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Climex and Dymex Suite | 物種分布潛在區(qū)域預(yù)測(cè)軟件培訓(xùn) |
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上課地點(diǎn):【上海】:同濟(jì)大學(xué)(滬西)/新城金郡商務(wù)樓(11號(hào)線白銀路站) 【深圳分部】:電影大廈(地鐵一號(hào)線大劇院站)/深圳大學(xué)成教院 【北京分部】:北京中山/福鑫大樓 【南京分部】:金港大廈(和燕路) 【武漢分部】:佳源大廈(高新二路) 【成都分部】:領(lǐng)館區(qū)1號(hào)(中和大道) 【廣州分部】:廣糧大廈 【西安分部】:協(xié)同大廈 【沈陽(yáng)分部】:沈陽(yáng)理工大學(xué)/六宅臻品 【鄭州分部】:鄭州大學(xué)/錦華大廈 【石家莊分部】:河北科技大學(xué)/瑞景大廈
開(kāi)班時(shí)間(連續(xù)班/晚班/周末班):2025年4月7日........................(歡迎您垂詢,視教育質(zhì)量為生命!) |
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- 基于FLO-2D與沖量模型的泥石流危險(xiǎn)度分區(qū)方法及應(yīng)用
- ·基于FLO-2D潰決型泥石流模擬研究
- FLO-2D模式在1986年被概念化預(yù)測(cè)泥石流液壓系統(tǒng)。美國(guó)聯(lián)邦緊急事務(wù)管理局(FEMA)支持初的模型開(kāi)發(fā)并于1988年首次應(yīng)用于科羅拉多州的特柳賴德,在過(guò)去的30年中,F(xiàn)LO-2D已成為廣泛的使用的商用洪水模型。FLO-2D與其他水文和水力模型的區(qū)別在于它能夠以高分辨率和無(wú)限細(xì)節(jié)模擬城市洪水,包括雨水排放系統(tǒng)。使用小至10英尺(3米)的元素,F(xiàn)LO-2D在體積守恒,速度,數(shù)值穩(wěn)定性和細(xì)節(jié)方面是一個(gè)優(yōu)秀的模型。FLO-2D設(shè)置簡(jiǎn)單,編輯更簡(jiǎn)單(無(wú)網(wǎng)格再生)。
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- FLO-2D是一種模擬河流,沖積扇,城市和沿海洪水的洪水路徑模型。
- FLO-2D可以解決任何不同的洪水問(wèn)題,包括:
- 河岸邊洪水泛濫
- 流域降雨和徑流
- 城市洪水與街道流動(dòng),流動(dòng)阻礙和儲(chǔ)存損失
- 陸上還小/颶風(fēng)激增
- 風(fēng)暴排水模型
- 泥漿和泥石流
- 無(wú)約束的沖積扇流動(dòng)
- 地表水和地下水相互作用
- 大壩和大堤突破
- 尾礦壩失效和容積雨岑
- 洪水保險(xiǎn)研究
- FLO-2D是一個(gè)綜合的水文和水力模型,因此?分離降雨/徑流和洪水路線。
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- FLO-2D分為FLO-2D Basic和FLO-2D Pro兩個(gè)版本。其中FLO-2D Pro是市場(chǎng)上全面且實(shí)惠的2D洪水路由工具。將這些城市工具和細(xì)節(jié)與其他模型進(jìn)行比較,為:
- 全風(fēng)暴排水/地表水界面
- 渠道風(fēng)暴排水交換
- 人孔彈出
- 降雨/滲透與空間變化的NEXRAD數(shù)據(jù)
- 墻和建筑物流動(dòng)阻礙
- 建筑屋頂徑流,落水管控制,護(hù)墻
- 墻和堤壩破裂和坍塌
- 建筑倒塌
- 還有很多......
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- 洪水建模組件
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- Key Features
- Solution Algorithm
- The model uses the full dynamic wave momentum equation and a central finite difference routing scheme with eight potential flow directions to predict the progression of a floodwave over a system of square grid elements.
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- Creating a Grid System
- FLO-2D requires two sets of data: topography and hydrology. -Topography can be represented by a digital terrain model (DTM) points, contour mapping or survey data. The grid element elevations are assigned from an interpolation of the DTM points. A pre-processor program called the Grid Developer System (GDS) generates the grid system and assigns the elevations. A typical grid element size will range from 10 ft (3 m) to 500 ft (150 m). The number of square grid elements is unlimited.
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- Backgound Images
- Aerial images can be imported to the GDS as background to assist graphical editing. The GDS requires a world file to read images.
