EP3487014A1 - Electric arcing protection arrangement and method - Google Patents
Electric arcing protection arrangement and method Download PDFInfo
- Publication number
- EP3487014A1 EP3487014A1 EP17202433.3A EP17202433A EP3487014A1 EP 3487014 A1 EP3487014 A1 EP 3487014A1 EP 17202433 A EP17202433 A EP 17202433A EP 3487014 A1 EP3487014 A1 EP 3487014A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- plug
- socket
- sensor
- pins
- electric arcing
- 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.)
- Withdrawn
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- 238000000034 method Methods 0.000 title claims description 13
- 238000012544 monitoring process Methods 0.000 claims abstract description 18
- 238000001514 detection method Methods 0.000 claims description 15
- 230000003213 activating effect Effects 0.000 claims description 2
- 239000002184 metal Substances 0.000 description 3
- 230000000694 effects Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000013021 overheating Methods 0.000 description 1
- 230000035939 shock Effects 0.000 description 1
- 238000005406 washing Methods 0.000 description 1
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/66—Structural association with built-in electrical component
- H01R13/665—Structural association with built-in electrical component with built-in electronic circuit
- H01R13/6683—Structural association with built-in electrical component with built-in electronic circuit with built-in sensor
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/629—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
- H01R13/633—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for disengagement only
- H01R13/635—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for disengagement only by mechanical pressure, e.g. spring force
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
- H01R13/53—Bases or cases for heavy duty; Bases or cases for high voltage with means for preventing corona or arcing
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/66—Structural association with built-in electrical component
- H01R13/70—Structural association with built-in electrical component with built-in switch
- H01R13/713—Structural association with built-in electrical component with built-in switch the switch being a safety switch
- H01R13/7132—Structural association with built-in electrical component with built-in switch the switch being a safety switch having ejecting mechanisms
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R2103/00—Two poles
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R24/00—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
- H01R24/28—Coupling parts carrying pins, blades or analogous contacts and secured only to wire or cable
- H01R24/30—Coupling parts carrying pins, blades or analogous contacts and secured only to wire or cable with additional earth or shield contacts
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R24/00—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
- H01R24/76—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure with sockets, clips or analogous contacts and secured to apparatus or structure, e.g. to a wall
- H01R24/78—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure with sockets, clips or analogous contacts and secured to apparatus or structure, e.g. to a wall with additional earth or shield contacts
Definitions
- the present disclosure relates to an electric arcing protection arrangement and method.
- Electric arcing between a plug and a socket can cause serious damage to appliances and the electrical conductivity of the sockets.
- pins of plugs and metal contacts on the sockets can burn. As they become pitted and blackened, their electrical conductivity reduces, eventually even becoming highly resistive. This can, for example, cause the damaged pins and contacts to heat up, and will eventually fail or burn up. This leaves electrical appliances and outlets in an unsafe condition, even when the damage appears minimal.
- an electric arcing protection arrangement comprising:
- the arrangement comprises a plug, wherein the plug comprises:
- the arrangement comprises a socket, wherein the socket comprises:
- the senor comprises a heat sensor arranged to monitor the temperature in a region of the connection of the plug and the socket, the electric arcing protection arrangement being such that if the temperature detected by the heat sensor is above a threshold value, the mechanism causes the pins of the plug to be withdrawn from the socket.
- the senor comprises a light sensor arranged to monitor the light level in a region of the connection of the plug and the socket, the electric arcing protection arrangement being arranged such that if the light level detected by the light sensor is above a threshold value, the mechanism causes the pins of the plug to be withdrawn from the socket.
- the senor comprises a heat sensor and a light sensor, the sensor being arranged such that:
- the mechanism comprises at least one biasing arrangement to cause the pins of the plug to be withdrawn from the socket upon detection of electric arcing between the plug and the socket by the sensor.
- the biasing arrangement comprises one or more springs arranged to push or pull the pins of the plug out of the socket.
- an electric arcing protection method comprising:
- the detection of electric arcing between the plug and the socket by a sensor comprises monitoring the temperature in a region of the connection of the plug and the socket by a heat sensor; and the mechanism is actuated if the temperature detected by the heat sensor is above a threshold value.
