CN215526195U - Optical fiber collator of power communication equipment - Google Patents

Optical fiber collator of power communication equipment Download PDF

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Publication number
CN215526195U
CN215526195U CN202121803744.9U CN202121803744U CN215526195U CN 215526195 U CN215526195 U CN 215526195U CN 202121803744 U CN202121803744 U CN 202121803744U CN 215526195 U CN215526195 U CN 215526195U
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CN
China
Prior art keywords
fastening
optical fiber
support plate
auxiliary support
jack
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Active
Application number
CN202121803744.9U
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Chinese (zh)
Inventor
张立君
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Tianjin Yuke Electric Power Engineering Co ltd
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Tianjin Yuke Electric Power Engineering Co ltd
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Priority to CN202121803744.9U priority Critical patent/CN215526195U/en
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Publication of CN215526195U publication Critical patent/CN215526195U/en
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Abstract

An optical fiber collator of electric power communication equipment comprises an optical fiber collator, an optical fiber positioning groove, a first fastening arm, a second fastening arm, a fastening brace, a first auxiliary support plate, a second auxiliary support plate and a fastening clamping groove, the upper part of the optical fiber collator is provided with an optical fiber positioning groove, the left side of the optical fiber positioning groove is provided with a first auxiliary support plate, the right side of the optical fiber positioning groove is provided with a second auxiliary support plate, two first positioning grooves are arranged in the first auxiliary support plate, the first positioning grooves are symmetrically arranged, the inner sides of the first positioning grooves are connected with the first fastening arms through rotating shafts, the first fastening arm rotates on the rotating shaft, the second auxiliary support plate is internally provided with two second positioning grooves, no. two positioning groove symmetry sets up, and No. two fastening arm are connected through the pivot to No. two positioning groove inboards, No. two fastening arm rotate in the pivot, and No. two fastening arm upper portions connect the fastening arm No. one.

Description

Optical fiber collator of power communication equipment
Technical Field
The utility model relates to the field of power communication, in particular to an optical fiber organizer of power communication equipment.
Background
In the use of power communication equipment, in order to prevent the scattered knot of the optic fibre line of power communication equipment outside connection from tying, often will use optic fibre reorganizer to bind the arrangement to the optic fibre line, however because optic fibre reorganizer overall structure is unstable, can't play fine bundling effect to the optic fibre line, bring inconvenience for the user.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides the optical fiber organizer of the power communication equipment, which has a stable structure.
The purpose of the utility model is realized by the following technical scheme:
an optical fiber collator of electric power communication equipment comprises an optical fiber collator, an optical fiber positioning groove, a first fastening arm, a second fastening arm, a fastening brace, a first auxiliary support plate, a second auxiliary support plate and a fastening clamping groove, wherein the upper part of the optical fiber collator is provided with the optical fiber positioning groove, the left side of the optical fiber positioning groove is provided with the first auxiliary support plate, the right side of the optical fiber positioning groove is provided with the second auxiliary support plate, the inside of the first auxiliary support plate is provided with two first positioning grooves, the first positioning grooves are symmetrically arranged, the inner sides of the first positioning grooves are connected with the first fastening arm through rotating shafts, the first fastening arm rotates on the rotating shafts, the inside of the second auxiliary support plate is provided with two second positioning grooves, the second positioning grooves are symmetrically arranged, the inner sides of the second positioning grooves are connected with the second fastening arm through rotating shafts, the second fastening arm rotates on the rotating shafts, the upper part of the second fastening arm is connected with the first fastening arm, the upper part of the first fastening arm is provided with a locking jack, and the upper part of the second fastening arm is provided with a locking bulge.
The locking protrusion is matched with the locking jack, the locking jack is connected to the outer side of the locking protrusion, the fastening brace is connected to the upper portion of the first auxiliary supporting plate, a plurality of fastening clamping grooves are formed in the right side of the fastening brace, the first jack is formed in the second auxiliary supporting plate, and the second jack is formed in the right side of the first jack.
The fastening lug is arranged in the second jack, the fastening brace is connected to the inner side of the first jack, the fastening brace slides in the first jack, the right side of the fastening brace penetrates through the first jack to be connected with the second jack, the fastening lug is matched with the fastening clamping groove, and the outer side of the fastening lug is connected with the fastening clamping groove.
Has the advantages that:
through a fastening arm during the use, the cooperation of No. two fastening arms, carry out the double-deck binding to putting into a plurality of optic fibre lines of optic fibre constant head tank inside, then carry out the secondary with the fastening brace and bind the optic fibre line of optic fibre constant head tank inside, effectually prevented that the optic fibre line of optic fibre constant head tank inside is loose when a fastening arm separates with No. two fastening arms in long-time use, played the multilayer fastening effect to the optic fibre, bind the stability that has improved binding structure through the three-layer, binding effect has been improved, and fix the optic fibre line on the position of regulation through the optic fibre reorganizer, effectually prevented that the optic fibre line from rocking in the power communication equipment outside, make overall structure more stable.
Drawings
Fig. 1 is a schematic structural diagram of an optical fiber organizer of an electrical power communication device according to the present invention.
Fig. 2 is a longitudinal sectional view of an optical fiber organizer of an electrical communication apparatus according to the present invention.
Fig. 3 is a partial cross-sectional view of a fiber organizer of an electrical communication apparatus according to the present invention.
Detailed Description
The utility model is explained in more detail below with reference to the figures and examples:
an optical fiber collator of electric power communication equipment comprises an optical fiber collator 01, an optical fiber positioning groove 02, a first fastening arm 03, a second fastening arm 04, a fastening brace 05, a first auxiliary support plate 06, a second auxiliary support plate 07 and a fastening clamping groove 08, wherein the upper part of the optical fiber collator 01 is provided with the optical fiber positioning groove 02, the left side of the optical fiber positioning groove 02 is provided with the first auxiliary support plate 06, the right side of the optical fiber positioning groove 02 is provided with the second auxiliary support plate 07, two first positioning grooves 09 are arranged inside the first auxiliary support plate 06, the first positioning grooves 09 are symmetrically arranged, the inner sides of the first positioning grooves 09 are connected with the first fastening arm 03 through a rotating shaft, the first fastening arm 03 rotates on the rotating shaft, two second positioning grooves 10 are arranged inside the second auxiliary support plate 07, the second positioning grooves 10 are symmetrically arranged, and the inner sides of the second positioning grooves 10 are connected with the second fastening arm 04 through the rotating shaft, the second fastening arm 04 rotates on the rotating shaft, the first fastening arm 03 is connected to the upper portion of the second fastening arm 04, the locking insertion hole 14 is formed in the upper portion of the first fastening arm 03, and the locking protrusion 15 is formed in the upper portion of the second fastening arm 04.
The locking protrusion 15 is matched with the locking insertion hole 14, the locking insertion hole 14 is connected to the outer side of the locking protrusion 15, the fastening brace 05 is connected to the upper portion of the first auxiliary support plate 06, the right side of the fastening brace 05 is provided with a plurality of fastening clamping grooves 08, the first insertion hole 11 is formed in the second auxiliary support plate 07, and the second insertion hole 12 is formed in the right side of the first insertion hole 11.
No. two jacks 12 are internally provided with fastening protrusions 13, the fastening brace 05 is connected to the inner side of the first jack 11, the fastening brace 05 slides in the first jack 11, the right side of the fastening brace 05 penetrates through the first jack 11 to be connected with the second jack 12, the fastening protrusions 13 are matched with the fastening clamping grooves 08, and the fastening clamping grooves 08 are connected to the outer sides of the fastening protrusions 13.
When the novel optical fiber binding device is used, a plurality of optical fiber wires placed in the optical fiber positioning groove 02 are bound in a double-layer mode through the cooperation of the first fastening arm 03 and the second fastening arm 04, then the optical fiber wires in the optical fiber positioning groove 02 are bound secondarily through the fastening pull strip 05, the loosening of the optical fiber wires in the optical fiber positioning groove 02 when the first fastening arm 03 and the second fastening arm 04 are separated in long-time use is effectively prevented, the multi-layer fastening effect on the optical fiber wires is achieved, the stability of a binding structure is improved through the three-layer binding, the binding effect is improved, the optical fiber wires are fixed on a specified position through the optical fiber collator 01, the optical fiber wires are effectively prevented from shaking outside the electric power communication equipment, and the overall structure is more stable.