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- Volume Conservation, Routing Algorithm Stability and Timesteps
- The key to accurate flood routing is volume conservation. FLO-2D tracks and reports on volume conservation. Numerical stability is linked to volume conservation and when the model conserves volume the model runs faster. Computational timesteps are incremented or decremented according to numerical stability criteria for floodplain, channel and street flow.
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- Inflow Hydrographs or Rainfall
- Inflow hydrographs can be assigned to either the channel or floodplain nodes. The number of inflow nodes are unlimited. Any ASCII data format hydrograph can be used as input. FLO-2D can also perform as a rainfall runoff model and rain can occur on the flooded surfaces.
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- Replicate Historical Rainfall Events with NEXRAD data
- Model calibration can be performed with NEXRAD rainfall data. NEXRAD ASCII grid rainfall data can be interpolated to the grid elements using the GDS. A file RAINCELL.DAT is generated so that each grid element distinct rainfall data in the NEXRAD recorded intervals (typically 5 or 15 minutes). A historical rainfall event can then be simulated with spatially and temporally varied rainfall. Adjusted NEXRAD data to rain gages is necessary to compile rainfall data.
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- Infiltration and Evaporation Losses
- Spatially variable infiltration for the channel or floodplain can be computed with either Green-Ampt, SCS curve number or Horton methods. Combined Green-Ampt and SCS methods will enable curve number rainfall losses to be model with transmission losses. Surface water evaporation can computed for both floodplain and channel flow.
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- Channel Flow and Exchange of Channel and Floodplain Discharge
- One-dimensional channel flow is simulated with rectangular, trapezoidal or surveyed cross sections. Unconfined floodplain flow is simulated in eight directions (4 compass directions and 4 diagonal directions). Overbank flow or return flow to the channel is simulated for each timestep. For detailed simulations the channel can be larger than the grid element. Tributary inflow is unlimited. The GDS can convert HECRAS cross sections into a data file formatted for FLO-2D.
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- Street Flow
- Streets are simulated as shallow rectangular channels with a curb. Streets can intersect and exchange flow with the floodplain.
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- Hydraulic Structures
- Hydraulic structures can represent bridges, culverts, weirs or other hydraulic control features. Hydraulic structures are simulated by user specified discharge rating curves or tables assigned to either channel or floodplain elements. Reverse flow is possible. Culvert flow can occur between grid elements that are not contiguous. The generalized culvert equations will account for inlet and outlet control.
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- Storm Drain System
- There is a fully integrated surface water and storm drain system. The storm drain components can include an unlimited pipe system, inlet, outfalls and manhole covers. Inlet control is simulated with five storm drain inlet types. Manhole covers can be popped. Outflow through the inlets or junction boxes with manholes is based on the comparison between pipe pressure and surface water elevation. There are numerous types of outfalls which may include underwater outfalls and flapgates.
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- Levees and Levee and Dam Breach Failure
- Levees, road embankments and dams can be simulated by specifying crest elevations on a grid element boundary. There a several levee failure options including a comprehensive breach erosion model with a choice of nine sediment transport equations. Levee breaches can be initiated with fragility curves.
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- Buildings and Flow Obstructions
- Floodplain storage loss due to buildings or features can be modeled. A portion or the entire element can be removed from potential inundation. Grid element flow exchange can be partially or entirely obstructed in all of the eight flow directions.
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- Roof Runoff
- Rainfall runoff from roofs can be simulated with downspout inlet control and parapet wall storage. Variable depth tolerance values (TOL) can be assigned to accommodate other roof storage. The rainfall runoff from the roof will be added to the ground water surface around the building based on the roof slope. A positive roof head enables the flow to be added to the ground surface water while the flooding will still go around the building.
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- Low Impact Development
- Lot-size flood retention storage for site development can be simulated with a spatially variable tolerance depth (TOL) value. This may include bio-retention, green roofs, rain gardens, permeable pavement, drainage disconnection, swales, and on-site storage. TOL values are assigned to represent composite Low Impact Development (LID) techniques on a given grid element. Different grid elements may represent different LID techniques.
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- Distributary Channel Flow
- Overland flow can be simulated in small rills and gullies instead of sheet flow. The small distributary channels expand as more flow enters the gully. This distributary flow improves the time of concentration for floods progressing over alluvial fans.
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- Mud and Debris Flows
- Mudflow is simulated by the FLO-2D model using a quadratic rheological model that includes viscous stress, yield stress, turbulence and dispersive stress terms as a function of sediment concentration. Viscous mudflows may cease flowing and conversely, mudflows can be diluted by inflow.
