CN201789162U - Multifunctional residual current protective plug - Google Patents

Multifunctional residual current protective plug Download PDF

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Publication number
CN201789162U
CN201789162U CN201020176144XU CN201020176144U CN201789162U CN 201789162 U CN201789162 U CN 201789162U CN 201020176144X U CN201020176144X U CN 201020176144XU CN 201020176144 U CN201020176144 U CN 201020176144U CN 201789162 U CN201789162 U CN 201789162U
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CN
China
Prior art keywords
ground wire
wire
residual current
circuit
zero
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.)
Expired - Fee Related
Application number
CN201020176144XU
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Chinese (zh)
Inventor
尧小平
宋孝阳
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.)
GUANGZHOU PANYU KYOKUTO SAKATA ELECTRONICS CO Ltd
Original Assignee
GUANGZHOU PANYU KYOKUTO SAKATA ELECTRONICS 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 GUANGZHOU PANYU KYOKUTO SAKATA ELECTRONICS CO Ltd filed Critical GUANGZHOU PANYU KYOKUTO SAKATA ELECTRONICS CO Ltd
Priority to CN201020176144XU priority Critical patent/CN201789162U/en
Application granted granted Critical
Publication of CN201789162U publication Critical patent/CN201789162U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model provides a multifunctional residual current protective plug, which comprises an outer casing (12), an over temperature rise detection and testing circuit (1), a residual current and ground wire current detecting circuit (2), a residual current protective circuit (3), a zero wire and ground wire safety voltage detecting circuit (4), a live wire and zero wire over-voltage breakdown detecting circuit (5), a ground wire charging indicating circuit (6), a zero wire (7), a live wire (8), a ground wire (9), a mechanical ground wire make-before-break mechanism (10) and tripolar metal pins (11). When in over-temperature rise or a testing button is pressed, the ground wire carries current or residual current exceeding a set value, voltage between the zero wire and the ground wire is higher than a safety voltage upper limit, or when the live wire and the zero wire encounter over-voltage breakdown, the ground wire is made before being broken, tripolar contacts of the live wire, the zero wire and the ground wire are disconnected, and a load power supply is switched off. The multifunctional residual current protective plug can greatly increase safety performance.

