CN203555770U - Hall induction type B-ultrasonic wave detection system automatically switching probe - Google Patents

Hall induction type B-ultrasonic wave detection system automatically switching probe Download PDF

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Publication number
CN203555770U
CN203555770U CN201320578261.2U CN201320578261U CN203555770U CN 203555770 U CN203555770 U CN 203555770U CN 201320578261 U CN201320578261 U CN 201320578261U CN 203555770 U CN203555770 U CN 203555770U
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CN
China
Prior art keywords
probe
ultrasonic
plug
host machine
identification signal
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Expired - Fee Related
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CN201320578261.2U
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Chinese (zh)
Inventor
吴峰
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.)
Suzhou Bianfeng Electronic Technology Co Ltd
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Suzhou Bianfeng Electronic Technology Co Ltd
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Priority to CN201320578261.2U priority Critical patent/CN203555770U/en
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Publication of CN203555770U publication Critical patent/CN203555770U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a Hall induction type B-ultrasonic wave detection system automatically switching a probe. The system comprises a host machine part, a B-ultrasonic wave probe assembly and a probe support. The host machine part comprises a host machine and a display. The B-ultrasonic wave probe assembly comprises a probe, a plug and a shielding cable connected between the probe and the plug. The probe is internally provided with an ultrasonic generator and an ultrasonic receiver. The ultrasonic generator and the ultrasonic receiver are connected with a control unit. The probe is internally provided with a Hall element connected with the input end of the control unit. The plug is connected with an identification signal generating unit. The plug is connected with the host machine. The host machine part further comprises an identification signal processing unit that is connected between the plug and the host machine. The inner chamber of the probe support is provided with a magnetic field, the field intensity of which is higher than the environment field intensity. The system enables automatic and rapid switching among different probes, thereby improving medical detection efficiency.

Description

Hall sensing formula automatic switchover probe type B ultrasonic detection system
Technical field
This utility model relates to medical instruments field, relates in particular to B ultrasonic and detects diagnostic device.
Background technology
B ultrasonic monitoring device is the conventional diagnostic device of medical industry, and routine use frequency is quite high.Existing B ultrasonic monitoring device is equipped with a plurality of different probes conventionally to meet different detection needs; When needs switch probe, all on keyboard, arrange each time, complex operation, had a strong impact on doctor's detection efficiency.
Utility model content
The applicant is switched inconvenient problem for existing B ultrasonic checkout gear, carries out Improvement, and a kind of hall sensing formula automatic switchover probe type B ultrasonic detection system is provided, and realizes between different probes automatically, switches fast, improves medical detection efficiency.
The technical solution of the utility model is as follows:
A kind of hall sensing formula automatic switchover probe type B ultrasonic detection system, comprise host machine part, Ultrasonic-B probe assembly and probe bracket, host machine part comprises main frame and is connected in the display on described host output end, Ultrasonic-B probe assembly comprise probe, plug and be connected in described probe and described plug first input end between shielded cable:
In-built supersonic generator and the ultrasonic receiver of being equipped with of described probe, supersonic generator is connected with the second outfan with the first outfan of control unit respectively with ultrasonic receiver; Described ultrasonic receiver also, by signal processing unit, is connected with shielded cable; In described probe, returning apparatus has the Hall element being connected on described control unit input;
On the second input of described plug, be connected with identification signal generating unit, the first outfan of described plug is connected with the first input end of described main frame, described host machine part also comprises identification signal processing unit, and identification signal processing unit is connected between the second outfan of described plug and the second input of described main frame;
B ultrasonic signal by described shielded cable, described plug, is transferred to described main frame successively; Identification signal by described plug and described identification signal processing unit, is transferred to described main frame successively;
In the inner chamber of described probe bracket with intensity the magnetic field higher than environment field intensity.
Its further technical scheme is:
Described host machine part is connected with many groups of described Ultrasonic-B probe assemblies simultaneously.
On the relative sidewall of described inner chamber, device has magnetic sheet.
The beneficial effects of the utility model are as follows:
1, when doctor picks up probe from probe bracket, the residing magnetic field intensity of described probe changes, Hall element can send magnetic field intensity signal to control unit, again by the described control unit described probe that automatically switches, removed the selection operation of doctor on keyboard from, time saving and energy saving, can improve the efficiency that medical treatment detects;
2, in described Ultrasonic-B probe assembly, device has identification signal generating unit, make main frame can automatically identify the probe that doctor picks up, reduce doctor's operation, alleviate working doctor burden, guarantee that medical examination accurately carries out simultaneously, avoid accountability malpractice to occur.
Accompanying drawing explanation
Fig. 1 is functional schematic block diagram of the present utility model.
Fig. 2 is catenation principle block diagram of the present utility model.
Fig. 3 is the three-dimensional view of this utility model specific embodiment.
Fig. 4 is that this utility model is installed on the axonometric chart in probe bracket.
Fig. 5 is that the master of probe bracket looks cutaway view.
The specific embodiment
Below in conjunction with accompanying drawing, the specific embodiment of the present utility model is described.
As shown in Figure 1, Figure 3, this utility model comprises host machine part 11, Ultrasonic-B probe assembly 13 and probe bracket 15, host machine part 11 comprises main frame 9 and is connected in the display 10 on main frame 9 outfans, and Ultrasonic-B probe assembly 13 comprises probe 14, plug 7 and is connected in the shielded cable 6 between probe 14 and plug first input end;
14 in-built supersonic generator 3 and the ultrasonic receivers 4 of being equipped with of popping one's head in, supersonic generator 3 is connected with the second outfan with the first outfan of control unit 2 respectively with ultrasonic receiver 4; Ultrasonic receiver 4 also, by signal processing unit 5, is connected with shielded cable 6; The 14 interior returning apparatus of popping one's head in have the Hall element 1 being connected on control unit 2 inputs;
On the second input of plug 7, be connected with identification signal generating unit 12, the first outfan of plug 7 is connected with the first input end of main frame 9; Host machine part 11 also comprises identification signal processing unit 8, and identification signal processing unit 8 is connected between the second outfan of plug 7 and the second input of main frame 9;
B ultrasonic signal by shielded cable 6, plug 7, is transferred to main frame 9 successively; Identification signal by plug 7 and identification signal processing unit 8, is transferred to described main frame 9 successively; Main frame 9, according to the identification signal of processing through identification signal processing unit 8, is switched to the signal of corresponding probe 14 on display screen 10 and shows.
As shown in Figure 2 and Figure 3, host machine part 11 is connected with the first Ultrasonic-B probe assembly 13-1, the second Ultrasonic-B probe assembly 13-2, the 3rd Ultrasonic-B probe assembly 13-3 and the 4th Ultrasonic-B probe assembly 13-4 simultaneously.
As shown in Figure 4, Figure 5, on the relative sidewall of inner chamber 17, device has magnetic sheet 16, and probe 14 is not being used fashionable dress to be placed in probe bracket 15, the intensity in residing magnetic field is greater than the intensity of environmental magnetic field, when taking out probe 14, magnetic field intensity can change, thereby can make Hall element 1 send signal.
During use, control unit 2 can receive signal the probe 14 that automatically switches that Hall element 1 sends, and has removed the selection operation of doctor on keyboard from, time saving and energy saving, can improve the efficiency that medical treatment detects; In Ultrasonic-B probe assembly 13, device has identification signal generating unit 12, makes main frame 9 can automatically identify the probe that doctor picks up, and reduces doctor's operation, alleviates working doctor burden, guarantees that medical examination accurately carries out simultaneously, avoids accountability malpractice to occur.
More than describing is to explanation of the present utility model, is not to restriction of the present utility model, and this utility model limited range is referring to claim.Without prejudice to this utility model basic structure in the situation that, this utility model can be done any type of modification.

