CN203707985U - Brushless direct-current motor with speed reducing device - Google Patents

Brushless direct-current motor with speed reducing device Download PDF

Info

Publication number
CN203707985U
CN203707985U CN201420062770.4U CN201420062770U CN203707985U CN 203707985 U CN203707985 U CN 203707985U CN 201420062770 U CN201420062770 U CN 201420062770U CN 203707985 U CN203707985 U CN 203707985U
Authority
CN
China
Prior art keywords
tooth
motor
bearing
oscillating tooth
shaft
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.)
Withdrawn - After Issue
Application number
CN201420062770.4U
Other languages
Chinese (zh)
Inventor
薛昌辉
薛安志
缪立春
蔡清理
杜吉林
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.)
Zhejiang Sanxing Mechanical & Electronical Stock Co Ltd
Original Assignee
Zhejiang Sanxing Mechanical & Electronical Stock 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 Zhejiang Sanxing Mechanical & Electronical Stock Co Ltd filed Critical Zhejiang Sanxing Mechanical & Electronical Stock Co Ltd
Priority to CN201420062770.4U priority Critical patent/CN203707985U/en
Application granted granted Critical
Publication of CN203707985U publication Critical patent/CN203707985U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

Links

Landscapes

  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)

Abstract

The utility model discloses a brushless direct-current motor with a speed reducing device, comprising a brushless direct-current motor and a movable-tooth speed reducing device. The movable-tooth speed reducing device includes a cam shaft which is sleeved on a motor shaft and is provided with an elliptic cam. An upper-end shaft is arranged at the upper end of the motor shaft in an integrated mode. The upper-end shaft is fixedly provided with a key. The upper-end shaft is connected with an inner hole of the cam shaft through the key. A first movable-tooth bracket is pivoted to the lower end of the cam shaft. An output shaft movable-tooth bracket is pivoted to the upper end of the cam shaft. A lower motor base is pivoted to the first movable-tooth bracket. An upper motor base is pivoted to the output shaft movable-tooth bracket. An arc tooth ring, a plurality of movable-tooth shafts and a plurality of movable-tooth sleeves are arranged between the upper motor base and the lower motor base. A plurality of arc teeth are arranged in the arc tooth ring. Each of the movable-tooth shafts is connected in a sleeved mode with one movable-tooth sleeve. The movable-tooth sleeves are tangent to the outer profile surface of the elliptic cam of the cam shaft. The movable-tooth shafts are tangent to the inner arc tooth profile surface of the arc tooth ring. The brushless direct-current motor disclosed by the utility model has the advantages of simple structure, low cost, high efficiency, low noise and simple assembly process.

