GB2206758A - RF Switch - Google Patents

RF Switch Download PDF

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Publication number
GB2206758A
GB2206758A GB08716363A GB8716363A GB2206758A GB 2206758 A GB2206758 A GB 2206758A GB 08716363 A GB08716363 A GB 08716363A GB 8716363 A GB8716363 A GB 8716363A GB 2206758 A GB2206758 A GB 2206758A
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United Kingdom
Prior art keywords
signal
switch
input
input end
output
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
GB08716363A
Other versions
GB2206758B (en
GB8716363D0 (en
Inventor
Katsuya Nakagawa
Yoshiaki Nakanishi
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nintendo Co Ltd
Original Assignee
Nintendo Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority to CA000487938A priority Critical patent/CA1323416C/en
Application filed by Nintendo Co Ltd filed Critical Nintendo Co Ltd
Priority to GB8716363A priority patent/GB2206758B/en
Publication of GB8716363D0 publication Critical patent/GB8716363D0/en
Publication of GB2206758A publication Critical patent/GB2206758A/en
Application granted granted Critical
Publication of GB2206758B publication Critical patent/GB2206758B/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/51Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the components used
    • H03K17/74Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the components used by the use, as active elements, of diodes
    • H03K17/76Switching arrangements with several input- or output-terminals, e.g. multiplexers, distributors
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/51Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the components used
    • H03K17/56Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the components used by the use, as active elements, of semiconductor devices
    • H03K17/60Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the components used by the use, as active elements, of semiconductor devices the devices being bipolar transistors
    • H03K17/62Switching arrangements with several input- output-terminals, e.g. multiplexers, distributors

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  • Input Circuits Of Receivers And Coupling Of Receivers And Audio Equipment (AREA)
  • Electronic Switches (AREA)

Abstract

When a DC control signal is applied together with an input signal, eg from a unit 10 such as a video game, to an input 46 a switching means, such as transistors 52a-52c inactivate a filter 50a-50c connected to another input 48 and blocks an input signal, such as from a TV antenna applied to that input 48 and means, such as diode 60 enables the signal from 10 to be coupled to an output 62. The DC signal is provided when a power switch of the unit 10 is turned on when the power switch of the unit 10 is turned off, the DC signal is not supplied, transistors 52a-52c and diode 60 are turned off, the high pan fitters 50a-50c will not be disabled and thus the TV signal present at the TV antenna input 48 is applied to the output 62. <IMAGE>

