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US34409A - Improvement in microscopes - Google Patents

Improvement in microscopes Download PDF

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US34409A
US34409A US34409DA US34409A US 34409 A US34409 A US 34409A US 34409D A US34409D A US 34409DA US 34409 A US34409 A US 34409A
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lens
glass
crown
improvement
disk
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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B25/00Eyepieces; Magnifying glasses
    • G02B25/002Magnifying glasses

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  • N4 PETERS Phnm-Lilhngnphul. Wnhin lm, h. c.
  • A, Figs. 1 and 2 is the body of the instrument. This consistsof a tube of thin sheetbrass about five or six inches in length and about one and one-quarter inch in diameter. The base is dilated so as to give the instrumenta steady support.
  • the tube is cutaway upon each side, asseen at B,in which opening is placed a mirror, which turns upon a horizontal axis to reflect the light upward through the tube to the lens.
  • the mirror is shown at B.
  • O is a diaphragm placed about an inch below ⁇ the lens to cut off the straggling rays of D is a slip of glass, upon which objects are placed for examination.
  • E is the lens, Figs. 2, 4, and 6 being vertical sections, of which 4 and 6 are enlarged views.
  • the lens F is the setting for the lens, the projecting rim of which (seen at a) rests upon the contracted top of the tube A, and being so fitted that the under and flat surface of the lens will when the setting F rests upon the top of the tube, as in Fig. 2, just form a contact with the upper. surface of the slip of plain glass D, the lens being so formed, as hereinafter stated, that the focus is permanently fixed at its under and plane surface.
  • the lens E is constructed as follows: I take a rod of clear flint-glass, as free as possible from striae or other imperfections, and re- .duce it in size to about one-eigth of an inch in diameter by heating and drawing in a spirit-lamp flame, leaving the end round and smooth. I then take a piece of crown-glass about half an inch in diameter and free from imperfect-ions, and with a pair of forceps hold it in the flame of the spirit-lamp till the glass begins to soften. I then hold the rod of flintglass, prepared as above, in the flame of the lamp until it nearly reaches the melting-point,
  • the manner of using this instrument is as follows: The object to be examined is placed either upon the under side of the lens or upon the upper surface of the slip of glass D, and the lens placed upon the top of the tube, as seen in Fig. 1, and the mirror B is so turned that the light will be reflected through the small opening 0' in the diaphragm upon the focal point of the lens, when the object upon the lens or slip of glass can be examined. No adjustment is needed, for the lens has a fixed focus, as before described.
  • the lens E when constructed as herein set forth.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)

Description

I -H. CRAIG.
Microscope. No. 34.409. Patnted Feb. 18, I862.
Mfiwm fa n/Z59."
N4 PETERS, Phnm-Lilhngnphul. Wnhin lm, h. c.
NIT-En STATES PATENT OFFICE.
HENRY CRAIG, OF CLEVELAND, OHIO.
IMPROVEMENT IN MICROSCOPESQ Specification forming part of Letters Patent No. 34,409, dated February 18, 1862.
To all whom it may concern:
Be it known that I, HENRY CRAIG, of Cleveland, in the county of Cuyahoga and State of Ohio, haveinvented new and useful Improvemen is in Microscopes; and I do hereby declare that the following is a full and complete description of the construction and operation of the same, reference being had to the accompanying drawings, making a part of this specification, in Which Figure 1 is a perspective view. Fig. 2 is a vertical section; and Figs. 3, 4, 5, 6, and 7 are detached and enlarged views representing the lens.
The nature of my invention relates to the construction of the lens.
A, Figs. 1 and 2, is the body of the instrument. This consistsof a tube of thin sheetbrass about five or six inches in length and about one and one-quarter inch in diameter. The base is dilated so as to give the instrumenta steady support.
Just above the foot the tube is cutaway upon each side, asseen at B,in which opening is placed a mirror, which turns upon a horizontal axis to reflect the light upward through the tube to the lens. The mirror is shown at B.
O is a diaphragm placed about an inch below} the lens to cut off the straggling rays of D is a slip of glass, upon which objects are placed for examination.
E is the lens, Figs. 2, 4, and 6 being vertical sections, of which 4 and 6 are enlarged views.
F is the setting for the lens, the projecting rim of which (seen at a) rests upon the contracted top of the tube A, and being so fitted that the under and flat surface of the lens will when the setting F rests upon the top of the tube, as in Fig. 2, just form a contact with the upper. surface of the slip of plain glass D, the lens being so formed, as hereinafter stated, that the focus is permanently fixed at its under and plane surface.
The lens E is constructed as follows: I take a rod of clear flint-glass, as free as possible from striae or other imperfections, and re- .duce it in size to about one-eigth of an inch in diameter by heating and drawing in a spirit-lamp flame, leaving the end round and smooth. I then take a piece of crown-glass about half an inch in diameter and free from imperfect-ions, and with a pair of forceps hold it in the flame of the spirit-lamp till the glass begins to soften. I then hold the rod of flintglass, prepared as above, in the flame of the lamp until it nearly reaches the melting-point,
(the flint-glass melting at a lower temperature than the crown,) and bot-h pieces being now brought to a red heat I attach the end of the rod of flint-glass to the center of one side of the disk of crown-glass and fuse them together, being careful to preserve the fiat surface of the under side of the crown-glass disk. I then increase the heat upon the flint-glass rod about the tenth of an inch above its point of adhesion to the crown-glass disk, and by a gentle extension separate it, leaving a suffi cient quantity of flint-glass adhering to the crown-disk to form a globe of about one eighth of an inch in diameter; and now by a skillful manipulation-1i. 6., turning the disk in various directions in the flame till the semifluid globe of flint-glass assumes by its cohesive attraction and gravity a spherical figure, which is formed symmetrically and attached to one side of the crown-disk, as shown in Figs. 4 and 5, which has its focus in the plane surface of the crown-glass disk. The lens thus formed is placed in the setting F, as before described.
The manner of using this instrument is as follows: The object to be examined is placed either upon the under side of the lens or upon the upper surface of the slip of glass D, and the lens placed upon the top of the tube, as seen in Fig. 1, and the mirror B is so turned that the light will be reflected through the small opening 0' in the diaphragm upon the focal point of the lens, when the object upon the lens or slip of glass can be examined. No adjustment is needed, for the lens has a fixed focus, as before described.
What I claim as my improvement, and desire to secure by Letters Patent, is-
The lens E, when constructed as herein set forth.
HENRY CRAIG.
Witnesses:
J. BRAINERD, W. H. BURRIDGE.
US34409D Improvement in microscopes Expired - Lifetime US34409A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110150496A1 (en) * 2004-12-28 2011-06-23 Kamilo Feher Time Constrained Signal MIMO Wireless and Wired Communication Method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110150496A1 (en) * 2004-12-28 2011-06-23 Kamilo Feher Time Constrained Signal MIMO Wireless and Wired Communication Method

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