CN207718932U - A kind of pipe band laying optoelectronic composite cable - Google Patents

A kind of pipe band laying optoelectronic composite cable Download PDF

Info

Publication number
CN207718932U
CN207718932U CN201721680356.XU CN201721680356U CN207718932U CN 207718932 U CN207718932 U CN 207718932U CN 201721680356 U CN201721680356 U CN 201721680356U CN 207718932 U CN207718932 U CN 207718932U
Authority
CN
China
Prior art keywords
light unit
cable
optoelectronic composite
composite cable
unit
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.)
Active
Application number
CN201721680356.XU
Other languages
Chinese (zh)
Inventor
李来发
高宪武
张传栋
周文
李广省
齐伟
郭俊国
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANDONG PACIFIC OPTICS FIBER AND CABLE Co Ltd
Original Assignee
SHANDONG PACIFIC OPTICS FIBER AND CABLE Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by SHANDONG PACIFIC OPTICS FIBER AND CABLE Co Ltd filed Critical SHANDONG PACIFIC OPTICS FIBER AND CABLE Co Ltd
Priority to CN201721680356.XU priority Critical patent/CN207718932U/en
Application granted granted Critical
Publication of CN207718932U publication Critical patent/CN207718932U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Communication Cables (AREA)

Abstract

The utility model discloses a kind of pipe band laying optoelectronic composite cable; including outer jointing jacket; light unit and electric unit are equipped in outer jointing jacket; the light unit is one, is located at the middle part of optoelectronic composite cable, and light unit is equipped with optical fiber, buffer layer, tight sleeve layer, helix tube armor from inside to outside; the electric unit is two; electric unit is located at the both sides of light unit, and the electric unit is twisted by lousiness bunch, and separation layer is equipped between light unit and electric unit.By flat filament tube-making technology, TPU material guards and lousiness bunch technique, the characteristics such as softness, the resist bending of cable are realized, meanwhile, there are remaining length in cable for tight tube fiber so that optical fiber does not stress when cable is bent, into without influencing signal transmission.The utility model is particularly suitable for laying in flexible hose band, and when pipe band is furled, laid, the characteristic of cable can ensure that signal transmission is unaffected, and there is the flat performance of good tension resistance, line matter softness resist bending to be mainly used in flexible hose band and lay.

