Cable entry arrangement for connecting a cable
Patent Information
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- EATON INTELLIGENT POWER LTD
- Filing Date
- 2012-09-06
- Publication Date
- 2026-07-30
AI Technical Summary
Conventional cable gland assemblies are cumbersome to disassemble and reassemble, often leading to component loss and inadequate sealing, which can result in contamination and deterioration of cables.
A grommet assembly with semi-permanent couplings between components, including a grommet nut, intermediate body, and washers, providing a strong seal and allowing easy disassembly without losing parts, using features like ring holders and sealing features to maintain integrity during assembly and disassembly.
The grommet assembly facilitates easy disassembly and reassembly while maintaining a strong seal, preventing external contaminants and ensuring cable integrity by keeping components connected unless intentionally separated.
Abstract
Description
Cross-reference to related registrations
[0001] The present application claims priority pursuant to 35 USC § 119 over the preliminary US patent application filed on September 6, 2011, with serial number 61 / 531,169 and entitled “Cable Gland Assembly for Terminating Cable”, and the preliminary US patent application filed on April 27, 2012, with serial number 61 / 639,409 and entitled “Cable Gland Assembly for Terminating Cable”. The entire contents of each of the aforementioned applications are hereby incorporated by reference. Technical field
[0002] The present disclosure relates generally to cable feedthrough connectors and in particular to systems, methods and devices for cable feedthrough arrangements for connecting a cable. background
[0003] Cable entry assemblies are used to connect cables in hazardous and non-hazardous environments. Specifically, cable entry assemblies generally provide a means of connecting cables, such as reinforced cables, to junction boxes, control panels, control boards, enclosures, and the like. Typical cable entry assemblies provide a seal around the cable conductors, mechanical retention of the cable, and electrical continuity across the cable connection, thus protecting the cable. Furthermore, typical cable entry assemblies may consist of several components. Occasionally, it may be necessary to disassemble and / or reassemble the cable assembly.During disassembly, numerous components of a conventional cable gland, including those that wouldn't normally need to be detached for disassembly, can be lost. This makes disassembling and reassembling the cable gland assembly more complicated, time-consuming, and prone to errors. Furthermore, foreign matter can enter the cable from the mating points of the various components, as conventional cable gland assemblies may not provide a sufficiently stable seal between certain components. This can lead to deterioration of the cable and / or conductor and reduce the overall quality of the cable gland. Summary
[0004] In general, one aspect of the disclosure relates to a cable entry assembly for connecting a cable. The cable entry assembly may include a bushing nut having an outer wall and an inner wall. The inner wall of the cable entry assembly may define a bushing nut opening. The cable entry assembly may also include a bushing positioned within the bushing nut opening. The bushing may define a bushing opening for receiving a cable. The cable entry assembly may further include a first washer positioned above the bushing within the bushing nut. The first washer is generally designed to be held by the bushing nut and to retain the bushing. The cable entry assembly also includes an intermediate body.The intermediate body can comprise a first intermediate body end and a second intermediate body end. The first intermediate body end can be coupled to the feedthrough nut. The intermediate body can also have a first sealing feature near the second intermediate body end. The cable feedthrough assembly can comprise a body coupled to the intermediate body at the second intermediate body end, and an intermediate body nut coupled to both the intermediate body and the body at the second intermediate body end. The intermediate body nut can have a second sealing feature corresponding to the first sealing feature of the intermediate body, with the first and second sealing features working together to provide a seal.The cable entry arrangement can also include a connection chamber positioned within an interior of the body, the connection chamber having an opening for receiving a sealing connection and at least one conductor of the cable therein.
[0005] In another aspect, the disclosure may generally relate to a feedthrough arrangement for a cable gland. The feedthrough arrangement may include a feedthrough nut, an upper washer, and a gland. The feedthrough nut may include a ring-retaining feature for semi-permanent coupling with the upper washer. The upper washer may include a feedthrough-retaining feature for semi-permanent coupling with the gland and a nut-retaining feature for semi-permanent coupling with the feedthrough nut. The gland includes a ring-retaining feature for semi-permanent coupling with the upper washer.