Description

TITLE OF THE INVENTION RF Switch BACKGROUND OF THE INVENTION Field of the Invention The present invention relates to an RF switch.
More specifically, the present invention relates to an RF switch for switching over an antenna input of a TV receiver when the TV receiver receiving a TV signal from an antenna is used as a monitor for a picture processing system, for example, such as a personal computer, a video game system or the like.
Description of the Prior Art A video game system and a personal computer, for example, such as ATARI 2600" (Trademark) and "COLECO VISION" (Trademark) which utilize a domestic TV receiver as a monitor are well known. In such video game and computer systems and the like, the TV signal inputs from a TV antenna or a VTR must be switched over to an RF signal (a TV signal) for the game or computer system.
The switch over is necessary to avoid an interference between the TV signals from the antenna and for the monitor as well as from spurious radiation of the monitor's RF signal.
Accordingly, in the past, one of the two TV signals has been selectively connected to the TV receiver, in general, by a mechanical switch, for example, a slid switch. Typically, the slide switch is connected to hang loosely in the vicinity of an antenna terminal of the TV receiver. When using, for example, the game system, the slide switch must be switched over by reacning, sometimes only by feel to the back side of the TV receiver to manually operate the switch. This operation is not only troublesome but also dangerous, because of the high voltage equipment on the back side of the TV receiver.
SUMMARY OF THE INVENTION A principal object of the present invention is, therefore, to provide an RF switch which is capable of switching over an antenna input automatically to a TV receiver when the TV receiver from another video source, such as a picture processing system.
Another object of the present invention is to provide an RF switch that facilitates a change in circuit connections between RF circuit cables.
The present invention is, in brief, an RF switch comprising first and second inputs and an output. A first input end is connected for receiving a first TV signal. A filter means is connected between the first input end and the output. A second input end is adapted for receiving a second TV signal superposed on a DC control signal and circuit means are provided for inactivating the filter means in response to the DC control signal when applied to the second input end, and for transmitting said second TV signal to said output.
For example, when a power switch of a main unit of an apparatus providing a second TV signal, is "off", the second TV signal is not present and hence is not applied to the RF switch. Accordingly, the filter means is not inactivated and in that state, the first TV signal, for example, fro the TV antenna or a VTR is passed to an antenna terminal of the TV receiver through the output of the RF switch.
On the other hand, when the power switch of the main unit is turned on, the superposed the second TV signal and the DC control signal are applied to the RF switch from the main unit. The circuit means for inactivating the filter means is actuated by the DC control signal, thus the TV signal at the first input end is not transmitted to the output and, the TV signal from the main unit (i.e., second TV signal) is applied to the output end by the transmitting circuit means and thence antenna terminal of the TV receiver. At this time, since the filter means has been inactivated, spurious radiation cause by the RF signal from the main unit of the picture processing apparatus is effectively prevented from leaking back to the first input end.
According to the present invention, since the source of TV signal can be automatically changed by simply turning on the poster switch of the main unit of the apparatus supplying the second TV signal suc as a personal commuter or video game apparatus, a manual switching operation is no longer required each time using the apparatus is to be used.
The preferred embodiment, the RF switch is forme on a printed circuit board contained in a housing. In the housing in turn is formed with two different, optional cable guide portions for guiding the connecting cables fro the main unit of the second TV signal apparatus in the most convenient. One of cable guide portion routes the cable from the housing in a first direc- tion and the other guide portions routes the cable in a second and different direction so that the most suitable cable direction can be selected according to the arranged positions of the main unit supplying the second TV signal, the TV antenna, and the TV receiver or monitor.
These objects and other objects, features, aspects and advantages of the present invention will become more apparent from the following detailed description of the embodiment when taken in connection with the accompanying drawings.
BRIEF DESCRIPTION OF TH2- DRAWINGS Fig. 1 is a schematic perspective view showing a video game syste incorporating the RF switch of the present invention.
Fig. 2 is a circuit diagram showing the embodiment of Fig. 1.
Fig. 3 is a graph showing an attenuation versus a frequency characteristic for explaining an aspect of the operation of the embodiment of Fig. 2.
Fig. z is a circuit diagram showing a modified portion of another embodiment.
Fig. 5 is a circuit diagram showing a modified portion of another embodiment of Fig. 2.
Fig. 6(A) is an illustrated plan view of the structure of the RF switch embodiment of Fig. 1; Fig. 6(B) is a left side view; Fig. 6(C) is a right side view; and Fig. 6(D) is a front view.
Fig. 7 is the exploded perspective view showing a housing of Figs. 6(A), (B), (C) and (D).
DESCIPTION OF THE PREFERRED EMBODIMENT Fig. 1 is a schematic perspective view showing a video game system in which the RF switch of te present invention is incorporated . The present invention will be described in this video game system environment.
However, it is note in advance that the present invention may in general be utilized in systems using a domestic TV receiver as a monitor for an information processing system or a picture processing system such as a personal computer.
