CN204807803U - Ultrashort wave telescope - Google Patents

Ultrashort wave telescope Download PDF

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Publication number
CN204807803U
CN204807803U CN201420847180.2U CN201420847180U CN204807803U CN 204807803 U CN204807803 U CN 204807803U CN 201420847180 U CN201420847180 U CN 201420847180U CN 204807803 U CN204807803 U CN 204807803U
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CN
China
Prior art keywords
interface
circuit
ultrashort wave
usw
control
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.)
Expired - Fee Related
Application number
CN201420847180.2U
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Chinese (zh)
Inventor
王新赛
崔洛鸿
路建方
贺明
李长林
贺菁
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.)
SHANGHAI LANJIAN TECHNOLOGY DEVELOPMENT Co Ltd
Original Assignee
SHANGHAI LANJIAN TECHNOLOGY DEVELOPMENT Co Ltd
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Priority to CN201420847180.2U priority Critical patent/CN204807803U/en
Application granted granted Critical
Publication of CN204807803U publication Critical patent/CN204807803U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

Ultrashort wave telescope, it relates to imaging device technical field. It contains reflection reducing coating camera lens, ultrashort wave detector, signal playback circuit, information processing circuit, display circuit, operating panel circuit, external display interface, and the reflection reducing coating camera lens is connected with the ultrashort wave detector, and the ultrashort wave detector is connected with signal playback circuit, signal playback circuit and information processing circuit connection, the information processing circuit with show circuit connection, the operating panel circuit respectively with reflection reducing coating camera lens and information processing circuit connection, display circuit and external demonstration information processing 2. It can solve the limitation that has had the unable normal formation of image when background target radiation intensity changes of telescope product, improves the extensive suitability of telescope product in practical application.