[0006] In yet another aspect, the disclosure may generally relate to a cable entry arrangement for connecting a cable. The cable entry arrangement may include a cable nut having an outer wall and an inner wall. The inner wall of the cable nut may define a entry nut opening. The cable entry arrangement may include a bushing positioned within the bushing nut opening, the bushing defining an entry point for receiving a cable therein. The cable entry arrangement may also include an intermediate body having a first intermediate body end and a second intermediate body end. The first intermediate body end may be coupled to the entry nut, and the intermediate body may have a first sealing feature near the second intermediate body end.The cable entry assembly can further include a body coupled to the intermediate body at the second end of the intermediate body, and an intermediate body nut coupled to the intermediate body and the body at the second end of the intermediate body. The intermediate body nut can have a second sealing feature corresponding to the first sealing feature of the intermediate body, with the first and second sealing features working together to provide a seal.
[0007] These and other aspects, tasks, features and embodiments result from the following description and the attached claims. Brief description of the drawing
[0008] The drawing shows only exemplary embodiments and should therefore not be considered exhaustive, as these exemplary embodiments allow for further equally effective embodiments. The elements and features shown in the drawing are not necessarily to scale. Rather, the emphasis is on a clear representation of the principles of the exemplary embodiments. Furthermore, certain dimensions or positions may be exaggerated to visually clarify such principles. In the drawing, reference numerals denote similar or corresponding, but not necessarily identical, elements.
[0009] Fig. Figure 1 is a perspective view of a first embodiment of a cable feedthrough arrangement according to exemplary embodiments of the present disclosure.
[0010] Fig. Figure 2 is a cross-sectional view of a first embodiment of a cable feedthrough arrangement according to exemplary embodiments of the present disclosure.
[0011] Fig. Figure 3 is a perspective view of a first embodiment of a washer ring according to exemplary embodiments of the present disclosure.
[0012] Fig. Figure 4 is a perspective view of an implementation corresponding to exemplary embodiments of the present disclosure.
[0013] Fig. 5a and Fig. Figure 5b shows perspective views of a second embodiment of a washer ring corresponding to exemplary embodiments of the present disclosure.
[0014] Fig. Figure 6 is a cross-sectional view of a further embodiment of a cable feedthrough arrangement according to exemplary embodiments of the present disclosure.
[0015] Fig. Figure 7 is a perspective view of a third embodiment of a washer ring corresponding to exemplary embodiments of the present disclosure. Detailed description
[0016] In general, the exemplary embodiments provide systems, methods, and devices for a cable entry arrangement. The cable entry arrangement described here is easier to assemble and / or disassemble and provides a stable seal against external contaminants. In particular, the cable entry arrangement can be disassembled while allowing certain components within the cable entry to remain intact relative to others, thus reducing the number of loose parts.
[0017] Many components of the cable entry assembly can be described as generally having cylindrical, circular, or conical features, and as having cylindrical or circular holes, cavities, and openings. Such features can be described or defined by a circumference, radius, outer surface, inner surface, and / or other terms suitable for defining such features. Note that, in certain embodiments, such features may alternatively be elliptical, polygonal, or polygonal, and the like. In such embodiments, the features can be defined by appropriate terms suitable for that shape (for example, circumference, edge, face, surface). Fig. 2 and Fig. Figure 6 shows cross-sectional views of two exemplary cable entry arrangements. 100according to certain exemplary embodiments. In one or more embodiments, one or more of the components or elements can be as shown in the illustration. Fig. 2 and Fig. 6. omitted, repeated and / or replaced. Accordingly, the embodiments of the cable entry arrangement should not be based on those in Fig. 1 and Fig. The 6 specific configurations shown are considered in a limited way.
[0018] As in Fig. Figure 1 shows an embodiment of the cable routing arrangement. 100 From an external perspective, a feedthrough mother 104 , an intermediate body 106 , a body 108 and an intermediate body mother 107 , which surround sections of the intermediate body 106 and the body 108 is arranged around it. Both the carrying mother 104 as well as the intermediate body 106and the body 108 They include a central opening and are coupled concentrically to each other in such a way that a cable path 102 the cable entry 100 traversed. A cable (not shown) can be found within the cable path. 102 be arranged and / or connected. In certain embodiments, the cable can be secured by tightening the bushing nut. 104 around the intermediate body.