To a main unit 10 such a game apparatus, a commercial power source is supplied through an AC adapter 12.
To the main unit 10, two controllers 14 are connected by suitable connecting cables. Also, on the main unit 10, a cartridge receiving port 16 for a program ROM cartridge (see Fig. 2) for the game is provided. Ac cordingly, in the main unit 10, the TV signal for the game is generated according to the content of the i- serted ROM cartridge. On the main unit 10, a power switch 18 and a reset switch 20 are further provide.
The power switch 18 is for turning on the power source of the main unit 10 and the reset switch 20 is for resetting the content of the game.
As an example of such a video game system, reference is made to products available under the name 2'ra..ily-Computer" (Trademark) or "Nintendo EntertaInment System" (Trademark) manufactured by the assignee of the present invention.
The main unit 10 is connected to RF switch 24 through a coaxial cable 22. The RF switch 24 is connected to an antenna terminal of a conventional TV receiver 28 through a coaxial cable 26. The RF switch 24 is further connected to a TV antenna 32 by a feeder cable 30. The RF switch 24 operates to switch over the TV signal applied to receiver 28 fro the TV antenna 32 and to the TV signal from the game system main unit 10 so as to select either of them for connection to the TV recever 28.
Referring to Fig. 2, the cartridge port 16 of the main unit 10 is provided with a connector 34. Plugged in to the connector 34 is a connector 36a of the RO.
cartridge 36. In the embodiment, the connector 36a is forme as a male part arranged with a plurality of pins and the connector 34 is formed as a female with holes to receive these pins. The connector 34 is connected to a CPU 38 and a PPU 40, for example, by flat cables or other wiring. The CPU 33 and the PPU 40 are connected mutually as well as to an I/O interface 42, to which two controllers 14 are connected.
The CPU 38 provides video picture data necessar: to play the game to the PPU 40 based upon game data program from an RO.í (not shown) included in the RO cartridge 36 and control signals from the controllers 14. As the CPU 38, a microprocessor, for example, such as an integrate circuit "Z80A" made by Zilog Inc. may be used. The ?PU 40 is for generating the TV signal of NTSC standard, for example, based upon te picture data from the CPU 3d.
As the PPU 40, for example, an integrated circuit "2003" made by Nintendo Co., Ltd. may be used.
The picture signal from. the PPU 40, that is, te TV signal is given to the coaxial cable 22 through the I/O interface 42. To the coaxial cable 22, a DC control voltage, for e:iample, of about 3 volts fro the AC adapter 12 (Fig. 1) is also applied through the poser switch 18, a protective resistor 43 and a choke coil 44.
The protective resistor 43 is for protecting the power source (vcc) of the main unit 10 even if the main unit 10 at RCA plug 46 is erroneously short-circuit by an operator. A resistance value of the protective resistor 43 is selected relatively high such that it allows current sufficient to turn on switching transistors 52a 52c to be supplied to the RF switch 24. The choke coil 44 prevents the TV signal from the PPU 40 from flowing into the power line through the AC adapter. Thus, the superposed the TV signal from the PPU 40 and the DC control voltage are outputted to the coaxial cable 22, which is connected to the RF switch 24.
In the RF switch 24, a first input end 24a is connected to an F-connector 48 which in turn is connected to the TV antenna 32 through the feeder cable 30 (Fig.
1). A second input end 24b receives the above-mentioned coaxial cable 22 and an output end 24c is connected to an F-plug 62 by a coaxial cable.
Betee input end 24a and the output end 2tic, three-stage high-pass filters 50a, 50b and 50c are connected in cascade. In tis embodiment, the high-pass filters 50a - 50c are constructed as a - type filter.
The output sides of respective filters 50a, 50b and 50c are selectively grounded through switching transistors 52a, 52b and 52c to disable, i.e., inactivate, the filter. These switching transistors 52a - 52c are connected to a DC voltage line 54 via suitable currentlimit resistors. The DC voltage line 54 is connected to the above-mentioned second input end 24b via a choke circuit 56 including a choke coil 56a and a by-pass capacitor 56b. The choke circuit 56 serves as a highfrequency blocking circuit for blocking the TV signal present at the second input end 24b from flowing back to the first input end 24a and causing RF interference to be radiated therefrom.
3etween the output end 24c and the secon input end 24b, a series connection of a bias circuit 58 an a switching diode 60 are connected. The bias circuit 58 includes a parallel circuit of a resistor 58a and a capacitor 53b, and develops a DC voltage to bias the diode 60 as well as prevent a direct short-circuit between the input end 24b and the output end 23c. The capacitor 58 is for passing the TV signal from the game main unit 10 at the input end 24b to the output end 24c through the diode 60.
The output end 24c of RF switch 24 is connected to the F-plug 62 through a coaxial cable. The F-plug 62 is connected to an F-connector (not shown) of the antenna terminal of the TV receiver 28.
For the purpose of shielding respective inner conductors, outer conductors of the coaxial cable 22, the F-connector 48 and the F-plug 62 are all grounded.
In operation, when the RCA plug 46 is not connected to the main unit 10, or when it is connected but the power switch 18 of the main unit 10 is off, that is, when the TV receiver 28 (Fig. 1) has no used as the monitor for the game system, the input end 24b is - plied signal whatever. Accordingly, the switching transistors 52a - 52b remain off and the diode 60 is also off. Therefore, the respective filters 50a - 50c are not be disabled. In this state, the TV signal from the TV antenna 32 (Fig. 1) or a VTR (not shown) applied the F-connector 48 to the first input end 24a, is transmitted to the output end 24c through the active threestage filters 50a - 50c and thence to the TV receiver 28 (Fig. 1) therefrom through the F-plug 62.Thus, when the filters 550 - 50c are not disabled, the TV signal fro the first input end 24a is given to the TV receiver 28 almost without attenuation as snc-fn by a plotted line X in Fig. 3.
