CN205108794U - Electronic rescue device - Google Patents

Electronic rescue device Download PDF

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Publication number
CN205108794U
CN205108794U CN201520848950.XU CN201520848950U CN205108794U CN 205108794 U CN205108794 U CN 205108794U CN 201520848950 U CN201520848950 U CN 201520848950U CN 205108794 U CN205108794 U CN 205108794U
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China
Prior art keywords
drive
rope
electronic
unit
deliverance apparatus
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Expired - Fee Related
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CN201520848950.XU
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Chinese (zh)
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潘逸华
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Individual
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Individual
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Abstract

The utility model provides an electronic rescue device, contains a drive unit, a positioning unit who is fixed in this drive unit, one connects in this drive unit's drive unit, and one be positioned the cap unit on this positioning unit. This drive unit includes casing, the motor of a holding in this accommodation space around an accommodation space, reaches one and connects in the drive shaft of this motor. This drive shaft is on wearing to locate this positioning unit's a locating plate, and this cap unit is then on being positioned this locating plate and around this drive shaft, and when this motor drove this drive shaft and rotates, this drive unit's a drive wheel can be together rotatory along with this drive shaft, makes this electronic rescue device move along the extending direction of this rope, perhaps draws this rope to assist the rescue work with power transfer for kinetic energy.

Description

Electronic deliverance apparatus
Technical field
The utility model relates to a kind of rescue aid, particularly relates to a kind of electronic deliverance apparatus.
Background technology
When disaster occurs, personnel always needs to carry the various and equipment of heaviness, and forefront carries out rescue life, goods and materials transport, landform is reconnoitred to emit life danger to go to, or work high above the ground etc. work.Slip for the visitor that climbs the mountain and fall the rescue of paddy, personnel, except carrying self equipment, still needs and bears heavy Rescue Kits, has consumed a large amount of muscle power, must launch rescue action immediately again when arriving the scene of the accident.And utilize assembly pulley erection traction system injury to be rescued, and not only time-consuming, more need to consume a large amount of manpower.And for example typhoon disaster causes stream to rise suddenly and sharply, and the common people lock into opposite bank, streams, and personnel must first play throwing to opposite bank, streams by crossing rope, completes after erection crosses rope, with manpower mode rope climbing rope to opposite bank, streams, the more stranded common people must be retracted to hang manpower.
Because above-described all waiting rescues occasion, and the shortcoming utilizing merely manpower to rescue, utility model creator is as all difficulties during disaster relief of personnel's profound lesson and danger, thus through research and the experiment of ruminating over, wish develop a kind of small volume and be easy to carry, and electric power can be utilized to produce kinetic energy and assist rescue action, with the deliverance apparatus of security implementation rescue.
Utility model content
The purpose of this utility model is provide a kind of volume little and be easy to carry, and electric power can be utilized to assist bailout electronic deliverance apparatus.The electronic deliverance apparatus of the utility model, comprises the gear unit that a driver element, positioning unit, be fixed on this driver element is connected to this driver element, and the cap unit that is positioned on this positioning unit.
This driver element comprises one and to be arranged in this accommodation space around housing, motor, be placed in this accommodation space of an accommodation space and for providing the power supply of this revolution required electric power, and one is connected to this motor and the driving shaft stretched through to this accommodation space.This power supply provides this motor power, and when this motor is rotated, this driving shaft is rotated by this motor driving, whereby the electric power of this power supply is converted to rotation function.
This positioning unit is fixed on the housing of this driver element, and comprise one and have one in the axis hole of penetration state and location-plate that is at least one and this axis hole hanging hole separately, and at least one hook ring being hung on this hanging hole.This axis hole supplies the driving shaft of this driver element to wear, and this location-plate then connects for this cap cell location.This hook ring is able to hanging items, implements the personnel of rescue itself, or directly hangs personnel to be rescued.
This gear unit is connected on the driving shaft of this driver element, and comprises one and be sheathed on drive on this driving shaft, and the rope that is wound in this drive.The rotation function of this driving shaft along with this drive shaft turns, and can spread out of by this drive, and changes the direction of kinetic energy by this rope, really utilizes the rotational kinetic energy of this driving shaft to coordinate demand.
This cap unit is positioned on this positioning unit, and comprise one and be removably covered on the location-plate of this positioning unit, and jointly define the enclosing cover of a room with this location-plate.This enclosing cover has a baseplate part, runs through this surrounding portion the first cord hole from the surrounding portion, of the outer peripheral edge of this baseplate part bending extension, and one run through this surrounding portion and with this first cord hole the second cord hole separately, the two ends being wound in the rope of this drive pass this room through this first cord hole and this second cord hole respectively.
When carrying out rescue action, implement the personnel of rescue utilizing this rope in advance after determining the bearing of trend of this rope, as long as start this motor and make this drive shaft turns of this motor driving, this drive then together can rotate along with this driving shaft, and move relative to the rope on this drive, make this electronic deliverance apparatus move along the bearing of trend of this rope whereby, this rope also can be made to move and carry out dilatory or lowering.Therefore, rescue personnel is able on this hook ring, hang goods and materials and transport goods and materials, or oneself is hung on this hook ring, and moved by the movement of this electronic deliverance apparatus, not needing to expend too much muscle power can move to locality and rescue.
The purpose of this utility model and solve its technical problem and also can be applied to the following technical measures to achieve further.
Preferably, aforesaid electronic deliverance apparatus, wherein the drive of this gear unit has a wheel body, and one is sheathed on the anti-slip section that this takes turns the outer peripheral edge of body.Preferably, aforesaid electronic deliverance apparatus, wherein the anti-slip section of this drive is the material with high coefficient of friction, or is formed with most taper and stings rope structure.Preferably, aforesaid electronic deliverance apparatus, wherein this positioning unit also comprises one and is connected on this location-plate, and the first projection trimmed with the outer peripheral edge of this drive, and this cap unit also comprises the medial surface that is arranged at the baseplate part of this enclosing cover, and position is to should the second projection of the first projection, when this rope is wound in this drive and is driven by this drive, this first projection and this second projection with this rope of direction contact of the axis of this drive parallel, guide the winding of this rope and prevent this rope overlap wrapping in this drive respectively.Preferably, aforesaid electronic deliverance apparatus, wherein this cap unit also comprises one and to be removably arranged in this room and around the inner cover of this drive, this inner cover is for coordinating the rope footpath of this rope and this rope spacing, and have two in penetration state, and position is respectively to should this first cord hole of enclosing cover and the through hole of this second cord hole.
Preferably, aforesaid electronic deliverance apparatus, wherein also comprise one to be electrically connected with this driver element, and the control unit of this driver element action can be controlled, this control unit comprises a controller be electrically connected with the motor of this driver element, and one is arranged on the housing of this driver element, and the operation interface be electrically connected with this controller, this operation interface is used for, to this controller input instruction, making this controller control the rotation of this motor.Preferably, aforesaid electronic deliverance apparatus, wherein this control unit also comprises one and is connected with this controller information, and can to the remote controller of this controller input instruction.Preferably, aforesaid electronic deliverance apparatus, wherein this controller can control keying, the rotating speed of this motor, and turns to.Preferably, aforesaid electronic deliverance apparatus, wherein also comprise one for this cap unit being connected to the linkage unit of this positioning unit, this linkage unit comprises at least one for the enclosing cover of this cap unit being fixed on the fixture on the location-plate of this positioning unit, and at least one is fixed on the locating part of the position on this location-plate for limiting this enclosing cover.Preferably, aforesaid electronic deliverance apparatus, wherein this fixture is a screw, rivet, a latch, or a snap fit.The beneficial effects of the utility model are: fall machine or Rescue Kits relative to existing delaying, the small volume of this electronic deliverance apparatus and being easy to carry, and by the rotation of this motor, electric power is converted to the rotation function that this drive can be driven to rotate, and utilize described rotational kinetic energy that this electronic deliverance apparatus is moved, or this rope is moved, reaches and utilize electric power to assist bailout effect.
Accompanying drawing explanation
Fig. 1 is a three-dimensional exploded view, and an embodiment of the electronic deliverance apparatus of the utility model is described;
Fig. 2 is a front view, and locating unit and a cap unit of this embodiment are described;
Fig. 3 and Fig. 4 is all schematic diagram, and an inner cover of this cap unit is described;
Fig. 5 is a three-dimensional exploded view, and the mode of the enclosing cover assembling of this housing unit is described;
Fig. 6 is a front view, and auxiliary view 5 illustrates the situation after the assembling of this enclosing cover;
Fig. 7 is a sectional view, illustrates that this enclosing cover is covered on the situation of a location-plate of this positioning unit;
Fig. 8 is a schematic diagram, and the set-up mode of a rope when carrying out lift work of the gear unit of this embodiment is described;
Fig. 9 is a schematic diagram, and the situation carrying out being elevated rescue by this embodiment is described;
Figure 10 is a schematic diagram, and the situation of carrying out crossing operation by this embodiment is described; And
Figure 11 is a schematic diagram, and the situation of being carried out dilatory operation by this embodiment is described.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is described in detail:
Consult Fig. 1, for an embodiment of the electronic deliverance apparatus of the utility model, this embodiment comprises gear unit 3, the cap unit 4, be positioned on this positioning unit 2 that a driver element 1, positioning unit 2, be fixed on this driver element 1 is connected to this driver element 1 and is electrically connected with this driver element 1 and can controls the control unit 5 of this driver element 1 action, and one for being connected to the linkage unit 6 of this positioning unit 2 by this cap unit 4.
This driver element 1 comprises one and to be arranged in this accommodation space 100 around housing 11, motor 12, be placed in this accommodation space 100 of an accommodation space 100 and power supply 13 for providing this motor 12 to rotate required electric power, and one is connected to this motor 12 and stretches through to the driving shaft 14 outside this accommodation space 100.This power supply 13 provides this motor 12 electric power, and when this motor 12 is rotated, this driving shaft 14 is driven by this motor 12 and rotates, and whereby the electric power of this power supply 13 is converted to rotation function.Illustrate, when this motor 12 operates, if the torsion of this motor 12 is not inconsistent demand, the one speed reducer that also can be connected (figure does not illustrate), improves torsion to reduce the rotating speed of this motor 12.
This positioning unit 2 is fixed on the housing 11 of this driver element 1, and comprise one have an axis hole 211 in penetration state and multiple respectively with location-plate 21, multiple hook ring 22 being hung on these and hanging hole 212 in this axis hole 211 hanging hole 212 separately, and one is connected to the first projection 23 on this location-plate 21.This axis hole 211 supplies the driving shaft 14 of this driver element 1 to wear, and this location-plate 21 then this cap unit 4 of confession is located by connecting.What illustrate is, each hanging hole 212, all suspended hook ring 22 that this location-plate 21 wears, user can according to the user demand on rescue action, hang the hook ring 22 establishing sufficient amount in the hanging hole 212 of ad-hoc location, not only can hang two hook rings 22 as Fig. 1.
This gear unit 3 is connected on the driving shaft 14 of this driver element 1, and comprise one and be sheathed on drive 31 on this driving shaft 14, and the rope 32 that is wound in this drive 31.The drive 31 of this gear unit 3 has takes turns body 311, and one is sheathed on the anti-slip section 312 that this takes turns body 311 outer peripheral edge, and this anti-slip section 312 is for having the material of high coefficient of friction, or be formed with most tapers and sting rope structure, can powerful frictional force be produced when making this rope 32 be wound in the anti-slip section 312 of this drive 31, avoid this drive 31 dally and the situation of this rope 32 cannot be driven whereby.
Consult Fig. 1 and Fig. 2, this cap unit 4 is positioned on this positioning unit 2, and comprise an enclosing cover 41, be removably covered on the location-plate 21 of this positioning unit 2 and to be removably arranged in this room 400 and around the inner cover 42 of this drive 31, and one be arranged at this enclosing cover 41 and position to should the second projection 43 of the first projection 23.This enclosing cover 41 defines a room 400 jointly with this location-plate 21, and there is the surrounding portion 412, that a baseplate part 411, extends from the bending of the outer peripheral edge of this baseplate part 411 run through the first cord hole 413 of this surrounding portion 412, and one run through this surrounding portion 412 and with this first cord hole 413 the second cord hole 414 separately.Wherein, this second projection 43 is the medial surfaces of the baseplate part 411 being arranged at this enclosing cover 41, and this inner cover 42 has two in penetration state, and position is respectively to should this first cord hole 413 of enclosing cover 41 and the through hole 421 of this second cord hole 414.
Consult Fig. 3 and Fig. 4 and coordinate Fig. 1, owing to carrying out this rope 32 that rescue work uses, the different specific standard in several rope footpaths can buied on the market, when this inner cover 42 is covered on this location-plate 21, for coordinating the rope footpath of this rope 32 and this rope 32 spacing, making this rope 32 can on average be wound on this drive 31.And in order to fixing this enclosing cover 41 of fit dimension specification, after making this inner cover 42 be positioned this location-plate 21, can be contained in this enclosing cover 41 and this location-plate 21 around room 400 in, no matter coordinate this rope 32 in which kind of rope footpath, the outside dimension of this inner cover 42 is all identical, and can be contained in this room 400.Wherein, this inner cover 42 is these ropes 32 being coordinated spacing various rope footpath by the mode of change thickness.As illustrated in fig. 3, when adopting rope thicker this rope 32 in footpath, then the thinner thickness of this inner cover 42, makes the internal face of this inner cover 42 be adjacent to be wound in the rope 32 on this drive 31.And as illustrated in fig. 4, when adopting rope footpath to want thin rope 32 more as shown in Figure 3, the thickness of this inner cover 42 is thicker, with the rope 32 coordinating rope footpath thinner, make the internal face of this inner cover 42 be adjacent to be wound in the rope 32 on this drive 31 equally.
Consult Fig. 5 and coordinate Fig. 1, after this rope 32 is on average wound in this drive 31 with the required number of turns and is spacing by this inner cover 42, then this enclosing cover 41 can be assembled in this location-plate 21.This linkage unit 6 comprises multiple fixture 61 for being fixed on by the enclosing cover 41 of this cap unit 4 on the location-plate 21 of this positioning unit 2.Wherein, each fixture 61 is a screw, a rivet, a latch, or a snap fit.In the present embodiment, that the situation being multiple snap fit with these fixtures 61 is described, these snap fits are first fixed on this location-plate 21, and the surrounding portion 412 of this enclosing cover 41 is formed with the convex section 419 of multiple these snap fits of cooperation, these convex sections 419 can hook respectively is located at these snap fits and the assembling completing this enclosing cover 41.Wherein, with these snap fits hook establish this enclosing cover 41 time, can be convenient to dismantle this enclosing cover 41 from this location-plate 21, but when reality uses, come off on this location-plate 21 in order to avoid this enclosing cover 41 and affect the running of this embodiment, be as illustrated in fig. 6, adopt these locating parts 62 to locate this enclosing cover 41, when operating to prevent this embodiment, cause because this enclosing cover 41 comes off the situation that this rope 32 gets loose.What illustrate is, be only wherein a kind of mode this enclosing cover 41 being fixed on this location-plate 21 as shown in Figures 5 and 6, these fixtures 61 also can adopt screw or fourth of the twelve Earthly Branches nail to fix this enclosing cover 41, as long as this enclosing cover 41 is designed with the structure of cooperation, and can guarantee that this enclosing cover 41 can not come off in use, be not limited with above-mentioned fixed form.
Consult Fig. 7 and coordinate Fig. 1, when this enclosing cover 41 is installed on this location-plate 21 really, the two ends being wound in the rope 32 of this drive 31 are respectively by these through holes 421, then pass this room 400 from this first cord hole 413 and this second cord hole 414 respectively.And this first projection 23 of this positioning unit 2, and this second projection 43 of this housing 11 unit respectively with this rope 32 of direction contact of this drive 31 axis parallel, can guide the winding of this rope 32 whereby.In addition, when coordinating this rope 32 in various rope footpath, this inner cover 42 of collocation correspondence can produce the effect of this rope 32 spacing, prevent this rope 32 overlap wrapping in this drive 31, to guarantee that this rope 32 can the scrolling along the rotation of this drive 31 swimmingly, and be unlikely to occur the situation of knotting and affect the running of this embodiment.
Again Fig. 1 is consulted, this control unit 5 to comprise on housing 11 that a controller 51, be electrically connected with the motor 12 of this driver element 1 is arranged at this driver element 1 and the operation interface 52 be electrically connected with this controller 51, and one is connected with this controller 51 information, and the remote controller 53 of instruction can be inputted to this controller 51.This operation interface 52 and this remote controller 53 all can be used for inputting instruction to this controller 51, make this controller 51 control the rotation of this motor 12.Wherein, this controller 51 can control keying, the rotating speed of this motor 12, and turns to.
This embodiment can coordinate the bearing of trend of this rope 32 on using, lifting is provided, crosses, draw, hang, oblique ascension, the multidirectional effect such as oblique deascension, to carry out rescue action or to carry goods and materials.Consult Fig. 8 and coordinate Fig. 1, when needing to utilize this embodiment to carry out the action be elevated, must first this rope 32 be wound on this drive 31 with the required number of turns, coordinate the coefficient of friction of this anti-slip section 312, and the torsion that this motor 12 can produce, make to produce enough frictional force between the anti-slip section 312 of this rope 32 and this drive 31, really this rope 32 can be driven to make this drive 31, and really one end of this rope 32 is fixed on a relatively high point, the other end of this rope 32 is made to be positioned at a relative low points, to determine direct of travel when this embodiment operates.Then, as long as operated by the operation interface 52 of this control unit 5, open this motor 12 and set turning to of this motor 12, this embodiment can be made to climb along the bearing of trend of this rope 32 or decline.
Participate in Fig. 9, such as, when a user 8 needs to utilize this embodiment to carry out lifting moving, these hook rings 22 directly can be hung on this user 8, this user 8 then by as Fig. 1 the operation interface 52 of this control unit 5 that illustrates, or this remote controller 53 and operating, with by changing the mode that turns to of this motor 12, control this user 8 along with this embodiment along this rope 32 direction of movement, reach the object of carrying out lifting moving.Wherein, the elevating function that this embodiment provides, can coordinate the rescue action such as falling paddy rescue, high building lifting, longitudinally transport goods and materials etc.No matter coordinate the setting of these hook rings 22, be this embodiment be hung on to treat rescuer or carry out on the body of rescuer, all can play the kinetic energy changed by electric power and assist bailout effect.Moreover, owing to falling machine or Rescue Kits relative to existing delaying, the small volume of this embodiment and being easy to carry, be beneficial to the described rescuer that carries out to carry, and can the physical demands caused because carrying cumbersome apparatus be reduced, make described carry out rescuer the comparatively severe place of environment can be gone to rescue.
Consult Figure 10 and coordinate Fig. 1, except carrying out lifting moving, this embodiment also can provide the function of transverse shifting.As shown in Figure 10, when carrying out transverse shifting by this embodiment and transport more than one piece goods and materials 91, first the two ends of this rope 32 must be fixed respectively, make this rope 32 in laterally extending, then make this drive 31 be overlapped on this rope 32, then this enclosing cover 41 is covered on this location-plate 21 and completes previous operations.After completing previous operations, these goods and materials 91 are hung on these hook rings 22, equally by operation interface 52 or this remote controller 53 of this control unit 5, open this motor 12 and set turning to of this motor 12, rotate when this motor 12 and this drive 31 is rotated, this drive 31 can because of with the frictional force of this rope 32 and moving along this rope 32, make this embodiment carry out transverse shifting, and reach the object of transporting these goods and materials 91.Wherein, the weighing apparatus that this embodiment provides, to locomotive function, can coordinate and carry out such as river valley goods and materials and transport, or the rescue action that indicator of trapped personnel is withdrawn etc.
Consult Figure 11 and coordinate Fig. 1, when utilizing this embodiment to draw article or personnel, first at least one hanging hole 212 of this location-plate 21 being fixed on the fixture 92 of a such as branch, to guarantee that this embodiment can be fixed on specific position, and can not moving because being subject to external force.Then, this rope 32 is wound on this drive 31 with the required number of turns, to arrange in pairs or groups again this inner cover 42 (being illustrated in Fig. 3 and Fig. 4) or cover this enclosing cover 41, the other end of this rope 32 is then fixed on on dilatory article 93 or personnel's (not illustrating in figure), as long as then set the direction of rotation of this motor 12 in advance, and open this motor 12 and this drive 31 is rotated, 32, this rope can be driven by this drive 31, with dilatory article 93 or personnel of being fixed on one end of this rope 32.By above-mentioned Dragging movement, such as, be applicable to the rescue of pendant precipice personnel, or upwards carry the rescue work of relief goods etc.In addition, if change the direction of rotation of this motor 12, also can carry out hanging down and fall the rescue work of these article 93 or personnel.User can change the direction of rotation of motor 12 according to demand, utilize this embodiment to reach dilatory or rise, the action of falling of hanging down, auxiliary specific bailout execution.
What illustrate is, because this embodiment can utilize the rotation of this motor 12 really, the electric power of this power supply 13 is converted to rotational kinetic energy, and by this drive 31, rotation function is produced interlock with this anti-slip section 312 with this rope 32, make this embodiment along this rope 32 displacement whereby, or this rope 32 is moved relative to this drive 31 scrolling.When utilizing the movement of this embodiment, or during the moving and carry out rescue work of this rope 32, then carry out auxiliary rescue action by the rotation function that electric power is converted, to reduce the physical demands carrying out rescuer.And the function coordinating this remote controller 53 to be able to far-end to carry out operating, wait rescue personage cannot this embodiment of active operation time, more can overcome operational restriction and operate by carrying out rescuer's far-end.Therefore, when carrying out rescuer to carry this embodiment and go to rescue, except having the advantage being easy to carry and reducing physical demands, also the rotation function changed by electric power carrys out auxiliary rescue action, and can far-end operation be carried out and tackle the occasion having operating difficulties, no matter carry out helping out of distress of various particular surroundings, or the goods and materials of various occasion transport, and all play good rescue benefit by this embodiment.

Claims (10)

1. an electronic deliverance apparatus, is characterized in that: this electronic deliverance apparatus comprises:
A driver element, comprise a housing around an accommodation space, one be placed in motor in this accommodation space, one to be arranged in this accommodation space and for providing the power supply of this revolution required electric power, and one is connected to this motor, and being rotated by this motor driving, and the driving shaft to this accommodation space that stretches through;
A positioning unit, be fixed on the housing of this driver element, and comprise one and there is one in the axis hole of penetration state and at least one location-plate with this axis hole hanging hole separately, and at least one hook ring being hung on this hanging hole, this axis hole is that the driving shaft of this driver element of confession wears;
A gear unit, is connected on the driving shaft of this driver element, and comprises a drive be sheathed on this driving shaft, and a rope being wound in this drive; And
A cap unit, be positioned on this positioning unit, and comprise one and be removably covered on the location-plate of this positioning unit, and jointly define the enclosing cover of a room with this location-plate, the surrounding portion that this enclosing cover has a baseplate part, the bending of outer peripheral edge from this baseplate part extends, first cord hole running through this surrounding portion, and one run through this surrounding portion and with this first cord hole the second cord hole separately, the two ends being wound in the rope of this drive pass this room through this first cord hole and this second cord hole respectively;
When this drive shaft turns of this motor driving, this drive together rotates along with this driving shaft, and relative to being wrapped on this drive and the rope that at least one end is fixing and moving.
2. electronic deliverance apparatus as claimed in claim 1, is characterized in that: the drive of this gear unit has a wheel body, and one is sheathed on the anti-slip section that this takes turns the outer peripheral edge of body.
3. electronic deliverance apparatus as claimed in claim 2, is characterized in that: the anti-slip section of this drive is the material with high coefficient of friction, or is formed with most taper and stings rope structure.
4. electronic deliverance apparatus as claimed in claim 1, it is characterized in that: this positioning unit also comprises one and is connected on this location-plate, and the first projection trimmed with the outer peripheral edge of this drive, and this cap unit also comprises the medial surface that is arranged at the baseplate part of this enclosing cover, and position is to should the second projection of the first projection, when this rope is wound in this drive and is driven by this drive, this first projection and this second projection are respectively with this rope of direction contact of the axis of this drive parallel, guide the winding of this rope and prevent this rope overlap wrapping in this drive.
5. electronic deliverance apparatus as claimed in claim 1, it is characterized in that: this cap unit also comprises one and to be removably arranged in this room and around the inner cover of this drive, this inner cover is for coordinating the rope footpath of this rope and this rope spacing, and have two in penetration state, and position is respectively to should this first cord hole of enclosing cover and the through hole of this second cord hole.
6. electronic deliverance apparatus as claimed in claim 1, it is characterized in that: this electronic deliverance apparatus also comprises one and is electrically connected with this driver element, and the control unit of this driver element action can be controlled, this control unit comprises a controller be electrically connected with the motor of this driver element, and one is arranged on the housing of this driver element, and the operation interface be electrically connected with this controller, this operation interface is used for, to this controller input instruction, making this controller control the rotation of this motor.
7. electronic deliverance apparatus as claimed in claim 6, is characterized in that: this control unit also comprises one and is connected with this controller information, and can to the remote controller of this controller input instruction.
8. electronic deliverance apparatus as claimed in claim 7, is characterized in that: this controller can control keying, the rotating speed of this motor, and turns to.
9. electronic deliverance apparatus as claimed in claim 1, it is characterized in that: this electronic deliverance apparatus also comprises one for this cap unit being connected to the linkage unit of this positioning unit, this linkage unit comprises at least one for the enclosing cover of this cap unit being fixed on the fixture on the location-plate of this positioning unit, and at least one is fixed on the locating part of the position on this location-plate for limiting this enclosing cover.
10. electronic deliverance apparatus as claimed in claim 9, is characterized in that: this fixture is a screw, rivet, a latch, or a snap fit.
CN201520848950.XU 2015-10-29 2015-10-29 Electronic rescue device Expired - Fee Related CN205108794U (en)

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CN201520848950.XU CN205108794U (en) 2015-10-29 2015-10-29 Electronic rescue device

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Application Number Priority Date Filing Date Title
CN201520848950.XU CN205108794U (en) 2015-10-29 2015-10-29 Electronic rescue device

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CN201520848950.XU Expired - Fee Related CN205108794U (en) 2015-10-29 2015-10-29 Electronic rescue device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105963867A (en) * 2015-10-29 2016-09-28 潘逸华 Electric rescue device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105963867A (en) * 2015-10-29 2016-09-28 潘逸华 Electric rescue device
CN105963867B (en) * 2015-10-29 2020-11-03 潘逸华 Electric rescue device

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160330

Termination date: 20211029

CF01 Termination of patent right due to non-payment of annual fee