the number of the wafers is obtained through the times of the wafers blocking light rays. The optical fiber switch is used for counting the wafers, so that the wafers cannot be lost in a counting link.
Fig. 3 is another schematic structural diagram of an automatic wafer testing apparatus according to an embodiment of the present invention, referring to fig. 3, in other embodiments, the control module 300 includes a touch screen 310.
In this embodiment, besides acquiring the target type of the wafer through the recognition module 100, another way for acquiring the target type of the wafer is provided. The method enables the acquisition path of the target type of the wafer to be more flexible and diversified.
In other embodiments, the identification module 100 includes a scanning gun for identifying a target type based on a corresponding label of a wafer to be tested.
The identification module 100 comprises a scanning gun, so that a tester can operate more comfortably and conveniently in the process of testing by using the identification module 100.
Fig. 4 is a schematic front view of a fixing bracket 600 according to an embodiment of the present invention, and fig. 5 is a schematic side view of a fixing bracket 600 according to an embodiment of the present invention, referring to fig. 4 and 5, in other embodiments, the automatic wafer testing device further includes a fixing bracket 600, and the testing module 200 and the counting module 500 are fixed on the fixing bracket 600; the fixing bracket 600 further includes screw fixing holes 610; the fixing bracket 600 is fixed to the test apparatus through the screw fixing hole 610. Wherein, the connection position of the fixing bracket 600 and the testing device can be determined according to actual requirements. Preferably, the mounting position of the fixing bracket 600 is such that the sensing probe and the fiber switch of the P/N type non-contact test sensor are located 2-4 cm above the wafer. Further preferably, the mounting position of the fixing bracket 600 is such that the sensing probe and the fiber switch of the P/N type non-contact test sensor are located 3 cm above the wafer. Optionally, the front view of the fixing bracket 600 is T-shaped, and the side view of the fixing bracket 600 is Z-shaped. The fixing bracket 600 includes two screw fixing holes 610, a counting module fixing hole 620, and a testing module fixing hole 630. The test module 200 and the counting module 500 may be fixed to the fixing bracket 600 through the test module fixing hole 630 and the counting module fixing hole 620, respectively.
In other embodiments, the alarm module 400 includes a control switch and an alarm, the control module 300 is connected to the control switch, and the control switch is connected to the alarm.
Wherein, control switch is used for the control command according to control module 300 sends to the device of the feed end break-make of control alarm, control switch can include the triode, can include the MOS pipe, the embodiment of the utility model provides a do not inject its type.
Alternatively, the power supply to which the power supply terminal of the alarm is connected may be, for example, a 24V power supply.
Optionally, the control switch may further include a relay.
The relay has better capacity of resisting instantaneous large current, and when the control switch comprises the relay, the stability and the reliability of the control switch are higher.
On the basis of the above embodiment, optionally, the relay includes a solid-state relay.
Because the solid-state relay only needs a small control signal to control the heavy current load, when the control switch comprises the solid-state relay, the output current of the control module 300 is small, so that the power supply requirement of the control module 300 is reduced, the power supply cost of the control module 300 is favorably reduced, and the stability and the reliability of the control module 300 are improved.
Optionally, the automatic wafer test apparatus further includes a computer interface, and the computer interface is capable of being connected to a computer to view, import, or export information. The information may be identity information of the wafer to be tested and a corresponding detection result, or may be information set according to actual requirements.
On the other hand, the embodiment of the utility model discloses a wafer automatic test method is applicable to above-mentioned arbitrary wafer automatic test device, and fig. 6 is the embodiment of the utility model provides a wafer automatic test method's flow chart, see fig. 6, the method includes:
s10: acquiring a target type of a wafer to be tested;
the target type of the wafer to be tested may be obtained through the recognition module 100, or may be obtained through the touch screen 310.
S20: acquiring an actual type of a wafer to be tested;
wherein, the actual type of the wafer to be tested can be obtained through the testing module 200.
S30: and when the actual type and the target type of the wafer to be tested are different, controlling the alarm module 400 to warn.
The actual type of the wafer to be tested is compared with the target type, and when the actual type of the wafer to be tested is inconsistent with the target type, the target type is indicated to be wrong, so that related personnel are warned through the warning module 400. Therefore, the phenomenon that the wrong type of wafer flows into a production line to produce wrong products and cause economic loss is avoided.
It should be noted that the foregoing is only a preferred embodiment of the present invention and the technical principles applied. It will be understood by those skilled in the art that the present invention is not limited to the particular embodiments described herein, but is capable of various obvious modifications, rearrangements, combinations and substitutions as will now become apparent to those skilled in the art without departing from the scope of the invention. Therefore, although the present invention has been described in greater detail with reference to the above embodiments, the present invention is not limited to the above embodiments, and may include other equivalent embodiments without departing from the scope of the present invention.

