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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
41 Negative feedback magnetic amplifier with temperature compensation US46348554 1954-10-20 US2831160A 1958-04-15 GUTH FRED H
42 Magnetic amplifier US37920453 1953-09-09 US2831159A 1958-04-15 GUTH FRED H
43 Saturable core reactor system US31071252 1952-09-20 US2818545A 1957-12-31 UNO LAMM
44 Voltage biasing of magnetic amplifiers US59001656 1956-06-07 US2814734A 1957-11-26 TORREY ROBERT D
45 Amplifiers US40022753 1953-12-24 US2809343A 1957-10-08 PITTMAN JR GEORGE F
46 Amplifiers US36720253 1953-07-10 US2795752A 1957-06-11 ROBERTS ROLAND W
47 Magnetic amplifiers US38033653 1953-09-15 US2795652A 1957-06-11 MALICK FRANKLIN S; TIMMEL FREDERICK G
755,302. Magnetic amplifiers. WESTING- HOUSE ELECTRIC INTERNATIONAL CO. Sept. 10, 1954 [Sept. 15, 1953], No. 26270/54. Class 40 (4). Negative bias windings on two auto-selfexcited transductors operating in push-pull are energized by the sum of the output currents of the two transductors or by a proportion thereof, the arrangement being such that the same operating range for both polarities of a control signal is maintained despite variations in the transductor characteristics due to temperature fluctuations. As shown in Fig. 1, a pair of auto-self-excited full-wave rectifying transductors 12, 14 energized from a common centre-tapped transformer 16 have their output currents combined differentially in load windings 58, 60, to provide a push-pull output between terminals 119, 119<1>. The output currents returning to the transformer centre-tap 22 cumulatively energize the negative bias windings 50, 52, 54, 56, these windings acting in opposition to a fixed positive bias established by windings 64, 66, 68, 70. Each transductor may comprise either separate cores 24, 26; 36, 38, as illustrated or a single three-limbed core, the cores being formed of rectangular hysteresis loop material. The negative bias windings 50, 52 and 54, 56 may alternatively be connected in parallel as shown in Fig. 2, the distribution of the combined output currents in the two winding groups being determined by a variable potentiometer 120 which permits compensating adjustment for differences in the two transductors. In a modification, Fig. 4, two auto-self-excited bridge rectifying transductors 130, 132 are arranged for push-pull operation, the differential output being obtained across load resistors 160, 162 at terminals 164, 164<1>. Parallel negative bias windings 50, 52; 54, 56 are associated with an adjustable potentiometer 172 as in the Fig. 2 arrangement and the amplifier is energized from a transformer 134 having separate secondary windings 138, 140 for each transductor. In a similar construction, Fig. 3 (not shown), the negative bias windings are connected together in series.
48 Means for eliminating asymmetry zerodrift errors in magnetic servo amplifiers US49748155 1955-03-28 US2793336A 1957-05-21 GEYGER WILHELM A
49 Magnetic amplifier US43183954 1954-05-24 US2777073A 1957-01-08 FINGERETT JOSEPH A; HILL FRANK A
50 Parallel connected magnetic amplifier US43445154 1954-06-04 US2777021A 1957-01-08 WALKER EDWARD L
51 Magnetic amplifiers US43213454 1954-05-25 US2773134A 1956-12-04 DUNNET WALLACE J
52 Magnetic amplifier US43387654 1954-06-02 US2773132A 1956-12-04 BRIGHT RICHARD L
53 Magnetic amplifier US30489152 1952-08-18 US2765374A 1956-10-02 LOUDEN VICTOR J
54 Magnetic amplifier US34474753 1953-03-26 US2760148A 1956-08-21 MASAO SAKAMOTO
55 Differential coupling circuit for multistage half-wave magnetic servo amplifiers US48432455 1955-01-26 US2725521A 1955-11-29 GEYGER WILHELM A
56 Electromagnetic audio amplifiers US5416948 1948-10-12 US2710313A 1955-06-07 LOGAN FRANK G
57 Magnetic amplifier system US27422652 1952-02-29 US2704823A 1955-03-22 STORM HERBERT F
58 Saturable core transformer system US10840449 1949-08-03 US2661453A 1953-12-01 VICTOR HEMINGWAY ARTHUR; DOUGHTON ATKINSON PETER
59 Reversing magnetic amplifier control system US9461249 1949-05-21 US2571708A 1951-10-16 GRAVES WILLIAM L O
60 Magnetic amplifier control system US12655949 1949-11-10 US2554203A 1951-05-22 MORGAN RAYMOND E
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