Light sensing device
09835725 · 2017-12-05
Assignee
Inventors
Cpc classification
G01S17/48
PHYSICS
International classification
G01S17/48
PHYSICS
H03K17/94
ELECTRICITY
G01S17/02
PHYSICS
Abstract
A light sensing device having background suppression includes: a light transmitter, a light receiver, an evaluation unit for determining the spacing between the light sensing device and an object in a detection zone of the light sensing device, and a setting element for setting a sensing depth within which an object should be detected. A critical spacing region is defined between a set sensing depth and a background in dependence on the set sensing depth. A signal output outputs a signal if an object is detected within the set sensing depth and a display unit displays whether an object is present within the sensing depth. The set sensing depth can be displayed in relation to a maximum sensing depth of the light sensing device in a first display region and a second display region indicates if an object is located in the critical spacing region.
Claims
1. A light sensing device having background suppression, comprising a light transmitter; a light receiver; an evaluation unit for determining the spacing between the light sensing device and an object in a detection zone of the light sensing device; a setting element for setting a sensing depth within which an object should be detected, wherein a critical spacing region is defined between a set sensing depth and a background in dependence on the set sensing depth; a signal output for outputting a signal when an object is detected within the set sensing depth; a display unit for displaying whether an object is present within the sensing depth; wherein the display unit has at least two display regions, wherein the first display region is configured such that the set sensing depth can be displayed in relation to a maximum sensing depth of the light sensing device and the second display region indicates if an object is present in the critical spacing region; and wherein the display unit is of ring-like design and the display regions form sections of the ring and the setting element is configured as a rotary potentiometer which is present in the interior of the ring.
2. The light sensing device in accordance with claim 1, further comprising a third display region in which it can be indicated whether a detected object is located in the background.
3. The light sensing device in accordance with claim 1, wherein a distance of an object located within the set sensing depth can be indicated qualitatively in the first display region.
4. The light sensing device in accordance with claim 1, wherein the first display region is composed of a plurality of LEDs, wherein an activated portion of the LEDs indicates the set sensing depth.
5. The light sensing device in accordance with claim 4, wherein a distance of an object located within the set sensing depth can be indicated by a going off of one of the activated LEDs which is associated with the distance of the object.
6. The light sensing device in accordance with claim 1, wherein a setting mode for setting the sensing depth can be activated and an end of the setting mode is automatically recognized by the evaluation unit when the setting element has not been actuated over a predefined period of time.
7. The light sensing device in accordance with claim 1, wherein the display unit is configured as a bar graph.
8. The light sensing device in accordance with claim 1, wherein the display unit has a display for the set sensing depth.
9. The light sensing device in accordance with claim 1, wherein this is configured as a triangulation light sensing device.
10. The light sensing device in accordance with claim 1, wherein the light transmitter transmits modulated light and the evaluation unit determines the distance via a determination of the light propagation time.
Description
(1) In the following the invention will be described in detail by means of embodiments with reference to the drawing. In the drawing there is shown:
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(6) A light sensing device 10 in accordance with the invention and illustrated in
(7) Furthermore, the light sensing device 10 has a display unit 24 and at least one setting element 26. A sensing depth T can be set by means of the setting element 26. The sensing depth T is that spacing up to which the object 20 should be detected and in this way defines a sensing region 30. When the object 20 is thus present in the sensing region 30 having a spacing d smaller than or equal to T, the light sensing device 10 outputs a switching signal at its output 28.
(8) When an object is present in the background 32 then this object should be ignored and no switching signal should be output. The background 32 is that region in which a spacing d is larger than H. The background 32, in which the objects can be suppressed securely, thus has a spacing H-T from the sensing region 30 in which an object 20 should be securely detected. This region between the set sensing depth T and background is a critical spacing region 34. No object should be present there, as then no clear association with respect to the sensing region 30 or the background 32 can be guaranteed.
(9) An essential element of the invention is the display unit 24. In a first embodiment of the invention (
(10) The display regions correspond to the spacing regions, wherein the first display region 40 corresponds to the sensing region 30, the second display region corresponds to the critical spacing region 34 and the third display region 44 corresponds to the background.
(11) In the first display region 40 the set sensing depth T can be initially indicated in relation to a maximum settable sensing depth of the light sensing device 10. This can be recognized in
(12) The extent of this illuminated region represents the set sensing depth T in reaction to the maximum settable sensing depth that is represented by the complete first display region. The display boundary of the maximum possible sensing depth would thus be at reference numeral 41. In the example according to
(13) If the object 20 is now present within the set sensing depth T, as is e.g. illustrated in
(14) If the object 20 is present in the critical spacing region 34 then this is indicated by the lighting up of the second display region 42, in that the LED or LEDs present there are activated.
(15) In the third display region 44 it is finally indicated if an object 20 is present in the background, this means at a spacing that is larger than H (see
(16) In these embodiments the setting element 26 is positioned in the middle of the circular display unit 24 and comprises a rotary potentiometer that can, for example, be actuated by means of a cross-headed screwdriver. The setting element 26 serves for the setting of the sensing depth T, after a setting mode was previously activated, for example, by means of a non-illustrated starting button or a starting command. An end of the setting mode is automatically recognized by the evaluation unit 16 when the setting element 26 has not been actuated for a predefined period of time.
(17) In an alternative embodiment illustrated in
(18) In an alternative embodiment illustrated in
(19) In an embodiment of the invention the set sensing depth can be indicated in an additional display 54. The display can display the sensing depth digitally as a value in millimeters or in inches as a digital display or as an “electronic paper”.
(20) In an embodiment of the invention the display regions can have different colors. Thus, for example, the first display region 40 can be represented by green LEDs (function ok, sensing depth set), the second display region 42 can be represented by yellow (object in the critical spacing region) and the third display region 44 can be represented by blue or white (objects in the background).
(21) Furthermore, two further display LEDs 50 and 52 can be provided, wherein LED 50 can indicate the status of the signal output 28 and the LED 52 can indicate whether an operating voltage is present.