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- Sediment Transport
- Sediment transport is computed for both channel and overland flow using one of eleven available equations. Sediment volume is conserved on a grid element basis. Scour and deposition are non-uniformly distributed on channel cross sections. Sediment routing by size fraction and armoring can be simulated.
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- Groundwater and surface water exchange
- The FLO-2D model is linked with the USGS groundwater MODFLOW model at runtime. Groundwater and surface exchange can occur in both directions.
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- Limiting Froude Numbers
- Limiting Froude numbers can be assigned to the channels, streets and floodplain grid elements. When the limiting Froude number is exceeded in a particular grid element, the model will increase the roughness value to suppress numerical surging. It is efficient for the model flood routing to calibrate n-values for reasonable Froude numbers.
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- Model Output, Results and Mapping
- Text output is written to ASCII files. The Post-processor MAPPER programs create shaded contours, line contours or grid element flow depth plots and hazard maps. Flood damages can be assessed and the FLO-2D output can be viewed as a flood animation. MAPPER will also automatically generate shape files that can be imported directly to ArcGIS. A DFRIM tool is available for FEMA FIS studies.
- Results can be written now to the TIMDEP output file using a HDF5 or NetCDF binary format. FLO-2D PRO writes the TIMDEP output file in different formats according to the value specified on the ITIMTEP variable:
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- 0: NO TIMDEP.OUT RESULTS
- 1: ONLY TIMDEP.OUT IS WRITTEN
- 2: TIMDEP.OUT and HDF5 ARE WRITTEN
- 3: TIMDEP.OUT and NETCDF4 FILES ARE WRITTEN
- 4: ALL OUTPUT FILES ARE WRITTEN
- ?
- For options 0, 1, 2, 3 or 4 the output timestep TIMTEP must be specified. The number of output variables printed in the TIMDEP files was also expanded.
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本課程部分實(shí)驗(yàn)室實(shí)景 |
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合作伙伴與授權(quán)機(jī)構(gòu) |
Altera全球合作培訓(xùn)機(jī)構(gòu)
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諾基亞Symbian公司授權(quán)培訓(xùn)中心 |
Atmel公司全球戰(zhàn)略合作伙伴
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微軟全球嵌入式培訓(xùn)合作伙伴 |
英國(guó)ARM公司授權(quán)培訓(xùn)中心 |
ARM工具關(guān)鍵合作單位 |
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我們培訓(xùn)過(guò)的企業(yè)客戶評(píng)價(jià): |
曙海的andriod 系統(tǒng)與應(yīng)用培訓(xùn)完全符合了我公司的要求,達(dá)到了我公司培訓(xùn)的目的。