When the RCA plug 46 is connected to the main unit 10 and the power switch 18 of the main unit 10 is turned on, the superposed RF signal for the game generated by the content of the RO.;' cartridge 36 and the PP'J 40, and the DC control signal applied through the power switch 18, protective resistor 43 and choke coil 44 are outputted to the coaxial cable 22. The superposed RF signal and DC control signal are applied to the second input end 24S through the inner conductor of the coaxial cable 22. The DC control signal component is coupled to respective switching transistors 52a - 52c through the choke coil 56a and the DC voltage line 54. Thus, the switching transistors 52a - 52c are turned on and the output sides of the corresponding filters 50a - 50c are grounded.Therefore, the filters 50a - 50c are disabled (invalidated). Accordingly, even if the TV signal is present at the first input end 24a through the Fconnector 48, the TV signal will be grounded through the inactivated filters 50a - 50c, namely, through the switching transistors 52a - 52c substantially attenuated as sown by a plotted line Y in Fig. 3. The TV signal at input end 24a thus does not appear at the output end 24c.
At this time, the TV signal present at the second input end 2tb is blocked by the choke circuit 56 so it does leaks back to at the first input end 24a through the filters 50a - 50c.
The DC control signal (DC voltage) present at te second input end 24b is applied to the diode 60 through the resistor 58a o the bias circuit 58, and generating a forward voltage across the diode 60 of approximately 0.7 volts. Therefore, the diode 60 is turned on. The TV signal at the second input end 24b is passed through the diode 60 via the capacitor 58b of the bias circuit 58 to the output end 24c, since the diode 60 is in a low impedance "on" state. The TV signal (RF signal) from the main unit 10 thereby appears at the output end 24c and applied to the antenna terminal (not shown) of the TV receiver 28 through the F-plug 62 as in the previous case.
Thus, by turning on or off the power switch 18 of the main unit 10, the RF switch changes the TV signal available at the output end 24c. Accordingly, when the TV game apparatus is not being used, a TV broadcast may be received by the TV receiver 28. To play the TV game, broadcasting signal is automatically invalidated by switching the power switch 13 of the main unit 10 is turned on to automatically disable the TV broadcast signed and to cause only the TV game signal from the main unit 10 to be applied to the TV receiver 28.
Fig. z is a circuit diagram showing a modified portion of certain portions of the main unit of Fig. 2 embodiment. In the Fig. 4 embodiment, the I/O interface 42 includes an RF modulation circuit 42a to which an output of the power switch 18 is applied through a slide switch 19 through a conductive printed circuit patte- 36a formed in U-shaped letter at an edge of the plug-in board of the ROM cartridge 36. The slide switch 19 s for turning off the power source to the RF modulation circuit 42a while the power switch 18 remains its O state.The power switch 18 and the slide switch 19 are connected to each other through the conductive pattern 36b only when the connector 36a of the RON cartridge 36 is plugged in to the connector 34 of the main unit 1G.
The DC voltage Vcc thus cannot be applied to the RF modulation circuit 42a even if both the power switch a and the slide switch 19 are ON when RO cartridge 36 is detached. An RF signal passing from the second output end 24b is cut off automatically, and the TV signal from the first input end 24a is applied to the output end 24c.
Fig. 5 is a circuit diagram showing a modified example of the embodiment of Fig. 2 especially the RF switch. In the embodiment shown, filters 50a, 50b and 50c are constructed as a T-type filter. Other aspects are identical with Fig. 2 so the duplicate description will be omitted here.
The RF switch 24 described above may be incor porated into the main unit 10 or the TV receiver 28.
However, it is preferably constructed separately fro these units as shown in Fig. 1.
ow, referring to Figs. 6 and 7, the structure of the RF switch 24 will be described in detail. The switch 24 comprises a housing 64 having a lower shell 64a and an upper shell 64b mated therewith. The housing 64 is formed in a plan rectangle and provided therein with a board 66 having the filter circuit and associated components as shown in Fig. 2 or Fig. 4 mounted. The coaxial cable 22, the F-connector 48 and the F-plug 62 (Fig. 2) are connected to the board 66. The F-connector 48, the coaxial cable 22 and the F-plug 62 are connected respectively to the first input end 24a, the second input end 24b and the output end 24c as previously described.
As clearly understood from Fig. 7, housing 64 is formed with holes 68 and 70 that accommodate the insertion of the F-connector 4 & and the F-plug 62, and a hole 72 tat serves to guise te coaxial cable 22 to the cut- side cf the housing 64. Along one longer sides of the housing shells 64a and 64D, channels 74a and 74b are formed. Then, in the channels 74a and 74b, a plurality of protrusions 76a, 76a --- and 76b, 76b, --- are formed in a staggered fashion as shown in Fig. 6(D).
In the example shown in Fig. 6(A), the coaxial cable 22 is guided out of the housing in an orthogonal direction relative to the long side of the rectangular housing 64. But, depending upon the arrangement of the main unit 10 and the TV receiver 28, there may be a case in which this configuration of the coaxial cable 22 is impractical. Accordingly, in the embodiment, the coaxial cable 22 is adapted to be guided out of the housing parallel to the long side thereof by utilizing the channels 74a and 74b as shown by the double dotted line in Fig. 6(A). Coaxial cable 22 is held in the channel 74 by the protrusions 76a and 75b fore in the respective channels.
Although the present invention has been described and illustrated in detail, it is clearly understood tat the same is by way of illustration and example only and is not to be taken by way of limitation, te spirit and scope of the present invention being limited only by the terms of the appended claims.

Claims (18)

.;.AT IS CLr.I ;~3 IS:
1. An RF switch comprising: a first input end for receiving a first TV signal, an output end, a filter means connected between said first input end and said output end, said filter means including voltage controlled switching means for selectively blocking or passing said first TV signal to said output end in response to a control signal, a second input end for receiving a second TV signal and a DC control signal superposed on said second TV signal, means for causing said switching means of said filter means to inactivate said filter means to block said first TV signal in response to said DC control signal applied with said second TV signal to said second input end, and voltage controlled transmitting means for transmitting said second TV signal to said output end only when said DC control signal is applied to said second input end.
2. An RF switch in accordance with claim 1 and having a circuit ground wherein said switching means of said filter means includes a first semiconductor switching element that is turned on in response to presence of said DC control signal and that wnen on connects a si- nal in said filter means to said ground.
3. An RF switch in accordance wit claim 2, wherein said filter means includes a plurality of inductivecapacitive filters connected in a cascade fashion to form a filter signal path between said input and output ends, and at least a second semiconductor switching element connected to said signal path between the filters and said ground.
4. An RF switch in accordance with claim 1, wherein said transmitting means includes a diode connected be- tween said second input end and said output end.
5. An RF switch in accordance with claim 4, wherein said transmitting means includes a capacitor connected between said second input end and said diode and a resistor connected in parallel with said capacitor for preventing a direct short-circuit between said second input end and said output end and for providing a bias in a forwcr direction to said diode.
6. An RF switch in accordance with claim 1, whicn further comprises means for blocking the transmission of said second TV signal from said second input end to said first input end.
7. An RF switch in accordance with claim 6, wherein said blocking means includes a choke coil connected to said second input end at one end thereof and a by-pass capacitor connected between another end of said cho < e coil and a ground.
8. An RF switch in accordance with claim 1, which further comprises a housing, and a circuit board contained within said housing, said first and second input ends and said output end being connected to said circuit board, a connecting cable joined to said second input end, and said housing comprising first and second cable guide portions for guiding said connecting cable fre said second input end in two different optional direc- tions relative to said housing.
9. A video game system comprising; means for supplying a first TV signal, an RF switch, a first input end of said RF switch for receiving said first TV signal, a fitter means in said RF switch having an input connected to said first input end, a main unit for generating a second TV signal for displaying a video game and a superposed DC signal, a second input end of said RF switch for receiving said second TV signal and superposed DC signal, an output end of said RF switch connected to an output of said filter means, voltage controlled switching means for inactivating said filter means to bloc said first TV signal fro said output end in response to said DC signal superposed on said second TV signal applied to said second input end, and voltage controlled transmitting means for transmit- ting said second TV signal for video game display to said output end in response to said DC signal.
10. A video game system in accordance with claim 9 wnerein said voltage controlled switching means for inactivating said filter means includes a first semicon- ductor switching element turned on and off in response to said DC signal and being connected between the output of said filter means and ground.
11. A video game system in accordance with clai: 10, wherein said filter means includes a plurality of inductive-capacitive filters connected in a cascade fashion to form a single path between said input and output of said filter means, and at least a second semi- conductor switching element connected between said signal path adjacent the output of the respective filter and ground.
12. A video game system in accordance with claim 9, wherein said transmitting means includes a diode connected between said second input end and said output end.
13. A video game system in accordance with claim 12, wherein said transmitting means includes a capacitor connected between said second input end and said diode and a resistor connected in parallel with said capacitor for preventing a direct short-circuit between said second input end and said output end and for providing a bias in a forward direction to said diode.
14. A video game system in accordance with claim 9, which further comprises means for blocking the transmission of said second TV signal for video game to said first input end from said second input end.
15. A video game system in accordance with claim 9, wherein said picture processing unit includes a power switch and a superposing means for superposing a DC signal on said second TV signal for video game when said power switch is turned on.
16. A video game system in accordance with claim 15, wherein said superposing means includes a high frequency blocking means for preventing said second TV signal for video game to flow into a commercial power source from said main unit through said power switch.
17. A video game system in accordance with claim 16, wherein said high frequency blocking means includes a choke coil.
18. An RF switch adapted to selectively connect one of two video source signals to a television monitor, comprising: a first input for receiving a first television signal; a second input for receiving a second television signal from an auxiliary source in which the auxiliary source is adapted to produce a DC control signal super- impose on the second television signal; an output adapted to be connected to a television; ; a plurality of inductive-capacitive filters connected in cascade between said first input and said output, each said inductive-capacitive filter having an associated transistor switch including a control input and connected to provide an impedance path switchable to a lo impedance state so as to ground an output from the associated filter in response to a control voltage applied to the control input; an RF choke connecting said control inputs of said transistor switches to said second input for causing said transistor switches to switch to said lo impendance state in response to the presence of said DC control signal superimposed on said second television signal so as to inactivate said filters and thereby isolate said first TV signal from said output; and a voltage controlled signal transmitting circuit connected between said second input and said output, said transmitting circuit comprising a diode connected in series with a parallel resistive capacitive networX, said diode having a high impedance reverse bias state in the absence of said DC control signal at said second input so as to isolate said output from said second input, and said diode being responsive to a bias voltage developed across said resistor in response to the presence of said DC control signal to assume a low im- pedance forward biased condition that transmits the second TV signal through said second input to said output.
GB8716363A 1985-07-31 1987-07-10 Rf switch and video game system Expired - Lifetime GB2206758B (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CA000487938A CA1323416C (en) 1985-07-31 1985-07-31 Rf switch
GB8716363A GB2206758B (en) 1985-07-31 1987-07-10 Rf switch and video game system