Description

A kind of brshless DC motor with deceleration device
Technical field
The utility model relates to technical field of motors, is specifically related to a kind of brshless DC motor with deceleration device.
Background technology
Current band reducing gear motor is mostly threephase asynchronous machine band gear reduction, threephase asynchronous machine band belt wheel reducing gear and threephase asynchronous machine Dai Jing cycloid reduction mechanism; Gear reduction box volume is large, cost is high, noise is large; Belt wheel reducing gear inefficiency, volume is large, energy consumption is high, noise is large; The processing of footpath cycloid reduction mechanism and assembling are complicated, and energy consumption is high, cost is high; Motor is under specified large torque, and the fluctuation of speed is large, energy consumption is high.
Utility model content
The deficiency existing for prior art, the purpose of this utility model is to provide that a kind of cost is low, efficiency is high, noise is little, the better simply brshless DC motor with deceleration device of assembly technology.
For achieving the above object, the utility model provides following technical scheme: a kind of brshless DC motor with deceleration device, comprise brshless DC motor and decelerating movable teeth device, described brshless DC motor comprises electric machine casing and is arranged on the motor shaft at electric machine casing center, the upper and lower two ends of described electric machine casing are respectively arranged with top chock and step, described motor shaft upper and lower side stretches out respectively top chock and step setting, decelerating movable teeth device is installed in described top chock upper end, described decelerating movable teeth device comprises the camshaft with oval cam being socketed on motor shaft, described motor shaft upper end is integrally formed with upper shaft, on upper shaft, be fixed with key, upper shaft connects with the endoporus on camshaft by key, described camshaft lower end is articulated with the first oscillating tooth support, described camshaft upper end is articulated with output shaft oscillating tooth support, between described the first oscillating tooth support and camshaft lower end, be provided with clutch shaft bearing, between described output shaft oscillating tooth support and camshaft upper end, be provided with the second bearing, on described the first oscillating tooth support, be articulated with lower support, between described the first oscillating tooth support and lower support, be provided with the 3rd bearing, on described output shaft oscillating tooth support, be articulated with upper frame, between described upper frame and output shaft oscillating tooth support, be provided with the 4th bearing, between described upper frame and lower support, be provided with curved tooth circle, some oscillating tooth axles and some oscillating tooth covers, in described curved tooth circle, be provided with several curved tooths, the profile of tooth of curved tooth is according to the curved profile of the Its Track Design of oval cam, on described some oscillating tooth axles, be socketed with respectively an oscillating tooth cover, described each oscillating tooth cover is tangent with the oval cam outer surface on camshaft, the inner arc gear tooth profile face of each oscillating tooth axle and curved tooth circle is tangent, between described upper frame, curved tooth circle and lower support, be equipped with several the first lock-screws, described upper frame, curved tooth circle and lower support are integrally formed after locking by the first lock-screw, between described lower support and electric machine casing upper end, be equipped with several the second lock-screws, by the second lock-screw, lower support and electric machine casing be connected and fixed.
By adopting technique scheme, motor shaft drives camshaft running, the oval cam of camshaft drives the running of oscillating tooth cover, oscillating tooth cover drives oscillating tooth axle on the curved tooth curved profile face in curved tooth circle, energy consumption is high along oval cam outer surface and moves, thereby reach the running object of decelerating through motor, complete machine structure is simple, and cost is low, efficiency is high, noise is little, assembly technology is simple.
The utility model is further set to: many 2 than the curved tooth quantity of curved tooth circle of the quantity of described oscillating tooth axle; The longitudinal section of described camshaft is " ten " character form structure.By this setting, the structure of the oscillating tooth number of axle and camshaft arranges rationally, makes work more reliable.
The utility model is also further set to: described upper frame lower end is provided with wear washer, and described lower support upper end is provided with lower wear washer.By this setting, upper wear washer and lower wear washer arrange rationally, make work more reliable.
The utility model is also further set to: described the first oscillating tooth support upper end arranges clutch shaft bearing groove, and described clutch shaft bearing is arranged in clutch shaft bearing groove, and clutch shaft bearing and camshaft lower end are fixed by socket; Described output shaft oscillating tooth support lower end is provided with the second bearing groove, and described the second bearing is arranged in the second bearing groove, and the second bearing and camshaft upper end are fixed by socket.By this setting, the first oscillating tooth support and output shaft oscillating tooth supporting structure arrange rationally, and clutch shaft bearing and the second bearing are easy for installation, work more reliable.
The utility model is also further set to: described lower support upper end is provided with the 3rd bearing groove, and described the 3rd bearing is arranged in the 3rd bearing groove, and the 3rd bearing and the first oscillating tooth support lower end are fixed by socket; Described upper frame lower end is provided with the 4th bearing groove, and the 4th bearing is arranged in the 4th bearing groove, and the 4th bearing and output shaft oscillating tooth support upper end are fixed by socket.By this setting, lower support and upper frame structure arrange rationally, and the 3rd bearing and the 4th bearing are easy for installation, work more reliable.
The utility model is also further set to: described electric machine casing internal face middle part is fixedly installed stator core, on described stator core, be installed with coil windings, described motor shaft is positioned at electric machine casing section middle part fixed cover and is connected to rotor core, on described rotor core, be installed with rotor magnetic steel, on described electric machine casing internal face, be fixedly installed Hall element, and the induction of the cylindrical of Hall element and rotor magnetic steel arranges.By this setting, brushless DC motor structure is simple, efficiency is high, reliable operation, and brshless DC motor has speed-regulating function, and power savings is good.
The utility model is also further set to: described motor shaft lower end is socketed with fan blade, and described electric machine casing lower end is provided with fan housing, and described fan housing is connected and fixed by the 3rd screw and electric machine casing lower end.By this setting, fan blade is installed rationally, and fan housing is easy to connect, fixing reliable.
The utility model is also further set to: described top chock and step middle part are fixedly installed respectively the 5th bearing and the 6th bearing, and described top chock and step are all connected and fixed by the 4th screw and electric machine casing.By this setting, motor shaft work is more reliable.
The utility model has the advantages that: compared with prior art, the setting of the utility model structure is more reasonable, motor shaft drives camshaft running, the oval cam of camshaft drives the running of oscillating tooth cover, oscillating tooth cover drives oscillating tooth axle to move on the curved tooth curved profile face in curved tooth circle along oval cam outer surface, thereby the running object that reaches decelerating through motor, complete machine structure is simple, and cost is low, efficiency is high, noise is little, assembly technology is simple.
Below in conjunction with Figure of description and specific embodiment, the utility model is described in further detail.
Brief description of the drawings
Fig. 1 is the structural representation of the utility model embodiment;
Fig. 2 is the enlarged drawing in Fig. 1;
Fig. 3 is the cross-sectional schematic of A-A in Fig. 1.
Embodiment
Referring to Fig. 1, Fig. 2 and Fig. 3, the disclosed a kind of brshless DC motor with deceleration device of the utility model, comprise brshless DC motor 1 and decelerating movable teeth device 2, described brshless DC motor 1 comprises electric machine casing 11 and is arranged on the motor shaft 12 at electric machine casing 11 centers, described electric machine casing is respectively arranged with top chock 13 and step 14 in two ends Shang Xia 11, described motor shaft 12 upper and lower sides stretch out respectively top chock 13 and step 14 arranges, decelerating movable teeth device 2 is installed in described top chock 13 upper ends, described decelerating movable teeth device 2 comprises the camshaft with oval cam 223 21 being socketed on motor shaft 12, described motor shaft 12 upper ends are integrally formed with upper shaft 199, on upper shaft 199, be fixed with key 222, upper shaft 199 connects with the endoporus on camshaft 21 by key 222, described camshaft 21 lower ends are articulated with the first oscillating tooth support 22, described camshaft 21 upper ends are articulated with output shaft oscillating tooth support 23, between described the first oscillating tooth support 22 and camshaft 21 lower ends, be provided with clutch shaft bearing 24, between described output shaft oscillating tooth support 23 and camshaft 21 upper ends, be provided with the second bearing 25, on described the first oscillating tooth support 22, be articulated with lower support 26, between described the first oscillating tooth support 22 and lower support 26, be provided with the 3rd bearing 27, on described output shaft oscillating tooth support 23, be articulated with upper frame 28, between described upper frame 28 and output shaft oscillating tooth support 23, be provided with the 4th bearing 29, between described upper frame 28 and lower support 26, be provided with curved tooth circle 210, some oscillating tooth axles 211 and some oscillating tooths cover 212, in described curved tooth circle 210, be provided with several curved tooths 2101, the profile of tooth of curved tooth 2101 is according to the curved profile of the Its Track Design of oval cam 223, on described some oscillating tooth axles 211, be socketed with respectively an oscillating tooth cover 212, described each oscillating tooth cover 212 is tangent with oval cam 223 outer surfaces on camshaft 21, each oscillating tooth axle 211 is tangent with the inner arc gear tooth profile face of curved tooth circle 210, described upper frame 28, between curved tooth circle 210 and lower support 26, be equipped with several the first lock-screws 213, described upper frame 28, curved tooth circle 210 and lower support 26 are integrally formed after locking by the first lock-screw 213, between described lower support 26 and electric machine casing 11 upper ends, be equipped with several the second lock-screws 214, by the second lock-screw 214, lower support 26 and electric machine casing 11 are connected and fixed.
When driving brshless DC motor 1, driving governor turns round, motor shaft 12 drives camshaft 21 to turn round, oval cam 223 on camshaft 21 drives 212 runnings of oscillating tooth cover, oscillating tooth cover 212 drives oscillating tooth axle 211 to move on curved tooth circle 210 along oval cam 223 outer surfaces, thereby reaches the object of decelerating through motor running.
For making the utility model structure more reasonable, as preferably, the quantity of oscillating tooth axle 211 than the curved tooth quantity of curved tooth circle 210 many 2 described in the present embodiment; The longitudinal section of described camshaft 21 is " ten " character form structure.Described the first oscillating tooth support 22 and output shaft oscillating tooth support 23 are Step Shaft shapes, in two stands, be provided with through hole and bearing location hole, each support small end cylindrical is provided with bearing position, and flange end is provided with several open semi circular holes, and the endoporus of the small end of output shaft oscillating tooth support 23 is provided with keyway;
Described upper frame 28 lower ends are provided with wear washer 281, and described lower support 26 upper ends are provided with lower wear washer 261.Described the first oscillating tooth support 22 upper ends arrange clutch shaft bearing groove 221, and described clutch shaft bearing 24 is arranged in clutch shaft bearing groove 221, and clutch shaft bearing 24 is fixed by socket with camshaft 21 lower ends; Described output shaft oscillating tooth support 23 lower ends are provided with the second bearing groove 231, and described the second bearing 25 is arranged in the second bearing groove 231, and the second bearing 25 is fixed by socket with camshaft 21 upper ends.Described lower support 26 upper ends are provided with the 3rd bearing groove 262, and described the 3rd bearing 27 is arranged in the 3rd bearing groove 262, and the 3rd bearing 27 and the first oscillating tooth support 22 lower ends are fixed by socket; Described upper frame 28 lower ends are provided with the 4th bearing groove 282, the four bearings 29 and are arranged in the 4th bearing groove 282, and the 4th bearing 29 is fixed by socket with output shaft oscillating tooth support 23 upper ends.
Described in the present embodiment, electric machine casing 11 internal face middle parts are fixedly installed stator core 15, on described stator core 15, be installed with coil windings 16, described motor shaft 12 is positioned at electric machine casing section middle part fixed cover and is connected to rotor core 17, on described rotor core 17, be installed with rotor magnetic steel 18, on described electric machine casing 11 internal faces, be fixedly installed Hall element 19, and Hall element 19 arranges with the cylindrical induction of rotor magnetic steel 18.
Described motor shaft 12 lower ends are socketed with fan blade 110, and described electric machine casing 11 lower ends are provided with fan housing 111, and described fan housing 111 is connected and fixed with electric machine casing 11 lower ends by the 3rd screw 112.
Described top chock 13 and step 14 middle parts are fixedly installed respectively the 5th bearing 113 and the 6th bearing 114, and described top chock 13 and step 14 are all connected and fixed with electric machine casing 11 by the 4th screw 115.
The brshless DC motor with deceleration device that the utility model provides has following beneficial effect:
1, in the utility model, brshless DC motor directly drives decelerating movable teeth device, can form multi-stage speed-reducing, speed reducing ratio is large, output torque is large, except decelerating movable teeth device, itself has speed-regulating function brshless DC motor, and one makes the variation of whole reducing gear speed change.
2, in the utility model, decelerating movable teeth device volume is little, compact conformation is novel, speed reducing ratio is large, and mechanical efficiency is high, with low cost, and assembling is simple.
3, in the utility model, the brushless DC motor noise with deceleration device is little, and efficiency is high, and brshless DC motor is DC variable-frequency motor, and with the control of electronics driving governor, higher than the general asynchronous machine efficiency with deceleration device, energy-saving effect is obvious.
4, under specified large torque, the stabilization of speed of motor.
Above-described embodiment is to specific descriptions of the present utility model; only for the utility model is further described; can not be interpreted as the restriction to the utility model protection range, the technician of this area according to the content of above-mentioned utility model to the utility model make some nonessential improvement and adjust all fall into protection range of the present utility model within.

