特點:1具有無鉛雙波峰焊波間溫度曲線測試。
2,用計算機可解析復雜的回流焊接的溫度管理條件進行自動判定,數(shù)據(jù)保存等全部管理。
3,所顯示的溫度曲線數(shù)據(jù)清淅,易分析,叛斷。
4,分析雙波槽錫爐焊接溫度和浸潤時間,并通過電腦里對預熱,焊接溫度和時間條件的設定,軟件并自動進行判定。
5,打印溫度曲線數(shù)據(jù)時,按原畫面的樣式打印,
6,配備可調(diào)整儀器支撐架,沒配備耐高溫盒
規(guī)格: 1,表示溫度范圍,0~~300℃可任意設定 2,表示CH數(shù):0~~6通道(可任意選定)
3,測定溫度周期:0.05S 4,最大測量時間:約15分鐘 5, 測溫精度:±2℃
6,數(shù)據(jù)接口: RS232C 7,判定合,否項目:峰值溫度,1次,2次槽間的焊接溫度和濕潤時間
8,輸出文件形式:原文格式,CSV·TEXT 9,溫度解析程序:MALCOM〈TAM-50〉
10,數(shù)據(jù)解析系統(tǒng):MALCOM〈RC-50〉
11,設備尺寸:長232mm,寬最大285.4mm寬最小210mm,厚24mm
工作環(huán)境:CPU:Pentium133MHz 儲存器:32MB以上
監(jiān)視器:600*800 256種顏色以上 理想:1024*768 16比
適用OS:WDS95以上及NT4.0 X
全自動,按鍵荷重曲線測試儀、 按鍵荷重位移曲線測試儀
全自動,按鍵荷重曲線測試儀HK-ZDAJ-205S
設備用途:
全自動按鍵\\開關試驗機適用于各種RUBBER、金屬彈片、按鍵、開關、電腦鍵盤、手機按鍵等做[荷重-行程]曲線測試,同時完成下壓回彈力測試.采用Windows XP中英文窗口程序設定,操作簡便,自動存儲數(shù)據(jù):荷重-行程曲線、壽命衰減曲線、測試結(jié)果。且測試方法可保存調(diào)用。
全自動按鍵、開關試驗機采用高精密荷重元測量及伺服電機驅(qū)動,可以測得的[荷重-行程]測試結(jié)果,實為各類按鍵廠商研發(fā)、品檢必備之檢測儀器。
典型應用于:橡膠RUBBER按鍵曲線測試,金屬彈片按鍵曲線測試, 鍵盤手機按鍵曲線測試,各種開關曲線測試.
設備特點:
Peak Fore、Return Force、Distance、TT、Click率及動態(tài)阻抗值FO皆可直接在圖上顯示數(shù)值,不須人工計算。
自動感應式測試方式,不管按鍵高低均可通過測定行程及荷重并由電腦自動控制。
測試結(jié)果完畢即可顯示FC、FC_D、FP、FP_D、FM、FM_D、FR、FR_D、CC、CC_F、CR、TT、FO、FO_D等,并可自動判定Passed或Fail。
簡體/繁體/英文三種操作界面可切換,適用于全球客戶,荷重單位N,Lb,gf,kgf,可自由切換。
測試方法可自由設定、存儲、調(diào)用、修改,測試結(jié)果存儲于硬盤(每筆皆可存儲不計次數(shù)),可直接列印數(shù)據(jù)、曲線。
全自動按鍵、開關試驗機可生成壽命衰減曲線,檢測報表可轉(zhuǎn)換為Excel或PDF文檔格式。
設備參數(shù):
型 號 | HK-ZDAJ-205S |
產(chǎn)品名稱 | 全自動,按鍵,荷重曲線,測試儀 |
測試荷重種類 | 5kgf(標配),2kgf,500gf |
最小顯示荷重 | 0.01gf |
最大測試行程 | 100mm |
最小顯示行程 | 0.001mm |
測試速度范圍 | 0-200mm/min |
單位切換 | N,Lb,kgf,gf |
傳動機構(gòu) | 滾珠絲桿 |
驅(qū)動馬達 | AC伺服馬達 |
機臺尺寸 | W300*D270*H 500mm |
重量 | 25kg |
電源 | AC220V 5A 或 |
溫度曲線測試儀 | |
| |
TC-6C型溫度曲線測試儀是由微電腦控制的智能儀器,適用于溫度曲線的測試和記錄。 ....該儀器可同時記錄并存儲一至六組溫度數(shù)據(jù),通過與PC機通訊可描繪溫度曲線。具有任意斷點顯示、數(shù)據(jù)掉點保護等功能。既適用于回流焊爐跟進爐膛的溫度測試,又適用于其他場合下高溫測試。為用戶調(diào)整溫度曲線,控制溫度效果,提高產(chǎn)品質(zhì)量提供的依據(jù)。 ....該儀器性能,功能強大,操作方便。 主要功能 通過串口通訊,由PC機進行采樣周期、通道數(shù)目、采樣時間等參數(shù)設置。 通過PC機串口通訊繪制溫度曲線,并提供查詢、存儲、調(diào)用、打印溫度曲線功能。 掉電保護存貯數(shù)據(jù)功能。 多場合溫度測試,既滿足于無線低溫測試,又適用于其他高溫測試場合,高達1000℃。 雙電源工作方式。既可通過內(nèi)部充電電池提供電源,也可通過外部"220V 50HZ"提供電源 |
YL-656熱電偶性能曲線測試儀 | |
儀器介紹: 本公司生產(chǎn)的熱電偶性能曲線測試儀是依據(jù)CJ30-1999《熱電式燃具熄火保護裝置》、《家用燃氣灶(GB16410-1996)》及《家用燃氣用具的通用試驗方法(GB16411-1996)》中規(guī)定的技術要求而研發(fā)設計的一款針對燃氣具所用熱電偶性能測試的一款測試機。本機適合生產(chǎn)企業(yè)質(zhì)檢部門對產(chǎn)品進行性能測試和抽檢檢驗。熱電偶性能測試儀的動作機構(gòu)均采用氣動器件,直行氣缸實現(xiàn)熱電偶在設定溫度的火焰里工作、脫離火焰全部過程?刂茰y試電路部分均采用微電腦數(shù)據(jù)采集系統(tǒng),配合靈活的人機界面使操作簡單、使用便捷。 | |
功能要求 | |
測試項目 | 加熱溫度、熱電勢、檢測時間; |
智能化操作系統(tǒng) | 熱電偶性能曲線測試儀所有測試參數(shù)通過數(shù)據(jù)采集模塊將數(shù)據(jù)傳輸?shù)斤@示屏上,采用管理軟件實現(xiàn)人機界面操作,操作者可在此層面通過點擊菜單實現(xiàn)檢測數(shù)據(jù)的采集和監(jiān)控; |
實時顯示 | 加熱溫度、熱電偶電壓、檢測時間實時顯示記錄; |
自動生成報告曲線圖 | 自動生成加熱溫度、熱電偶電壓隨檢測時間的變化曲線圖; |
自稱生產(chǎn)報表 | 自動生成熱電勢、時間、溫度數(shù)據(jù)表格; |
曲線各點的熱電勢 | 用戶可根據(jù)要求設定時間點來查詢并顯示相應的數(shù)據(jù); |
數(shù)據(jù)可儲存記憶 | 測試數(shù)據(jù)可根據(jù)要求存儲,掉電不丟失。 |
外接數(shù)據(jù)輸出端口 | 熱電偶性能曲線測試儀具有相應的外接數(shù)據(jù)輸出口,需要時用戶可通過打印等手段提取預存或?qū)崪y數(shù)據(jù)曲線; |
氣動裝置智能化控制 | 夾具動作機構(gòu)均采用氣動動器件,實現(xiàn)在測試熱特性時將熱電偶頭部3~5mm的部位接觸火焰;在測試冷特性時將熱電偶脫離火焰自然冷卻; |
熱特性、冷特性的熱電勢自動檢測步驟 | (1)按點火鍵,火焰點燃,校準火焰(內(nèi)焰)溫度為600~700℃左右; (2)設定加熱時間1為10s、加熱時間2為30秒(、冷卻時間1為10s(、冷卻時間2為30s; (3)將熱電偶安裝于測試夾具上,按要求連接好線; (4)熱電偶性能曲線測試儀按測試鍵,測試夾具移動靠近火焰,使熱電偶頭部約3~5mm置于火焰中加熱時開始計時,待10S時自動將實測的熱電勢記錄并判斷熱特性; (5)熱電偶繼續(xù)加熱30s后,測試夾具自動返回使熱電偶脫離火焰并開始計時,待10s時自動將實測的熱電勢記錄并判斷冷特性。 (6)繼續(xù)冷卻30s后完成整個測試。(以上時間可任意設定) |
首要安裝保護裝置 | 具有意外熄火自動關閉氣源安全保護功能; |
加熱位置可調(diào)節(jié) | 可根據(jù)熱電偶的安裝尺寸相對于加熱位置前后調(diào)節(jié) |
熱電勢測量范圍 | 0~50mV |
特性工作時間 | 0~9999s(可調(diào)) |
時間準確度 | 0.1s |
主要技術指標 | |
型號 | YL-656 |
設計工位 | 1~10個 |
加溫范圍 | 500℃~800℃范圍內(nèi)隨意可調(diào) |
