IP Library › Granted Patent US 9,921,137
Granted Patent B2
US 9,921,137 · App. 14/710,415 · Granted Mar 20, 2018

Reciprocating microtome drive system

Inventors: Hwai-Jyh Michael Yang (Cerritos, CA); Xuan S. Bui (Torrance, CA)
Assignee: Sakura Finetek U.S.A., Inc.
G01N1/06G05B15/02G01N2001/065Y10S83/9155Y10T83/04Y10T83/50Y10T83/6475Y10T83/654Y10T83/6512Y10T83/6563Y10T83/6572
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Quick Facts
Patent No.
US 9,921,137
App. No.
14/710,415
Granted
Mar 20, 2018
Kind
B2
Abstract

An apparatus having a sample sectioning device including a cutting mechanism that is operable to cut sections from a sample and a sample holder that is operable to hold the sample. The apparatus further includes a drive system coupled with the sample holder to drive movement of the sample holder and a reciprocating member coupled to the drive system to drive vertical movement of the drive system. The reciprocating member to move in a reciprocating manner within an angle of rotation of less than 180 degrees. A surface orientation sensor may further be provided that is operable to sense an orientation of a surface of the sample held by the sample holder.

Claims (17)

1. A sample sectioning device comprising:

a cutting mechanism that is operable to cut sections from a sample;

a sample holder that is operable to hold the sample;

a drive system coupled with the sample holder to drive movement of the sample holder; and

a rotating member coupled to the drive system to drive movement of the drive system, the rotating member having a reciprocating arm operable to rotate 180 degrees between a first vertical position and a second vertical position.

2. The sample sectioning device of claim 1 wherein the rotating member further comprises a vertically oriented rotating disk member attached to the reciprocating arm.

3. The sample sectioning device of claim 1 wherein the reciprocating arm rotates between the first vertical position that aligns the sample holder with the cutting mechanism and the second vertical position that aligns the sample holder with a surface orientation sensor.

4. The sample sectioning device of claim 1 wherein movement of the reciprocating arm along an angle of rotation between 0 degrees and 90 degrees produces a slicing movement of the sample holder.

5. The sample sectioning device of claim 1 , further comprising logic to allow a configurable sectioning length to be specified, wherein the rotating member is to move the sample at a relatively slower speed of movement during the specified sectioning length and at a relatively faster speed of movement during at least one of just before and just after the movement during the specified sectioning length.

6. The sample sectioning device of claim 5 , wherein the logic comprises logic to allow an operator to select the sectioning length from among a plurality of predetermined sectioning lengths each corresponding to a different type of cassette used to hold the sample.

7. The sample sectioning device of claim 5 , wherein the logic comprises logic to allow an operator to specify the sectioning length by selecting one of a plurality of different types of cassettes.

8. The sample sectioning device of claim 1 further comprising:

a handwheel;

a first encoder coupled with the handwheel by a first shaft, the first encoder operable to generate an electrical representation of an angular position of the handwheel;

a motor of the drive system;

a second encoder coupled with the motor of the drive system by a second shaft, the second encoder operable to generate an electrical representation of an angular position of the motor of the drive system; and

a control circuit electrically coupled with the first and second encoders and operable to receive the electrical representations of the angular positions of the handwheel and the motor, the control circuit operable to control the motor based at least in part on the electrical representation of the angular position of the handwheel.

Continuity (2)
Division 13333942 · Dec 21, 2011
Related Publication 20150241861A1 · Aug 27, 2015