MacKay Radio & Telegraph Co. v. Radio Corp. of AmericaMacKay Radio & Telegraph Co. v. Radio Corp. of America
delivered the opinion of the Court. *
The questions presented for decision by the petition for certiorari are whether the Carter patent, No. 1,974,-387, of September 18, 1934, for a directive antenna system for use in radio communication, is valid and is infringed by antennae structures used by petitioner in such communication.
Respondent brought the present suit in the District Court for eastern New York to enjoin infringements of four patents relating to radio antennae or their operation. Two were those of Carter and two those of Lindenblad. Of these only the second Lindenblad patent, No. 1,927,-522, of September 19, 1933, for an antenna for radio communication, is of present importance. When the suit was begun the application for the third Carter patent, with which we are presently concerned, was pending. After petitioner had answered and respondent, as a result of the litigation, had acquired knowledge of the particulars of the structure and operation of petitioner’s antennae, Carter, respondent’s assignor, amended the statement of his invention in his application so as in terms to embrace a differentiating feature of petitioner’s structures. After this patent was issued respondent was permitted to file a supplemental bill charging infringement of it. The suits were consolidated, and the parties proceeded to trial on the issues of the validity and infringement of all five patents.
After taking the voluminous testimony of numerous witnesses, the trial court found that none of the patents in suit was infringed and decreed that the suits be dismissed.
On appeal from so much of the decree as related to the second Lindenblad patent and the third Carter patent, the Court of Appeals for the Second Circuit affirmed as to the Lindenblad patent, but reversed as to the Carter patent, holding Claims 15 and 16 valid and infringed.
In ordinary broadcasting, radio waves are projected in all directions from the sending station. In radio communication it is advantageous and has long been the practice to use a directive antenna by which the waves of radio activity emanating from it are projected as a beam in the direction of the receiving station. In practice the beam is directed at an angle from the eárth’s surface toward the ionized layer of the stratosphere, or Heaviside layer, from which the beam is deflected toward the earth’s surface in the compass direction of the receiving station. In more recent years it has been the practice to use relatively short wave lengths for radio communication.
The effective part of the antenna is a copper wire from which the radio waves are radiated, supported on towers or poles at a height above the ground depending on the wave length used. The wire may be parallel with the earth, or vertical, or arranged at an angle, depending upon the function to be performed. Before Carter, antennae of two or more wires in varying arrangement had been used. The second Lindenblad patent showed an antenna of two wires arranged at an angle in the form of a V or an X, and it pointed out that in such an arrangement radiation will take place in the direction of the axis or bisector of the angle of the diverging wires, and that “the spacing at the open end [of the wires], while variable over a great range, should be in the neighborhood of a fifth of the length, and the length of each antenna section should be of the order of magnitude of five to ten waves long.”
While such an arrangement projects the radio waves principally in two directions along the bisector of the angle of the antenna wires, the prior art had made use of an arrangement of wires, parallel to the wires of the angu
The present Carter patent is for an “antenna system utilizing standing wave phenomena.” Like the second Lindenblad patent, it is concerned with a Y antenna by which the principal radiation is directed in the plane of the wires along the bisector of their angle. The disclosure of the patent, in which the court below found invention, was that the best directional radio propagation by the V type antenna is obtained with a structure in which the angle of the wires, their length, and the length of wave propagated are in a definite mathematical relationship expressed by a formula disclosed in the specifications.
In explaining his invention( Carter pointed out that “It is known that when a wire having a length greater than the operating wave length is excited in such manner that standing waves are produced thereon, radiation will occur principally in the direction of symmetrical cones having their apices at the center of the wire. Such is the case with a wire having a length equal to a plurality of one-half wave lengths at the operating frequency. The radiation pattern produced in such instance appears, in cross section, in the form of symmetrical cones about the wire. The. present invention, which makes use of these phenomena, in its most simple aspect employs a pair of open-ended wires energized in phase opposition to have standing waves throughout the length of the wires, the wires having such angular relation with respect to each other as to obtain a highly directional, efficient and simple antenna system.” 1
Carter did not invent the formula. It had been developed by Abraham and published in a scientific journal thirty years before. Annalen der Physik, 1898, Physika-lische Zeitschrift, March 2, 1901. Abraham’s formula expressed the scientific truth that when radio activity is projected from a charged wire of finite length, i. e., one having standing waves, and having a length of a multiple of half wave lengths, the angle between the direction of the principal radio activity and the wire is dependent on
It is plain, therefore, that the Carter invention, if it was invention, consisted in taking the angle of the Abraham formula as the angle between each wire of the V antenna and its bisector. By so doing he brought the cones of principal radio activity, each having one of the wires of the antenna as its axis, into conjunction at their periphery and along the bisector of the angle between the wires, and thus established there1 the greatest directional radio activity.