Description

Ultrashort wave (USW) telescope
Technical field:
The utility model relates to imaging device technical field, is specifically related to a kind of ultrashort wave (USW) telescope.
Background technology:
Optical telescope is the optical instrument utilizing lens to observe remote object in visible-range.
The image quality of optical telescope is very large by the impact of target background change in radiation intensity, when background radiation intensity changes, the image quality of optical telescope sharply declines, and directly impact is exactly picture contrast decline, the dimness of vision, background noise increase, even cannot normal imaging.
As mentioned above, the telescopical service condition of ordinary optical is subject to certain restrictions, and reason is that such as night, cloudy day, haze, sleet etc. all can have influence on image quality and the sharpness of optical telescope when target background change in radiation intensity.Therefore conventional telescope can only be used in some specific working environment as visibility good, light at the sunshine field condition such as strong.
Utility model content:
The purpose of this utility model is to provide a kind of ultrashort wave (USW) telescope, and it can solve existing telescope product cannot the limitation of normal imaging when target background change in radiation intensity, improves telescope product broad applicability in actual applications.
In order to solve the problem existing for background technology, the utility model is by the following technical solutions: it comprises anti-reflection film camera lens, ultrashort wave (USW) detector, signal read circuit, information-processing circuit, display circuit, operation panel circuit, external display interface, anti-reflection film camera lens is connected with ultrashort wave (USW) detector, ultrashort wave (USW) detector is connected with signal read circuit, signal read circuit is connected with information-processing circuit, information-processing circuit is connected with display circuit, operation panel circuit is connected with anti-reflection film camera lens and information-processing circuit respectively, display circuit is connected with external display interface.
As further improvement of the utility model, described signal read circuit comprises analog interface, sensing circuit, digital interface, and analog interface is connected with sensing circuit, and sensing circuit is connected with digital interface.
As further improvement of the utility model, described information-processing circuit, it is the telescopical Key Circuit of ultrashort wave (USW), it comprises image input interface, restructural microprocessor, image output interface, electronic relay, control interface, panel control command interface, interface circuit, image input interface is connected with restructural microprocessor, restructural microprocessor respectively with image output interface, control interface connects, image output interface is connected with electronic relay, interface circuit is connected with panel control command interface, panel control command interface is connected with restructural microprocessor.
As further improvement of the utility model, described display circuit, comprises video-stream processor, image input interface, panel control command interface, image exports inner joint, image exports external tapping; Image input interface, panel control command interface are all connected with video-stream processor, and video-stream processor exports inner joint with image respectively, image exports external tapping and is connected.
As further improvement of the utility model, described operation panel circuit, comprises control circuit, Zoom control button, focus control button, display translation control knob, zoom drive interface, focuses on driving interface, display translation control interface; Control circuit respectively with zoom drive interface, focus on drive interface, display translation control interface is connected, Zoom control button, focus control button, display translation control knob are all connected with control circuit; Described Zoom control button and focus control button are touch film key switches, are provided with two adjustment buttons, realize carrying out zoom or focusing operation to the focal length of camera lens by button; Described display translation control knob is touch film key switch, is provided with two adjustment buttons, realizes telescopical image output state by button, namely output image to inner eyepiece or output to external display; Described zoom drive interface, focusing drive interface, display translation control interface is driving circuit, and its effect is that the order from control circuit is dealt into each treatment circuit; Described zoom drive interface is connected with anti-reflection film camera lens, focuses on and drives interface to be connected with anti-reflection film camera lens, complete and control the adjustment of lens focus; Described display translation control interface is connected with panel control command interface, realizes the control to the image way of output.
Principle of the present utility model is: adopt digital-to-analog circuit internal bus mode to connect between each signal processing circuit and control circuit; These buses comprise digital signal line, analog signal line.The radiation signal of anti-reflection film camera lens receiver surface, through the analog to digital conversion of ultrashort wave (USW) detector and the signal amplification correction of signal read circuit, restructural microprocessor again through information-processing circuit inside carries out background intensity adaptive polo placement to image and automatically adjusts shutter parameter processing, according to the display translation mode control command from operation panel circuit, send to display circuit and output to eyepiece or external-connection displayer; Operation panel circuit, send zoom focus control command on the one hand, drive the action of anti-reflection film lens focus, also can send display translation mode control command to display circuit simultaneously, determine that image exports as the inner way of output or the outside way of output, inside outputs to eyepiece, and outside outputs to external display interface access display.
The utility model adopts the technology of many algorithm fusions, the problem that mainly in solution target background change in radiation intensity situation, conventional telescope cannot be observed, overcome the limitation in the actual use of existing conventional telescope product in target background change in radiation intensity situation and defect, multiple applied environment can be adapted to, in actual use for user provides great convenience property and dirigibility, be with a wide range of applications.
Accompanying drawing illustrates:
Fig. 1 is structural representation of the present utility model,
Fig. 2 is the structural representation of signal read circuit in the utility model,
Fig. 3 is the structural representation of information-processing circuit in the utility model,
Fig. 4 is the structural representation of display circuit in the utility model,
Fig. 5 is the structural representation of operation panel circuit in the utility model;
Reference numeral:
Fig. 1: anti-reflection film camera lens 101, ultrashort wave (USW) detector 102, signal read circuit 103, information-processing circuit 104, display circuit 105, operation panel circuit 106, external display interface 107.
Fig. 2: analog interface 1031, sensing circuit 1032, digital interface 1033.
Fig. 3: image input interface 1041, restructural microprocessor 1042, image output interface 1043, electronic relay 1044, control interface 1045, panel control command interface 1046, interface circuit 1047.
Fig. 4: video-stream processor 1051, image input interface 1052, image exports inner joint 1054, and image exports external tapping 1055, panel control command interface 1053.
Fig. 5: control circuit 1061, Zoom control button 1062, focus control button 1063, display translation control knob 1064, zoom drive interface 1065, focuses on and drives interface 1066, display translation control interface 1067
Embodiment:
Below in conjunction with accompanying drawing, the utility model is described in detail.
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with the drawings and the specific embodiments, the utility model is further elaborated.Should be appreciated that embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
With reference to Fig. 1, this embodiment is by the following technical solutions: it comprises anti-reflection film camera lens 101, ultrashort wave (USW) detector 102, signal read circuit 103, information-processing circuit 104, display circuit 105, operation panel circuit 106, external display interface 107, anti-reflection film camera lens 101 is connected with ultrashort wave (USW) detector 102, ultrashort wave (USW) detector 102 is connected with signal read circuit 103, signal read circuit 103 is connected with information-processing circuit 104, information-processing circuit 104 is connected with display circuit 105, operation panel circuit 106 is connected with anti-reflection film camera lens 101 and information-processing circuit 104 respectively, display circuit 105 is connected with external display interface 107.
The connected mode of this embodiment is: adopt digital-to-analog circuit internal bus mode to connect between each signal processing circuit and control circuit; These buses comprise digital signal line, analog signal line.
The image processing flow of this embodiment is: information-processing circuit 104 receives the ultrashort wave signals from signal read circuit 103, carry out background intensity adaptive polo placement by restructural microprocessor 1042 pairs of images of its inside and automatically adjust shutter parameter processing, the signal handled well is sent to display circuit 105 and is outputted to eyepiece or extraneous display by information-processing circuit 104; Information-processing circuit 104 receives the control command from operation panel circuit 106, and according to the control command of operation panel circuit 106, send display translation mode control command to display circuit 105, determine that image exports as the inner way of output or the outside way of output, inside outputs to eyepiece, and outside outputs to external display interface 107 and accesses display; Operation panel circuit 106, sends the action of Zoom control command driven anti-reflection film camera lens 101 focal length.
The control mode of this embodiment is: the control circuit 1061 in operation panel circuit 106 detects the control command receiving and send from Zoom control button 1062, focus control button 1063, display translation control knob 1064, after control circuit 1061 is resolved, be sent to zoom drive interface 1065, focus on driving interface 1066, display translation control interface 1067; Zoom control order and focus control command drive interface 1066 to be sent to anti-reflection film camera lens 101 through zoom drive interface 1065 and focusing, make anti-reflection film camera lens can carry out the action of zoom and focusing; Ultrashort wave (USW) picture signal, to image input interface 1041, processes through restructural microprocessor 1042, outputs to image output interface 1043, exports via electronic relay 1044, and the image of output is ultrashort wave (USW) image; Display translation control command is sent to panel control command interface 1046 by interface circuit 1047, exports order to control interface 1045, reach panel control command interface 1053 via control interface 1045 after microprocessor 1042 analysis and distinguishing.
Anti-reflection film camera lens 101 in this embodiment, its effect increases ultrashort wave (USW) transmitance, and according to the display translation mode control command from guidance panel 106, can carry out the zoom of lens focus, focusing, the adjustment of aperture.
Ultrashort wave (USW) detector 102 in this embodiment, its effect is that light signal is converted to electric signal.
Signal read circuit 103 in this embodiment, its effect has been analog to digital conversion, and simulating signal is converted to digital signal.
With reference to Fig. 2, the signal read circuit 103 in this embodiment, it comprises analog interface 1031, sensing circuit 1032, digital interface 1033; Its analog interface 1031 is connected with sensing circuit 103, and sensing circuit 1032 is connected with digital interface 1033.
Described signal read circuit 103, its working method is that analog interface 1031 receives the simulating signal from ultrashort wave (USW) detector 102 and reaches sensing circuit 1032, sensing circuit 1032 sends to digital interface 1033 after simulating signal is converted to digital signal, sends to image input interface 1041 via digital interface 1033.
With reference to Fig. 3, information-processing circuit 104 described in this embodiment, it is the telescopical Key Circuit of ultrashort wave (USW), it comprises image input interface 1041, restructural microprocessor 1042, image output interface 1043, electronic relay 1044, control interface 1045, panel control command interface 1046, interface circuit 1047, image input interface 1041 is connected with restructural microprocessor 1042, restructural microprocessor 1042 respectively with image output interface 1043, control interface 1045 connects, image output interface 1043 is connected with electronic relay 1044, interface circuit 1047 is connected with panel control command interface 1046, panel control command interface 1046 is connected with restructural microprocessor 1042.
Described information-processing circuit 104, its control mode receives order from operation panel circuit 106 by interface circuit 1047, be sent to panel control command interface 1046, be reported to restructural microprocessor 1042, restructural microprocessor 1042 sends corresponding control command to electronic relay 1044 or control interface 1045 after differentiating command property, control command sends via electronic relay 1044 or is sent to panel control command interface 1053 via control interface 1045; Image inputs through image input interface 1041, processes through microprocessor 1042, exports via electronic relay 1044.
With reference to Fig. 4, described display circuit 105, comprises video-stream processor 1051, image input interface 1052, panel control command interface 1053, image exports inner joint 1054, image exports external tapping 1055; Image input interface 1052, panel control command interface 1053 are all connected with video-stream processor 1051, and video-stream processor 1051 exports inner joint 1054 with image respectively, image exports external tapping 1055 and is connected.
Described its control mode of display circuit 105 is: monitor the order from control interface 1045 by panel control command interface 1053, through video-stream processor 1051, the control command received is resolved, the classification of analysis and Control order, determine that image is after video-stream processor 1051, be sent to image and export inner joint 1054 or image output external tapping 1055; Image arrives video-stream processor 1051 through image input interface 1052, outputs image to eyepiece according to the requirement of order or outputs to external connection monitors.
In described display circuit 105, panel control command interface 1053 accepts there are two classes from the order of control interface 1045, and a class controls image to output to internal interface, observed by eyepiece, one class controls image to output to external interface, observed by external connection monitors.
With reference to Fig. 5, operation panel circuit 106 in this embodiment, comprises control circuit 1061, Zoom control button 1062, focus control button 1063, display translation control knob 1064, zoom drive interface 1065, focuses on driving interface 1066, display translation control interface 1067; Control circuit 1061 respectively with zoom drive interface 1065, focus on drive interface 1066, display translation control interface 1067 is connected, Zoom control button 1062, focus control button 1063, display translation control knob 1064 are all connected with control circuit 1061.
Described control circuit 1061, its control mode is: receive the order from Zoom control button 1062 or focus control button 1063 or display translation control knob 1064, judge that the type of order is dealt into zoom drive interface 1065 respectively or focuses on through panel control interface 1061 and drive interface 1066 or display translation control interface 1067, drive interface that order is sent to corresponding treatment circuit accordingly by it.
Described Zoom control button 1062 and focus control button 1063 are touch film key switches, are provided with two adjustment buttons, realize carrying out zoom or focusing operation to the focal length of camera lens by button.
Described display translation control knob 1064 is touch film key switches, is provided with two adjustment buttons, realizes telescopical image output state by button, namely output image to inner eyepiece or output to external display.
Described zoom drive interface 1065, focusing drive interface 1066, display translation control interface 1067 is driving circuit, and its effect is that the order from control circuit 1061 is dealt into each treatment circuit.
Described zoom drive interface 1065 is connected with anti-reflection film camera lens 101, focuses on and drives interface 1066 to be connected with anti-reflection film camera lens 101, complete and control the adjustment of lens focus.
Described display translation control interface 1067 is connected with panel control command interface 1053, realizes the control to the image way of output.
The above is only in order to illustrate the technical solution of the utility model and unrestricted, other amendment that those of ordinary skill in the art make the technical solution of the utility model or equivalently to replace, only otherwise depart from the spirit and scope of technical solutions of the utility model, all should be encompassed in the middle of right of the present utility model.

Claims (10)

1. ultrashort wave (USW) telescope, it is characterized in that it comprises anti-reflection film camera lens, ultrashort wave (USW) detector, signal read circuit, information-processing circuit, display circuit, operation panel circuit, external display interface, anti-reflection film camera lens is connected with ultrashort wave (USW) detector, ultrashort wave (USW) detector is connected with signal read circuit, signal read circuit is connected with information-processing circuit, information-processing circuit is connected with display circuit, operation panel circuit is connected with anti-reflection film camera lens and information-processing circuit respectively, and display circuit is connected with external display interface.
2. ultrashort wave (USW) telescope according to claim 1, it is characterized in that described signal read circuit comprises analog interface, sensing circuit, digital interface, analog interface is connected with sensing circuit, and sensing circuit is connected with digital interface.
3. ultrashort wave (USW) telescope according to claim 1, it is characterized in that described information-processing circuit, it comprises image input interface, restructural microprocessor, image output interface, electronic relay, control interface, panel control command interface, interface circuit, image input interface is connected with restructural microprocessor, restructural microprocessor is connected with image output interface, control interface respectively, image output interface is connected with electronic relay, interface circuit is connected with panel control command interface, and panel control command interface is connected with restructural microprocessor.
4. ultrashort wave (USW) telescope according to claim 1, is characterized in that described display circuit, comprises video-stream processor, image input interface, panel control command interface, image exports inner joint, image exports external tapping; Image input interface, panel control command interface are all connected with video-stream processor, and video-stream processor exports inner joint with image respectively, image exports external tapping and is connected.
5. ultrashort wave (USW) telescope according to claim 1, it is characterized in that described operation panel circuit, comprise control circuit, Zoom control button, focus control button, display translation control knob, zoom drive interface, focus on driving interface, display translation control interface; Control circuit respectively with zoom drive interface, focus on drive interface, display translation control interface is connected, Zoom control button, focus control button, display translation control knob are all connected with control circuit.
6. ultrashort wave (USW) telescope according to claim 5, is characterized in that described Zoom control button and focus control button, is touch film key switch, is provided with two adjustment buttons.
7. ultrashort wave (USW) telescope according to claim 5, is characterized in that described display translation control knob, is touch film key switch, is provided with two adjustment buttons.
8. ultrashort wave (USW) telescope according to claim 5, is characterized in that described zoom drive interface, focusing drives interface, display translation control interface is driving circuit.
9. ultrashort wave (USW) telescope according to claim 5, is characterized in that described zoom drive interface is connected with anti-reflection film camera lens, focuses on and drives interface to be connected with anti-reflection film camera lens.
10. ultrashort wave (USW) telescope according to claim 5, is characterized in that described display translation control interface is connected with panel control command interface.
CN201420847180.2U 2014-12-29 2014-12-29 Ultrashort wave telescope Expired - Fee Related CN204807803U (en)

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CN201420847180.2U CN204807803U (en) 2014-12-29 2014-12-29 Ultrashort wave telescope

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Application Number Priority Date Filing Date Title
CN201420847180.2U CN204807803U (en) 2014-12-29 2014-12-29 Ultrashort wave telescope

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104483746A (en) * 2014-12-29 2015-04-01 上海蓝剑科技发展有限公司 Ultrashort wave telescope

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104483746A (en) * 2014-12-29 2015-04-01 上海蓝剑科技发展有限公司 Ultrashort wave telescope

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20151125

Termination date: 20161229