Claims (8)

1. the brshless DC motor with deceleration device, comprise brshless DC motor (1) and decelerating movable teeth device (2), described brshless DC motor (1) comprises electric machine casing (11) and is arranged on the motor shaft (12) at electric machine casing (11) center, the upper and lower two ends of described electric machine casing (11) are respectively arranged with top chock (13) and step (14), described motor shaft (12) upper and lower side stretches out respectively top chock (13) and step (14) arranges, it is characterized in that: decelerating movable teeth device (2) is installed in described top chock (13) upper end, described decelerating movable teeth device (2) comprises the camshaft (21) of the band oval cam (223) being socketed on motor shaft (12), described motor shaft (12) upper end is integrally formed with upper shaft (199), on upper shaft (199), be fixed with key (222), upper shaft (199) connects with the endoporus on camshaft (21) by key (222), described camshaft (21) lower end is articulated with the first oscillating tooth support (22), described camshaft (21) upper end is articulated with output shaft oscillating tooth support (23), between described the first oscillating tooth support (22) and camshaft (21) lower end, be provided with clutch shaft bearing (24), between described output shaft oscillating tooth support (23) and camshaft (21) upper end, be provided with the second bearing (25), on described the first oscillating tooth support (22), be articulated with lower support (26), between described the first oscillating tooth support (22) and lower support (26), be provided with the 3rd bearing (27), on described output shaft oscillating tooth support (23), be articulated with upper frame (28), between described upper frame (28) and output shaft oscillating tooth support (23), be provided with the 4th bearing (29), between described upper frame (28) and lower support (26), be provided with curved tooth circle (210), some oscillating tooth axles (211) and some oscillating tooth covers (212), in described curved tooth circle (210), be provided with several curved tooths (2101), the profile of tooth of curved tooth (2101) is according to the curved profile of the Its Track Design of oval cam (223), on described some oscillating tooth axles (211), be socketed with respectively an oscillating tooth cover (212), described each oscillating tooth cover (212) is tangent with oval cam (223) outer surface on camshaft (21), each oscillating tooth axle (211) is tangent with the inner arc gear tooth profile face of curved tooth circle (210), described upper frame (28), between curved tooth circle (210) and lower support (26), be equipped with several the first lock-screws (213), described upper frame (28), curved tooth circle (210) and lower support (26) are integrally formed after locking by the first lock-screw (213), between described lower support (26) and electric machine casing (11) upper end, be equipped with several the second lock-screws (214), by the second lock-screw (214), lower support (26) and electric machine casing (11) are connected and fixed.
2. a kind of brshless DC motor with deceleration device according to claim 1, is characterized in that: many 2 than the curved tooth quantity of curved tooth circle (210) of the quantity of described oscillating tooth axle (211) and oscillating tooth cover (212); The longitudinal section of described camshaft (21) is " ten " character form structure.
3. a kind of brshless DC motor with deceleration device according to claim 2, is characterized in that: described upper frame (28) lower end is provided with wear washer (281), and described lower support (26) upper end is provided with lower wear washer (261).
4. a kind of brshless DC motor with deceleration device according to claim 3, it is characterized in that: described the first oscillating tooth support (22) upper end arranges clutch shaft bearing groove (221), described clutch shaft bearing (24) is arranged in clutch shaft bearing groove (221), and clutch shaft bearing (24) is fixed by socket with camshaft (21) lower end; Described output shaft oscillating tooth support (23) lower end is provided with the second bearing groove (231), and described the second bearing (25) is arranged in the second bearing groove (231), and the second bearing (25) is fixed by socket with camshaft (21) upper end.
5. a kind of brshless DC motor with deceleration device according to claim 4, it is characterized in that: described lower support (26) upper end is provided with the 3rd bearing groove (262), described the 3rd bearing (27) is arranged in the 3rd bearing groove (262), and the 3rd bearing (27) is fixed by socket with the first oscillating tooth support (22) lower end; Described upper frame (28) lower end is provided with the 4th bearing groove (282), and the 4th bearing (29) is arranged in the 4th bearing groove (282), and the 4th bearing (29) is fixed by socket with output shaft oscillating tooth support (23) upper end.
6. a kind of brshless DC motor with deceleration device according to claim 5, it is characterized in that: described electric machine casing (11) internal face middle part is fixedly installed stator core (15), on described stator core (15), be installed with coil windings (16), described motor shaft (12) is positioned at electric machine casing section middle part fixed cover and is connected to rotor core (17), on described rotor core (17), be installed with rotor magnetic steel (18), on described electric machine casing (11) internal face, be fixedly installed Hall element (19), and Hall element (19) arranges with the cylindrical induction of rotor magnetic steel (18).
7. a kind of brshless DC motor with deceleration device according to claim 6, it is characterized in that: described motor shaft (12) lower end is socketed with fan blade (110), described electric machine casing (11) lower end is provided with fan housing (111), and described fan housing (111) is connected and fixed by the 3rd screw (112) and electric machine casing (11) lower end.
8. a kind of brshless DC motor with deceleration device according to claim 7, it is characterized in that: the top chock (13) of described brshless DC motor (1) and step (14) middle part are fixedly installed respectively the 5th bearing (113) and the 6th bearing (114), and described top chock (13) and step (14) are all connected and fixed by the 4th screw (115) and electric machine casing (11).
CN201420062770.4U 2014-02-12 2014-02-12 Brushless direct-current motor with speed reducing device Withdrawn - After Issue CN203707985U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420062770.4U CN203707985U (en) 2014-02-12 2014-02-12 Brushless direct-current motor with speed reducing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420062770.4U CN203707985U (en) 2014-02-12 2014-02-12 Brushless direct-current motor with speed reducing device