Claims (9)

1. An automatic wafer testing device, comprising: the device comprises an identification module, a control module, a test module and an alarm module;
the identification module, the test module and the alarm module are all connected with the control module; the identification module is used for identifying the target type of the wafer to be tested; the test module is used for detecting the actual type of the wafer to be tested; and the control module controls the alarm module to warn when the actual type of the wafer to be tested is different from the target type.
2. The wafer automatic test device according to claim 1, further comprising a counting module, wherein the counting module is connected with the control module; the counting module is used for counting the wafers to be tested detected by the testing module.
3. The wafer automatic test apparatus of claim 2, wherein the counting module comprises a fiber switch.
4. The wafer automatic test device according to claim 1, wherein the control module comprises a touch screen.
5. The wafer automatic test device of claim 1, wherein the identification module comprises a scan gun for identifying the target type according to a corresponding label of the wafer to be tested.
6. The wafer automatic test device according to claim 1, wherein the test module comprises a P/N type contactless test sensor.
7. The wafer automatic test device according to claim 1, further comprising a fixing bracket, wherein the test module and the recognition module are fixed on the fixing bracket; the fixing bracket also comprises a mounting hole; the fixed support is used for being fixed on the testing equipment through the mounting hole.
8. The wafer automatic test device according to claim 1, wherein the alarm module comprises a control switch and an alarm, the control module is connected with the control switch, and the control switch is connected with the alarm.
9. The wafer automatic test apparatus of claim 8, wherein the control switch comprises a relay.
CN202023213095.5U 2020-12-28 2020-12-28 Automatic wafer testing device Active CN214201667U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023213095.5U CN214201667U (en) 2020-12-28 2020-12-28 Automatic wafer testing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023213095.5U CN214201667U (en) 2020-12-28 2020-12-28 Automatic wafer testing device

Publications (1)

Publication Number Publication Date
CN214201667U true CN214201667U (en) 2021-09-14

Family

ID=77629705

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023213095.5U Active CN214201667U (en) 2020-12-28 2020-12-28 Automatic wafer testing device

Country Status (1)

Country Link
CN (1) CN214201667U (en)

Similar Documents

Publication Publication Date Title
US4895454A (en) Method of determining the temperature of a workpiece in a flexible manufacturing system
KR100371677B1 (en) Inspection device
CN108190434B (en) Electric energy meter position detecting device and method in turnover box
TW201404697A (en) Conveying device of electronic parts and inspecting device of electronic parts
CN101992189A (en) Sorting device and method for workpiece detection
CN108981574A (en) Product size on-line measuring device
CN104732176A (en) Information comparison equipment for fixed bar codes and electronic tags and method thereof and electricity meter product check system
CN108872911A (en) A kind of Hall current sensor response curve automatic detection device and detection method
CN112024462A (en) Defective material removing equipment and control method and control device thereof
CN112595949A (en) Automatic wafer testing device and testing method
CN214201667U (en) Automatic wafer testing device
CN204203980U (en) A kind of electrical measuring device bar code information comparison equipment
CN111766836A (en) Smart manufacturing method and system
CN109472538A (en) A kind of gravity sensing intelligence ex-warehouse system
CN102608003A (en) Automatic dust-free room particle measuring trolley, automatic measuring system and measuring method thereof
CN109767999B (en) Wafer cassette detection method and wafer cassette detection system
CN208721000U (en) Product size on-line measuring device
CN101930029A (en) Measuring device for detecting resistors in air-condition circuits automatically
CN207832924U (en) The short-circuit detecting and voltage detecting system of pcb board on a kind of assembly line
US20140055160A1 (en) Apparatus and method for inspection of marking
CN221175417U (en) RFID device applied to needle inspection machine
CN102353835A (en) Full-automatic test system for power of display equipment on production line and test method
TW200401868A (en) Remote monitoring system for chemical liquid delivery
CN110673562A (en) Intelligent workshop work step constraint and fool-proof method
CN207008001U (en) Automatization test system

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant