CN201152751Y - Electromagnetic absolute value encoder with multiple rings - Google Patents

Electromagnetic absolute value encoder with multiple rings Download PDF

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Publication number
CN201152751Y
CN201152751Y CNU2008200549288U CN200820054928U CN201152751Y CN 201152751 Y CN201152751 Y CN 201152751Y CN U2008200549288 U CNU2008200549288 U CN U2008200549288U CN 200820054928 U CN200820054928 U CN 200820054928U CN 201152751 Y CN201152751 Y CN 201152751Y
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CN
China
Prior art keywords
encoder
gear set
multiturn
scrambler
magnet
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.)
Expired - Lifetime
Application number
CNU2008200549288U
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Chinese (zh)
Inventor
裘奋
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.)
Shanghai Gemple Mechanic & Electric Co Ltd
Original Assignee
Shanghai Gemple Mechanic & Electric Co Ltd
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Filing date
Publication date
Application filed by Shanghai Gemple Mechanic & Electric Co Ltd filed Critical Shanghai Gemple Mechanic & Electric Co Ltd
Priority to CNU2008200549288U priority Critical patent/CN201152751Y/en
Application granted granted Critical
Publication of CN201152751Y publication Critical patent/CN201152751Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model relates to an electromagnetic multiturn absolute value encoder, comprising an encoder measuring main shaft (1), a magnetic detecting chip (4), a magnet (6), an encoder flange base (9) and a multiturn gear set (2) arranged below the magnetic detecting chip (4), wherein, the multiturn gear set (2) is connected with a magnet seat (7) for arranging the magnet (6) through a gear linking mechanism (8); the encoder flange base (9) and the encoder measuring main shaft (1) passing through the encoder flange base (9) are arranged below the multiturn gear set (2); the magnetic detecting chip (4) is provided with a circuit board (5) with the functions of DSP data process, CPU operation, a memory cell EEROM and signal output; a data connecting wire (3) is connected with the multiturn gear set (2) and the circuit board (5). electromagnetic multiturn absolute value encoder effectively guarantees the normal use of the encoder under the severe conditions such as vibration, smoke and dust and realizes the multiturn position value of the object to be measured.