[0019] Fig. Figure 2 shows a cross-sectional view of a first embodiment of the cable feedthrough arrangement. 100 from Fig. 1. In addition to the implementing mother 104 , the intermediate body 106 and the body 108 can the cable routing arrangement 100 also one or more washers 210 , an implementation 212 , a grounding spring 214 , a reinforcement attack 216(also known as a damping device) and a connecting chamber 218 include. Likewise, each of the washers exhibits 210 as well as the implementation 212 , the grounding spring 214 , the reinforcement attack 216 and the connecting chamber 218 a central opening and are arranged concentrically on top of each other in the manner shown, such that the cable path 102 the cable entry 100 crossed.
[0020] In certain embodiments, the bushing nut 104 to an upper section 232 of the intermediate body 106 be arranged around. The implementing mother 104 can around the upper section 232 of the intermediate body 106 They may be arranged in different dimensions. For example, Fig. 2 the implementing mother 104in a relaxed state, in which a comparatively small part of the upper section 232 of the intermediate body 106 within the implementing mother 104 is ordered. Will the implementing mother 104 tightened and / or on the intermediate body 106 pushed downwards, the upper section 232 of the intermediate body 106 increasingly within the implementing mother 104 arranged. In a tightened state (not shown), the feedthrough nut can 104 more completely around the intermediate body 106 be arranged around it. As such, the implementing mother can 104 and the upper section 232 of the intermediate body 106 a first and second passport characteristic 234 include.
[0021] In certain embodiments, the first and second fitting features can 234a semi-permanent fit and / or different levels of fit between the implementing mother 104 and the upper section 232 of the intermediate body 106 enable this. This allows the first and second passport characteristics to be used. 234 for example, windings that cause further twisting of the feedthrough nut 104 to the upper section 232 of the intermediate body 106 Allow upwards. In some embodiments, the first and second pass characteristics can be used. 234 Include sliders, tabs, clamps, snaps and other suitable fitting features.
[0022] In some embodiments, the implementation 212 within the implementing mother 104 arranged, and it is one or are the several washers 210 generally about and / or under the execution 212arranged. In particular, in certain embodiments an upper support ring can be 210a about the implementation 212 between the implementing mother 104 and the implementation 212 be arranged, and there may be a lower support ring. 210b during the implementation 212 arranged and mirrored on the upper support ring 210a be designed. In the illustrated embodiment, the bushing nut includes 104 a ring holder 220 on an inner surface of the feedthrough nut 104 The ring holder 220 may include a groove or a shoulder that forms the inner surface of the bushing nut near the upper end where the upper washer sits. 210a is arranged to hold the upper washer ring. 210a surrounds. The upper section can be enclosed in the same way. 232 of the intermediate body 106 in addition a ring stop 228for the installation of the lower washer ring 210b during a pass through the ring stop 228 Included in normal use. The ring stop 228 of the intermediate body 106 may include a heel, a hook, or another suitable inward projection.
[0023] The washer ring 210 is individually in Fig. 3 shown. The washer ring 210 is generally circular and located between an outer surface 310 and an inner surface 312 as between an upper surface 314 and a lower surface 316 fixed. The upper surface 314 of the washer 210 It may be curved. In certain embodiments, the upper surface may be 314 be straight. In this embodiment, the washer includes 210 an upper paragraph 318 , which extends from the outer surface 310adjacent to the upper surface 314 extends outwards and encloses it. Is the upper support ring 210a in the implementing mother 104 arranged, the upper paragraph 318 forced past the ring holder 220 from or in the implementing mother 104 can be positioned and thus engaged. This allows the upper support ring to be positioned. 210a generally with the implementing mother 104 The locking ring will remain connected as long as it is not intentionally and / or forcibly removed. 210 It also includes a feedthrough holder. 320 to hold a section of the execution 212 in it. The implementing body 320 may include a groove, a shoulder, or other suitable holding feature that grips the inner surface 312 of the washer 210 near the lower surface 316surrounds. The mounting bracket 320 It also includes a receiving edge. 322 , through which the implementation 212 to be arranged. In certain embodiments, the support ring can be made of nylon.