Description

Multifunction residual current protecting plug
Technical field
This novel practical relates to the safety technique for using electricity field, particularly a kind of novel multifunctional residual current protecting plug.
Background technology
At present various residual current protecting plugs on the market all are when detecting residual current or ground line current and reaching certain amount, and tripping mechanism is action just, power contact is disconnected reach the protection purpose.But these plugs have and have following deficiency:
1, three utmost point power contacts do not accomplish that real ground wire make-before-break or ground wire can not disconnect
Can not cut off the power supply when 2, occurring dangerous voltage between ground wire and the zero line
Can not cut off the power supply when 3, the high electrical breakdown piezo-resistance occurring between the fiery zero line
Can not cut off the power supply when 4, temperature rise is too high
These all can bring direct or potential threat to user's personal safety.This novel practical is exactly for solving these not enough a kind of multifunction residual current protecting plugs of developing.
The utility model content
At the deficiencies in the prior art, this practicality provides a kind of multifunction residual current protecting plug.
The technical solution adopted in the utility model is as follows: a kind of multifunction residual current protecting plug comprises: shell (12), mistake temperature rise detection and test circuit (1), residual current and ground line current testing circuit (2), residual current protection circuit (3), Zero-liue safe voltage testing circuit (4), fiery zero line over-voltage breakdown testing circuit (5), ground wire electrification indicating circuit (6), zero line (7), live wire (8), ground wire (9), mechanical type ground wire make-before-break mechanism (10), three utmost point metal bolt (11).
The utility model was inserted on three pole sockets by three utmost point metallic plugs 11 before this, pressed the button three utmost point contacts 10, ground wire make-before-break fire zero ground are connected, and gave follow-up power consumption equipment power supply.Situation below occur: temperature rise is too high, ground line current surpasses designated value, when residual current surpasses designated value, the capital produces induced electromotive force at instrument transformer 2, after the processing and amplifying of residual current protection circuit 3, output driving current makes it action to tripping coil, orders about ground wire make-before-break mechanism and in order the contact is disconnected, and cuts off the electricity supply; On occurring having above safe voltage between over-voltage breakdown or the Zero-liue between the fiery zero line, prescribe a time limit, 4,5 have detection signal and deliver to residual current protection circuit, also can give tripping coil by output driving current after treatment, mechanism is threaded off, three utmost point contacts disconnect in order, cut off the electricity supply; After three utmost point contacts disconnected, when ground wire electrification, ground wire electrification indicating circuit 6 can send orange light indication.
The beneficial effects of the utility model are, have improved the security performance of plug greatly.
Description of drawings
Fig. 1 is an example structure block diagram of the present utility model;
Fig. 2 is the schematic circuit that temperature rise, residual current and ground line current detect of crossing of the present utility model;
Fig. 3 is the schematic circuit of voltage detecting between the ground of the present utility model zero line;
Fig. 4 is the schematic circuit that fiery zero line over-voltage breakdown of the present utility model detects;
Fig. 5 is the mechanism map of mechanical type ground wire make-before-break of the present utility model.
Embodiment
Below in conjunction with accompanying drawing this practicality is further specified.As shown in Figure 1, this practicality newly comprises: three utmost point metallic plugs 11, mechanical type ground wire make-before-break mechanism 10, zero line 7, live wire 8, ground wire 9, mistake temperature rise detection and test circuit 1, residual current and ground line current testing circuit 2, residual current protection circuit 3, Zero-liue safe voltage testing circuit 4, fiery zero line over-voltage breakdown testing circuit 5, ground wire electrification indicating circuit 6, shell 12.
As shown in Figure 2, temperature rise detection excessively and test circuit 1 among Fig. 1 comprise: often drive bimetallic temperature detect switch (TDS) 21 with testing button 22 and after connecing, connect with current-limiting resistance 23, the two ends of circuit are connected across between the fiery zero line in addition at the front and back of instrument transformer branch then.Among the figure 25,26,27 is respectively live wire, zero line, ground wire.Residual current and ground line current testing circuit 2 comprise instrument transformer 24 as shown in Figure 2, and fire, zero line pass instrument transformer, and ground wire passes instrument transformer around 1~2 circle, and residual current and ground line current induction are only with an instrument transformer.
As shown in Figure 3, the Zero-liue safe voltage testing circuit 4 in the accompanying drawing 1 comprises: be connected across the resistance 31 between ground wire and the live wire, this resistance can raise the voltage of ground wire when ground wire is unsettled, thereby can detect the voltage between the Zero-liue; The A utmost point connecting to neutral line of voltage stabilizing didoe 32; the A utmost point of the K utmost point and voltage stabilizing didoe 34 joins; the K utmost point and the accelerating circuit 35 of voltage stabilizing didoe 34 join; the K utmost point of the other end of accelerating circuit and rectifier diode 36 connects; the A utmost point and the resistance 37 of rectifier diode join; the other end and the ground wire of resistance 37 connect, and form sequential circuit and are connected across between zero line and the ground wire, and signal voltage detects by 33 and send residual current protection circuit.312 is three utmost point metal bolt, mechanical type make-before-break fire zero ground three utmost point contacts 11 among the figure.Miscellaneous part is among the figure: shell 315, fiery Zero-liue 39,38,310, residual current testing circuit 314, residual current protection circuit 313.
As shown in Figure 4, fiery zero line over-voltage breakdown testing circuit 5 schematic diagrams among Fig. 1 comprise: resistance 41, piezo-resistance 42, switching diode 43, resistance 44, photocoupler 45, protection diode 46, resistance 47 connect by as shown in Figure 4 mode.412 is three utmost point metallic plugs, mechanical type ground wire make-before-break mechanism 411 among the figure, and miscellaneous part is fiery Zero-liue 48,49,410, residual current testing circuit 414, residual current protection circuit 413, shell 415.
As shown in Figure 5, mechanical type make-before-break fire zero ground three utmost point contacts, 11 detailed structure among Fig. 1 comprise: but 56-live wire moving contact, 57-live wire fixed contact, 58-ground wire moving contact, 59-ground wire fixed contact, 510-zero line fixed contact, 511-zero line moving contact and 55-mover B, but mover B exerts pressure for three reeds downwards during connection, three contacts are connected in order, when disconnecting, but the pressure of mover is removed, disjunction contact in order under the active force of reed separately, three contacts.

