USRE37884EExpiredUtility

Transmitter-receiver system for use in an audio equipment

Assignee: BRIGHT HEADPHONE ELECTRONICS CPriority: Apr 17, 1996Filed: Oct 1, 1998Granted: Oct 15, 2002
Est. expiryApr 17, 2016(expired)· nominal 20-yr term from priority
Inventors:Jinsaun Chen
H04H 20/88H04R 2420/07
28
PatentIndex Score
7
Cited by
3
References
6
Claims

Abstract

A transmitter-receiver system including a transmitter unit installed in an audio equipment, and a receiver unit installed in an earphone, wherein the transmitter unit includes an automatic electric level regulator to regulate the electric level of the output signal of audio equipment to a predetermined range, a power control circuit controlled by the output signal of the audio equipment to provide the necessary working voltage, and an inductance antenna to transmit output signal from the audio equipment to the receiver unit; the receiver unit is of low working voltage design, including an automatic 24-time frequency divider circuit to effectively discriminate left and right sound tracks, and an auto-shut off circuit to automatically cut off power supply when the audio equipment does no work; the transmitter unit and the receiver unit further use a respective dual oscillation frequency regulating circuit consisting of an oscillating transistor, a dielectric resonator, and two variable resistors for regulating the range of the frequency.

Claims

exact text as granted — not AI-modified
What the invention claimed is:  
     
       1. A transmitter-receiver system comprising a transmitter unit installed in an audio equipment, and a receiver unit installed in an earphone, wherein: 
       said transmitter unit comprises:  
       an automatic electric level regulator, said automatic electric level regulator comprised of an electrical regulating IC, having an input terminal connected to the output terminal of said audio equipment to regulate the electric level of the output signal of said audio equipment to a predetermined range, and an output terminal;  
       a signal processing circuit having an input terminal connected to the output terminal of said automatic electric level regulator, and an output terminal;  
       a dual oscillation frequency regulating circuit, said dual oscillation frequency regulating circuit comprised of an oscillating transistor, a dielectric resonator, a first variable resistor, and a second variable resistor, having an input terminal connected to the output terminal of said signal processing circuit, and an output terminal, a first intermediate frequency output being within 10.7 MH to 100 MH and adjusted by said first variable resistor;  
       an inductance antenna connected to the output terminal of said dual oscillation frequency regulating circuit, said inductance antenna being a matching device; and  
       a power control circuit controlled by the output signal of said audio equipment to provide the necessary working voltage to said transmitter unit, said power control circuit comprised of a comparator and a transistor, said comparator turning on said transistor when receiving a signal from said audio equipment, permitting external power supply to be connected to said transmitter unit;  
       said receiver unit comprises:  
       a receiving antenna to receive radio signal transmitted from said inductance antenna of said transmitter unit;  
       a dual oscillation frequency regulating circuit, the dual oscillation frequency regulating circuit of said receiver unit comprised of an oscillating transistor a dielectric resonator, and two variable resistors, having an input terminal connected to the output terminal of said receiving antenna, and an output terminal;  
       a signal processing circuit connected to said oscillation frequency regulating circuit of said receiver unit to process received signal and to provide processed signal to said earphone;  
       an automatic 24-time frequency divider circuit, said automatic 24-time frequency divider circuit comprised of a resistor and an oscillator and connected to an IC of the signal processing circuit of said receiver unit to divide the frequency of received signal by 24, so as to provide a 19 KHz three-dimensional demodulated signal; and  
       an auto-shut off circuit, said auto-shut off circuit comprised of an IC and a transistor, said transistor of said auto-shut off circuit being controlled by the IC of said auto-off circuit to turned on/off external power supply.  
     
     
       2. A transmitter for a wireless transmitter- receiver system wherein the transmitter is coupled to audio equipment having an input terminal and an out put terminal to transmit an audio signal therefrom comprising:    
       
         an automatic audio level regulating circuit comprised of an audio regulating IC, having an input terminal adapted to be connected to the output terminal of said audio equipment to regulate the audio level of an output signal from said audio equipment to a predetermined range, and an output terminal;  
       
       
         a signal processing circuit having an input terminal connected to the output terminal of said automatic audio level regulating circuit, and an output terminal;  
       
       
         a dual adjustable oscillatory frequency regulating circuit comprising an oscillator transistor, and dielectric resonator, a first variable resistor, a second variable resistor and a variable capacitor diode, an input terminal connected to the output terminal of said signal processing circuit, and an output terminal, a carrier frequency output being adjusted and set by said first and second variable resistors;  
       
       
         an inductance antenna connected to the output terminal of said dual adjustable oscillatory frequency regulating circuit, said inductance antenna being a matching device; and  
       
       
         a power control circuit controlled by the output signal of said audio equipment to provide the necessary working voltage to said transmitter, said power control circuit comprising a signal amplifier, a comparator and a transistor switch, so that when said signal amplifier receives an input signal from said audio equipment it drives said comparator and transistor switch permitting the connection of an external power supply or battery supply to said transmitter. 
       
     
     
       3. A receiver for a wireless transmitter- receiver system wherein the system transmitter includes an inductance antenna and is adapted to be coupled to audio equipment to transmit an audio signal therefrom through an inductance antenna comprising:    
       
         a receiving antenna adapted to receive an audio signal transmitted from the inductance antenna of said transmitter;  
       
       
         a dual adjustable oscillatory frequency regulating circuit comprising an oscillatory transmitter, a dielectric resonator, and a first variable resistor, a second variable resistor, and a variable capacitor diode, an input terminal connected to the output terminal of said receiving antenna, and an output terminal;  
       
       
         a signal processing circuit connected to said dual adjustable oscillatory frequency regulating circuit to process received signals and to provide a processed signal to said receiver;  
       
         an automatic  24   - time frequency divider circuit comprising a resistor and an oscillator, connected to a first IC of said receiver signal processing circuit to divide the frequency of said received signal by  24 , so as to provide a  19  KHz three - dimensional demodulated signal;    
         and an auto - shut off circuit comprising a second IC and a transistor, said transistor being controlled by said second IC to turn a power supply on/off.   
     
     
       4. The receiver of  claim 3 , wherein said external and internal dual adjustable oscillatory frequency regulating circuit has a first intermediate frequency of at least above  10  MhZ. 
     
     
       5. The receiver of  claim 3  wherein said external and internal dual adjustable oscillatory frequency regulating circuit provides a local oscillatory frequency that can be broadly adjusted without a conventional SAW and which adjusts a first local oscillatory frequency and fixes a second oscillatory frequency. 
     
     
       6. The receiver of  claim 3  wherein said auto- shutoff circuit can automatically turn on said receiver when it receives an audio signal and automatically turn off said receiver when it receives no audio signal after a predetermined period of time.

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