While a scientific truth, or1 the mathematical expression of it, is not patentable invention, a novel and useful structure created with the aid of knowledge of scientific truth may be. But we do not stop to solve the problem whether it was more than the skill of the art to combine the teaching of Abraham with that of Lindenblad and others who had pointed out that the arrangement of the wires at an angle enhanced directional radio activity along their bisector. We assume, without deciding the point, that this advance was invention even though it was achieved by the logical application of a known scientific law to a familiar type of antenna; But it is apparent that if. this assumption is correct the invention was a narrow one, consisting of a structure conforming to the teachings of the Abraham formula as to angle and wire length relative to wave length, and is to be strictly construed with regard both to prior art and to alleged infringing devices.
Kokomo Fence Machine Co.
v.
Kit
Carter, using the Abraham formula, calculated the value of the angle 0 in that formula for wires up to fourteen wave lengths long. He plotted the result, which he expressed graphically in figure 12 of the patent by drawing a smooth' curve connecting the discrete points on the graph which indicated the results of his computation by use of the Abraham formula. From this calculation he derived a formula in empirical form 3 for determining the desired angle when wave length and length of wire are known, in which the angle between the wires is described as twice a, which is the equivalent of the angle 0 of the Abraham formula.
Petitioner uses antennae with wires in Y arrangement, but their wires are not an integral number of half wave lengths long, with the exception of one antenna, No. 8, which is four wave lengths long and uses an angle 10% smaller than that prescribed by the Abraham formula for that length of wire. The others are of lengths which are approximately multiples of quarter wave lengths, and their.angles differ from the angles of the formula. The crucial question in the case is whether a V antenna structure, having a wire length to which the Abraham formula does not apply and using an angle not to be derived from that formula, which is the basis of the patent, infringes Carter’s patent. Respondent insists that it does, because, as it argues, the invention disclosed by Carter’s
The trial court, analyzing Carter’s application and taking into account the essentials of the Abraham formula and the statement in the application that the “object of the present invention is to disclose the proper angle for conductors or radiators” measured in multiples of half wave lengths, evidently thought, as petitioner argues, that the references in the application to “wires of finite”
5
The Court of Appeals placed emphasis on the reference to “wires of any finite length” and on the statement that
Whether or not it was the purpose of the patentee, by these references to wire lengths in his application, to extend his patent to structures not conforming to the Abraham formula, we are not able to construe the application, before amendment at least, as embracing such an extension. And we think that the attempt to extend the claims, based on the application of the empirical formula, to wire lengths not multiples of half wave lengths, must fail, because such structures are not within the invention described in the application.
The formula in Claims 15 and 16 is the empirical formula derived from the Abraham formula, which is, by its terms, applicable only to antenna wires which are multiples of half wave lengths long. Carter’s empirical formula, wholly derived from Abraham’s formula, and taken together with it, therefore discloses no invention or discovery more than the application of the Abraham formula to the V antenna. It reveals no scientific law applicable to wire lengths which are intermediate of multiples of half wave lengths, and the application explicitly states that “the law, giving the correct angle for lengths between odd and even number of half wave lengths, is not given.” The preparation, by methods familiar to engineers, of the graph in figure 12, which was but a pictorial representation of the Abraham formula applied to certain wire lengths specified in the formula, did not involve invention. Neither the empirical formula nor its graph gives any clue to the directional radio activity re-
The claimed use of the empirical formula for the calculation of the angle for wires which are not multiples of half wave lengths long thus involved a departure from what Carter’s application had described as his invention, and a contradiction of it. What Carter did was to describe his structure in terms of its dimensions, arrived at by the use of the Abraham formula, which was stated to embody the applicable scientific law. He then derived the empirical formula from Abraham. From the very method of derivation the empirical formula meant nothing different from that of Abraham. He then declared the empirical formula to embody a method of arriving at the measurements of a structure different from the structure first described as the invention and not capable of construction by the method of the Abraham formula. If, as a result of this legerdemain, a V antenna having wire lengths a multiple of any fractional wave length is to be taken as the invention of Carter’s application, then everything that it said of the Abraham formula and'of wires “either an even number of half wave lengths long or an odd number of half wave lengths long” could be discarded without changing its meaning. 8
This attempt to broaden the only invention described in the application through a purely mechanical alteration of the meaning of the empirical formula, which had been devised as a shorthand expression of the scientific law on which the invention was declared to rest, .cannot, we think, be taken to enlarge the description of the invention as measured by the Abraham formula, so- as to include a structure to which that formula does not apply.