Description

The electromagnetical multi-circle absolute value encoder
Technical field
The utility model relates to a kind of scrambler, relates in particular to a kind of physical construction of electromagnetism absolute value encoder.
Background technology
Generally can use absolute value encoder to the position measurement of angle etc., their formation and principle of work are as follows:
Absolute value encoder generally is divided into individual pen and multi-turn.The principle of work of single-ring encoder is as shown in Figure 1:
Scrambler is after powering on, and light source 12 sends light beam, and the optically focused through shielding grating 13 passes the code-disc 11 with rule light and shade groove again, receives at last the coding of one group of break-make at photoelectricity receiving element 14, can reflect the angle that rotating shaft 10 is current really.But under a lot of occasions (for example height, measurement of length); the impulse stroke of equipment can surpass a circle usually; reach the state of multi-turn work; under these circumstances; single-ring encoder just has no idea to have reflected the absolute position of multi-turn really; in order to solve this difficulty, its principle of work such as Fig. 2, shown in Figure 3 the multi-turn absolute value encoder have appearred in the world:
As can be seen from the figure, the scrambler axle is by the structure of one group of speed gear, the measurement axis revolution is crossed once enclosing at the end that slows down turned over certain angle, by measuring the angle value that the end that slows down turns over, can reflect the number of turns that current measurement main shaft turns over, like this, in certain scope, just can realize the measurement of multi-turn number.Among Fig. 2: scrambler axle 20, code-disc 21, light source 22, shielding grating 23, photoelectricity receiving element 24, one group of speed gear 25; Among Fig. 3: scrambler axle 200, base 201, optical system 202, wiring board 203, one group of speed gear 204.
Because this structure need be used the code-disc with light and shade groove; and the precision of this code-disc groove depends on manufacturing process; so on no matter still being manufacturing process from cost and environmental protection angle, all need certain production scale, this has limited development of this product and has popularized.On the other hand, because groove is better in stability on glass, precision is higher, so code-disc is made of glass usually, but glass has frangible characteristic, in vibration with impact under the stronger environment and be not suitable for this product, add that the optical system of this scheme can cause the instability of product in dust and wet environment.In order to overcome above-mentioned problem, proposed again in the prior art to rely on the magnetic detection principle to realize the scheme of position measurement.
As shown in Figure 4: the core processing element utilizes memory function that N, the S pole field distribution of permanent magnet are preserved (initial point, also cry zero point), distribute when changing when following magnetic field of magnets that testee moves together, treatment element compares new detected Distribution of Magnetic Field and original distribution figure, draw the relative angle between two figure, thereby know the current absolute position of equipment.Usually utilize coder structure that this principle realizes (among the figure: scrambler axle 30, base 31, magnet 32, magnetic detection chip 33) as shown in Figure 5:
Though the usability of scrambler under vibration and flue dust environment is fine, but being magnetic core, its limitation must be positioned at magnetic detection chip below, if still by the method for the multi-turn gear set that utilizes optical system above the individual pen measurement, because magnetic core can't pass through wiring board, so can't realize the multi-turn continuous coverage.
Summary of the invention
The utility model technical issues that need to address have provided a kind of electromagnetical multi-circle absolute value encoder, are intended to solve the above problems.
In order to solve the problems of the technologies described above, the utility model is achieved through the following technical solutions:
The utility model comprises: scrambler is measured main shaft, magnetic detection chip, magnet, scrambler flange base; Also comprise: a multi-turn gear set that is placed under the magnetic detection chip, described multi-turn gear set joins by gear coupling mechanism and the magnetic receiver of settling magnet; The scrambler measurement main shaft of under the multi-turn gear set, settling the scrambler flange base and passing the scrambler flange base; On the magnetic detection chip, settle a wiring board that comprises DSP data processing, CPU computing, storage unit EEROM, signal output; A data tie connects multi-turn gear set and wiring board.
Compared with prior art, the beneficial effects of the utility model are: the scrambler that can effectively solve under the severe environmental conditions such as vibration and flue dust normally uses on the one hand, on the other hand, can realize the multi-turn positional value of testee simultaneously; Solved this 2 technical difficulty, scrambler can be more widely used, particularly in the popularization of industries such as new forms of energy (wind-power electricity generation, water generating etc.), motion control industry (servocontrol, rolling open and close machine, screw rod machine etc.), elevator.
Description of drawings
Fig. 1 is the single-ring encoder structural upright synoptic diagram that utilizes optical system in the prior art;
Fig. 2 is the encoder structural upright synoptic diagram that utilizes optical system in the prior art;
Fig. 3 is Fig. 2 physical construction synoptic diagram;
Fig. 4 is the schematic diagram that magnetic principles detects the absolute position;
Fig. 5 is Fig. 4 physical construction synoptic diagram;
Fig. 6 is a structural representation of the present utility model;
Embodiment
Below in conjunction with accompanying drawing and embodiment the utility model is described in further detail:
As seen from Figure 6: the utility model comprises: scrambler is measured main shaft 1, magnetic detection chip 4, magnet 6, scrambler flange base 9; Also comprise: a multi-turn gear set 2 that is placed under the magnetic detection chip 4, described multi-turn gear set 2 joins by gear coupling mechanism 8 and the magnetic receiver 7 of settling magnet 6; Measure main shaft 1 at 2 times arrangement scramblers of multi-turn gear set flange base 9 and the scrambler that passes scrambler flange base 9; On magnetic detection chip 4, settle a wiring board 5 that comprises DSP data processing, CPU computing, storage unit EEROM, signal output; A data connecting line 3 connects multi-turn gear set 2 and wiring board 5.
The structure of the multi-turn gear set in the utility model adopts one group of speed gear in the encoder that utilizes optical system in the prior art.
The scrambler measurement main shaft that connects with equipment that the multi-turn gear set is driven by the gear coupling mechanism rotates, gear set is by detecting the angle value that the reduction gearing end turns over, calculate scrambler and measure the number of turns that main shaft turns over, be sent to wiring board by data connecting line, high position as data, add up again and go up that the magnetic detection chip is detected to be installed on the angle that magnet turned on the magnetic receiver, low level as data, through the computing of CPU, send with the signal form that the user needs by output port at last after the stack.
The utility model utilizes the vibration resistance of magnetic detection principle and the number of turns of encoder to detect, particularly solved the Machine Design that original encoder gear shaft need pass wiring board, and magnetic detects the design rule that magnet in the principle need place magnetic detection chip below, both are combined, both data are carried out hybrid operation, can accomplish the current number of turns of equipment under test and the measuring ability of current location, realize that angle, speed are particularly by the linear measure longimetry after the computing.

Claims (1)

1. an electromagnetical multi-circle absolute value encoder comprises: scrambler measurement main shaft (1), magnetic detection chip (4), magnet (6), scrambler flange base (9); It is characterized in that also comprising: a multi-turn gear set (2) that is placed under the magnetic detection chip (4), described multi-turn gear set (2) joins by gear coupling mechanism (8) and the magnetic receiver (7) of settling magnet (6); Down arrangement scrambler flange base (9) and the scrambler that passes scrambler flange base (9) are measured main shaft (1) at multi-turn gear set (2); Go up the wiring board (5) of settling one to comprise DSP data processing, CPU computing, storage unit EEROM, signal output in magnetic detection chip (4); A data connecting line (3) connects multi-turn gear set (2) and wiring board (5).
CNU2008200549288U 2008-01-22 2008-01-22 Electromagnetic absolute value encoder with multiple rings Expired - Lifetime CN201152751Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008200549288U CN201152751Y (en) 2008-01-22 2008-01-22 Electromagnetic absolute value encoder with multiple rings

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008200549288U CN201152751Y (en) 2008-01-22 2008-01-22 Electromagnetic absolute value encoder with multiple rings

Publications (1)

Publication Number Publication Date
CN201152751Y true CN201152751Y (en) 2008-11-19

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Application Number Title Priority Date Filing Date
CNU2008200549288U Expired - Lifetime CN201152751Y (en) 2008-01-22 2008-01-22 Electromagnetic absolute value encoder with multiple rings

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109959327A (en) * 2017-12-14 2019-07-02 深圳市优必选科技有限公司 Multi-turn steering engine rotational angle detection method, device, multi-turn steering engine and storage medium

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109959327A (en) * 2017-12-14 2019-07-02 深圳市优必选科技有限公司 Multi-turn steering engine rotational angle detection method, device, multi-turn steering engine and storage medium

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Granted publication date: 20081119