Description

A kind of pipe band laying optoelectronic composite cable
Technical field
The utility model patent is related to a kind of optoelectronic composite cable more particularly to a kind of pipe band laying optoelectronic composite cable.
Background technology
With the development of optical communications industry, light unit and electric unit together as one can be solved network by optoelectronic composite cable The application range of equipment electrical problem in construction, optical cable is more extensive, according to different application scenarios, there is different property to optical cable It can require, other than being applied to communication base station, be also widely used for safety monitoring project and Urban House community and building Fiber entering household.To optical cable, more stringent requirements are proposed for the change of application environment, and optical cable needs to bear larger pulling force and flattening Power, the utility model provide a kind of pipe band laying optoelectronic composite cable, have the flat performance of good tension resistance, line matter softness resistance to Bending, is mainly used in flexible hose band and lays.
Utility model content
In order to solve the problems, such as that the above-mentioned present optical cable being previously mentioned needs to bear larger pulling force and flat pressure, the utility model Technical solution is used by solving its technical problem:
A kind of pipe band laying optoelectronic composite cable, including outer jointing jacket, outer jointing jacket is interior to be equipped with light unit and electric unit, institute The light unit stated is one, and light unit is located at the middle part of optoelectronic composite cable, and light unit is equipped with optical fiber, buffer layer, tight from inside to outside Jacket layer, helix tube armor, the electric unit are two, and electric unit is located at the both sides of light unit, and the electric unit is by lousiness Bunch is twisted, and separation layer is equipped between light unit and electric unit.
By said program, the outer jointing jacket uses TPU material guards.
By said program, the tight sleeve layer is set as using the fixed material of nylon.
By said program, the separation layer is aramid yarn.
By said program, the helix tube armor is set as stainless steel wire.
The usefulness of the utility model:
1, the utility model use flat filament tube-making technology, TPU material guards and lousiness bunch technique, realize cable softness, The characteristics such as resist bending, meanwhile, there are remaining length in cable for tight tube fiber so that optical fiber does not stress when optoelectronic composite cable is bent, in turn Do not influence signal transmission.The utility model is particularly suitable for laying in flexible hose band, when pipe band is furled, is laid, optoelectronic composite cable Characteristic can ensure that signal transmission is unaffected.
2, by using nylon material is fixed and the fixed fine structure of buffer-type, the reliability of optical fiber had not only been ensured, but also solve The stripping problem of tight sleeve layer.
3, by helix tube armor, spiral armouring is carried out to tight tube fiber, ensures the anti-flattening energy of cable;It is fixed simultaneously Gap is equipped between optical fiber and spiral armor, to ensure that there are remaining length in cable, optical fiber does not stress when laying uses;Pass through restriction Gap between flat filament, to ensure the bending softness of cable.
4, by using the aramid yarn of high-modulus, it ensure that the tensile property of cable.
5, the utility model contour structures are modular using three, reduce the cross-sectional area of cable to the greatest extent, protect simultaneously The separability between three root units is demonstrate,proved.The utility model possesses smaller sectional area, is particularly suitable in snorkel band.
Description of the drawings
Attached drawing 1 is a kind of structural schematic diagram of pipe band laying optoelectronic composite cable;
Attached drawing 2 is a kind of production flow diagram of pipe band laying optoelectronic composite cable;
Reference sign:1, optical fiber, 2, buffer layer, 3, tight sleeve layer, 4, helix tube armor, 5, separation layer, 6, light list Member, 7, electric unit, 8, outer jointing jacket.
Specific implementation mode
This cable is described in detail below with reference to Figure of description.
According to Fig. 1-Fig. 2, a kind of pipe band laying optoelectronic composite cable, including outer jointing jacket 8 is equipped in outer jointing jacket Light unit 6 and electric unit 7, the light unit are one, are located at the middle part of optoelectronic composite cable, and light unit is equipped with light from inside to outside Fibre 1, buffer layer 2, tight sleeve layer 3, helix tube armor 4, the fiber selection G657 optical fiber, the buffer layer are to pass through purple The crystal that outer lamp becomes acrylate, in G657 optical fiber coating acrylate, the outer jointing jacket is protected using TPU materials Set, the tight sleeve layer are set as using the fixed material of nylon, by using nylon material is fixed and the fixed fine structure of buffer-type, both ensure The reliability of optical fiber, and solve the stripping problem of tight sleeve layer, the helix tube armor is set as the flat filament of spiral armouring, The flat filament flattens the stainless steel wire at 0.25*0.75mm using φ 0.5mm, by limiting the gap between flat filament, to protect Demonstrate,prove the bending softness of cable.The electric unit is two, and electric unit is twisted using the copper lousiness bunch of 20 φ 0.25mm Conjunction is made, and twisting pitch is set as 200mm.Electric unit is located at the both sides of light unit, and separation layer is equipped between light unit and electric unit 5, the separation layer is aramid yarn shape, and by the way that light unit is placed at center, both sides are placed in parallel two electric unit bunch, structure It is modular using three, the cross-sectional area of cable is reduced to the greatest extent, while ensure that the separability between three root units.
Oversheath molding die is at the uniform velocity passed through by light unit and electric unit, is extruded through extruding machine heating and outer protection is made Set, outer jointing jacket wall thickness are 0.8mm, and outer jointing jacket uses TPU material guards.