- the detection of electric arcing between the plug and the socket by a sensor comprises:
- the detection of electric arcing between the plug and the socket by a sensor comprises:
- causing the pins of the plug to be withdrawn from the socket comprises activating at least one biasing arrangement to cause the pins of the plug to be withdrawn from the socket upon detection of electric arcing between the plug and the socket.
- the electric arcing protection method is carried out by components in a plug.
- the electric arcing protection method is carried out by components in a socket.
- an electric arcing protection arrangement has a sensor for monitoring the presence of electrical arcing between a plug and a socket. When electric arcing is detected by the sensor, a mechanism causes the pins of the plug to be withdrawn from the socket.
- Unwanted electric arcing can occur between plug pins and metal contacts of a socket. Electric arcing can cause pins and contacts to burn, becoming pitted and less conductive over time. With further use, the socket or appliances can become faulty. Electrical arcing can cause damage to devices, inlets/outlets, and even cause electrical shocks and fires. There is required an apparatus and method for protecting plugs and sockets from damage due to electric arcing.
- Figure 1 shows a plug 102 connected to a socket 104.
- Pins 106 of the plug 102 are in contact with electrical contacts (not shown) within the socket holes 107.
- the plug 102 may, for example, be connected to a white goods machine, such as a refrigerator or a washing machine. Other examples of devices the plug 102 may be associated with include a television set or other electronic devices, a heater or a fan.
- the plug 102 and socket 104 shown in this figure are a British 3-pin plug 102 and socket 104.
- the plug 102 may have a different number of pins 106 and the socket 104 may have a corresponding different number of holes 107 for the pins 106 to enter.
- the plug 102 and socket 104 may follow the European or the American 2-pin standards.
- the plug 102 may be directly associated with an electronic or device or apparatus or be an adapter or a plug for an extension lead (which may lead to one or more sockets for other plugs).
- the plug 102 is shown as having a sensor 108.
- the sensor 108 is arranged to detect a change in the region of the plug 102 and socket 104 that indicates electric arcing is occurring between the pins 106 of the plug 102 and the electric contacts of the socket 104.
- the region of the plug 102 and the socket 104 may comprise for example at least one of the electrical contacts of the socket 104, the pins 106 of the plug 102, the housing 110 of the plug 102 or the cover 112 of the socket 104, depending on for example the change that is being detected and/or the detection technique used, as will be discussed further.
- the sensor 108 may comprise for example a heat sensor 108, arranged to detect whether the temperature of the region of the plug 102 and socket 104 rises above a threshold value.
- the region may be for example at least one of the pins 108, all or part of the plug housing 110, the socket holes 107 and all or part of the socket covering 112.
- the rise in temperature may be due to arcing taking place and/or because of overheating of burnt out/faulty electrical contacts or pins 106.
- the heat sensor 108 is shown on or in the housing of the plug 102. Alternatively or additionally, the heat sensor 108 may be located inside the plug 102, on the socket 104 or inside the socket 104.
- the sensor 108 may comprise a light sensor 108, arranged to detect whether the light level of the region of the plug 102 and socket 104 rises above a threshold value.
- the region of the plug 102 and socket 104 may for example be the space between the pins 106 of the plug 102 and the electrical contacts within the socket holes 107. Such a space may arise for example because of poor fitting of the pins 106 in the socket holes 107 or because for example the pins 106 have not been fully inserted into the socket holes 107.
- the light sensor 108 detects the light level of the region as being above a threshold value.
- the light sensor 108 is shown as being located on or in the plug 102.
- the light sensor 108 may alternatively be on or in the socket 104.
- the light level in the region may increase because of a spark occurring between the pins 108 and the electrical contacts within the socket holes 107.
- the sensor 108 may in one example be arranged to constantly monitor the region of the plug 102 and the socket 104, thereby enabling action to be taken to prevent electric arcing when factors such as the light level or temperature are determined as being above a threshold. In another example, the sensor 108 may be arranged to activate or trigger only when factors such as the light level or temperature of the region of the plug 102 and the socket 104 increase above a threshold value.
- the plug 102 may comprise one sensor 108, for example a heat sensor 108 or a light sensor 108, and the socket 104 may comprise another (different) sensor 108, for example a light sensor 108 or a heat sensor 108 respectively.
- both a heat sensor 108 and a light sensor 108 may be provided in the plug 102 or the socket 104.
- the heat sensor and the light sensor may be provided as separate items or as a unitary sensor.
- a mechanism (not shown) is activated to cause the pins 106 to be withdrawn from the electrical contacts of the socket holes 107.
- the mechanism comprises a biasing arrangement for withdrawing the pins 106 from the socket 104.
- the biasing arrangement may for example be or include a spring system.
- the plug 102 comprises a mechanism for pulling the pins 106 into the plug 102 when electric arcing is detected between the plug 102 at the socket 104.
- the plug 102 has a sensor 108 for detecting a change in the region of the plug 102 and the socket 104.
- the plug 102 also has a mechanism for withdrawing the pins 106 from the socket 104.
- the mechanism may be arranged such that in a default position the pins 106 protrude from the plug 102.
- the plug 102 is arranged such that when the sensor(s) 108 indicates that arcing is taking place, the mechanism is activated to extract the pins 106 from the socket 104 and into the body of the plug 102.
- the plug 102 having withdrawn the pins 106 away from the socket 104, is able to fall away from the socket 104, thereby reducing the chance of damage to the plug 102 and/or socket 104 by electric arcing.
- Figures 3A and 3B show another example of the plug 102 and socket 104 in use, wherein the mechanism to cause the pins 106 to be withdrawn is contained in the socket 104.
- the mechanism is arranged such that when electric arcing is detected the pins 106 of the plug 102 are pushed out of the socket 104.
- the sensor 108 detects the temperature and light level of the region between the plug 102 and the socket 104 as being above the threshold heat and light values respectively
- the mechanism pushes the pins 106 of the plug 102 out of the socket 104.
- the plug 102 is free to fall away from the socket 104, thereby reducing or eliminating damage to the plug 102 and/or socket 104 by electric arcing.
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- Engineering & Computer Science (AREA)
- Microelectronics & Electronic Packaging (AREA)
- Details Of Connecting Devices For Male And Female Coupling (AREA)
- Testing Of Short-Circuits, Discontinuities, Leakage, Or Incorrect Line Connections (AREA)
Abstract
Description
- The present disclosure relates to an electric arcing protection arrangement and method.
- Electric arcing between a plug and a socket can cause serious damage to appliances and the electrical conductivity of the sockets. When electric arcing occurs, pins of plugs and metal contacts on the sockets can burn. As they become pitted and blackened, their electrical conductivity reduces, eventually even becoming highly resistive. This can, for example, cause the damaged pins and contacts to heat up, and will eventually fail or burn up. This leaves electrical appliances and outlets in an unsafe condition, even when the damage appears minimal.
- According to a first aspect disclosed herein, there is provided an electric arcing protection arrangement comprising:
- a sensor for monitoring the presence of electrical arcing between a plug and a socket; and
- a mechanism arranged to cause the pins of the plug to be withdrawn from the socket upon detection of electric arcing between the plug and the socket by the sensor.
- In an example, the arrangement comprises a plug, wherein the plug comprises:
- the sensor for monitoring the presence of electrical arcing; and
- the mechanism arranged to cause the pins of the plug to be withdrawn from the socket.
- In an example, the arrangement comprises a socket, wherein the socket comprises:
- the sensor for monitoring the presence of electrical arcing; and
- the mechanism arranged to cause the pins of the plug to be withdrawn from the socket.
- In an example, the sensor comprises a heat sensor arranged to monitor the temperature in a region of the connection of the plug and the socket, the electric arcing protection arrangement being such that if the temperature detected by the heat sensor is above a threshold value, the mechanism causes the pins of the plug to be withdrawn from the socket.
- In an example, the sensor comprises a light sensor arranged to monitor the light level in a region of the connection of the plug and the socket, the electric arcing protection arrangement being arranged such that if the light level detected by the light sensor is above a threshold value, the mechanism causes the pins of the plug to be withdrawn from the socket.
