The invention relates to a display unit for a measuring device for processing and automation technology, and also to a measuring device having a display unit of this type.
In automation and processing technology, sensors or measuring devices are frequently used which convert the captured measured value—for example pressure, temperature, flow rate, but also distance or vibration—into an output signal in the form of an analog or digital current or voltage signal representing this measured value, and provide this signal to their cable or plug connection, but in some instances also wirelessly to a higher-level control unit, for example a PLC.
A typical measuring device consists first of all of a sensor element, also designated as a measured value recorder, which serves for detecting and converting a physical measurement variable of a processing value into a measurement signal. Furthermore, an evaluation unit is provided which is frequently configured as a microcontroller and in which the measurement signals generated by the sensor element are conditioned, that is to say amplified, and generally are also already processed. The evaluation unit is connected at the output end to a communication interface, by means of which the conditioned measurement signals can be transmitted to the aforementioned control unit. The measuring device frequently also comprises a display unit, on which, amongst other things, the current measurement values are displayed. Furthermore, the display unit frequently also serves for setting up and parameterizing the measuring device. For this purpose, the measuring device additionally has corresponding input options.
In the case of the display units, for many years segment displays have been known, by which numbers and letters can be displayed in a graphically simple manner. Furthermore, nowadays there are also graphic displays, for example based on LCDs or LEDs, on which, depending upon the resolution of the graphical interface, even sophisticated representations of numbers, letters and symbols are possible, in some instances also in multiple colors.
On the other hand, in various applications there is a requirement that the display can always be read easily, so that it is always oriented horizontally, regardless of the installation of the measuring device. In the case of graphic displays, it is possible, instead of mechanically rotating the entire display unit, merely to change the orientation of the representation, that is to say the display itself. Instead of a mechanical rotation, this object is achieved by corresponding software.
In the case of square display windows, this is largely problem-free because, in the event of a rotation in 90° steps, nothing changes with regard to the perception of the display itself. However, in the case of a rectangular, non-square, arrangement, for example in 16:9 format, because of the transposition of height and width, a rotation constitutes a significant alteration of the representation if the displayed data originally displayed in landscape format using the entire width is now displayed in portrait format.
Therefore, the object of the invention is to facilitate a representation on a graphic display for a measuring device of the type referred to above, which can also be rotated in a non-square configuration and nevertheless can be read simply and completely.
This object is achieved according to the invention by a display unit with the features according to claim 1 as well as a measuring device with the features according to claim 5. Advantageous embodiments of the invention are set forth in the sub-claims.
According to the invention, measurement and/or parameter data of the measuring device in the case of a vertical arrangement of the non-square display unit can be oriented horizontally in the vertical plane regardless of a rotation of the display unit, and thus can be read easily and completely. Because the display has at least two square sub-regions and these square sub-regions can be rotated independently of one another, that is to say they each have their own axis of rotation, the two square sub-regions can be arranged alongside one another in the case of horizontal orientation of the display unit and one above the other in the case of vertical orientation. In this case, the representation in the sub-regions themselves remains unchanged even after a rotation, because height and width are identical due to the square shape.
The two side lengths of the square sub-regions together advantageously correspond to the width of the rectangular display, so that the entire display surface is filled by the two squares and is therefore well utilized.
In the case of a measuring device which has such a display unit, regardless of the installation position of the measuring device, the display can always be oriented so that it can be read easily due to the horizontal alignment and the non-distorted representation.
In an advantageous embodiment, the display unit is rigidly and non-rotatably connected to the actual measuring device, so that there is no need for high expenditure, for example, for sealing, and nevertheless a good legibility of the displayed values can be achieved.
The invention is explained in greater detail below on the basis of embodiments with reference to the drawings.
In the schematic drawings:
In the following description of the preferred embodiments, the same reference numerals designate identical or comparable components.
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Furthermore,
As a result, the advantage of the invention also resides in the fact that the display unit 2 does not have to be rotatable with respect to the actual measuring device 1, which is frequently associated with high expenditure, for example for the sealing, in particular if the measuring device 1 is to be used in hygienic areas.
Number | Date | Country | Kind |
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10 2017 204 980.4 | Mar 2017 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/DE2018/100265 | 3/23/2018 | WO | 00 |