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  • 手持式激光葉面積儀CI-203

    手持式激光葉面積儀CI-203
    詳細信息

    主要功能

         

          原位非破壞性測量,也可離體測量

          激光掃描器,測量精度不受葉子顏色的影響

          特殊形狀因子參數可以快速區分品種差異

          超大數據存儲,插接16GB SD卡

          數據USB傳輸給計算機或打印機

          真彩顯示屏可顯示9行

          可以查看葉片圖象

          測量操作,掃描速度無(wú)需勻速進(jìn)行,操作簡(jiǎn)便

          帶有WiFi功能

          帶有GPS衛星定位模塊

          通過(guò)USB充電

          傳送裝置CI-203CA用于大量離體葉片快速測量

     

    測量參數

         可測量葉片的長(cháng)度和寬度
         計算面積、長(cháng)寬比、周長(cháng)和形狀因子
         記錄GPS信息,日期和時(shí)間

    應用領(lǐng)域

    CI-203激光葉面積將激光掃描器、數據處理器、顯示器、功能鍵和電池整合在一個(gè)手持單元內,重量?jì)H僅910g??梢赃M(jìn)行非離體葉面積測量,進(jìn)行一次掃描測定,可以同時(shí)獲得葉片的面積、長(cháng)度、寬度、周長(cháng)以及葉片的長(cháng)寬比和形狀因子。

    廣泛應用在農學(xué)、作物育種學(xué)、生態(tài)學(xué)、栽培學(xué)、種質(zhì)資源等領(lǐng)域。

    主要技術(shù)參數

    測量參數:葉面積、長(cháng)度、寬度、周長(cháng)、長(cháng)寬比和形狀因子等參數
    工作條件: 0~50℃, 相對濕度0~100%(沒(méi)有水汽凝結)
    掃描器類(lèi)型:激光
    激光器:670nm
    最大樣品:厚3.0cm、寬15cm、長(cháng)度300cm
    光學(xué)分辨率:0.025mm2
    顯示分辨率:0.01cm2
    精度:±1%(面積大于10cm2的樣品)
    掃描速度:200mm/s
    數據存儲:16GB HD SD卡
    顯示:320x240 反射式屏幕
    鍵盤(pán):觸摸式8鍵
    數據傳輸:高速USB接口或WiFi信號傳輸
    電源:USB接口直接充電,內置7.2V充電電池,可連續測量至少250片葉子
    重量:975g (帶電池)
    體積:35.5×4.5×5cm

    可選附件:

    傳送裝置CI-203CA

    玻璃質(zhì)滾筒,用于大量測量離體葉片
    最大厚度:15mm
    最大寬度:150mm 
    最大樣品長(cháng)度:300 cm
    分辨率:0.01mm2
    精度:±0.5%(面積大于10cm2樣品)
    傳輸:USB2.0或WiFi
    重量:2.95㎏
    體積:32cm×18cm×13cm
    電源:6-12VDC 
    掃描速度:10cm/s

     

    選購指南

      一.基本型:配置:主機、充電器、USB數據線(xiàn)、手提箱

    img_pro2-2-large.jpg

    二、離體大量測量型:配置: CI-203CA、電源和手提箱,需要和主機一起使用

    203-CA.jpg

    產(chǎn)地:美國CID

    參考文獻
    原始數據來(lái)源:Google Scholar
    1.Erin Wiley, Brenda B. Casper, Brent R. Helliker(2016)Recovery following defoliation involves shifts in allocation that favor storage and reproduction over radial growth in black oak,Journal of Ecology 10.1111/1365-2745.12672
    2.Mike Caron and Roger Kjelgren(2016)Growth and Water Use During Establishment of Irrigated Bare Root and Balled-Burlap Green Ash Transplanted Into A High Desert Landscape,HortScience 10.21273/HORTSCI10967-16
    3.Supriya Sachdeva, Dr. Vinay Sharma, Dr. KV Bhat, Sanjay Sen(2016)Morphological and Physiological Response Studies of Moth Bean (Vigna Aconitifolia L.) Genotypes under Drought Stress,International Journal of IT, Engineering and Applied Sciences Research (IJIEASR) 
    4.Ashmita Bharali, Kushal Kumar Baruah, Nirmali Gogoi(2016)Changes in organic carbon pool in a tropical soil planted to rice in relation to photosynthetic carbon fixation,Australian Journal of Crop Science 10.21475/ajcs.2016.10.08.p7897
    5.Ola A. Ahmad(2016)Salinity Soil Effects on Yeild, Fruit Quality and Mineral Composition of Superior Seedless Grapevines Grafted on Some Rootstocks,Journal of Applied Sciences 10.3923/jas.2016.359.371
    6.Jingwen Sun, Huiqing Hu, Yueli Li, Lihong Wang, Qing Zhou, Xiaohua Huang(2016)Effects and mechanism of acid rain on plant chloroplast ATP synthase,Effects and mechanism of acid rain on plant chloroplast ATP synthase 10.1007/s11356-016-7016-3
    7.Mustafa. R. Al-Shaheen, Awang Soh, Omar. H. Ismaaiel(2016)Effect of Irrigation timing and Potassium fertilizing on the some growth characteristics and production for Mungbean (Vigna radiata L.),International Journal of Scientific and Research Publications 
    8.Baroowa B. and Gogoi N.(2016)Morpho-physiological and Yield responses of Black gram (Vignamungo L.) and Green gram (Vigna radiata L.) genotypes under Drought at different Growth stages,Research Journal of Recent Sciences
    9.L GALON , C.T. FORTE, J.P. GIACOMINI, F.W. REICHERT Jr., M.A. SCARIOT, F.A. DAVID, G.F. PERIN(2016)Competitive Ability of Lettuce with Ryegrass,Planta Daninha 10.1590/S0100-83582016340200005
    10.Shakeel Ahmad Anjum, Umair Ashraf, Imran Khan, Mohsin Tanveer, Muqarrab Ali, Imtyaz Hussain and Long Chang Wang(2016)Chromium and aluminum phyto-toxicity in maize; morpho-physiological responses and metal uptake,CLEAN – Soil, Air, Water 10.1002/clen.201500532
    11.Jo?o R. V. Silva, Antonio C. da Silva Junior, Maria R. R. Pereira, Dagoberto Martins(2016)Spray Deposition at Two Growth Stages of Cattail,Engenharia Agrícola - Journal of the Brazilian Association of Agricultural Engineering 10.1590/1809-4430-Eng.Agric.v36n1p194-205/2016
    12.Sidique Javeda, Saeed Rauf, Jakub Paderewskib, Dariusz P. Malinowskic, Usman Saleema and Muhammad Shahzadd(2016)Evaluation of Egyptian Clover (Trifolium alexandrinum L.) Germplasm through Redundancy Analysis for Forage Yield and Its Components,Crop Science 10.2135/cropsci2015.08.0518
    13.Sheng Chena, Zhanyu Zhanga, Zhenchang Wanga, Xiangping Guoa, Minhao Liub, Yousef Alhaj Hamouda, Jiechen Zhenga, Rangjian Qiuc(2016)Effects of uneven vertical distribution of soil salinity under a buried straw layer on the growth, fruit yield, and fruit quality of tomato plants,Scientia Horticulturae doi:10.1016/j.scienta.2016.03.024
    14.Liu, G., Gao, Y., Huang, F., Yuan, M., Peng, S.(2016)The Invasion of Coastal Areas in South China by Ipomoea cairica May Be Accelerated by the Ecotype Being More Locally Adapted to Salt Stress,PLoS ONE 11(2): e0149262 10.1371/journal.pone.0149262
    15.Hu, H., Wang. L., Li, Y., Sun, J., Zhou, Q., Huang, X.(2016)Insight into mechanism of lanthanum (III) induced damage to plant photosynthesis,Ecotoxicology and Environmental Safety, 127: 43-50. 10.1016/j.ecoenv.2016.01.008

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