DEVICE FOR DETERMINING A PARASITIC RESISTANCE IN VIDEO ENDOSCOPES
20210368160 · 2021-11-25
Assignee
Inventors
Cpc classification
G01R19/165
PHYSICS
H04N17/00
ELECTRICITY
G01R27/02
PHYSICS
G01R31/52
PHYSICS
International classification
Abstract
A device for determining a parasitic resistance of an electronic circuit for a video endoscope, the device including: a potential determining device; a printed circuit board; and a potential-determining conductor which is connected to the potential-determining device, the potential-determining conductor being situated on the printed circuit board. Wherein the potential-determining conductor is arranged along a path on the printed circuit board next to a reference potential conductor, and the potential-determining device is configured to determine a parasitic resistance between the potential-determining conductor and the reference potential conductor.
Claims
1. A device for determining a parasitic resistance of an electronic circuit for a video endoscope, the device comprising: a potential-determining device; a printed circuit board; and a potential-determining conductor which is connected to the potential-determining device, the potential-determining conductor being situated on the printed circuit board, wherein the potential-determining conductor is arranged along a path on the printed circuit board next to a reference potential conductor, and the potential-determining device is configured to determine a parasitic resistance between the potential-determining conductor and the reference potential conductor.
2. The device according to claim 1, wherein a length of the path is at least one quarter of an extent of the printed circuit board.
3. The device according to claim 2, wherein the length of the path is at least one half of the extent of the printed circuit board.
4. The device according to claim 1, wherein a first distance between the potential-determining conductor and the reference potential conductor in regions in which the potential-determining conductor and the reference potential conductor are arranged next to each other is substantially the same.
5. The device according to claim 4, wherein the first distance is less than or equal to one half of a second distance from the potential-determining conductor to another conductor that has a different potential to the reference potential conductor.
6. The device according to claim 1, wherein the potential-determining conductor is surrounded on at least two sides by the reference potential conductor.
7. The device according to claim 1, wherein the potential-determining device comprises an analog-digital converter.
8. The device according to claim 7, wherein the analog-digital converter is provided in a microcontroller.
9. The device according to claim 7, wherein the analog-digital converter is provided as an alternative function in a microcontroller.
10. The device according to claim 7, wherein the analog-digital converter is a microcontroller, the microcontroller being provided for an electronic circuit for a video endoscope, the microcontroller being configured to perform at least one other function of the electronic circuit of the video endoscope.
11. The device according to claim 1, wherein the potential-determining conductor is connected to a voltage divider.
12. The device according to claim 1, wherein the potential-determining conductor is provided between a pull-up resistor and ground, and the parasitic resistance is determined between the potential-determining conductor and the ground.
13. The device according to claim 1, wherein the potential-determining conductor is provided between a pull-down resistor and a reference potential conductor, and the parasitic resistance is determined between the potential-determining conductor and the reference potential conductor.
14. An electronic circuit for a video endoscope comprising a device according to claim 1.
15. A video endoscope comprising an electronic circuit according to claim 14.
16. The video endoscope according to claim 15, where the device is arranged in a non-hermetic space of the video endoscope.
17. The video endoscope according to claim 16, wherein the device is arranged in at least in part of a handle of the video endoscope.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Further features will become evident from the description of embodiments, together with the claims and the appended drawings. Embodiments can implement individual features or a combination of multiple features.
[0027] The embodiments are described below, without restricting the general idea of the invention, based on exemplary embodiments in reference to the drawings, whereby we expressly refer to the drawings with regard to all details that are not explained in greater detail in the text. In the figures:
[0028]
[0029]
[0030]
[0031]
[0032]
[0033] In the drawings, the same or similar elements and/or parts are, in each case, provided with the same reference numerals such that they are not introduced again in each case.
DETAILED DESCRIPTION
[0034]
[0035] In the presence of a parasitic resistance 10 between the potential-determining conductor 12 and the reference potential conductor 16, the voltage 24 to be measured is different than in the absence of a parasitic resistance 10. The parasitic resistor 10 is connected in parallel to the resistor R1 of the voltage divider 22, such that the parasitic resistance 10 can easily be determined.
[0036]
[0037] When the microcontroller 21 has been started up, the potential determining conductor 12 serves as a switching signal in that the switch 25, which switches a load resistor R3 to 18 volts, is used to determine parasitic resistances 10 when the microcontroller 21 is being started up. During start-up, the switch 25 is open and the output of the microcontroller 21 can be used as an analog-digital converter if a pull-up resistor 23 is provided as in
[0038] For the case not shown, in which a pull-down resistor is provided, i.e., for the case in which the resistors 23 and 10 are swapped with respect to
[0039]
[0040] The potential-determining conductor 12 is arranged substantially in parallel next to the reference potential conductor 16 over the longest part of the path and said conductors are arranged at a short distance d1 from one another. The distance d1 is the same size everywhere, if possible. A parasitic resistance 10 can be measured over this distance d1. In this exemplary embodiment, the reference potential is, by way of example, 3.3 volts. The path in which the potential-determining conductor 12 and the reference potential conductor 16 are arranged in parallel or next to one another can be seen to correspond to almost 1.5 times the longitudinal extent of the printed circuit board 15. As a result, a parasitic resistance can be determined very accurately.
[0041] It is also important that the distance d2 from the potential-determining conductor 12 to the next conductor 20 having another potential, for example ground GND, is significantly greater than the distance to the reference potential conductor 16. This causes fewer measurement errors during determination of the parasitic resistance 10. The longitudinal extent of the printed circuit board 15 is shown by the reference number 17 in
[0042]
[0043]
[0044] In order to prevent the comparator from switching over too frequently and irregularly on account of minor fluctuations of the input voltage or reference voltage, the comparator can be provided with a hysteresis and configured as a Schmitt trigger.
[0045] In this way, the potential-determining device can be analog in configuration.
[0046] While there has been shown and described what is considered to be particular embodiments, it will, of course, be understood that various modifications and changes in form or detail could readily be made without departing from the spirit of the invention. It is therefore intended that the invention be not limited to the exact forms described and illustrated, but should be constructed to cover all modifications that may fall within the scope of the appended claims.
LIST OF REFERENCE NUMBERS
[0047] 10 Parasitic resistance or resistor
[0048] 11, 11′ Electronic circuit
[0049] 12 Potential-determining conductor
[0050] 13 Potential-determining device
[0051] 14 Contact for potential-determining device
[0052] 15 Printed circuit board
[0053] 16 Reference potential conductor
[0054] 17 Printed circuit board extent
[0055] 18 Contact for voltage divider
[0056] 20 Conductor
[0057] 21 Microcontroller
[0058] 22 Voltage divider
[0059] 23 Pull-up resistor
[0060] 24 Voltage to be measured
[0061] 25 Switch
[0062] 30 Differential amplifier
[0063] 31, 32 Resistor
[0064] d1 Distance
[0065] d2 Distance
[0066] GND Ground
[0067] R1, R2, R3 Resistor
[0068] Vin Input voltage
[0069] Vref Reference voltage
[0070] Vout Output voltage
[0071] Vdd Supply voltage