- In an example, the sensor comprises a heat sensor and a light sensor, the sensor being arranged such that:
- the heat sensor monitors the temperature in a region of the connection of the plug and the socket;
- the light sensor monitors the light level in a region of the connection of the plug and the socket; and
- if the temperature in the region of the connection of the plug and the socket detected by the heat sensor is above a threshold value and the light level in the region of the connection of the plug and the socket detected by the light sensor is above a threshold value, the mechanism causes the pins of the plug to be withdrawn from the socket.
- In an example, the mechanism comprises at least one biasing arrangement to cause the pins of the plug to be withdrawn from the socket upon detection of electric arcing between the plug and the socket by the sensor.
- In an example, the biasing arrangement comprises one or more springs arranged to push or pull the pins of the plug out of the socket.
- According to a second aspect disclosed herein, there is provided an electric arcing protection method comprising:
- monitoring the presence of electrical arcing between a plug and a socket; and
- actuating a mechanism to cause the pins of the plug to be withdrawn from the socket upon detection of electric arcing between the plug and the socket.
- In an example, the detection of electric arcing between the plug and the socket by a sensor comprises monitoring the temperature in a region of the connection of the plug and the socket by a heat sensor; and
the mechanism is actuated if the temperature detected by the heat sensor is above a threshold value. - In an example, the detection of electric arcing between the plug and the socket by a sensor comprises:
- monitoring the light level in a region of the connection of the plug and the socket by a light sensor; and
- causing the pins of the plug to be withdrawn from the socket if a change in the light level detected by the light sensor is above a threshold value.
- In an example, the detection of electric arcing between the plug and the socket by a sensor comprises:
- monitoring the temperature in a region of the connection of the plug and the socket by a heat sensor;
- monitoring the light level in a region of the connection of the plug and the socket by a light sensor; and
- causing the pins of the plug to be withdrawn from the socket if a change in the temperature detected by the heat sensor is above a threshold value and a change in the light level detected by the light sensor is above a threshold value.
- In an example, causing the pins of the plug to be withdrawn from the socket comprises activating at least one biasing arrangement to cause the pins of the plug to be withdrawn from the socket upon detection of electric arcing between the plug and the socket.
- In an example, the electric arcing protection method is carried out by components in a plug.
- In an example, the electric arcing protection method is carried out by components in a socket.
- To assist understanding of the present disclosure and to show how embodiments may be put into effect, reference is made by way of example to the accompanying drawings in which:
-
Figure 1 shows schematically a plug and socket arrangement; -
Figures 2A and 2B shows schematically the plug and socket arrangement ofFigure 1 , comprising an example mechanism for withdrawing the plug from the socket; -
Figures 3A and 3B shows schematically the plug and socket arrangement ofFigure 1 , comprising another example mechanism for withdrawing the plug from the socket. - As mentioned, electric arcing can damage electrical plugs and sockets, and even leave them in an unsafe condition due to failed and burnt out metal contacts.
- According to examples disclosed herein, an electric arcing protection arrangement has a sensor for monitoring the presence of electrical arcing between a plug and a socket. When electric arcing is detected by the sensor, a mechanism causes the pins of the plug to be withdrawn from the socket.
- Unwanted electric arcing can occur between plug pins and metal contacts of a socket. Electric arcing can cause pins and contacts to burn, becoming pitted and less conductive over time. With further use, the socket or appliances can become faulty. Electrical arcing can cause damage to devices, inlets/outlets, and even cause electrical shocks and fires. There is required an apparatus and method for protecting plugs and sockets from damage due to electric arcing.