Claims (3)

1. An optical fiber collator of electric power communication equipment is characterized by comprising an optical fiber collator, an optical fiber positioning groove, a first fastening arm, a second fastening arm, a fastening brace, a first auxiliary support plate, a second auxiliary support plate and a fastening clamping groove, wherein the upper portion of the optical fiber collator is provided with the optical fiber positioning groove, the left side of the optical fiber positioning groove is provided with the first auxiliary support plate, the right side of the optical fiber positioning groove is provided with the second auxiliary support plate, two first positioning grooves are formed in the first auxiliary support plate, the first positioning grooves are symmetrically arranged, the inner sides of the first positioning grooves are connected with the first fastening arm through rotating shafts, the first fastening arm rotates on the rotating shafts, the inner sides of the second positioning grooves are connected with the second fastening arm through rotating shafts, the upper portion of the second fastening arm is connected with the first fastening arm, the upper part of the first fastening arm is provided with a locking jack, and the upper part of the second fastening arm is provided with a locking bulge.
2. The optical fiber organizer of power communication equipment as claimed in claim 1, wherein the locking protrusion is adapted to the locking jack, the locking jack is connected to the outside of the locking protrusion, the fastening brace is connected to the upper part of the first auxiliary support plate, the right side of the fastening brace is provided with a plurality of fastening slots, the first jack is arranged inside the second auxiliary support plate, and the second jack is arranged on the right side of the first jack.
3. The optical fiber organizer of power communication equipment according to claim 2, wherein the second jack has a fastening protrusion therein, the inside of the first jack is connected with a fastening brace, the fastening brace slides in the first jack, the right side of the fastening brace passes through the first jack to be connected with the second jack, the fastening protrusion is adapted to the fastening slot, and the outside of the fastening protrusion is connected with the fastening slot.
CN202121803744.9U 2021-08-04 2021-08-04 Optical fiber collator of power communication equipment Active CN215526195U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121803744.9U CN215526195U (en) 2021-08-04 2021-08-04 Optical fiber collator of power communication equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121803744.9U CN215526195U (en) 2021-08-04 2021-08-04 Optical fiber collator of power communication equipment

Publications (1)

Publication Number Publication Date
CN215526195U true CN215526195U (en) 2022-01-14

Family

ID=79789238

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121803744.9U Active CN215526195U (en) 2021-08-04 2021-08-04 Optical fiber collator of power communication equipment

Country Status (1)

Country Link
CN (1) CN215526195U (en)

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