CN105092919A - Gear switching method of touch control type measurement instrument - Google Patents

Gear switching method of touch control type measurement instrument Download PDF

Info

Publication number
CN105092919A
CN105092919A CN201410184482.0A CN201410184482A CN105092919A CN 105092919 A CN105092919 A CN 105092919A CN 201410184482 A CN201410184482 A CN 201410184482A CN 105092919 A CN105092919 A CN 105092919A
Authority
CN
China
Prior art keywords
viewing area
gear
waveform viewing
gear switch
surveying instrument
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
CN201410184482.0A
Other languages
Chinese (zh)
Other versions
CN105092919B (en
Inventor
黄元隆
颜得恩
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.)
Good Will Instrument Co Ltd
Original Assignee
Good Will Instrument 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
Application filed by Good Will Instrument Co Ltd filed Critical Good Will Instrument Co Ltd
Priority to CN201410184482.0A priority Critical patent/CN105092919B/en
Publication of CN105092919A publication Critical patent/CN105092919A/en
Application granted granted Critical
Publication of CN105092919B publication Critical patent/CN105092919B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The present invention relates to a gear switching method of a touch control type measurement instrument. The gear switching method of the touch control type measurement instrument comprises the steps of providing a touch control type screen and enabling the touch control type screen to have a waveform display area; determining whether a first direction gesture or a second direction gesture appears in the waveform display area, when the first direction gesture appears, continuously determining whether the clicking objects appear at the relative two ends of a first direction of the waveform display area, if yes, executing the progressive increase or progressive decrease switching of a first measurement gear; if the second direction gesture appears, determining whether the clicking objects appear at the relative two ends of a second direction of the waveform display area, if yes, executing the progressive increase or progressive decrease switching of a second measurement gear. By utilizing the above method, the single finger piecewise gear switching can be realized on the touch control type measurement instrument.

