Weston Electrical Instrument Co. v. Stevens

119 F. 181, 1902 U.S. App. LEXIS 5253

Opinion

COXE, Circuit Judge.

This is an equity action for infringement founded upon two letters patent, granted to Edward Weston. The first of these, reissue No. 11,250, is for an electrical measuring instrument. It is dated June 28, 1892, the original being dated August 5, 1890. The application for the original was filed January 18, 1890. The application for the reissue was filed February 5, 1892.

In the specification the inventor says:

“My Invention relates to an electrical measuring instrument intended chiefly for use as an electro-dynamometer for the measurement of alternating currents of electricity.
“My invention consists, broadly, in a fixed or stationary coil and a coil oscillating or vibrating on inclosed pivots in the field of force of said stationary coil, said coils being electrically connected. The vibrating coil on the passage of the current through the circuit, including both coils, assumes an angular position, depending upon the difference of potential between the terminals of the circuit. The reversals of the current in both coils occur simultaneously, and hence an index or pointer connected to the movable coil is always deflected in the same direction, thus indicating the extent of said angular movement upon a suitable scale.
“My invention further consists in the construction and arrangement of the instrument, as hereinafter more particularly pointed out.”

Again he says:

“In my present device, and so far as I know for the first time in the art, I cause the index of the instrument to move directly to the scale-mark, which is to be read as the indication and there remain, no bringing back to a zero reading being necessary; and also, as I believe for the first time in the art,' I have accomplished this in an instrument where the moving body is, as and [182]*182for the reasons already pointed out, controlled by two reacting variable fields— namely, the varying field about the moving coil reacting upon the varying field about the fixed coil. I have discovered that I can balance a coil of fine wire thus actuated against an exceedingly delicate coiled spring or springs, so that the said springs will permit the coil, and hence the index moved by said coil, to move at once to a new position dependent upon the difference in potential between the instrument terminals, and the said springs may be constructed as to strength and elasticity and regulated by the means herein described, so that the indications of the instrument on direct reading will be accurate for all positions of the said movable coil.
“The advantage of the use of two coiled springs, from what has been said, will be apparent. They act as conductors for the current into and out of the coil, obviating the necessity of mercury cups or other form of joint which might offer resistance to the current and introduce friction, hence become oxidized or worn, and hence become a source of error in the instrument. So, also, the instrument having two springs takes the best portable form, and may be used in any position, which obviously could not be done if mercury cups were employed.”

The patent has 15 claims, all but the last two being involved. The claims contain the usual tautology and it is unnecessary to examine' them all. Claims 4, 6 and 10 are selected as embodying all the essential features of the invention and as representative of all the rest. They are as follows:

“(4) In an electrical measuring instrument, a fixed coil, a movable coil in the field of said fixed coil, an index showing the extent of movement of said movable coil, and a spring opposing and counterbalancing the movement of said movable coil and in circuit therewith, the said elements being constructed and arranged so that said index will be moved directly to show the extent of motion of said movable coil and by the counterbalancing effect of said spring be maintained in such position.”
“(6) In an electrical measuring instrument, the combination of a movable conductor actuated by the current to be measured in a field of force maintained by the said current, and a means of indicating the extent of movement of said conductor, the said conductor being constructed to offer such electrical resistance and of such light weight and so freely movable as that the error due to the disturbing effect of self-induction of the actuating current in said conductor shall bear an infinitesimal ratio to the actual indication and be practically nil.”
“(10) In an electrical measuring instrument, a stationary coil, a coil vibrating or oscillating in the field of force of said stationary coil, and a spring of conducting material opposing the movement of said vibrating coil, the said coils and spring being electrically connected.”

The defenses are lack of patentability, noninfringement and invalidity of the reissue, as such, if construed as the defendants insist it should be.

After the informal but instructive interchange of views between counsel and court at the argument, a discussion at all coextensive with briefs is rendered unnecessary.

Many of the perplexities which usually beset patent causes are entirely absent here. We are enabled to start with several fundamental propositions which, if not admitted, cannot be successfully disputed.

First: Mr. Weston was the first to make a successful commercial voltmeter for measuring alternating currents. His voltmeter soon after coming on the market superseded all others and is to-day recognized as the standard instrument for measuring differences of potential in alternating current circuits.

[183]*183Second: The device of the patent is small, simple, compact, easily operated and requires no preliminary adjustment. It can be operated at any angle by an unskilled workman and will measure direct as well as alternating currents.

Third: Strictly speaking there is no prior art. If the invention be confined to alternating current devices it can be said with confidence that there were no practical commercial instruments prior to Weston’s. There were no instruments entitled to be considered as anticipations. There were two or three instruments, which, as scientific possibilities, could, it is true, reach accurate results; but as every day working devices they were of little value. The most satisfactory of these were, perhaps, the “Thomson' balance,” invented by Lord Kelvin, the Siemens dynamometer and the Cardew hot wire voltmeter.

The “Thomson balance” is a delicately organized structure valuable in the laboratory, but useless for commercial purposes. It must be accurately leveled and mounted on a firm foundation free from vibrations. No one but an expert can operate it and the final result is only reached after comparison with elaborate tables previously compiled.

The Siemens dynamometer is another complicated and sensitive instrument having a fine wire suspension, mercury cup connections, a torsional spring indicator and several of the faults, noted above, as existing in the “Thomson balance.” It was not a direct reader, it was not portable and it required careful leveling after being mounted upon a support free from vibrations.

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Weston Electrical Instrument Co. v. Stevens, 119 F. 181, 1902 U.S. App. LEXIS 5253 (circtsdny 1902).

119 F. 181 (Weston Electrical Instrument Co. v. Stevens) — published by Counsel Stack Legal Research, free access to 12M+ legal documents.

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