This Symbian C++ code example demonstrates how to easily use the onboard camera with zoom and autofocus, utilising an accompanying CameraWrapper made by Forum Nokia. The Camera Wrapper supports all Nokia s S60 devices based on S60 3rd Edition and newer, providing a unified interface for various Symbian and S60 camera APIs some of which have previously been Feature Pack specific or only available via an SDK plug-in. The example application supports the use of both the keypad and touch UI. The application can be self-signed, but it also provides an option to use the dedicated camera key (Symbian signing required). The example application replaces the separate examples published for S60 3rd Edition, FP1 (S60 Platform: Camera Example with AutoFocus Support v2.2) and FP2 (S60 Camera Example AutoFocus 3rd Ed FP2).
標(biāo)簽: demonstrates Symbian example onboard
上傳時(shí)間: 2013-12-11
上傳用戶:hopy
Handheld designers often grapple with ways to de-bounceand control the on/off pushbutton of portable devices.Traditional de-bounce designs use discrete logic, fl ipflops, resistors and capacitors. Other designs includean onboard microprocessor and discrete comparatorswhich continuously consume battery power. For highvoltage multicell battery applications, a high voltageLDO is needed to drive the low voltage devices. All thisextra circuitry not only increases required board spaceand design complexity, but also drains the battery whenthe handheld device is turned off. Linear Technology addressesthis pushbutton interface challenge with a pairof tiny pushbutton controllers.
標(biāo)簽: 按鍵開關(guān) 控制器 系統(tǒng)設(shè)計(jì)
上傳時(shí)間: 2013-11-18
上傳用戶:ZJX5201314
The DSKs or eZdspTM LF2407 and the DMC1500 make up a table top motor development system which allows engineers and software developers to evaluate certain characteristics of the TMS320F240, TMS320F243, and TMS320LF2407 DSPs to determine if the processor meets the designers application requirements. Evaluators can create software to execute onboard or expand the system in a variety of ways.
標(biāo)簽: development eZdspTM system allow
上傳時(shí)間: 2013-12-24
上傳用戶:zhuoying119
This approach addresses two difficulties simultaneously: 1) the range limitation of mobile robot sensors and 2) the difficulty of detecting buildings in monocular aerial images. With the suggested method building outlines can be detected faster than the mobile robot can explore the area by itself, giving the robot an ability to “see” around corners. At the same time, the approach can compensate for the absence of elevation data in segmentation of aerial images. Our experiments demonstrate that ground-level semantic information (wall estimates) allows to focus the segmentation of the aerial image to find buildings and produce a ground-level semantic map that covers a larger area than can be built using the onboard sensors.
標(biāo)簽: simultaneously difficulties limitation addresses
上傳時(shí)間: 2014-06-11
上傳用戶:waitingfy
This approach, we feel, came very close to obtaining an image from the camera OV7620. Before we tried to capture a camera signal, we successfully transferred a test image from the FPGA s onboard RAM modules through RS232 to the PC program. This file do it.
標(biāo)簽: obtaining approach Before camera
上傳時(shí)間: 2017-09-11
上傳用戶:youmo81
1.軟件安裝步驟 a)運(yùn)行光盤中客戶軟件\CCS5000 CCS2.20\CCS2.2\SETUP.EXE,進(jìn)入引導(dǎo)界面; b)選擇Install下的Code Composer Studio進(jìn)入安裝界面; c)按照默認(rèn)的方式安裝,裝在C:\ti下。 d)安裝軟件補(bǔ)丁:運(yùn)行光盤客戶軟件\c5000ccs2.20\CCS FOR C5000-補(bǔ)丁\C5000-2.20.00-FULL-to-C5000-2.20.18-FULL.EXE,進(jìn)入安裝界面,然后按照默認(rèn)的方式安裝即可。 e)重新啟動(dòng)計(jì)算機(jī),按DEL鍵進(jìn)入CMOS的設(shè)置界面CMOS SETUP UTILITY,將Integrated Peripherals中的onboard Paralell Port改為378/IRQ,Parrallel Port Mode改為EPP,保存退出。 f)進(jìn)入windows后會(huì)出現(xiàn)“CCS 2(‘ C5000) ”、 “Setup CCS 2(‘ C5000) ”兩個(gè)圖標(biāo)。
標(biāo)簽: 激活
上傳時(shí)間: 2017-01-03
上傳用戶:jmw8637
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