[0024] Fig. 4 is a perspective view of the implementation 212 corresponding to aspects of exemplary embodiments of the present disclosure. The implementation 212 can be between an outer surface 410 and an inner surface 412 as between an upper surface 414 and a lower surface 416 be fixed. The inner surface 412 Furthermore, it establishes the central opening in the implementation 212 determines where the cable is located. In certain embodiments, the routing includes 212 in addition, one or more jetties 418, which extend from the outer surface 410 the implementation 212 adjacent to the upper surface 414 and / or the lower surface 416 extend from and include these. In particular, in the illustrated embodiment, the implementation includes 212 an upper bridge 418a adjacent to the upper surface 414 and a lower bridge 418b adjacent to the lower surface 416 .
[0025] In certain embodiments, the implementation 212 and the upper washer ring 210a designed to connect to each other via the feedthrough holder 320 in the upper support ring 210a and the upper bridge 418a the implementation 212 to couple. In particular, the largest circumference of the upper bridge 418a generally larger than the receiving edge 322 of the implementing body 320in a neutral position and generally similar to the largest scope of the implementing body 320 As such, the upper bridge 418a the implementation 212 designed to pass by the receiving edge 322 crowded and in the implementation holder 320 to be snapped into place. This will cause the upper bridge to snap into place. 418a generally from the upper washer ring 210a It is held in place as long as it is not pulled away by a sufficient force, which is generally greater than gravity. Similarly, in certain embodiments, the lower web is held in place. 418b the implementation 212 similarly in a similar guide holder of the lower washer ring 210b arranged and held therein. Therefore, in such embodiments, the implementation remains 212 generally with the lower washer ring 210bcoupled, as long as it is not pulled away by a sufficient force, the sufficient force being generally greater than gravity.
[0026] The implementation 212 It may also have a chamfer on the outer surface 410 the implementation 212 contained and enclosing these. Generally, the chamfer around the center of the penetration is approximately halfway between the upper surface. 414 and the lower surface 416 located. Generally, if the implementing mother 104 in the Fig. The relaxed position shown in point 2 is the execution, as shown, in a neutral position. Thus, the execution 212 and the washers 210 generally the space between the implementing mother 104 and the intermediate body 106 Will the implementing mother 104 on the intermediate body 106tightened or pressed further onto it, the execution 212 increasingly compressed vertically. Because of the chamfer 420 Providing a thinner section of the passage, compression at the bevel can be achieved. 420 The focus is concentrated. This is achieved by the bevel. 420 a consistent and predictable compression for implementation 212 ready. In alternative embodiments, the chamfer can have contours that differ from those in Fig. The four shown are different, and can be found at other locations along the route than those shown. Fig. The 4 shown positions. The component can be made of an elastomeric material, such as neoprene.
[0027] As again in Fig. As shown in 2, the implementing mother 104 semi-permanent with the upper washer ring 210athrough the holding feature from the provision by the ring holder 220 and the upper paragraph 318 of the upper washer ring 210a coupling. Note that the term "semi-permanently coupled" generally refers to two objects that cannot be separated without a sufficient force, where the force is generally greater than gravity. When the elements are described here as semi-permanently coupled, the elements remain together when the bushing nut is removed. 104 is removed from the process, and the elements generally do not separate until a separating force greater than gravity acts to pull the elements apart.
[0028] Accordingly, the implementation 212 semi-permanent with the upper washer ring 210a by the implementing body 320 in the upper support ring 210a and the upper bridge 418athe implementation 212 coupled. The implementation is carried out in the same way. 212 moreover, semi-permanently with the lower support ring 210b through the lower bridge 418b the implementation 212 and the implementing body 320 of the lower washer ring 210b coupled. Furthermore, the lower support ring can 210b also semi-permanently with the intermediate body 106 through the upper paragraph 318 of the lower washer ring 210b and the ring stop 228 of the intermediate body 106 , as explained above, they may be coupled. Consequently, the implementing mother can 104 , the washers 210 and the implementation 212 , the intermediate body 106 or a subset thereof remain intact with respect to each other if the cable entry arrangement 100 is disassembled.