Claims (3)

1. a hall sensing formula automatic switchover probe type B ultrasonic detection system, comprise host machine part (11), Ultrasonic-B probe assembly (13) and probe bracket (15), host machine part (11) comprises main frame (9) and is connected in the display (10) on host output end, Ultrasonic-B probe assembly (13) comprise probe (14), plug (7) and be connected in probe (14) and plug (7) first input end between shielded cable (6), it is characterized in that:
Probe (14) in-built supersonic generator (3) and ultrasonic receiver (4) of being equipped with, supersonic generator (3) is connected with the second outfan with the first outfan of control unit (2) respectively with ultrasonic receiver (4); Ultrasonic receiver (4) also, by signal processing unit (5), is connected with shielded cable (6); Probe (14) interior returning apparatus has the Hall element (1) being connected on control unit (2) input;
On the second input of plug (7), be connected with identification signal generating unit (12), the first outfan of plug (7) is connected with the first input end of main frame (12), host machine part (11) also comprises identification signal processing unit (10), and identification signal processing unit (10) is connected between the second outfan of plug (9) and the second input of main frame (9);
B ultrasonic signal by shielded cable (6), plug (7), is transferred to main frame (9) successively; Identification signal by plug (7) and identification signal processing unit (8), is transferred to main frame (9) successively;
In the inner chamber (17) of probe bracket (15) with intensity the magnetic field higher than environment field intensity.
2. hall sensing formula automatic switchover probe type B ultrasonic detection system as claimed in claim 1, is characterized in that: host machine part (11) is connected with many groups Ultrasonic-B probe assembly (13) simultaneously.
3. hall sensing formula automatic switchover probe type B ultrasonic detection system as claimed in claim 1, is characterized in that: on the relative sidewall of inner chamber (17), device has magnetic sheet (16).
CN201320578261.2U 2013-09-18 2013-09-18 Hall induction type B-ultrasonic wave detection system automatically switching probe Expired - Fee Related CN203555770U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320578261.2U CN203555770U (en) 2013-09-18 2013-09-18 Hall induction type B-ultrasonic wave detection system automatically switching probe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320578261.2U CN203555770U (en) 2013-09-18 2013-09-18 Hall induction type B-ultrasonic wave detection system automatically switching probe

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CN203555770U true CN203555770U (en) 2014-04-23

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104434207A (en) * 2013-09-18 2015-03-25 苏州边枫电子科技有限公司 Hall induction type B-ultrasound detection system with automatic probe switching function
CN107822658A (en) * 2017-11-29 2018-03-23 无锡海鹰电子医疗系统有限公司 Doppler detector and its self-service identification switching system with Hall magnetic sensor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104434207A (en) * 2013-09-18 2015-03-25 苏州边枫电子科技有限公司 Hall induction type B-ultrasound detection system with automatic probe switching function
CN107822658A (en) * 2017-11-29 2018-03-23 无锡海鹰电子医疗系统有限公司 Doppler detector and its self-service identification switching system with Hall magnetic sensor

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140423

Termination date: 20150918

EXPY Termination of patent right or utility model