After the present suit was brought the application was altered by amendment so as in effect to wipe out all reference to the scientific law by which Carter’s invention was defined. This was accomplished by changes which implicitly assert that the letter n of the formula of the invention, the Abraham formula, meant something different from “the number of half wave lengths contained in the wire” of a length of multiples of half wave lengths as stated both in the application and in the patent.
The reference in the application to the purpose of the invention to disclose the “proper angle” for radiators of multiples of half wave lengths long was altered by eliminating from it all mention of half wave lengths.
9
A sentence added after formal allowance of the patent states: “By the term 'plurality of wave lengths’, or 'plurality of half wave lengths’, or ‘several half wave lengths’, it is not intended that the wires so described shall necessarily be an exact or appropriate integral number of such lengths, unless so specified, but rather that each of the wires so described shall be sufficiently long to include the lengths specified.” These amendments operated to modify the Abraham formula so as to cancel from the application the statement of the scientific law defining the invention. They left as its definition the modified
We think that these alterations were not permissible]
Schriber-Schroth Co.
v.
Cleveland Trust Co.,
Tor reasons already indicated it is not material that the variations are small between the angles used by petitioner for wire lengths of multiples of quarter wave lengths
It is unnecessary .to discuss . the further question whether petitioner’s structures avoid infringement because the direction of their principal radio -activity is not in the plane of the wires, an operative difference from the antennae described by the patent which the court below found to be due wholly to ground effect, which it thought must be assumed to be envisaged by, though not stated in, the Carter patent.
Reversed.
Notes
Opinion reported as amended by order of March 6, 1939, post, ' p. 618.
Understanding of the disclosure and other features of the patent requires a brief explanation of its terms. The term “long,” as applied to an antenna, means a wire which is long in relation to the
When oscillating current is so related to the length of wire that the energy of the former is exhausted by radiation before of when the waves reach the end of the wire, there is no reflection of the waves, and they travel in one direction only toward the open end of the wire. They are denominated “traveling waves.” In professional parlance, wires producing reflected, and hence “standing” waves, are electrically of finite length. Those of sufficient length to avoid reflection and thus carry waves flowing in only one direction are said to be electrically of infinite length.
The specifications state:' “By considering a long wire the equivalent of a very large number of very short, (Hertz) oscillators and by adding up the field components at any point P having a direction angle 0 relative to the axis of the wire, where the point P is a great distance from the wire as compared to the length of the wire such that all lines from point P to any point on the wire are essentially parallel, it can be shown that the field strength H is given by the
•“The letter V indicates the number of half wave lengths contained in the wire.
“For a wire an even number of half wave lengths long, in similar fashion, the field strength ‘H’ is given by the following proportionality:
“Where n as above indicates the number of half wave lengths on the wire.”
“For practical purposes the empirical formula
is sufficiently accurate where l equals the length of the wire and A. the wave length, both in the same units of measurement.”
“15. An antenna comprising a pair of relatively long conductors disposed with respect to each other at an angle substantially equal to twice
degrees, l being the length of the wire and \ the operating wave length in like units, and means in circuit with said antenna for exciting the conductors in phase opposition whereby standing waves of opposite instantaneous polarity are formed on the conductors throughout their length.”
Claim 16 claims an antenna arranged in conformity to the empirical formula, as in Claim 15, with “a similar parallel pair of conductors spaced an odd number of quarter wave lengths away from said first mentioned pair . . .” These parallel wires 'constitute the “reflector,” which, as already noted, was old in the art.
“Still a further object of the present invention is to disclose the proper angle for' conductors or radiators either an even number of half wave lengths long or an odd number of half wave lengths long,
After the present suit was brought this paragraph was amended to read:
“Another object of the invention is to disclose the angle for the best directional propagation for open-ended wires of any finite length, preferably longer than the operating wave length, having standing waves thereon and arranged in the manner proposed.”
“Moreover, it should be clearly understood that the wires of each unit can be of any length whatsoever provided they are placed at the correct angle for their length. For best tuning, the total overall length of both of the wires and the ‘IF loop terminating them should be effectively an integral number of half wave lengths, but, the portion forming the radiation element can be of any length. The law, giving the correct angle for lengths between odd and even number of half wave lengths, is not given due to its complexity, but the empirical formula and the curve of figure 12 will be found accurate for all practical purposes, where the length of wire dealt with do'és not correspond to a whole number of half wave lengths.”
See note 1, supra.
See note 5, supra.
See note 5, supra.
See note 1, supra.