Surge protector and base therof
10593501 ยท 2020-03-17
Assignee
- SHANGHAI CHENZHU INSTRUMENT CO., LTD. (Shanghai, CN)
- DINKLE ENTERPRISE CO., LTD. (New Taipei, TW)
- DINKLE ELECTRIC MACHINERY (CHINA) CO., LTD. (Kunshan, Jiangsu, CN)
Inventors
Cpc classification
H01H37/76
ELECTRICITY
H01H71/0207
ELECTRICITY
H01H2037/762
ELECTRICITY
H01C7/126
ELECTRICITY
H01H71/04
ELECTRICITY
H01H71/025
ELECTRICITY
International classification
H01H71/04
ELECTRICITY
Abstract
A base of a surge protector, the surge protector comprising a function rotating member (3), and the function rotating member (3) having a remote linkage rod contact wall (3D) and a remote linkage notching (3H), and the base comprising a remote device, and the remote device having at least one remote linkage rod (9), and when the function rotating member (3) is situated at the first position, the remote linkage rod (9) is pressed down by the remote linkage rod contact wall (3D), and when the function rotating member (3) is rotated from the first position to the second position, the function rotating member (3) is rotated from the remote linkage rod contact wall (3D) to the remote linkage notching (3H) with respect to the point of action of the remote linkage rod (9) to release the remote linkage rod (9).
Claims
1. A surge protector, comprising: at least one varistor (5); a base; and at least one release mechanism, including an internal box body (2), a function rotating member (3), an elastic driving device (4), a first electrical connection pin (6), a second electrical connection pin (7) and a bridge bracket (8), accommodated in the varistor (5), and the first electrical connection pin (6) and the second electrical connection pin (7) being plugged in the internal box body (2), and a varistor's second electrode (5B) and the first electrical connection pin (6) being soldered, and the internal box body (2) having a fixed column (2B), and the function rotating member (3) having an arc shield plate (3F) and a soldering window (3C), and the function rotating member (3) being sheathed on the fixed column (2B) and disposed between the varistor (5) and the bridge bracket (8), and the elastic driving device (4) having an end coupled to the function rotating member (3) and another end fixed to the internal box body (2), wherein an end of the bridge bracket (8) is directly fixed and coupled to the second electrical connection pin (7), and when the varistor (5) is situated at a normal status, the function rotating member (3) is situated at a first position, and another end of the bridge bracket (8) is passed through the soldering window (3C) and soldered with a varistor's first electrode (5A) at low temperature, and when the varistor (5) is situated at a release status, the elastic driving device (4) drives the function rotating member (3) to rotate around the fixed column (2B), such that when the function rotating member (3) is rotated to a second position, the arc shield plate (3F) provides a shielding effect between the bridge bracket (8) and the varistor's first electrode (5A); wherein the base includes a remote device, and the remote device has at least one remote linkage rod (9), and the function rotating member (3) has a remote linkage rod contact wall (3D) and a remote linkage notching (3H), and when the function rotating member (3) is situated at the first position, the remote linkage rod (9) is pressed down by the remote linkage rod contact wall (3D), and when the function rotating member (3) is rotated from the first position to the second position, the function rotating member (3) is rotated from the remote linkage rod contact wall (3D) to the remote linkage notching (3H) with respect to the point of action of the remote linkage rod (9) to release the remote linkage rod (9).
2. The surge protector of claim 1, wherein the remote device has a seat (13), a micro switch (15), at least one slider spring (16) and at least one remote linkage rod spring (17), and the seat (13) has a slide slot (13A), a slider (14), at least one slider spring (16), and at least one spring placement hole (13D), and the micro switch (15) is installed in the seat (13) and disposed under the slider (14), and the remote linkage rod spring (17) is sheathed on the remote linkage rod (9) and installed together with the remote linkage rod (9) in the spring placement hole (13D), and the slider (14) is installed onto the slide slot (13A), and the slider spring (16) has an end coupled to the slider (14) and the other end abutting against the seat sidewall (13E) and when the function rotating member (3) is situated at the first position, the remote linkage rod spring (17) is situated at a maximum compression status, and an end of the slider (14) is stopped by the remote linkage rod (9) at an end of the slide slot (13A), and the slider (14) has no action on the micro switch (15), and when the function rotating member (3) is situated at the second position, at least one of the remote linkage rods (9) pushes the slider (14) to move along the slide slot (13A) under the pushing effect of the remote linkage rod spring (17), so that the slider (14) presses the micro switch (15).
3. The surge protector of claim 2, wherein the remote linkage rod (9) has a driving slope (9A), and the slider (14) has a driven slope (14A), and when the function rotating member (3) is situated at the first position, the driven slope (14A) of the slider (14) is stopped by the driving slope (9A) of the remote linkage rod (9), and when the function rotating member (3) is rotated to the second position, the driving slope (9A) pushes the driven slope (14A) to move the slider (14) along the slide slot (13A), so as to press the micro switch (15).
4. The surge protector of claim 2, wherein the resultant force of all slider springs (16) is smaller than the elasticity of the single remote linkage rod spring (17).
5. The surge protector of claim 1, wherein the base is a pluggable base, and the base has a cover (10), and the cover (10) has an U-shaped plug slot, and an inner sidewall of the U-shaped plug slot has a latch slot (10A), and the external box body (1) of the release mechanism has a lock (1B), and when the release mechanism is inserted into the base, the lock (1B) is latched to the latch slot (10A) formed on the inner sidewall of the U-shaped plug slot.
6. The surge protector of claim 1, wherein the base has an electrical connection member, and the electrical connection member has a metal claw (11) and a conductive strip (12), and the metal claw (11) and the conductive strip (12) are soldered, and the metal claw (11), the first electrical connection pin (6) of the release mechanism, and the second electrical connection pin (7) are clamped and coupled to form a conducting channel.
7. The surge protector of claim 1, wherein the seat (13) has a limit point (13B), and the remote linkage rod (9) has a bump (9B), and when the remote linkage rod (9) is set in the seat (13), the bump (9B) and the limit point (13B) are latched with each other.
8. A base of a surge protector, the surge protector comprising a function rotating member (3), and the function rotating member (3) having a remote linkage rod contact wall (3D) and a remote linkage notching (3H), and the base comprising a remote device, and the remote device having at least one remote linkage rod (9), and when the function rotating member (3) is situated at a first position, the remote linkage rod (9) is pressed down by the remote linkage rod contact wall (3D), and when the function rotating member (3) is rotated from the first position to a second position, the function rotating member (3) is rotated from the remote linkage rod contact wall (3D) to the remote linkage notching (3H) with respect to the point of action of the remote linkage rod (9) to release the remote linkage rod (9).
9. The base of a surge protector according to claim 8, wherein the remote device has a seat (13), a micro switch (15), at least one slider spring (16) and at least one remote linkage rod spring (17), and the seat (13) has a slide slot (13A), a slider (14), at least one slider spring (16), and at least one spring placement hole (13D), and the micro switch (15) is installed in the seat (13) and disposed under the slider (14), and the remote linkage rod spring (17) is sheathed on the remote linkage rod (9) and installed together with the remote linkage rod (9) together into the spring placement hole (13D), and the slider (14) is installed onto the slide slot (13A), and the slider spring (16) has an end coupled to the slider (14) and the other end abutting against the seat sidewall (13E), and when the function rotating member (3) is situated at the first position, the remote linkage rod spring (17) is situated at a maximum compression status, and the slider (14) is stopped by the remote linkage rod (9) at an end of the slide slot (13A), and the slider (14) has no action on the micro switch (15), and when the function rotating member (3) is situated at the second position, at least one of the remote linkage rods (9) pushes the slider (14) to move along the slide slot (13A) under the pushing effect of the remote linkage rod spring (17), so that the slider (14) presses at the micro switch (15).
10. The base of a surge protector according to claim 9, wherein the remote linkage rod (9) has a driving slope (9A), and the slider (14) has a driven slope (14A), and when the function rotating member (3) is situated at the first position, the driven slope (14A) of the slider (14) is stopped by the driving slope (9A) of the remote linkage rod (9), and when the function rotating member (3) is rotated to the second position, the driving slope (9A) pushes the driven slope (14A) to move the slider (14) along the slide slot (13A), so as to press down the micro switch (15).
11. The base of a surge protector according to claim 9, wherein the resultant force of all slider springs (16) is smaller than the elasticity of the single remote linkage rod spring (17).
12. The base of a surge protector according to claim 8, wherein the base is a pluggable base, and the base has a cover (10), and the cover (10) has an U-shaped plug slot, and an inner sidewall of the U-shaped plug slot has a latch slot (10A), and the external box body (1) of the release mechanism has a lock (1B), and when the release mechanism is inserted into the base, the lock (1B) is latched to the latch slot (10A) formed on the inner sidewall of the U-shaped plug slot.
13. The base of a surge protector according to claim 8, wherein the base has an electrical connection member, and the electrical connection member has a metal claw (11) and a conductive strip (12), and the metal claw (11) and the conductive strip (12) are soldered, and the metal claw (11), the first electrical connection pin (6) of the release mechanism, and the second electrical connection pin (7) are clamped and coupled to form a conducting channel.
14. The base of a surge protector according to claim 9, wherein the seat (13) has a limit point (13B), and the remote linkage rod (9) has a bump (9B), and when the remote linkage rod (9) is set into the seat (13), the bump (9B) and the limit point (13B) are latched with each other.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
(19)
(20)
(21)
(22)
(23)
(24)
(25)
(26)
(27)
(28)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(29) The technical contents of the present invention will become apparent with the detailed description of preferred embodiments accompanied with the illustration of related drawings as follows. It is noteworthy that the preferred embodiments are provided for illustrating this disclosure rather than restricting the scope of the disclosure.
(30) Preferred embodiments of the release mechanism, the base and the surge protector of this disclosure will be described and illustrated according to the accompanied drawings as follows.
(31) With reference to
(32) With reference to
(33) With reference to
(34) In
(35) In
(36) The function rotating member 3 is made of an insulating, temperature resisting, and flame retardant material, installed in the function rotating member placement slot 2A, and sheathed on the fixed column 2B, and the function rotating member 3 is installed between the varistor 5 and the bridge bracket 8 and coupled to the elastic driving device 4, wherein the elastic driving device 4 is preferably a spring 4. The spring of the elastic driving device 4 has an end coupled to the spring connecting ring 3B and the other end coupled to the spring fixing column 2F of the internal box body. A fixing end 8B of the bridge bracket 8 is fixed and coupled to the second electrical connection pin 7 directly. The bridge bracket 8 is preferably pivotally coupled to the second electrical connection pin 7 in order to save the conductive wire coupled between them, so as to simplify the structure and reduce the quantity of components.
(37) With reference to
(38) When the varistor 5 is situated at the release status, the elastic driving device 4 drives the function rotating member 3 to rotate around the fixed column 2B. In other words, the spring is contracted to its original status, and the function rotating member is rotated counterclockwise around the fixed column 2B under the effect of the spring of the elastic driving device 4, and the function rotating member 3 is rotated to the second position, so that the failure status indicating area 2N of the internal box body 2 is situated at the monitoring hole 1A and exposed from the monitoring hole 1A to indicate that the varistor 5 is situated at the release status, and the function rotating member 3 is rotated from the remote linkage rod contact wall 3D to the remote linkage notching 3H with respect to the point of action of the remote linkage rod 9, so as to release the remote linkage rod 9. The bridge bracket 8 will not rotate with the function rotating member 3, and the arc shield plate 3F provides a shielding effect between the bridge bracket 8 and the varistor's first electrode 5A, so that the wiring can be cut off more completely to prevent the conventional ceramic shielding body and release electrode plate from moving together. If distance between them is too short, the wiring cannot be cut off completely.
(39) Preferably, the shear plane 2M is disposed on the varistor's first electrode passing hole 2K, and the shear slope 3E of the function rotating member 3 is matched with the shear plane 2M of the varistor's first electrode passing hole 2K and rotated with the rotation of the function rotating member 3 to produce a shear movement, so as to cut off the soldering wiring more completely and quickly. When the function rotating member 3 is rotated to the second position, the inner wall and the shear plane 2M of the varistor's first electrode passing hole 2K, the arc shield plate 3F of the function rotating member 3, and a surface of the varistor's first electrode 5A form a closed area, so that the electric arc can be eliminated more completely and quickly.
(40) With reference to
(41) With reference to
(42) With reference to
(43) With reference to
(44) With reference to
(45) With reference to
(46) In summation of the description above, the release mechanism of this disclosure is capable of cutting off the electric arc and the soldering wiring between the varistor pin and the bridge bracket completely and quickly, while providing a status indication and a remote function.
(47) The base of this disclosure simply adopts a micro switch and a slider component, such that when a surge protector of any level is released, the remote device will issue a signal to improve the safety and reliability of the surge protector.