CN2444313Y - Luminous antenna for lineless telephone - Google Patents
Luminous antenna for lineless telephone Download PDFInfo
- Publication number
- CN2444313Y CN2444313Y CN00239510U CN00239510U CN2444313Y CN 2444313 Y CN2444313 Y CN 2444313Y CN 00239510 U CN00239510 U CN 00239510U CN 00239510 U CN00239510 U CN 00239510U CN 2444313 Y CN2444313 Y CN 2444313Y
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- light
- antenna
- printing opacity
- emitting diode
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Abstract
The utility model relates to a luminous antenna for a cordless telephone, comprising a telescopic antenna 1 and an antenna cap 6. The utility model is characterized in that the utility model also comprises a columnar diaphanous reflection lens 2 and a luminous diode 3, wherein, the columnar diaphanous reflection lens 2 is fixedly connected to a telephone set, the luminous diode 3 is arranged in the columnar diaphanous reflection lens 2 and is connected with the telephone line. An incoming call signal drives the luminous diode 3 to emit light, and the light emitted by the luminous diode 3 is reflected outwardly by the columnar diaphanous reflection lens 2. The utility model not only can be used for communication between a telephone set and an extension telephone, but also can emit light when a call is coming. The utility model has the advantages of simple structure, low cost, beautiful and graceful appearance, suitability for not only any cordless telephone but also a cord telephone.
Description
The utility model relates to a kind of cordless telephone antenna, particularly a kind of cordless telephone antenna that can be luminous.Belong to the telephone terminal technical field.
Antenna on sale and our the seen in daily life cordless telephone support generally all is to be made by single metal material in the market, and its effect only is to be to receive or transmission information between base and the handset.Antenna itself can not be luminous.Thereby whenever night of dark or telephone set be in insufficient light local time, people just must just can find the position of base by other light, if be difficult to find the position of base for the moment without auxiliary light, bring inconvenience therefore for people's use.
The purpose of this utility model be for the antenna that overcomes existing technology cordless telephone can not be luminous shortcoming, provide a kind of be applicable to any cordless telephone can be luminous the cordless telephone antenna.
The purpose of this utility model can reach by taking following technical measures: cordless telephone antenna that can be luminous, comprise telescopic antenna, the top of telescopic antenna is provided with the bigger antenna cap of shaft section, the bottom connects the high frequency reception/radiating circuit of base, its design feature is: also comprise pillar printing opacity refracting telescope, light-emitting diode, pillar printing opacity refracting telescope is fixedly connected on the base, the pillar printing opacity refracting telescope that light-emitting diode is positioned at also is connected with telephone wire, incoming telephone signal driven for emitting lights led lighting, pillar printing opacity refracting telescope outwards reflects the light that light-emitting diode sends.
The purpose of this utility model also can reach by taking following technical measures:
Aforementioned cordless telephone antenna that can be luminous, also comprise support and connector, pillar printing opacity refracting telescope is positioned at the middle part of telescopic antenna and this antenna package is wrapped, the shell of support and base is connected as a single entity, pillar printing opacity refracting telescope is fixedlyed connected with support by connector, light-emitting diode is positioned at the junction of pillar printing opacity refracting telescope and support, output, negative electrode that the anode of this light-emitting diode connects an electronic switching circuit connect power supply ground, and described electronic switching circuit is connected with external telephone wire by the input polarity transformation circuits.
Described electronic switching circuit is by triode Q1, Q2 is in series, the input polarity transformation circuits is formed by connecting by diode D1~D4, D1 connects with D2, D3 connects with D4, the parallel connection of two series connection groups, the tie point of D1 and D2, D3 is connected a telephone wire respectively with the tie point of D4, the tie point ground connection of D1 and D3, the tie point of D2 and D4 connects the emitter of Q1, the base stage that connects Q2 by resistance R 1, the base stage of Q1 connects the emitter of Q2, Q1, the collector electrode of Q2 is connected with LED by resistance R 3, and the base stage of Q2 connects the closing of the circuit control end of base by triode Q3.
The junction of pillar printing opacity refracting telescope and support also is provided with bearing support, and this bearing support is light tight, it is big or small and shape and support coincide, and light-emitting diode is arranged in the inner chamber of bearing support.
Light-emitting diode is light collecting light-emitting diode, and pillar printing opacity refracting telescope is lens.
Pillar printing opacity refracting telescope is made by light-passing plastic, and it is shaped as cylinder, quadrangle post, triangular column, rhombus column, hexagon posts, octangle post.
The utility model mainly is to design at bursting at the seams of cordless telephone base, and its profile is thicker than the antenna of general cordless telephone, more can set off the shape of telephone set.Being arranged at the light that the light-emitting diode of antenna bottom sends outwards reflects by pillar printing opacity refracting telescope, thereby outwards send soft light, near the part entire antenna can be illuminated, make people still can clearly make out the position of button in the dark, soft light can also beautify the environment in room simultaneously.
Of the present utility model attractive in appearance in order to increase, specially be provided with the bearing support that light-emitting diode is stashed, make the antenna overall appearance generous, moulded more elegant in appearance.
Collapsible antenna is made of metal, and antenna cap need be connected firmly, adopt plastics to make with described metal antenna.Because the printing opacity refracting telescope is the luminous outside refraction that is used for light-emitting diode, so must adopt the transparent plastic of energy printing opacity to make.Bearing support, add and to adopt lighttight plastics to make.
Compared with prior art, the utlity model has following outstanding advantage:
1. not only can be used for the communication between base and the handset, and can allow people find base exactly in the dark, allow people, both can be used on the cordless telephone, also can be used on other cord phones convenient use the at the night of no light.
2. for preventing that telephone bell from disturbing other people, can turn off telephone bell, only allow the light-emitting diodes light that is fixed in the transmissive mirror luminous, when outside line was squeezed into, light-emitting diode sent the light of flicker, and prompting owner's phone is squeezed into, both make things convenient for oneself, do not influenced others again.
3. simple in structure, with low cost, handsome in appearance generous, be applicable to any cordless telephone.
Below in conjunction with accompanying drawing the utility model is described in detail:
Fig. 1 is the structural representation of the utility model embodiment 1.
Fig. 2 is the fixing supporting structure schematic diagram of light-emitting diode and lens.
Fig. 3 is the structural representation of lens.
Fig. 4 is the electrical schematic diagram of the utility model embodiment 1.
Fig. 1 to Fig. 4 constitutes embodiment 1 of the present utility model.As can be seen from Figure 1, present embodiment is by telescopic antenna 1, pillar printing opacity refracting telescope 2, light-emitting diode 3, support 4 and connector 5 are formed, the top of telescopic antenna 1 is provided with the bigger antenna cap of shaft section 6, the bottom connects the high frequency reception/radiating circuit of base, pillar printing opacity refracting telescope 2 is positioned at the middle part of telescopic antenna 1 and this antenna 1 is wrapped up, support 4 is connected as a single entity with the shell of base, pillar printing opacity refracting telescope 2 is fixedlyed connected with support 4 by connector 5, light-emitting diode 3 is positioned at the junction of pillar printing opacity refracting telescope 2 and support, the anode of this light-emitting diode 3 connects the output of an electronic switching circuit, described electronic switching circuit is connected with external telephone wire by the input polarity transformation circuits, the negative electrode of light-emitting diode 3 connects power supply ground, and pillar printing opacity refracting telescope 2 outwards reflects the light that light-emitting diode 3 sends.
As can be seen from Figure 4, described electronic switching circuit is by triode Q1, Q2 is in series, the input polarity transformation circuits is formed by connecting by diode D1~D4, D1 connects with D2, D3 connects with D4, the parallel connection of two series connection groups, the tie point of D1 and D2, D3 is connected a telephone wire respectively with the tie point of D4, the tie point ground connection of D1 and D3, the tie point of D2 and D4 connects the emitter of Q1, the base stage that connects Q2 by resistance R 1, the base stage of Q1 connects the emitter of Q2, Q1, the collector electrode of Q2 is connected with LED by resistance R 3, and the base stage of Q2 connects the closing of the circuit control end of base by triode Q3.
Light-emitting diode 3 is light collecting light-emitting diode in the present embodiment, and pillar printing opacity refracting telescope 2 is lens, is made of plastics, it is shaped as cylinder.
As shown in Figure 1 and Figure 2, when telephone set was in running order, light-emitting diode 3 had electric current to pass through, and impelled light-emitting diode 3 luminous, was gone out by the refraction of lens then, made around this light illuminates.Support 4 is used for fixing lens 2, and bearing support 7 is used for fixing and hiding light-emitting diode 3.
Other embodiment of the present utility model are: post, triangular column, rhombus column, hexagon posts or octangle post are opened in four limits that are shaped as of pillar printing opacity refracting telescope 2.All the other are with embodiment 1.
The utility model both can be used on the cordless telephone, also can be used on other cord phones.
Claims (6)
1. cordless telephone antenna that can be luminous, comprise telescopic antenna (1), the top of telescopic antenna (1) is provided with the bigger antenna cap of cross section (6), the bottom connects the high frequency reception/radiating circuit of base, its design feature is: also comprise pillar printing opacity refracting telescope (2), light-emitting diode (3), pillar printing opacity refracting telescope (2) is fixedly connected on the base, the pillar printing opacity refracting telescope (2) that light-emitting diode (3) is positioned at also is connected with telephone wire, incoming telephone signal driven for emitting lights diode (3) is luminous, and pillar printing opacity refracting telescope (2) outwards reflects the light that light-emitting diode (3) sends.
2. cordless telephone antenna that can be luminous according to claim 1, it is characterized in that: also comprise support (4) and connector (5), pillar printing opacity refracting telescope (2) is positioned at the middle part of telescopic antenna (1) and this antenna (1) is wrapped up, support (4) is connected as a single entity with the shell of base, pillar printing opacity refracting telescope (2) is fixedlyed connected with support (4) by connector (5), light-emitting diode (3) is positioned at the junction of pillar printing opacity refracting telescope (2) and support, the anode of light-emitting diode (3) connects the output of an electronic switching circuit, the negative electrode of light-emitting diode (3) connects power supply ground, and described electronic switching circuit is connected with external telephone wire by the input polarity transformation circuits.
3. cordless telephone antenna that can be luminous according to claim 2, it is characterized in that: described electronic switching circuit is by triode Q1, Q2 is in series, the input polarity transformation circuits is formed by connecting by diode D1~D4, D1 connects with D2, D3 connects with D4, the parallel connection of two series connection groups, the tie point of D1 and D2, D3 is connected a telephone wire respectively with the tie point of D4, the tie point ground connection of D1 and D3, the tie point of D2 and D4 connects the emitter of Q1, the base stage that connects Q2 by resistance R 1, the base stage of Q1 connects the emitter of Q2, Q1, the collector electrode of Q2 is connected with LED by resistance R 3, and the base stage of Q2 connects the closing of the circuit control end of base by triode Q3.
4. cordless telephone antenna that can be luminous according to claim 2, it is characterized in that: pillar printing opacity refracting telescope (2) also is provided with bearing support (7) with the junction of support (4), this bearing support (7) is light tight, it is big or small and shape and support (4) coincide, and light-emitting diode (3) is arranged in the inner chamber of bearing support (7).
5. according to the described cordless telephone antenna that can be luminous of the arbitrary claim of claim 1 to 4, it is characterized in that: light-emitting diode (3) is light collecting light-emitting diode, and pillar printing opacity refracting telescope (2) is lens.
6. according to the described cordless telephone antenna that can be luminous of the arbitrary claim of claim 1 to 4, it is characterized in that: pillar printing opacity refracting telescope (2) is made for light-passing plastic, and it is shaped as cylinder, quadrangle post, triangular column, rhombus column, hexagon posts or octangle post.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN00239510U CN2444313Y (en) | 2000-09-21 | 2000-09-21 | Luminous antenna for lineless telephone |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN00239510U CN2444313Y (en) | 2000-09-21 | 2000-09-21 | Luminous antenna for lineless telephone |
Publications (1)
Publication Number | Publication Date |
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CN2444313Y true CN2444313Y (en) | 2001-08-22 |
Family
ID=33600353
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN00239510U Ceased CN2444313Y (en) | 2000-09-21 | 2000-09-21 | Luminous antenna for lineless telephone |
Country Status (1)
Country | Link |
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CN (1) | CN2444313Y (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1992427B (en) * | 2005-12-28 | 2012-04-04 | 技嘉科技股份有限公司 | Programmable antenna for controlling luminous assembly |
-
2000
- 2000-09-21 CN CN00239510U patent/CN2444313Y/en not_active Ceased
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1992427B (en) * | 2005-12-28 | 2012-04-04 | 技嘉科技股份有限公司 | Programmable antenna for controlling luminous assembly |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C19 | Lapse of patent right due to non-payment of the annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
C35 | Partial or whole invalidation of patent or utility model | ||
IW01 | Full invalidation of patent right |
Decision date of declaring invalidation: 20061205 Decision number of declaring invalidation: 8988 |