特別值得一提的是授課講師針對(duì)我們公司的開(kāi)發(fā)的項(xiàng)目專門(mén)提供了一些很好程序的源代碼, 基本滿足了我們的項(xiàng)目要求。
——上海貝爾,李工
曙海培訓(xùn)DSP2000的老師,上課思路清晰,口齒清楚,由淺入深,重點(diǎn)突出,培訓(xùn)效果是不錯(cuò)的,
達(dá)到了我們想要的效果,希望繼續(xù)合作下去。
——中國(guó)電子科技集團(tuán)技術(shù)部主任 馬工
曙海的FPGA 培訓(xùn)很好地填補(bǔ)了高校FPGA培訓(xùn)空白,不錯(cuò)。總之,有利于學(xué)生的發(fā)展,
有利于教師的發(fā)展,有利于課程的發(fā)展,有利于社會(huì)的發(fā)展。
——上海電子,馮老師
曙海給我們公司提供的Dsp6000培訓(xùn),符合我們項(xiàng)目的開(kāi)發(fā)要求,解決了很多困惑我
們很久的問(wèn)題,與曙海的合作非常愉快。
——公安部第三研究所,項(xiàng)目部負(fù)責(zé)人李先生
MTK培訓(xùn)-我在網(wǎng)上找了很久,就是找不到。在曙海居然有MTK驅(qū)動(dòng)的培訓(xùn),老師經(jīng)驗(yàn)
很豐富,知識(shí)面很廣。下一個(gè)還想培訓(xùn)IPHONE蘋(píng)果手機(jī)。跟他們合作很愉快,老師很有人情味,態(tài)度很和藹。
——臺(tái)灣雙揚(yáng)科技,研發(fā)處經(jīng)理,楊先生
曙海對(duì)我們公司的iPhone培訓(xùn),實(shí)驗(yàn)項(xiàng)目很多,確實(shí)學(xué)到了東西。受益無(wú)窮
啊!特別是對(duì)于那種正在開(kāi)發(fā)項(xiàng)目的,確實(shí)是物超所值。
——臺(tái)灣歐澤科技,張工
通過(guò)參加Symbian培訓(xùn),再做Symbian相關(guān)的項(xiàng)目感覺(jué)更加得心應(yīng)手了,理
論加實(shí)踐的授課方式,很有針對(duì)性,非常的適合我們。學(xué)完之后,很輕松的就完成了我們的項(xiàng)目。
——IBM公司,沈經(jīng)理
有曙海這樣的DSP開(kāi)發(fā)培訓(xùn)單位,是教育行業(yè)的財(cái)富,聽(tīng)了他們的課,茅塞頓開(kāi)。
——上海醫(yī)療器械高等學(xué)校,羅老師
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我們新培訓(xùn)過(guò)的企業(yè)客戶以及培訓(xùn)的主要內(nèi)容: |
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一汽海馬汽車(chē) DSP培訓(xùn)
蘇州金屬研究院 DSP培訓(xùn)
南京南瑞集團(tuán)技術(shù) FPGA培訓(xùn)
西安愛(ài)生技術(shù)集團(tuán) FPGA培訓(xùn),DSP培訓(xùn)
成都熊谷加世電氣 DSP培訓(xùn)
福斯賽諾分析儀器(蘇州) FPGA培訓(xùn)
南京國(guó)電工程 FPGA培訓(xùn)
北京環(huán)境特性研究所 達(dá)芬奇培訓(xùn)
中國(guó)科微系統(tǒng)與信息技術(shù)研究所 FPGA高級(jí)培訓(xùn)
重慶網(wǎng)視只能流技術(shù)開(kāi)發(fā) 達(dá)芬奇培訓(xùn)
無(wú)錫力芯微電子股份 IC電磁兼容
河北科研究所 FPGA培訓(xùn)
上海微小衛(wèi)星工程中心 DSP培訓(xùn)
廣州航天航空 POWERPC培訓(xùn)
桂林航天工 DSP培訓(xùn)
江蘇五維電子科技 達(dá)芬奇培訓(xùn)
無(wú)錫步進(jìn)電機(jī)自動(dòng)控制技術(shù) DSP培訓(xùn)
江門(mén)市安利電源工程 DSP培訓(xùn)
長(zhǎng)江力偉股份 CADENCE 培訓(xùn)
愛(ài)普生科技(無(wú)錫 ) 數(shù)字模擬電路
河南平高 電氣 DSP培訓(xùn)
中國(guó)航天員科研訓(xùn)練中心 A/D仿真
常州易控汽車(chē)電子 WINDOWS驅(qū)動(dòng)培訓(xùn)
南通大學(xué) DSP培訓(xùn)
上海集成電路研發(fā)中心 達(dá)芬奇培訓(xùn)
北京瑞志合眾科技 WINDOWS驅(qū)動(dòng)培訓(xùn)
江蘇金智科技股份 FPGA高級(jí)培訓(xùn)
中國(guó)重工第710研究所 FPGA高級(jí)培訓(xùn)
蕪湖伯特利汽車(chē)安全系統(tǒng) DSP培訓(xùn)
廈門(mén)中智能軟件技術(shù) Android培訓(xùn)
上海科慢車(chē)輛部件系統(tǒng)EMC培訓(xùn)
中國(guó)電子科技集團(tuán)第五十研究所,軟件無(wú)線電培訓(xùn)
蘇州浩克系統(tǒng)科技 FPGA培訓(xùn)
上海申達(dá)自動(dòng)防范系統(tǒng) FPGA培訓(xùn)
四川長(zhǎng)虹佳華信息 MTK培訓(xùn)
公安部第三研究所--FPGA初中高技術(shù)開(kāi)發(fā)培訓(xùn)以及DSP達(dá)芬奇芯片視頻、圖像處理技術(shù)培訓(xùn)
上海電子信息職業(yè)技術(shù)--FPGA高級(jí)開(kāi)發(fā)技術(shù)培訓(xùn)
上海點(diǎn)逸網(wǎng)絡(luò)科技有限公司--3G手機(jī)ANDROID應(yīng)用和系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
格科微電子有限公司--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
南昌航空大學(xué)--fpga 高級(jí)開(kāi)發(fā)技術(shù)培訓(xùn)
IBM 公司--3G手機(jī)ANDROID系統(tǒng)和應(yīng)用技術(shù)開(kāi)發(fā)培訓(xùn)
上海貝爾--3G手機(jī)ANDROID系統(tǒng)和應(yīng)用技術(shù)開(kāi)發(fā)培訓(xùn)
中國(guó)雙飛--Vxworks 應(yīng)用和BSP開(kāi)發(fā)技術(shù)培訓(xùn)
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上海水務(wù)建設(shè)工程有限公司--Alter/Xilinx FPGA應(yīng)用開(kāi)發(fā)技術(shù)培訓(xùn)
恩法半導(dǎo)體科技--Allegro Candence PCB 仿真和信號(hào)完整性技術(shù)培訓(xùn)
中國(guó)計(jì)量--3G手機(jī)ANDROID應(yīng)用和系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
冠捷科技--FPGA芯片設(shè)計(jì)技術(shù)培訓(xùn)
芬尼克茲節(jié)能設(shè)備--FPGA高級(jí)技術(shù)開(kāi)發(fā)培訓(xùn)
川奇光電--3G手機(jī)ANDROID系統(tǒng)和應(yīng)用技術(shù)開(kāi)發(fā)培訓(xùn)
東華大學(xué)--Dsp6000系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
上海理工大學(xué)--FPGA高級(jí)開(kāi)發(fā)技術(shù)培訓(xùn)
同濟(jì)大學(xué)--Dsp6000圖像/視頻處理技術(shù)培訓(xùn)
上海醫(yī)療器械高等專科學(xué)校--Dsp6000圖像/視頻處理技術(shù)培訓(xùn)
中航工業(yè)無(wú)線電電子研究所--Vxworks 應(yīng)用和BSP開(kāi)發(fā)技術(shù)培訓(xùn)
北京交通大學(xué)--Powerpc開(kāi)發(fā)技術(shù)培訓(xùn)
浙江理工大學(xué)--Dsp6000圖像/視頻處理技術(shù)培訓(xùn)
臺(tái)灣雙陽(yáng)科技股份有限公司--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
滾石移動(dòng)--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
冠捷半導(dǎo)體--Linux系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
奧波--CortexM3+uC/OS開(kāi)發(fā)技術(shù)培訓(xùn)
迅時(shí)通信--WinCE應(yīng)用與驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
海鷹醫(yī)療電子系統(tǒng)--DSP6000圖像處理技術(shù)培訓(xùn)
博耀科技--Linux系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
華路時(shí)代信息技術(shù)--VxWorks BSP開(kāi)發(fā)技術(shù)培訓(xùn)
臺(tái)灣歐澤科技--iPhone開(kāi)發(fā)技術(shù)培訓(xùn)
寶康電子--Allegro Candence PCB 仿真和信號(hào)完整性技術(shù)培訓(xùn)
上海天能電子有限公司--Allegro Candence PCB 仿真和信號(hào)完整性技術(shù)培訓(xùn)
上海亨通光電科技有限公司--andriod應(yīng)用和系統(tǒng)移植技術(shù)培訓(xùn)
上海智搜文化傳播有限公司--Symbian開(kāi)發(fā)培訓(xùn)
先先信息科技有限公司--brew 手機(jī)開(kāi)發(fā)技術(shù)培訓(xùn)
鼎捷集團(tuán)--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
傲然科技--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
中軟國(guó)際--Linux系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
龍旗控股集團(tuán)--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
研祥智能股份有限公司--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
羅氏診斷--Linux應(yīng)用開(kāi)發(fā)技術(shù)培訓(xùn)
西東控制集團(tuán)--DSP2000應(yīng)用技術(shù)及DSP2000在光伏并網(wǎng)發(fā)電中的應(yīng)用與開(kāi)發(fā)
科大訊飛--MTK應(yīng)用(MMI)和驅(qū)動(dòng)開(kāi)發(fā)技術(shù)培訓(xùn)
東北農(nóng)業(yè)大學(xué)--IPHONE 蘋(píng)果應(yīng)用開(kāi)發(fā)技術(shù)培訓(xùn)
中國(guó)電子科技集團(tuán)--Dsp2000系統(tǒng)和應(yīng)用開(kāi)發(fā)技術(shù)培訓(xùn)
中國(guó)船舶重工集團(tuán)--Dsp2000系統(tǒng)開(kāi)發(fā)技術(shù)培訓(xùn)
晶方半導(dǎo)體--FPGA初中高技術(shù)培訓(xùn)
肯特智能儀器有限公司--FPGA初中高技術(shù)培訓(xùn)
哈爾濱大學(xué)--IPHONE 蘋(píng)果應(yīng)用開(kāi)發(fā)技術(shù)培訓(xùn)
昆明電器科學(xué)研究所--Dsp2000系統(tǒng)開(kāi)發(fā)技術(shù)
奇瑞汽車(chē)股份--單片機(jī)應(yīng)用開(kāi)發(fā)技術(shù)培訓(xùn)
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