Claims (5)

1. a kind of pipe band laying optoelectronic composite cable, including outer jointing jacket, outer jointing jacket is interior to be equipped with light unit and electric unit, spy Sign is, the light unit is one, and light unit is located at the middle part of optoelectronic composite cable, light unit be equipped with from inside to outside optical fiber, Buffer layer, tight sleeve layer, helix tube armor, the electric unit are two, and electric unit is located at the both sides of light unit, and the electricity is single Member is twisted by lousiness bunch, and separation layer is equipped between light unit and electric unit.
2. a kind of pipe band laying optoelectronic composite cable according to claim 1, which is characterized in that the outer jointing jacket is adopted With TPU material guards.
3. a kind of pipe band laying optoelectronic composite cable according to claim 1, which is characterized in that the tight sleeve layer uses The fixed material of nylon.
4. a kind of pipe band laying optoelectronic composite cable according to claim 1, which is characterized in that the separation layer is virtue Synthetic fibre yarn.
5. a kind of pipe band laying optoelectronic composite cable according to claim 1, which is characterized in that the helix tube armouring Layer uses stainless steel wire.
CN201721680356.XU 2017-12-06 2017-12-06 A kind of pipe band laying optoelectronic composite cable Active CN207718932U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721680356.XU CN207718932U (en) 2017-12-06 2017-12-06 A kind of pipe band laying optoelectronic composite cable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721680356.XU CN207718932U (en) 2017-12-06 2017-12-06 A kind of pipe band laying optoelectronic composite cable

Publications (1)

Publication Number Publication Date
CN207718932U true CN207718932U (en) 2018-08-10

Family

ID=63059739

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721680356.XU Active CN207718932U (en) 2017-12-06 2017-12-06 A kind of pipe band laying optoelectronic composite cable

Country Status (1)

Country Link
CN (1) CN207718932U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108022690A (en) * 2017-12-06 2018-05-11 山东太平洋光纤光缆有限公司 A kind of pipe band laying optoelectronic composite cable and manufacture method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108022690A (en) * 2017-12-06 2018-05-11 山东太平洋光纤光缆有限公司 A kind of pipe band laying optoelectronic composite cable and manufacture method

Similar Documents

Publication Publication Date Title
CN105427948B (en) Skeleton optoelectronic composite cable and its manufacture method
CN105467539B (en) A kind of non-metallic layer tangles structure optical cable
CN108107528B (en) Multi-core miniature bending-resistant rat-bite-resistant spiral armor optical cable and manufacturing method thereof
CN101714425A (en) Electro-optic compound cable for towing and manufacturing method thereof
CN203587863U (en) Air-blowing minisize layer-stranding cable
CN104698556B (en) A kind of ADSS optical fiber cables and its forming method
CN104464951B (en) Photoelectric mixed cable containing coaxial electrical unit and manufacture method thereof
WO2021168950A1 (en) Indoor and outdoor dual-purpose optical cable
CN207718932U (en) A kind of pipe band laying optoelectronic composite cable
CN106847389A (en) A kind of optoelectrical cable
CN112731603B (en) Optical cable
CN207718905U (en) A kind of resistance to dragging optoelectronic composite cable
CN2916864Y (en) Composite optical/electric cable
CN207397740U (en) A kind of layer-twisted type microbeam pipe photoelectric mixed cable
CN212781424U (en) Air-blowing micro cable suitable for narrow space arrangement
CN211554402U (en) Three-unit layer-stranded light optical cable
CN209784617U (en) Remote optical cable
CN204229920U (en) Photoelectric mixed cable containing coaxial electrical unit
CN108022690A (en) A kind of pipe band laying optoelectronic composite cable and manufacture method
CN210835374U (en) High-strength access optical cable
CN209343001U (en) A kind of super large core number microbeam pipe optical cable
CN105717598A (en) Leading-in optical cable
CN210294631U (en) Air-blowing micro cable
CN203825262U (en) Enhanced flame-retardant field cable
CN203405603U (en) Central tubular type optical cable convenient for adding signal line

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PP01 Preservation of patent right

Effective date of registration: 20230613

Granted publication date: 20180810

PP01 Preservation of patent right