Publications (1)

Publication Number Publication Date
CN203707985U true CN203707985U (en) 2014-07-09

Family

ID=51058365

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420062770.4U Withdrawn - After Issue CN203707985U (en) 2014-02-12 2014-02-12 Brushless direct-current motor with speed reducing device

Country Status (1)

Country Link
CN (1) CN203707985U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103762778A (en) * 2014-02-12 2014-04-30 浙江三星机电股份有限公司 Brushless direct current motor with reduction gear

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103762778A (en) * 2014-02-12 2014-04-30 浙江三星机电股份有限公司 Brushless direct current motor with reduction gear
CN103762778B (en) * 2014-02-12 2016-01-20 浙江三星机电股份有限公司 A kind of brshless DC motor with deceleration device

Similar Documents

Publication Publication Date Title
CN202221929U (en) Hollow rotor shaft mechanism of motor
CN202346324U (en) Direct current mute energy-saving electric roller
CN103762778B (en) A kind of brshless DC motor with deceleration device
CN1581646A (en) Brushless through-shaft speed-reducing hub motor
CN203707985U (en) Brushless direct-current motor with speed reducing device
CN203548270U (en) Air blower driven by outer rotor motor
CN204416866U (en) A kind of permanent-magnet synchnorous gearless dragging machine
CN202520546U (en) Oil pump driven by direct-current brushless motor
CN203734414U (en) Self-adaption oil pumping unit speed reducer direct-drive discoid rare earth permanent magnet motor
CN202495865U (en) Horizontal permanent-magnetic variable-frequency three-phase synchronous motor
CN201947112U (en) Bipolar planetary speed reduction motor
CN210093059U (en) Encoder shift-out type hollow direct-drive motor
CN201430520Y (en) Brushless DC motor for energy-saving oil extractor
CN102161455A (en) Gearless permanent-magnet synchronous driving motor used for escalator
CN202034842U (en) Permanent magnet synchronous servo motor for elevator
CN202007074U (en) Gearless permanent magnetic synchronous driving host of escalator
CN201937428U (en) Novel electric moped motor
CN101521413A (en) Internal bias hub motor
CN203319164U (en) Outer rotor direct drive motor roller for belt conveyor
CN207810484U (en) A kind of built-in electric roller directly driven with permanent magnet synchronous motor
CN205681273U (en) A kind of treadmill drives DC brushless motor
CN201151604Y (en) Escalator
CN206481202U (en) Brush DC Hall external motor for electric car
CN205134238U (en) Electric machine drive mechanism for banister
CN200990552Y (en) Deformed rotor superlow speed large torque short magnetic path speed control motor

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140709

Effective date of abandoning: 20160120

C25 Abandonment of patent right or utility model to avoid double patenting