Claims (6)

1. a multifunction residual current protecting plug comprises: shell (12), mistake temperature rise detection and test circuit (1), residual current and ground line current testing circuit (2), residual current protection circuit (3), Zero-liue safe voltage testing circuit (4), fiery zero line over-voltage breakdown testing circuit (5), ground wire electrification indicating circuit (6), zero line (7), live wire (8), ground wire (9), mechanical type ground wire make-before-break mechanism (10), three utmost point metal bolt (11).
2. multifunction residual current protecting plug according to claim 1; it is characterized in that: described residual current and ground line current testing circuit (2) comprise instrument transformer (24); live wire, zero line pass instrument transformer; ground wire passes instrument transformer around 1~2 circle, and residual current and ground line current induction are only with an instrument transformer.
3. multifunction residual current protecting plug according to claim 2; wherein said temperature rise detection excessively and test circuit (1) comprising: often open bimetal leaf temperature sensitive switch (21); Test Switchboard (22), current-limiting resistance (23), instrument transformer (24), live wire (25), zero line (26), ground wire (27)
The described bimetallic temperature detect switch (TDS) (21) of often opening is connected with current-limiting resistance (23) with testing button (22) and after connecing again, and the two ends of circuit are connected across between the fiery zero line in addition at the front and back of instrument transformer branch then.
4. according to the multifunction residual current protecting plug described in the claim 3, wherein said Zero-liue safe voltage testing circuit (4) comprising:
Be connected across the resistance (31) between ground wire and the live wire, described resistance can raise the voltage of ground wire when ground wire is unsettled;
Voltage stabilizing didoe (32); its A utmost point connecting to neutral line; the A utmost point of the K utmost point and voltage stabilizing didoe (34) joins; the K utmost point of voltage stabilizing didoe (34) and accelerating circuit (35) join; the K utmost point of the other end of accelerating circuit (35) and rectifier diode (36) connects, and the A utmost point of rectifier diode (34) and resistance (37) join, and the other end and the ground wire of resistance (37) connect; form sequential circuit and be connected across between zero line and the ground wire, signal voltage is detected by (33) and send residual current protection circuit.
5. according to the multifunction residual current protecting plug described in the claim 4, wherein said fiery zero line over-voltage breakdown testing circuit (5) comprising: resistance (41), piezo-resistance (42), switching diode (43), resistance (44), photocoupler (45), protection diode (46), resistance (47).
6. according to the multifunction residual current protecting plug described in the claim 5; wherein said mechanical type ground wire make-before-break mechanism (10) comprising: the first live wire moving contact (56), the second live wire fixed contact (57), ground wire fixed contact (58), ground wire moving contact (59), zero line fixed contact (510), zero line moving contact (511) but mover (55); but mover during connection (55) exerts pressure for three reeds downwards; three contacts are connected in order; when disconnecting; but the pressure of mover is removed, disjunction contact in order under the active force of reed separately, three contacts.
CN201020176144XU 2009-09-30 2010-04-30 Multifunctional residual current protective plug Expired - Fee Related CN201789162U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201020176144XU CN201789162U (en) 2009-09-30 2010-04-30 Multifunctional residual current protective plug

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CN200910192872A CN101728724A (en) 2009-09-30 2009-09-30 Multifunction residual current protecting plug
CN200910192872.1 2009-09-30
CN201020176144XU CN201789162U (en) 2009-09-30 2010-04-30 Multifunctional residual current protective plug

Publications (1)

Publication Number Publication Date
CN201789162U true CN201789162U (en) 2011-04-06

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Application Number Title Priority Date Filing Date
CN200910192872A Pending CN101728724A (en) 2009-09-30 2009-09-30 Multifunction residual current protecting plug
CN201020176144XU Expired - Fee Related CN201789162U (en) 2009-09-30 2010-04-30 Multifunctional residual current protective plug

Family Applications Before (1)

Application Number Title Priority Date Filing Date
CN200910192872A Pending CN101728724A (en) 2009-09-30 2009-09-30 Multifunction residual current protecting plug

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106505378A (en) * 2016-12-27 2017-03-15 余姚市嘉荣电子电器有限公司 Intelligent wireless earth leakage protective socket

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106505378A (en) * 2016-12-27 2017-03-15 余姚市嘉荣电子电器有限公司 Intelligent wireless earth leakage protective socket
CN106505378B (en) * 2016-12-27 2018-11-02 余姚市嘉荣电子电器有限公司 Intelligent wireless earth leakage protective socket

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Publication number Publication date
CN101728724A (en) 2010-06-09

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110406

Termination date: 20130430