Description

The gear switch method of touch surveying instrument
Technical field
The present invention is a kind of gear switch method of touch surveying instrument, refers to a kind of method realizing singly referring to handover measurement gear piecemeal especially.
Background technology
The such as surveying instrument such as oscillograph, spectrum analyzer is the displaying contents using waveform as measuring-signal, for oscillograph, the waveform of its display, Z-axis is the amplitude of signal, transverse axis is the time of signal, it uses in order to clearer numerical value or the signal of obtaining is beyond the scope of the horizontal or vertical passage of oscillograph, often has the demand of handover measurement gear, such as 1X, 10X, 100X and 1000X etc.The most traditional gear switch mode utilizes gear knob to do to switch.And after touch control screen is also used in above-mentioned surveying instrument, also support utilizing touch control manner to adjust gear, mainly contain two kinds of modes:
With two, the first refers to that folding gestures carry out waveform gear switch, the advantage of this kind of mode is direct viewing type operation, but is difficult to accurate perception, so there is the problem cannot carrying out piecemeal switching due to the folding degree of gesture.
Another kind of mode is then that the virtual key clicked on touch control screen switches, and please refer to shown in Fig. 9, is a kind of oscillographic touch control screen, this touch control screen 70 has a waveform viewing area 71 in a big way, with the waveform of display measurement signal.The below of this waveform viewing area 71 is provided with multiple virtual key 72,73, when touching by producing a transverse axis gear switch form 720 (please refer to shown in Figure 10) during this virtual key 72 on touch control screen 71, there is in this transverse axis gear switch form 720 a transversely movable push button 721, push away left or push away to the right, to adjust the measurement gear of transverse axis (time) piecemeal after being available for users to touch; Then can produce a Z-axis gear switch form 730 (please refer to shown in Figure 11) touching after by this virtual key 73 on touch control screen 71, in this Z-axis gear switch form 730, there is more than one push button that can longitudinally promote 731, when user touches and upwards pushes away or push away this push button 731 downwards, the measurement gear of adjustable Z-axis (amplitude).
Although the mode of above-mentioned virtual key can in order to handover measurement gear, but still there is unhandy problem: in order to ensure waveform viewing area 71, there is the good visual field so that observation, virtual key 72,73 meeting minification as much as possible below it, because size is little, originally namely be not easy to touch, and after touch virtual key 72,73, still must in the relatively little transverse axis gear switch form 720 of touch-control scope or Z-axis gear switch form 730 operation push button 721,731, still inconvenience to some extent in its operation.
From the above, although the surveying instrument such as oscillograph, spectrum analyzer has used touch control screen, the gear switch function often used when just measuring, does not still provide friendly user interface, therefore need to be further reviewed, and seek feasible solution.
Summary of the invention
Therefore fundamental purpose of the present invention is providing a kind of gear switch method of touch surveying instrument, it not only can provide the touch-control scope of larger area, simultaneously can realize singly referring to switch gear piecemeal, face unhandy problem effectively to solve institute when existing touch surveying instrument switches gear.
For reaching aforementioned object, the technical way that the present invention takes is to provide a kind of gear switch method of touch surveying instrument, comprising:
One touch control screen is provided, and makes this touch control screen to have a waveform viewing area;
Judge in this waveform viewing area, whether to occur a first direction gesture or a second direction gesture;
When there is first direction gesture in this waveform viewing area, then judging whether this waveform viewing area occurs clicking object at the opposite end of first direction, if having, namely performing the increasing or decreasing that one first measures gear;
When there is second direction gesture in this waveform viewing area, then judging whether this waveform viewing area occurs clicking object at the opposite end of second direction, if having, then performing the increasing or decreasing that one second measures gear;
Preceding method is using the waveform viewing area on touch control screen as the operating area switching gear, therefore there is larger touch-control scope, and its concrete grammar switching gear judges whether the waveform viewing area of touch control screen occurs first direction gesture or second direction gesture, when judging that first direction gesture appears in this waveform viewing area, namely enter one first and measure gear switch pattern, when waveform viewing area detects click object in one end of first direction, namely the first measurement gear is increased progressively, if click object detected at the other end of first direction, namely successively decrease the first measurement gear, in like manner, if when judging that second direction gesture appears in this waveform viewing area, namely enter one second and measure gear switch pattern, when waveform viewing area detects click object in one end of second direction, namely the second measurement gear is increased progressively, if click object detected at the other end of second direction, namely successively decrease the second measurement gear.
The beneficial effect of said method is:
1. user is by acquisition one operational zone in a big way to carry out gear switch, significantly can promote the convenience of gear switch.
2. user need only use a certain gestures to enter and measure gear switch pattern, hits subsequently and gets final product handover measurement gear piecemeal, can promote the convenience of gear switch further with single indication.
Accompanying drawing explanation
Fig. 1 is the method flow diagram of a preferred embodiment of the present invention;
Fig. 2 to Fig. 8 is the operation steps schematic diagram of a preferred embodiment of the present invention;
Fig. 9 is the touch control screen schematic diagram of existing surveying instrument;
Figure 10 to Figure 11 is that existing surveying instrument utilizes set virtual key on touch control screen to switch the schematic diagram of gear.
Embodiment
Below coordinating preferred embodiment graphic and of the present invention, setting forth the technological means that the present invention takes for reaching predetermined goal of the invention further.
About a preferred embodiment of the present invention, shown in the process flow diagram that please refer to Fig. 1, it comprises:
One touch control screen is provided, makes this touch control screen to have a waveform viewing area (step 101);
Judge whether occur a first direction gesture (step 102) in this waveform viewing area; If there is not a first direction gesture, namely then judge whether occur a second direction gesture (step 103) in this waveform viewing area;
When judging to occur first direction gesture in this waveform viewing area, then judge whether this waveform viewing area occurs clicking object (step 104) at the opposite end of first direction, if have, namely perform the switching (step 105) that one first measures gear;
Second direction gesture is there is in this waveform viewing area if judge in abovementioned steps 103, namely then judge whether this waveform viewing area occurs clicking object (step 106) at the opposite end of second direction, if have, then perform the switching (step 107) that one second measures gear.
In abovementioned steps 101 provide a possible embodiments of touch control screen to be as shown in Figure 2, this touch control screen has a waveform viewing area 10, except waveform viewing area 10, and more than one virtual key 11,12 can be had further, this virtual key 11,12 can be used to trigger generation one transverse axis gear switch form, a Z-axis gear switch form respectively, handover measurement gear is in a conventional manner selected for user, its mode one as described in the background art, does not repeat them here.
And namely the present invention mainly utilizes the waveform viewing area 10 of larger area on touch control screen as the operational zone measuring gear switch, because waveform viewing area 10 scope is large, thus comparatively convenient in operation.
Switching about measurement gear is then by judging whether this waveform viewing area 10 occurs certain gestures and click object performing.Concrete technology is as described in abovementioned steps 102 to 107, is below described in further detail its details:
Abovementioned steps 102 judges whether occur first direction gesture in this waveform viewing area 10, in the present embodiment, alleged first direction gesture is as shown in Figure 3, refer to two fingers contact waveform viewing area 10 simultaneously, and the straight line formed between two fingers is within angle parallel with the transverse axis of waveform viewing area 10 or therebetween is less than certain angle, such as 45 degree.After judging aforesaid first direction gesture, enter one first immediately and measure gear switch pattern, carry out the switching of the first measurement gear for user, in the present embodiment for oscillographic gear switch, refer to the gear adjustment of signal time.
As shown in Figure 4, after entering the first described measurement gear switch pattern, identify for convenience of user, so produce one first identification label 13 in described waveform viewing area 10, in the present embodiment, this first identification label 13 is that its length direction is parallel with the transverse axis of described waveform viewing area 10, and is positioned at the top of described waveform viewing area 10 in horizontal stripe shape.
And after entering the first measurement gear switch pattern, judge whether this waveform viewing area 10 occurs clicking object at the opposite end of first direction at step 104, and then determine the switching (step 105) whether making the first measurement gear, in particular, described waveform viewing area 10 will be separated Cheng Liang district along first direction, the present embodiment be with the median vertical line of described waveform viewing area 10 for boundary is divided into left district 10L, right district 10R, then judge whether left district 10L or the right district 10R of waveform viewing area 10 occur clicking object, in the present embodiment, described click object refers to the click action singly referred to.When the right district 10R of described waveform viewing area 10 detects click object, namely increase progressively the first measurement gear, also just improve the time gear of measuring-signal, one click object often detected, namely improve a time gear, therefore user singly refer to that click action can handover measurement gear piecemeal.Grasp its range state switched for convenience of user, simultaneous display first is measured by described first identification label 13 the switching scale 130 of gear.Otherwise, if click object detected at the left district 10L of waveform viewing area 10, namely successively decrease the first measurement gear (as shown in Figure 5), also the time gear of measuring-signal is just reduced, one click object often detected, namely reduce a time gear, and the switching scale 130 on the first identification label 13 also can successively decrease thereupon.
If first direction gesture do not detected in abovementioned steps 102, namely then judge whether to occur second direction gesture (step 103), if second direction gesture detected, then enter one second and measure gear switch pattern, in the present embodiment, alleged second direction gesture is as shown in Figure 6, refer to two fingers contact waveform viewing area 10 simultaneously, and the straight line formed between two fingers is within being less than certain angle with the vertical axis of waveform viewing area 10 or angle therebetween, such as 45 degree.After judging aforesaid second direction gesture, enter one second immediately and measure gear switch pattern, carry out the switching of the second measurement gear for user, in the present embodiment for oscillographic gear switch, refer to the gear adjustment of signal amplitude.
As shown in Figure 7, after entering the second described measurement gear switch pattern, identify for convenience of user, also in described waveform viewing area 10, one second identification label 14 is produced, in the present embodiment, this second identification label 14 is in vertical strip, the vertical axis of its length direction and described waveform viewing area 10, and the side being positioned at described waveform viewing area 10.
And judge whether this waveform viewing area 10 occurs clicking object at the opposite end of second direction in step 106, and then determine the switching (step 107) whether making the second measurement gear, to measure gear switch pattern identical with first: described waveform viewing area 10 will be separated Cheng Liang district along second direction, unlike: be divided into inferior segment 10D, upper district 10U with the horizontal central line of described waveform viewing area 10 for boundary, then judge whether the inferior segment 10D of waveform viewing area 10 or upper district 10U occurs clicking object.When the upper district 10U of described waveform viewing area 10 detects click object, namely the second measurement gear is increased progressively, also the amplitude gear of measuring-signal is just improved, one click object often detected, namely improve an amplitude gear, simultaneous display second is measured by described second identification label 14 the switching scale 140 of gear.Otherwise, if click object detected at the inferior segment 10D of waveform viewing area 10, namely successively decrease the second measurement gear (as shown in Figure 8), also the amplitude gear of measuring-signal is just reduced, one click object often detected, namely reduce an amplitude gear, and the switching scale 140 on the second identification label 14 also can successively decrease thereupon.
The above is only preferred embodiment of the present invention, not any pro forma restriction is done to the present invention, although the present invention discloses as above with preferred embodiment, but and be not used to limit the present invention, any those skilled in the art, not departing from the scope of technical solution of the present invention, make a little change when the technology contents of above-mentioned announcement can be utilized or be modified to the Equivalent embodiments of equivalent variations, in every case be the content not departing from technical solution of the present invention, according to any simple modification that technical spirit of the present invention is done above embodiment, equivalent variations and modification, all still belong in the scope of technical solution of the present invention.

Claims (10)

1. a gear switch method for touch surveying instrument, is characterized in that, described method comprises:
One touch control screen is provided, and makes this touch control screen to have a waveform viewing area;
Judge in this waveform viewing area, whether to occur a first direction gesture or a second direction gesture;
When there is described first direction gesture in this waveform viewing area, then judging whether this waveform viewing area occurs clicking object at the opposite end of a first direction, if having, then performing the increasing or decreasing that one first measures gear;
When there is described second direction gesture in this waveform viewing area, then judging whether this waveform viewing area occurs clicking object at the opposite end of a second direction, if having, then performing the increasing or decreasing that one second measures gear.
2. the gear switch method of touch surveying instrument according to claim 1, it is characterized in that, when described first direction gesture appears in described waveform viewing area, namely enter one first and measure gear switch pattern, and produce one first identification label in described waveform viewing area; When described second direction gesture appears in described waveform viewing area, namely enter one second and measure gear switch pattern, and produce one second identification label in described waveform viewing area.
3. the gear switch method of touch surveying instrument according to claim 2, it is characterized in that, described first identification label is horizontal stripe shape, and its length direction is parallel with a transverse axis of described waveform viewing area; Described second identification label is vertical bar shape, a vertical axis of its length direction and described waveform viewing area.
4. the gear switch method of touch surveying instrument according to claim 3, is characterized in that, described first identification label has the switching scale that described first measures gear; Described second identification label has the switching scale that described second measures gear.
5. the gear switch method of touch surveying instrument according to claim 2, it is characterized in that, after entering described first measurement gear switch pattern, described waveform viewing area is for boundary is divided into Yi Zuoqu, Yi Youqu with its median vertical line, when the right district of described waveform viewing area detects click object, namely increase progressively described first and measure gear, when the left district of described waveform viewing area detects click object, namely successively decrease described first measurement gear.
6. the gear switch method of touch surveying instrument according to claim 2, it is characterized in that, after entering described second measurement gear switch pattern, described waveform viewing area is for boundary is divided into a Shang Qu, an inferior segment with its horizontal central line, when the upper district of described waveform viewing area detects click object, namely increase progressively described second and measure gear, the inferior segment when described waveform viewing area detects click object, and namely successively decrease described second measurement gear.
7. the gear switch method of touch surveying instrument according to claim 1, it is characterized in that, described method also comprises: make that described touch control screen has plural virtual key, is respectively used to trigger generation one transverse axis gear switch form, a Z-axis gear switch form.
8. the gear switch method of touch surveying instrument according to any one of claim 1 to 7, it is characterized in that, described first direction gesture refers to and contacts described waveform viewing area with two fingers simultaneously, and the angle of the straight line formed between two fingers and described waveform viewing area transverse axis is less than 45 degree;
Described second direction gesture refers to and contacts described waveform viewing area with two fingers simultaneously, and the angle of the straight line formed between two fingers and described waveform viewing area Z-axis is less than 45 degree.
9. the gear switch method of touch surveying instrument according to claim 8, is characterized in that, described first to measure gear be time gear, and described second to measure gear be amplitude gear.
10. the gear switch method of touch surveying instrument according to claim 8, it is characterized in that, described surveying instrument is oscillograph.
CN201410184482.0A 2014-05-04 2014-05-04 The gear switch method of touch measuring instrument Active CN105092919B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410184482.0A CN105092919B (en) 2014-05-04 2014-05-04 The gear switch method of touch measuring instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410184482.0A CN105092919B (en) 2014-05-04 2014-05-04 The gear switch method of touch measuring instrument

Publications (2)

Publication Number Publication Date
CN105092919A true CN105092919A (en) 2015-11-25
CN105092919B CN105092919B (en) 2017-11-10

Family

ID=54573820

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410184482.0A Active CN105092919B (en) 2014-05-04 2014-05-04 The gear switch method of touch measuring instrument

Country Status (1)

Country Link
CN (1) CN105092919B (en)

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0283995A2 (en) * 1987-03-24 1988-09-28 Tektronix Inc. Touch controlled zoom of waveform displays
CN101413968A (en) * 2008-09-30 2009-04-22 中国电子科技集团公司第四十一研究所 Digital oscilloscope and method for controlling display waveform
CN101458269A (en) * 2007-12-14 2009-06-17 李刚 Digital oscillography signal display device
CN101464749A (en) * 2008-10-03 2009-06-24 友达光电股份有限公司 Method for processing touch control type input signal, its processing apparatus and computer system
CN101477438A (en) * 2009-01-24 2009-07-08 无锡迈思奇科技有限公司 Coordinate axis transform method
US20100194677A1 (en) * 2009-02-03 2010-08-05 Microsoft Corporation Mapping of physical controls for surface computing
US20110095993A1 (en) * 2009-10-26 2011-04-28 Adobe Systems Incorporated Zoom adjustment process
EP2355526A2 (en) * 2010-01-14 2011-08-10 Nintendo Co., Ltd. Computer-readable storage medium having stored therein display control program, display control apparatus, display control system, and display control method
US20120182220A1 (en) * 2011-01-19 2012-07-19 Samsung Electronics Co., Ltd. Mobile terminal including an improved keypad for character entry and a usage method thereof
CN102707114A (en) * 2012-06-13 2012-10-03 郑州麦科信电子技术有限公司 Waveform control method of digital oscilloscope
CN103412674A (en) * 2013-07-25 2013-11-27 深圳麦科信仪器有限公司 Touch screen based instrument parameter adjusting method and system
CN103425398A (en) * 2012-05-16 2013-12-04 瑞萨电子(中国)有限公司 Operating method and operating device for translating and scaling logic waveforms
CN103592486A (en) * 2012-08-17 2014-02-19 固纬电子实业股份有限公司 Touch control type oscilloscope and waveform display touch control operation method thereof