[0029] As has been explained, a cable (not shown) is to be placed in the cable path 102 the cable routing arrangement 100 The cable can be arranged in the cable gland assembly. It can include an outer layer, a reinforcing layer, and at least one conductor. Generally, when the cable is fully enclosed in the cable gland assembly, the cable is designed such that the outer layer passes through the gland nut. 104 and the implementation 212 extends through, but in front of the grounding spring 214 continues. This means the reinforcing layer is protected by the grounding spring. 214 exposed and arranged, but stops at the reinforcement stop 216 up. If the implementing mother 104 tightened and the implementation 212 When compression occurs, it is generally the lower support ring that is compressed. 210b or the implementation 212The grounding spring is positioned towards the cable, exposing the reinforcement layer. Therefore, the compression of the grounding spring ensures... 214 that the grounding spring 214 establishes a conductive contact with the reinforcement layer, thus providing a grounding path for the reinforcement layer. Furthermore, compression of the grounding spring ensures 214 towards the reinforcement layer, a radial inward compression of the grounding spring 214 around the reinforcement layer. This allows the cable and the reinforcement layer to continue into the grounding spring. 214 and the cable routing arrangement 100 be held in place. Does the reinforcement layer adhere to the reinforcement stop? 216 If only the conductor or only the conductors of the cable are sufficient to pass through the reinforcement stop, then only the conductor(s) of the cable are sufficient. 216 through into the connecting chamber 218 inside. The connecting chamber 218 is generally within the body108 The connection chamber can be filled with a sealing compound that surrounds the conductor(s). Therefore, an essentially airtight seal can be created between the conductor(s) and the connection chamber. 218 to be manufactured. In addition, the connecting chamber 218 a flame path along the exterior of the connecting chamber 218 between the connecting chamber 18 and the body 108 ready. In certain embodiments, the connecting chamber 190 the reinforcement attack 216 include.
[0030] At the in Fig. In the illustrated embodiment 2, the intermediate body includes 106 Furthermore, a lower section 204 , which is attached to an upper section 242 of the body 108 is adapted. The pass sections of the lower section 240of the intermediate body 106 and the upper section 242 The body can include an anti-rotation feature, such as a gripping surface, in such a way that the intermediate body 106 and the body 108 They do not rotate relative to each other when coupled. The lower section 240 of the intermediate body 106 includes a first sealing feature 244 The intermediate body mother 107 is generally around the lower section 240 of the intermediate body 106 and the upper section 242 of the body 108 arranged around it. This defines the coupling areas of the intermediate body. 106 with the body 108 within the intermediate body mother 106 arranged. The intermediate body nut 106 can a second sealing feature 246 such that when the intermediate body mother 106 completely around the lower section240 of the intermediate body 106 and the upper section 242 of the body 106 is arranged around it, the first sealing feature 244 and the second sealing feature 246 to create a seal around an entire edge of the intermediate body nut 107 They interact around each other. The first sealing feature 244 may include a lip that has a curved surface, which is located on the lower section 240 of the intermediate body 106 is arranged and surrounds it. The second sealing feature 246 may include a plane of inclination that encompasses the entire edge of the intermediate body nut 107 surrounds. The first and second sealing features are effective. 244 , 246 together, they create the curved surface of the first sealing feature. 244 and the inclination plane of the second sealing feature 246 a stable contact around the cable entry assembly100 around, which prevents foreign substances, water and the like from entering the cable gland from the outside. 100 penetrate. In certain embodiments, the first sealing feature can 244 include a slope plane, while the second sealing feature 246 includes a curved surface, or it can be the first and second sealing features 244 , 246 Both curved surfaces or both corresponding planes of inclination are included. In the exemplary embodiment, the sealing features consist of 244 and 246 made of a metallic material and form a metal-on-metal seal.
[0031] Fig. 5a and Fig. Figure 5b shows another embodiment of the washer. 210 . Fig. Figure 5a shows an upper perspective view of the support ring. 210 , while Fig. Figure 5b shows a lower perspective view. In these embodiments, the support ring incorporates a plurality of nodes. 510 , which are on the outer surface 310 adjacent to the upper surface 314 are arranged. The nodes 510 generally perform the same function as the paragraph above 318 at the in Fig. The embodiment shown in 3 is true. Accordingly, the nodes can 510 in the ring holder 220 the implementing mother 104 arranged and held by it. In some embodiments, the ring holder 220 a plurality of nodal cavities instead of a groove to hold the nodes 510 of the washer 210 include. In some embodiments, the washer may be 210various other features, such as extensions, clips or clamps, hooks, receivers and magnets, for semi-permanent coupling with the bushing nut 104 include. Accordingly, the implementing mother can 104 various other features for holding the washer 210 include. Note that the upper washer ring 210a and the lower washer ring 210b They may be identical in certain embodiments and not identical in other embodiments.
