Coil body
10607760 ยท 2020-03-31
Assignee
Inventors
Cpc classification
H01F27/324
ELECTRICITY
H01F27/04
ELECTRICITY
H01F2005/043
ELECTRICITY
H01F27/306
ELECTRICITY
H01F2005/046
ELECTRICITY
H01F27/323
ELECTRICITY
H01F5/04
ELECTRICITY
International classification
H01F27/04
ELECTRICITY
H01F27/26
ELECTRICITY
H01F5/04
ELECTRICITY
Abstract
A coil body with a hollow housing body is provided that has on a first side an opening for the intake of a coil into the housing body along an inserting direction and a housing wall that extends between the first side of the housing body and a second side that is located opposite. The coil body further comprises multiple electric contacts and a plurality of guiding grooves that are disposed along the housing wall and that are each formed for guiding of a connection wire in order to connect a coil, which has been absorbed by the housing body, to the contacts. The contacts are thereby disposed on the second side on the housing body.
Claims
1. A coil body that has on a first side an opening for inserting a coil in a housing body along an inserting direction and a housing wall that extends between the first side of the housing body and an opposite second side, electric contacts and a plurality of guiding grooves that are situated along the housing wall and that are each formed for guiding a connection wire in order to connect a coil that has been inserted through the housing body to the contacts, whereby the contacts are disposed on the opposite second side on the housing body, wherein the coil body further has slits that are formed on an edge of the opening and that are disposed on the opening in a circumferential direction so that a throughput into the housing body and/or out of the housing body is provided for each guiding groove, and wherein the guiding grooves are formed by fins that protrude from the housing wall and that extend in parallel along the inserting direction, respectively two fins forming a guiding groove and fins of respectively one guiding groove being all spaced from the fins of the other guiding grooves so that respectively one insulation groove is formed between two guiding grooves.
2. The coil body according to claim 1, wherein at least one guiding groove extends completely along the housing wall.
3. The coil body according to claim 1, wherein the housing body is configured to receive a torus-shaped coil.
4. The coil body according to claim 1, wherein the insulation grooves have different depths.
5. A coil body for supporting a coil comprising: a housing body having a housing wall with a length extending between a base and an opposing edge; a plurality of fins extending along and from the housing wall forming alternating insulation grooves and guiding grooves having different depths from the housing wall, wherein the alternating insulation grooves have a closed surface extending along the length of the housing wall from the base to the opposing edge; and a slot placed through the housing wall in said housing body adjacent a respective one of the guiding grooves wherein said slot extends from the opposing edge of the housing wall towards the base and a connection wire is capable of passing through said slot, whereby creepage paths are capable of being increased and connection wires having higher potential may be placed in the guiding grooves.
6. The coil body for supporting a coil as in claim 5 further comprising: a coil having connecting wires placed within the coil body, wherein one each of the connecting wires of said coil pass through a respective one of said slot placed through the housing wall and into a respective one of the guiding groves and none of the connecting wires of said coil are placed in the insulating grooves.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages and features of the present invention may be taken from the following description together with the enclosed Figures in which
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4)
(5) According to the illustration in
(6) Guiding grooves 130 that extend in parallel to the direction C are formed in the housing wall 114 between the first side A and the second side B. The guiding grooves 130 extend preferably completely along the housing wall between the first side A and the second side B of the housing body 110. Each of the guiding grooves 130 is formed preferably for complete intake of a connection wire, i.e. a depth from each guiding groove 130 is greater than or equal to a diameter of the connection wire (not shown).
(7) As shown in
(8) A top view of the housing body 110 (along the direction C in
(9) In some descriptive embodiments, an insulation groove 134 is formed between respectively two adjacent guiding grooves 130. The insulation grooves 134 and the guiding grooves 130 are consequently disposed alternatingly along the housing wall 114 (from a circumferential perspective). As shown by the top view in
(10) Reference is made to
(11) According to some embodiments that are not shown, the coil body 100 displayed in
(12) Alternative embodiments of the present invention are described with reference to the
(13) In some descriptive embodiments, the core guiding area 220 is designed for absorption of at least one leg of an E- and/or I-core. For this purpose, the core guiding area 220 has a core support area 232, for example the shown support piece or snap-fits (not shown) etc.
(14) According to the illustration in
(15) Fixing of a magnetic core on the coil body 200 may for example occur in that the core (not shown), which is guided by guiding areas 212 on the first row of contacts 210 and the core support area 232 on the second row of contacts 230, is inserted in the coil body 200 along an inserting direction D and supported by holding burls 224 in an intake area 226 of the coil body 200 through interaction with the support structure 222. Connection wires for windings (not shown) are led to the uncovered ends 244 of the contacts 240 on the bottom side of the coil body 200 and connected to such ends. A connection of the coil body 200 with a(n) (electric and/or mechanical) conductor board that is not shown is established via the uncovered ends 242 of the contacts 240.
(16)
(17) In some descriptive embodiments, an insulation groove 218 is formed in at least one fin 216. Therefore, the insulation groove 218 contributes to the prolongation of the creepage path between two neighboring guiding groves 214 in addition to the fin 216. According to descriptive examples, a depth of the at least one insulation groove 218 is smaller than or equal to a depth of at least one of the surrounding guiding grooves 214. In addition, an optional guiding groove may further be provided at least in one of the fins 236 of the second row of contacts 230.
(18) In some descriptive embodiments of the present invention, a height and/or width of each fin is greater than or equal to a depth and/or width of each guiding groove.
(19) A further improvement of the dielectric strength of the coil body 200 may for example be achieved in that the guiding grooves 214 of the first row of contacts 210 are longer than the guiding grooves 234 of the second row of contacts 230. According to some descriptive embodiments, this is achieved in that the contacts 240 on the first row of contacts 210 are arranged under a greater distance to the intake area 226 than the contacts 240 on the second row of contacts 230. For example the contacts 240 on the first row of contacts 210 may be provided as high voltage-conducting contacts during use of the coil body 200.
(20) Reference is made to
(21)
(22) In some descriptive examples, the magnetic core M may be achieved by three I-cores or an EII-core configuration. Alternatively, the core is formed according to a double-E configuration (cf. dotted lines) or an EI-core configuration.
(23) A distance d1 between the core M and/or the winding 250 from the contacts 240 on the first row of contacts 210 is greater than a distance d2 between the contacts 240 on the second row of contacts 230 and the core M and/or the winding 250. This provides a prolonged creepage path on the first row of contacts 210. According to a special example, the following applies: d11.5*d2 or d12*d2 or d13*d2.