Patent Citations (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0283995A2 (en) * 1987-03-24 1988-09-28 Tektronix Inc. Touch controlled zoom of waveform displays
CN101458269A (en) * 2007-12-14 2009-06-17 李刚 Digital oscillography signal display device
CN101413968A (en) * 2008-09-30 2009-04-22 中国电子科技集团公司第四十一研究所 Digital oscilloscope and method for controlling display waveform
CN101464749A (en) * 2008-10-03 2009-06-24 友达光电股份有限公司 Method for processing touch control type input signal, its processing apparatus and computer system
CN101477438A (en) * 2009-01-24 2009-07-08 无锡迈思奇科技有限公司 Coordinate axis transform method
US20100194677A1 (en) * 2009-02-03 2010-08-05 Microsoft Corporation Mapping of physical controls for surface computing
US20110095993A1 (en) * 2009-10-26 2011-04-28 Adobe Systems Incorporated Zoom adjustment process
CN102053782A (en) * 2009-10-26 2011-05-11 奥多比公司 Zoom adjustment process
EP2355526A2 (en) * 2010-01-14 2011-08-10 Nintendo Co., Ltd. Computer-readable storage medium having stored therein display control program, display control apparatus, display control system, and display control method
US20120182220A1 (en) * 2011-01-19 2012-07-19 Samsung Electronics Co., Ltd. Mobile terminal including an improved keypad for character entry and a usage method thereof
CN103425398A (en) * 2012-05-16 2013-12-04 瑞萨电子(中国)有限公司 Operating method and operating device for translating and scaling logic waveforms
CN102707114A (en) * 2012-06-13 2012-10-03 郑州麦科信电子技术有限公司 Waveform control method of digital oscilloscope
CN103592486A (en) * 2012-08-17 2014-02-19 固纬电子实业股份有限公司 Touch control type oscilloscope and waveform display touch control operation method thereof
CN103412674A (en) * 2013-07-25 2013-11-27 深圳麦科信仪器有限公司 Touch screen based instrument parameter adjusting method and system

Also Published As

Publication number Publication date
CN105092919B (en) 2017-11-10

Similar Documents

Publication Publication Date Title
CN101413968B (en) Digital oscilloscope and method for controlling display waveform
US20100264938A1 (en) Method and Device for Position Detection
US9146648B2 (en) Touch sensing method for touch panel
CN103324325B (en) The detection method of multi-point touch misoperation and terminal
EP2500806A1 (en) Position detection device and method thereof
CN105183594A (en) Touch screen test method and test apparatus
CN109901780B (en) Drawing input method and device based on multi-touch
CN104182144A (en) Mobile terminal interface browsing method and system
US9086769B2 (en) High resolution non-ghosted gestures
CN102662511A (en) Method and terminal for carrying out control operation through touch screen
CN104102400B (en) Coordinate position detecting device and display input device
CN103487692B (en) A kind of quality determining method of touch screen
CN105653182B (en) The method for detecting position of touch-panel device and touch-panel device
CN102231091A (en) Method and equipment for realizing multi-point recognition based on single-point touch screen
TWI470496B (en) Method of sampling touch points for touch panel
CN103257724B (en) A kind of non-contact type mouse and method of operating thereof
CN105092919A (en) Gear switching method of touch control type measurement instrument
US9582185B2 (en) Method for scale adjustment of touch-based measurement equipment
CN201247453Y (en) Touch control pen
CN106483410A (en) A kind of touch screen response time test device, system and method
US9213459B2 (en) Electronic apparatus provided with resistive film type touch panel
CN201853216U (en) True coordinate detection device of multiple touch points
CN201917885U (en) Touch screen coordinate calibration device
CN206281910U (en) A kind of touch-screen response time test device and system
CN105278780B (en) Capacitive finger navigation device and its operating method with mixed mode

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant