IP Library Granted Patent US 9,835,480
Granted Patent B2
US 9,835,480 · App. 14/555,862 · Granted Dec 5, 2017

Multiturn rotary encoder

Inventor: Martin Von Berg (Übersee, DE)
Assignee: DR. JOHANNES HEIDENHAIN GMBH
G01D15/00G01D5/145
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Quick Facts
Patent No.
US 9,835,480
App. No.
14/555,862
Granted
Dec 5, 2017
Kind
B2
Abstract

A multiturn rotary encoder includes: a single-turn unit, including a code carrier that is able to be scanned by a single-turn scanner in order to generate single-turn position signals, and a single-turn evaluation unit for processing the single-turn position signals to form at least one single-turn code word that indicates the absolute position of an input shaft within one revolution; a first multiturn unit dependent on a power supply, including at least a first multiturn code carrier that is able to be scanned by a first multiturn scanner in order to generate first multiturn position signals, and a first multiturn evaluation unit for processing the first multiturn position signals to form a first multiturn code word that indicates the number of revolutions executed by the input shaft; and a second multiturn unit independent of a power supply, including at least a second multiturn code carrier that is able to be scanned by a second multiturn scanner in order to generate second multiturn position signals, and a second multiturn evaluation unit for processing the second multiturn position signals to form a second multiturn code word which likewise indicates the number of revolutions executed by the input shaft. The value of the first multiturn code word of the first multiturn unit in an initialization phase after the power supply of the multiturn rotary encoder has been switched on is able to be referenced with the value of the second multiturn code word.

Claims (15)

1. A multiturn rotary encoder, comprising:

a single-turn unit, including a code carrier scannable by a single-turn scanner in order to generate single-turn position signals, and a single-turn evaluation unit adapted to process the single-turn position signals to form at least one single-turn code word that indicates an absolute position of an input shaft within one revolution;

a first multiturn unit, operable dependent on a supply of power from of a power supply of the multiturn rotary encoder, including at least a first multiturn code carrier scannable by a first multiturn scanner in order to generate first multiturn position signals, and a first multiturn evaluation unit adapted to process the first multiturn position signals to form a first multiturn code word that indicates a number of revolutions executed by the input shaft; and

a second multiturn unit, operable independent of the supply of power from the power supply, including at least a second multiturn code carrier scannable by a second multiturn scanner in order to generate second multiturn position signals, and a second multiturn evaluation unit adapted to process the second multiturn position signals to form a second multiturn code word which also indicates the number of revolutions executed by the input shaft;

wherein a value of the first multiturn code word of the first multiturn unit in an initialization phase responsive to the power supply of the multiturn rotary encoder being switched on is referenced with a value of the second multiturn code word.

2. The multiturn rotary encoder according to claim 1 , further comprising an initialization unit adapted initialize the first multiturn unit with the value of the second multiturn code word to perform the referencing after the power supply is switched on.

3. The multiturn rotary encoder according to claim 2 , further comprising an interface unit adapted to communicate with sequential electronics via a data-transmission channel and adapted to trigger initialization of the first multiturn unit.

4. The multiturn rotary encoder according to claim 1 , further comprising an initialization unit adapted to store the value of the second multiturn code word after the power supply is switched as an offset value that indicates a difference between the value of the second multiturn code word and the value of the first multiturn code word to perform the referencing.

5. The multiturn rotary encoder according to claim 1 , wherein the first multiturn unit includes a counter-based multiturn unit.

6. The multiturn rotary encoder according to claim 1 , wherein the second multiturn unit includes a gear-based multiturn unit.

7. A method for operating a multiturn rotary encoder, including: a single-turn unit, including a code carrier scannable by a single-turn scanner in order to generate single-turn position signals, and a single-turn evaluation unit adapted to process the single-turn position signals to form at least one single-turn code word that indicates an absolute position of an input shaft within one revolution; a first multiturn unit, operable dependent on a supply of power from a power supply of the multiturn rotary encoder, including at least a first multiturn code carrier scannable by a first multiturn scanner in order to generate first multiturn position signals, and a first multiturn evaluation unit adapted to process the first multiturn position signals to form a first multiturn code word that indicates a number of revolutions executed by the input shaft; and a second multiturn unit, operable independent of the supply of power from the power supply, including at least a second multiturn code carrier scannable by a second multiturn scanner in order to generate second multiturn position signals, and a second multiturn evaluation unit adapted to process the second multiturn position signals to form a second multiturn code word which also indicates the number of revolutions executed by the input shaft; comprising:

referencing a value of the first multiturn code word of the first multiturn unit in an initialization phase responsive to the power supply of the multiturn rotary encoder being switched on with a value of the second multiturn code word.

8. The method according to claim 7 , wherein for the referencing after the power supply has been switched on, the first multiturn unit is initialized by an initialization unit with the value of the second multiturn code word.

9. The method according to claim 8 , wherein an interface unit is provided for communication with sequential electronics via a data-transmission channel, and the initialization of the first multiturn unit is triggered by the interface unit.

10. The method according to claim 7 , wherein for the referencing, the value of the second multiturn code word after the power supply has been switched on is stored by an initialization unit as an offset value that indicates a difference between the value of the second multiturn code word and the value of the first multiturn code word.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2014
From: VON BERG, MARTIN
To: DR. JOHANNES HEIDENHAIN GMBH
Reel/Frame 034276/0880 →
Priority Claims (1)
DE 10 2013 224 247 · Nov 27, 2013 · national
Continuity (1)
Related Publication 20150149112A1 · May 28, 2015