- Referring now to the drawings,
Figure 1 shows aplug 102 connected to asocket 104.Pins 106 of theplug 102 are in contact with electrical contacts (not shown) within thesocket holes 107. Theplug 102 may, for example, be connected to a white goods machine, such as a refrigerator or a washing machine. Other examples of devices theplug 102 may be associated with include a television set or other electronic devices, a heater or a fan. Theplug 102 andsocket 104 shown in this figure are a British 3-pin plug 102 andsocket 104. Theplug 102 may have a different number ofpins 106 and thesocket 104 may have a corresponding different number ofholes 107 for thepins 106 to enter. For example, theplug 102 andsocket 104 may follow the European or the American 2-pin standards. Theplug 102 may be directly associated with an electronic or device or apparatus or be an adapter or a plug for an extension lead (which may lead to one or more sockets for other plugs). - The
plug 102 is shown as having asensor 108. Thesensor 108 is arranged to detect a change in the region of theplug 102 andsocket 104 that indicates electric arcing is occurring between thepins 106 of theplug 102 and the electric contacts of thesocket 104. The region of theplug 102 and thesocket 104 may comprise for example at least one of the electrical contacts of thesocket 104, thepins 106 of theplug 102, thehousing 110 of theplug 102 or thecover 112 of thesocket 104, depending on for example the change that is being detected and/or the detection technique used, as will be discussed further. - The
sensor 108 may comprise for example aheat sensor 108, arranged to detect whether the temperature of the region of theplug 102 andsocket 104 rises above a threshold value. In such a case, the region may be for example at least one of thepins 108, all or part of theplug housing 110, the socket holes 107 and all or part of the socket covering 112. - The rise in temperature may be due to arcing taking place and/or because of overheating of burnt out/faulty electrical contacts or pins 106. In this example, the
heat sensor 108 is shown on or in the housing of theplug 102. Alternatively or additionally, theheat sensor 108 may be located inside theplug 102, on thesocket 104 or inside thesocket 104. - Alternatively, the
sensor 108 may comprise alight sensor 108, arranged to detect whether the light level of the region of theplug 102 andsocket 104 rises above a threshold value. In the example of alight sensor 108, the region of theplug 102 andsocket 104 may for example be the space between thepins 106 of theplug 102 and the electrical contacts within the socket holes 107. Such a space may arise for example because of poor fitting of thepins 106 in the socket holes 107 or because for example thepins 106 have not been fully inserted into the socket holes 107. - When a spark occurs between the
pins 106 and thesocket 104 due to electric arcing, thelight sensor 108 detects the light level of the region as being above a threshold value. Thelight sensor 108 is shown as being located on or in theplug 102. Thelight sensor 108 may alternatively be on or in thesocket 104. The light level in the region may increase because of a spark occurring between thepins 108 and the electrical contacts within the socket holes 107. - The
sensor 108 may in one example be arranged to constantly monitor the region of theplug 102 and thesocket 104, thereby enabling action to be taken to prevent electric arcing when factors such as the light level or temperature are determined as being above a threshold. In another example, thesensor 108 may be arranged to activate or trigger only when factors such as the light level or temperature of the region of theplug 102 and thesocket 104 increase above a threshold value. - The
plug 102 may comprise onesensor 108, for example aheat sensor 108 or alight sensor 108, and thesocket 104 may comprise another (different)sensor 108, for example alight sensor 108 or aheat sensor 108 respectively. - As another alternative, both a
heat sensor 108 and alight sensor 108 may be provided in theplug 102 or thesocket 104. The heat sensor and the light sensor may be provided as separate items or as a unitary sensor. - In examples where both a heat sensor and a light sensor are provided (whether both in the
plug 102 or thesocket 104, or one in theplug 102 and the other in the socket 104), electric arcing is considered to be present if the detected temperature and light level are both above the respective temperature and light level threshold values. - When it is determined that arcing is taking place, a mechanism (not shown) is activated to cause the
pins 106 to be withdrawn from the electrical contacts of the socket holes 107. In an example, the mechanism comprises a biasing arrangement for withdrawing thepins 106 from thesocket 104. The biasing arrangement may for example be or include a spring system. - Referring to
Figure 2A , in this example theplug 102 comprises a mechanism for pulling thepins 106 into theplug 102 when electric arcing is detected between theplug 102 at thesocket 104. Theplug 102 has asensor 108 for detecting a change in the region of theplug 102 and thesocket 104. Theplug 102 also has a mechanism for withdrawing thepins 106 from thesocket 104. The mechanism may be arranged such that in a default position thepins 106 protrude from theplug 102. Theplug 102 is arranged such that when the sensor(s) 108 indicates that arcing is taking place, the mechanism is activated to extract thepins 106 from thesocket 104 and into the body of theplug 102. - Referring to
Figure 2B , theplug 102, having withdrawn thepins 106 away from thesocket 104, is able to fall away from thesocket 104, thereby reducing the chance of damage to theplug 102 and/orsocket 104 by electric arcing. -
Figures 3A and 3B show another example of theplug 102 andsocket 104 in use, wherein the mechanism to cause thepins 106 to be withdrawn is contained in thesocket 104. The mechanism is arranged such that when electric arcing is detected thepins 106 of theplug 102 are pushed out of thesocket 104. Referring toFigure 3A , when thesensor 108 detects the temperature and light level of the region between theplug 102 and thesocket 104 as being above the threshold heat and light values respectively, the mechanism pushes thepins 106 of theplug 102 out of thesocket 104. Referring toFigure 3B , theplug 102 is free to fall away from thesocket 104, thereby reducing or eliminating damage to theplug 102 and/orsocket 104 by electric arcing. - The examples described herein are to be understood as illustrative examples of embodiments of the invention. Further embodiments and examples are envisaged. Any feature described in relation to any one example or embodiment may be used alone or in combination with other features. In addition, any feature described in relation to any one example or embodiment may also be used in combination with one or more features of any other of the examples or embodiments, or any combination of any other of the examples or embodiments. Furthermore, equivalents and modifications not described herein may also be employed within the scope of the invention, which is defined in the claims.