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CA000487938A CA1323416C (en) 1985-07-31 1985-07-31 Rf switch
GB8716363A GB2206758B (en) 1985-07-31 1987-07-10 Rf switch and video game system

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GB8716363D0 GB8716363D0 (en) 1987-08-19
GB2206758A true GB2206758A (en) 1989-01-11
GB2206758B GB2206758B (en) 1992-01-29

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5734442A (en) * 1995-08-02 1998-03-31 Zenith Electronics Corporation Module interface system for television receiver
WO2001065860A2 (en) * 2000-03-03 2001-09-07 Sony Computer Entertainment, Inc. Signal converter
US11089240B2 (en) * 2018-05-07 2021-08-10 Craig Randall Rogers Television video and/or audio overlay entertainment device and method

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4432015A (en) * 1982-05-17 1984-02-14 Rca Corporation Video apparatus having improved antenna transfer switching system
GB2181314A (en) * 1985-09-30 1987-04-15 Rca Corp Radio frequency switch

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4432015A (en) * 1982-05-17 1984-02-14 Rca Corporation Video apparatus having improved antenna transfer switching system
GB2181314A (en) * 1985-09-30 1987-04-15 Rca Corp Radio frequency switch

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
ELECTRONIC ENGINEERING DECEMBER 1984, PAGE 11 *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5734442A (en) * 1995-08-02 1998-03-31 Zenith Electronics Corporation Module interface system for television receiver
WO2001065860A2 (en) * 2000-03-03 2001-09-07 Sony Computer Entertainment, Inc. Signal converter
WO2001065860A3 (en) * 2000-03-03 2002-02-07 Sony Computer Entertainment Inc Signal converter
US11089240B2 (en) * 2018-05-07 2021-08-10 Craig Randall Rogers Television video and/or audio overlay entertainment device and method
US20210337139A1 (en) * 2018-05-07 2021-10-28 Craig Randall Rogers Television video and/or audio overlay entertainment device and method
US11765310B2 (en) * 2018-05-07 2023-09-19 Craig Randall Rogers Television video and/or audio overlay entertainment device and method

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Publication number Publication date
CA1323416C (en) 1993-10-19
GB2206758B (en) 1992-01-29
GB8716363D0 (en) 1987-08-19

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Effective date: 20070709