[0032] Fig. Figure 6 shows a cross-sectional view of another embodiment of the cable entry arrangement. 100 In this embodiment, the through-nut 104 within the upper section 232 of the intermediate body 106 arranged. Furthermore, it shows Fig. 6, that the cable routing arrangement 100 a cable arranged therein 610exhibits. As explained above, the cable includes 610 an outer layer 612 , a reinforcing layer 614 and at least one ladder 616 The outer layer 612 of the cable 610 extends all the way to the grounding spring 214 , so that the reinforcing layer 614 so exposed that the grounding spring 214 is able to work with the reinforcing layer 614 to make contact. The reinforcement layer extends all the way to the reinforcement stop. 216 , and the ladder is sufficient 616 up to the connecting chamber 218 .
[0033] The washer ring 210 This embodiment is in Fig. 7 shown. In this embodiment, the washer can be 210 through an upper surface 710 , a lower surface 716 , an outer surface 712 and an inner surface 714be fixed. The washer ring 210 can also be carried out above and / or below the execution 212 within the implementing mother 104 be arranged. The washer ring 210 enables the implementing mother to... 212 It rotates freely. Note that the exemplary embodiments of the washer discussed in this revelation 210 are not exhaustive and that the cable routing 100 any combination of embodiments of the washer 210 may include.
[0034] The cable routing arrangement 100can be identified differently than in the previously described embodiments. For example, the previously described grooves, lips, threads, anti-rotation features, and the like can be replaced by other suitable fitting features that allow the respective components to be coupled appropriately, for example, by threaded connection, removable connection, clamping connection, sliding connection, or a combination thereof. In general, the bushing nut can 104 , the implementation 212 , the washer 210 , the intermediate body 106 , the grounding spring 214 , the reinforcement attack 216 , the body 108 , the connecting chamber 218 and the intermediate body mother 107 be made of materials such as, for example, metal, plastic, rubber, ceramic, nylon or a combination thereof.
[0035] Although the embodiments described herein have been described with reference to preferred and / or exemplary embodiments, it should be apparent to a person skilled in the art that various modifications are within the scope and nature of this disclosure. It follows from the foregoing that the embodiments overcome the limitations of the prior art. It is also clear to a person skilled in the art that the exemplary embodiments are not limited to any specific application under discussion and that the embodiments described herein are illustrative and not restrictive.From the description of the exemplary embodiments, a person skilled in the relevant field will recognize equivalents to the elements shown here, and practitioners in the relevant field will recognize manufacturing methods for further embodiments. Therefore, the scope of the exemplary embodiments is not limited.