Claims (15)
- An electric arcing protection arrangement comprising:a sensor (108) for monitoring the presence of electrical arcing between a plug (102) and a socket (104); anda mechanism arranged to cause the pins (106) of the plug (102) to be withdrawn from the socket (104) upon detection of electric arcing between the plug (102) and the socket (104) by the sensor (108).
- An electric arcing protection arrangement according to claim 1, comprising a plug (102), wherein the plug (102) comprises:the sensor (108) for monitoring the presence of electrical arcing; andthe mechanism arranged to cause the pins (106) of the plug (102) to be withdrawn from the socket (104).
- An electric arcing protection arrangement according to claim 1, comprising a socket (104), wherein the socket (104) comprises:the sensor (108) for monitoring the presence of electrical arcing; andthe mechanism arranged to cause the pins (106) of the plug (102) to be withdrawn from the socket (104).
- An electric arcing protection arrangement according to any of claims 1 to 3, wherein the sensor (108) comprises a heat sensor (108) arranged to monitor the temperature in a region of the connection of the plug (102) and the socket (104), the electric arcing protection arrangement being such that if the temperature detected by the heat sensor (108) is above a threshold value, the mechanism causes the pins (106) of the plug (102) to be withdrawn from the socket (104).
- An electric arcing protection arrangement according to any of claims 1 to 4, wherein the sensor (108) comprises a light sensor (108) arranged to monitor the light level in a region of the connection of the plug (102) and the socket (104), the electric arcing protection arrangement being arranged such that if the light level detected by the light sensor (108) is above a threshold value, the mechanism causes the pins (106) of the plug (102) to be withdrawn from the socket (104).
- An electric arcing protection arrangement according to any of claims 1 to 3, wherein the sensor (108) comprises a heat sensor (108) and a light sensor (108), the sensor (108) being arranged such that:the heat sensor (108) monitors the temperature in a region of the connection of the plug (102) and the socket (104);the light sensor (108) monitors the light level in a region of the connection of the plug (102) and the socket (104); andif the temperature in the region of the connection of the plug (102) and the socket (104) detected by the heat sensor (108) is above a threshold value and the light level in the region of the connection of the plug (102) and the socket (104) detected by the light sensor (108) is above a threshold value, the mechanism causes the pins (106) of the plug (102) to be withdrawn from the socket (104).
- An electric arcing protection arrangement according to any of claims 1 to 6, wherein the mechanism comprises at least one biasing arrangement to cause the pins (106) of the plug (102) to be withdrawn from the socket (104) upon detection of electric arcing between the plug (102) and the socket (104) by the sensor (108).
- An electric arcing protection arrangement according to claim 7, wherein the biasing arrangement comprises one or more springs arranged to push or pull the pins (106) of the plug (102) out of the socket (104).
- An electric arcing protection method comprising:monitoring the presence of electrical arcing between a plug (102) and a socket (104); andactuating a mechanism to cause the pins (106) of the plug (102) to be withdrawn from the socket (104) upon detection of electric arcing between the plug (102) and the socket (104).
- An electric arcing protection method according to claim 9, wherein the detection of electric arcing between the plug (102) and the socket (104) by a sensor (108) comprises monitoring the temperature in a region of the connection of the plug (102) and the socket (104) by a heat sensor (108); and
the mechanism is actuated if the temperature detected by the heat sensor (108) is above a threshold value. - An electric arcing protection method according to claim 9 or claim 10, wherein the detection of electric arcing between the plug (102) and the socket (104) by a sensor (108) comprises:monitoring the light level in a region of the connection of the plug (102) and the socket (104) by a light sensor (108); andcausing the pins (106) of the plug (102) to be withdrawn from the socket (104) if a change in the light level detected by the light sensor (108) is above a threshold value.
- An electric arcing protection method according to claim 9, wherein the detection of electric arcing between the plug (102) and the socket (104) by a sensor (108) comprises:monitoring the temperature in a region of the connection of the plug (102) and the socket (104) by a heat sensor (108);monitoring the light level in a region of the connection of the plug (102) and the socket (104) by a light sensor (108); andcausing the pins (106) of the plug (102) to be withdrawn from the socket (104) if a change in the temperature detected by the heat sensor (108) is above a threshold value and a change in the light level detected by the light sensor (108) is above a threshold value.
- An electric arcing protection method according to any of claims 9 to 12, wherein causing the pins (106) of the plug (102) to be withdrawn from the socket (104) comprises activating at least one biasing arrangement to cause the pins (106) of the plug (102) to be withdrawn from the socket (104) upon detection of electric arcing between the plug (102) and the socket (104).
- An electric arcing protection method according to any of claims 9 to 13 carried out by components in a plug (102).
- An electric arcing protection method according to any of claims 9 to 13 carried out by components in a socket (104).
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP17202433.3A EP3487014A1 (en) | 2017-11-17 | 2017-11-17 | Electric arcing protection arrangement and method |
| TR2017/19152A TR201719152A2 (en) | 2017-11-17 | 2017-11-29 | Electric Arc Protection Arrangement And Method |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP17202433.3A EP3487014A1 (en) | 2017-11-17 | 2017-11-17 | Electric arcing protection arrangement and method |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP3487014A1 true EP3487014A1 (en) | 2019-05-22 |
Family
ID=60409192
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP17202433.3A Withdrawn EP3487014A1 (en) | 2017-11-17 | 2017-11-17 | Electric arcing protection arrangement and method |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP3487014A1 (en) |
| TR (1) | TR201719152A2 (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113820043A (en) * | 2021-09-29 | 2021-12-21 | 湖北工业大学 | Detection device and method for electrical engineering |
| EP4016757A1 (en) * | 2020-12-17 | 2022-06-22 | Vestel Elektronik Sanayi ve Ticaret A.S. | Electrical connector and method |
| US12316090B2 (en) | 2023-03-08 | 2025-05-27 | Pratt & Whitney Canada Corp. | Temperature sensor for arc detection |
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| CN106654720A (en) * | 2016-12-22 | 2017-05-10 | 六安力达生产力促进中心有限公司 | Ejection release device for socket |
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- 2017-11-17 EP EP17202433.3A patent/EP3487014A1/en not_active Withdrawn
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| DE3141374A1 (en) * | 1981-10-02 | 1983-04-28 | Licentia Patent-Verwaltungs-Gmbh, 6000 Frankfurt | Arrangement for monitoring electrical devices for the formation of one or several arcs |
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| EP4016757A1 (en) * | 2020-12-17 | 2022-06-22 | Vestel Elektronik Sanayi ve Ticaret A.S. | Electrical connector and method |
| CN113820043A (en) * | 2021-09-29 | 2021-12-21 | 湖北工业大学 | Detection device and method for electrical engineering |
| CN113820043B (en) * | 2021-09-29 | 2023-08-29 | 义乌建投建设发展有限公司 | Detection device and method for electrical engineering |
| US12316090B2 (en) | 2023-03-08 | 2025-05-27 | Pratt & Whitney Canada Corp. | Temperature sensor for arc detection |
Also Published As
| Publication number | Publication date |
|---|---|
| TR201719152A2 (en) | 2019-06-21 |
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