Nova Patents
NO941264D0

Transmitter power control system.

Abstract

The receiver receiving apparatus (74) and the transmitter (84) of the present invention have a power control system comprising: receiving a power set torque from the receiver (74), collecting corresponding values ​​of a predetermined closed loop power level value, closed and closed a power-driven power level regulator generating setpoint adjuster (78); the first amplifier (80) amplifying a closed-loop power level signal generator (80) for the transmitter (84), a first amplifier (80) amplifying the spread spectrum input signal by means of the transmitter (84) for transmission to the closed-loop power level regulator by a predetermined first gain factor; it was coupled to the receiver (72) the signal measurable power meter measuring the signal signal power received by it and corresponding power measurement signal generating means with a heatsink gain control device; it is coupled to the receiver (72) for generating a power-down-level power-level signal generating means for the level-setting parameters predetermined by the signal power of signals received by the receiver; a matching means for receiving a power measurement signal and an output power level level adjustment signal, and a matching power level control signal corresponding to a corresponding power level control signal; and a second amplifier (76) amplifying the amplified coefficient amplifier with an open-loop power level control signal receiving the open-loop power level signal generating signal and an oscillating power level signal (84). In a method according to the invention, the meteorological unit is measured at the masonry base station by measuring the signal power of the signal transmitted by the active unit at the abacus level. In the case of the power of the transmitter, the power of the signal is increased and decreases in the case of an increase in the inconsistencies. The base station generates a command signal that is transmitted to the active unit for the purpose of controlling the performance of the transmitter device more precisely according to the deviations of the received signal power on the base station. The performance of the transmitter unit is controlled by a steady increase in the performance of the transmitter unit, so low-signaled signals reach the desired power level with abacus power. ŕ In the case of the power of the transmitter, the power of the signal is increased and decreases in the case of an increase in the inconsistencies. The base station generates a command signal that is transmitted to the active unit for the purpose of controlling the performance of the transmitter device more precisely according to the deviations of the received signal power on the base station. The performance of the transmitter unit is controlled by a steady increase in the performance of the transmitter unit, so low-signaled signals reach the desired power level with abacus power. ŕ In the case of the power of the transmitter, the power of the signal is increased and decreases in the case of an increase in the inconsistencies. The base station generates a command signal that is transmitted to the active unit for the purpose of controlling the performance of the transmitter device more precisely according to the deviations of the received signal power on the base station. The performance of the transmitter unit is controlled by a steady increase in the performance of the transmitter unit, so low-signaled signals reach the desired power level with abacus power. ŕ The performance of the transmitter unit is controlled by a steady increase in the performance of the transmitter unit, so low-signaled signals reach the desired power level with abacus power. ŕ The performance of the transmitter unit is controlled by a steady increase in the performance of the transmitter unit, so low-signaled signals reach the desired power level with abacus power. ŕ

Term

No projected expiry on record.

  1. Priority
  2. Filed and published
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151 members in 31 offices

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Priority claims8

Priority claims
DocumentOfficeKindDate
77306791United States of AmericaA
77306791United States of AmericaA
9208613United States of AmericaW
9208613United States of AmericaW
773067
US19910773067
US9208613
WO1992US08613

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GB2105728AUnited KingdomA
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OA07190AAfrican Intellectual Property Organization (OAPI)A
GB2105728BUnited KingdomB
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IN159367BIndiaB
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WO9107037A1World Intellectual Property Organization (WIPO)A1
AU6728390AAustraliaA
CN1053870AChinaA
IL96218A0IsraelA0
IL96218D0IsraelD0
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US5056109AUnited States of AmericaA
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FI922083AFinlandA
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FI922083A7FinlandA7
JPH04502841AJapanA
NO921792LNorwayL
KR920702130ARepublic of KoreaA
BR9007826ABrazilA
EP0500689A1European Patent Office (EPO)A1
CA2102114A1CanadaA1
WO9221196A1World Intellectual Property Organization (WIPO)A1
AU2009192AAustraliaA
EP0500689A4European Patent Office (EPO)A4
MX9205759AMexicoA
CA2120768A1CanadaA1
WO9307702A1World Intellectual Property Organization (WIPO)A1
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ZA927539BSouth AfricaB
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NO20010714LNorwayL
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NO941264D0This recordNorwayD0
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NO941264LNorwayL
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