Medium processing apparatus and method of controlling the medium processing apparatus
US-2017372552-A1 · Dec 28, 2017 · US
US9589408B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9589408-B2 |
| Application number | US-201314650917-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 2, 2013 |
| Priority date | Dec 24, 2012 |
| Publication date | Mar 7, 2017 |
| Grant date | Mar 7, 2017 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A device for identifying thickness of a sheet-like medium and method thereof are provided. The device includes: a frame, a thickness shaft, a floating shaft and a sensor; where: both ends of the thickness shaft are arranged on the two lateral plates of the frame via bearings; both ends of the floating shaft are arranged on the two lateral plates of the frame via bearings and an outer surface of the floating shaft is tangently contacted with an outer surface of the thickness shaft; and the sensor is arranged on the facade of the frame, and configured to detect an amplitude of a point of tangency where the floating shaft is tangent to the thickness shaft.
Opening claim text (preview).
The invention claimed is: 1. A device for identifying thickness of a sheet-like medium, comprising a frame, comprising two lateral plates and a facade, configured to carry a thickness shaft, a floating shaft and a sensor; wherein: both ends of the thickness shaft are arranged on the two lateral plates of the frame via bearings; both ends of the floating shaft are arranged on the two lateral plates of the frame via bearings and an outer surface of the floating shaft is tangently contacted with an outer surface of the thickness shaft; and the sensor is arranged on the façade of the frame, and configured to detect an amplitude of a point of tangency where the floating shaft is tangent to the thickness shaft; wherein one end of the thickness shaft is fixedly connected with a first synchronous pulley, the first synchronous pulley is connected with a first synchronous pulley gear via a first synchronous belt; one end of the floating shaft is fixedly connected with a second synchronous pulley, the second synchronous pulley is connected with a second synchronous pulley gear via a second synchronous belt; the first synchronous pulley gear meshes with the second synchronous pulley gear and is assembled on a shaft of a driving motor. 2. The device for identifying thickness of a sheet-like medium according to claim 1 , wherein the first synchronous pulley gear comprises a synchronous pulley part and a gear part, and the first synchronous belt sleeves on the first synchronous pulley and the synchronous pulley part of the first synchronous pulley gear. 3. The device for identifying thickness of a sheet-like medium according claim 2 , wherein the second synchronous pulley gear comprises a synchronous pulley part and a gear part, the second synchronous belt sleeves on the second synchronous pulley and the synchronous pulley part of the second synchronous pulley gear, and the gear part of the second synchronous pulley gear meshes with the gear part of the first synchronous pulley gear. 4. The device for identifying thickness of a sheet-like medium according to claim 3 , wherein the second synchronous pulley gear sleeves on a bearing, the bearing sleeves on a shaft which riveted with the lateral plate of the frame, and the second synchronous pulley gear is rotatable with the shaft. 5. The device for identifying thickness of a sheet-like medium according to claim 4 , wherein the floating shaft comprises an axis, an elastic material layer and an outer wheel shell layer from the inside to the outside, and the outer surface of the outer wheel shell layer is tangent to the outer surface of the thickness shaft. 6. The device for identifying thickness of a sheet-like medium according to claim 2 , wherein the floating shaft comprises an axis, an elastic material layer and an outer wheel shell layer from the inside to the outside, and the outer surface of the outer wheel shell layer is tangent to the outer surface of the thickness shaft. 7. The device for identifying thickness of a sheet-like medium according to claim 3 , wherein the floating shaft comprises an axis, an elastic material layer and an outer wheel shell layer from the inside to the outside, and the outer surface of the outer wheel shell layer is tangent to the outer surface of the thickness shaft. 8. The device for identifying thickness of a sheet-like medium according to claim 1 , wherein one end of the thickness shaft and the first synchronous pulley gear are fixed via a D-shape structure, and one end of the floating shaft and the second synchronous pulley gear are fixed via a D-shape structure. 9. The device for identifying thickness of a sheet-like medium according to claim 8 , wherein the floating shaft comprises an axis, an elastic material layer and an outer wheel shell layer from the inside to the outside, and the outer surface of the outer wheel shell layer is tangent to the outer surface of the thickness shaft. 10. The device for identifying thickness of a sheet-like medium according to claim 1 , wherein the floating shaft comprises an axis, an elastic material layer and an outer wheel shell layer from the inside to the outside, and the outer surface of the outer wheel shell layer is tangent to the outer surface of the thickness shaft. 11. The device for identifying thickness of a sheet-like medium according to claim 10 , wherein the elastic material layer comprises at least three foil slices, one end of each elastic foil slice is fixed to the axis, the other end is fixed to the inner wall of the outer wheel shell layer, and the three elastic foil slices are distributed in a vortex shape.
Related publications grouped by family.
Answers are generated from the same data shown on this page.