Claims
[1] Cable entry arrangement for connecting a cable, comprising: a through-hole nut having an outer wall and an inner wall, the inner wall defining a through-hole nut opening; a feedthrough positioned within the feedthrough nut opening, wherein the feedthrough defines a feedthrough opening for receiving a cable therein; a first ring arranged above the feedthrough within the feedthrough nut, the washer being designed to be held by the feedthrough nut and to hold the feedthrough; an intermediate body having a first intermediate body end and a second intermediate body end, wherein the first intermediate body end is coupled to the feedthrough nut, and wherein the intermediate body has a first sealing feature near the second intermediate body end; a body that is coupled to the intermediate body at the second end of the intermediate body; an intermediate body nut coupled to the intermediate body and the body at the second intermediate body end, the intermediate body nut having a second sealing feature corresponding to the first sealing feature of the intermediate body, the first and second sealing features cooperating to provide a seal; and a connecting chamber positioned within an interior of the body, wherein the connecting chamber has an opening for receiving a sealing connection and at least one conductor of the cable therein. [2] Cable entry arrangement according to claim 1, further comprising: a second support ring, which is arranged under the feedthrough opposite or opposite to the first support ring, wherein the support ring is designed to hold the feedthrough. [3] Cable feedthrough arrangement according to claim 2, wherein the second support ring is held by the first intermediate body end. [4] Cable feedthrough arrangement according to claim 1, wherein the first sealing feature comprises at least one angled section or curved section. [5] Cable feedthrough arrangement according to claim 1, wherein the second sealing feature comprises at least one of an angled section or a curved section. [6] Cable feedthrough arrangement according to claim 1, wherein at least one of the intermediate body or the body comprises an anti-rotation feature to prevent or reduce rotation of the intermediate body relative to the body. [7] Cable feedthrough arrangement according to claim 1, wherein a section of the feedthrough nut is arranged within the first intermediate body end. [8] Cable feedthrough arrangement according to claim 1, wherein a section of the first intermediate body end is arranged inside the feedthrough nut. [9] Cable entry arrangement according to claim 1, further comprising: a spring arranged within the intermediate body, wherein the spring grounds a reinforcing layer of the cable arranged therein. [10] Cable feedthrough arrangement according to claim 9, wherein the spring holds the cable therein by means of a radial compression of the spring around the cable. [11] Cable entry arrangement comprising: a implementing mother; an upper support ring; and an implementation, the implementing mother includes: a ring holding feature for semi-permanent coupling with the upper support ring; the upper washer ring includes: a holding feature for semi-permanent coupling with the execution; and a mother holding feature for semi-permanent coupling with the feedthrough nut, wherein the feedthrough includes: a ring holding feature for semi-permanent coupling with the upper underring. [12] Implementing arrangement according to claim 11, further comprising: a lower support ring, wherein the lower support ring includes a feedthrough holding feature for semi-permanent coupling with the feedthrough. [13] Implementing arrangement according to claim 12, further comprising: an intermediate body having a first intermediate body end, wherein the first intermediate body end has a ring-holding feature for semi-permanent coupling with the lower support ring. [14] Implementation arrangement according to claim 13, wherein the intermediate body further comprises a second intermediate body end, wherein the second intermediate body end is coupled to a body, the body comprising a connecting chamber arranged therein. [15] Implementing arrangement according to claim 13, further comprising: a spring arranged within the intermediate body, wherein the spring is designed to ground, hold, or ground and hold a cable arranged therein. [16] Cable entry arrangement for connecting a cable, comprising: a through-hole nut having an outer wall and an inner wall, the inner wall defining a through-hole nut opening; a feedthrough positioned within the feedthrough nut opening, wherein the feedthrough defines a feedthrough opening for receiving a cable therein; an intermediate body having a first intermediate body end and a second intermediate body end, wherein the first intermediate body end is coupled to the feedthrough nut, and wherein the intermediate body has a first sealing feature near the second intermediate body end; a body that is coupled to the intermediate body at the second end of the intermediate body; and an intermediate body nut coupled to the intermediate body and the body at the second intermediate body end, wherein the intermediate body nut has a second sealing feature corresponding to the first sealing feature of the intermediate body, the first and second sealing features working together to provide a seal. [17] Cable feedthrough arrangement according to claim 16, wherein the first sealing feature includes an angled section and the second sealing feature includes a curved section. [18] Cable feedthrough arrangement according to claim 16, wherein the second sealing feature includes an angled section and the first sealing feature includes a curved section. [19] Cable feedthrough arrangement according to claim 16, wherein the first sealing feature and the second sealing feature both include a curved section. [20] Cable entry arrangement according to claim 16, wherein the first sealing feature and the second sealing feature both include an angled section. [21] Cable feedthrough arrangement according to claim 16, further comprising a support ring. [22] Cable feedthrough arrangement according to claim 21, wherein at least the feedthrough nut and the intermediate body comprise a ring holder for semi-permanent coupling with the washer ring. [23] Cable feedthrough arrangement according to claim 21, wherein the support ring comprises a feedthrough holding feature for semi-permanent coupling with the feedthrough. [24] Cable entry arrangement according to claim 16, further comprising: a spring arranged within the intermediate body, wherein the spring is designed to ground, hold or ground and hold a cable arranged therein, wherein the spring is electrically coupled to a metal layer of the cable.