加熱方式 | 液化石油氣燃燒火焰加熱 |
壓縮空氣 | 潔凈的壓縮空氣,壓力范圍在0.4~0.8MPa |
溫控精度 | ±10℃ |
控制方式 | 微電腦控制人機界面操作 |
測量精度 | 0.1mV |
生產(chǎn)廠商:佛山市優(yōu)力電子科技有限公司 |
1.Peak Force、 Return Force、Distance及Click率等皆可直接在圖上顯示數(shù)值,不須人工計算; 2.量測曲線圖由電腦記憶,可隨時放大、縮小,一張A4紙可任意指定放置N個曲線圖; 3.測定項目可輸入上、下限規(guī)格值,測定結(jié)果可自動判定OK或NG; 4.可輸入最大測定行程及荷重,電腦自動控制; 5.荷重單位顯示N、lb、gf、kgf可自由切換; 6.電腦直接列印及儲存荷重行程曲線圖、檢查報表.(不需要方格紙,一般A4紙即可); 7.測試資料儲存于硬碟(每一筆資料皆可儲存,不限次數(shù)); 8.測試條件皆由電腦畫面設定(含測試行程、速度、次數(shù)、空壓、暫停時間等等); 9.檢驗報表抬頭內(nèi)容可隨時修改(中英文皆可); 10.檢驗報表可自動產(chǎn)生,不須再作輸入; 11.檢驗報表可轉(zhuǎn)換為Excel等文書報表格式.
型號:RL082061AF110紅外人體測溫儀計 | 型號:RL082101AF110人體測溫儀 | 型號:RL082114UA120 紅外線專用人體測溫儀 |
AF110紅外人體測溫儀計
產(chǎn)品說明
紅外測溫儀的測溫是以普朗克輻射定律為理論根據(jù),通過對被測目標紅外輻射能量進行測量,經(jīng)黑體標定,從而確定被測目標溫度的。紅外測溫儀具有非接觸式測量、響應速度快、不擾動被測目標溫度分布場的特點。對于一些不能用接觸方式測量的目標、活動目標,以及溫度變化迅速的目標的溫度測量,紅外測溫儀有其獨特的效果。它為現(xiàn)代測溫技術的發(fā)展提供了一種新的測量手段。與傳統(tǒng)的測溫設備相比,紅外測試儀具有便捷、和安全的優(yōu)勢。
產(chǎn)品特點
專用于人體及動物的溫度測量,精度高,穩(wěn)定性好。
技術參數(shù)
測溫范圍 | 30℃~45℃(86℉~113℉) |
測量度 | ±0.3℃ |
測量物距比 | 1~3cm |
發(fā)射率 | --- |
分辨率 | 0.1℃0.1℉ |
反應時間 | 1-2sec |
重復性 | ±1℃ |
℃/℉單位轉(zhuǎn)換 | 有 |
數(shù)據(jù)鎖定功能 | 有 |
激光定位功能 | --- |
背光顯示功能 | 有 |
自動關機功能 | 有 |
包裝規(guī)格 |
|
電源 | 9V DC電池 |
產(chǎn)品凈重 | 150g |
產(chǎn)品尺寸 | 146*80*38mm |
包裝方式 | 彩盒包裝 |
標準外箱容量 | 40PCS |
標準外箱尺寸 | 50*42.5*19cm |
標準外箱毛重 | 20KG |
欄目頁面:http://www.runlian365.com/chanpin/7544.html人體溫度測試儀來源網(wǎng)址:http://www.runlian365.com/chanpin/did-82061-pid-7544.htmlAF110紅外人體測溫儀計型號:RL082101AF110人體測溫儀
測溫范圍 | 30~45℃(86~113℉) |
測溫度 | ±0.2℃ |
測量距離 | 1-5cm |
發(fā)射率 | 0.95 預設 |
解析度 | 0.1℃ |
響應時間和響應值長 | 500ms & (8-14)um |
重復性 | ±1%or±0.1℃(1.8℉) |
一、適用范圍:
適 合從兒科到老年病學使用,為不合作的病人和兒童測量體溫,無需站立,喚醒或觸摸。安全、方便、快捷、準確。更適合于機關、工廠、、賓館和寫字樓等公共 場所人體溫度的檢測,便于篩檢具有發(fā)熱癥狀的病人以減少傳染和疫情蔓延;也適合家庭成員檢測體溫使用。本產(chǎn)品設計符合ASTM1965-1998標準,符 合醫(yī)療指令93/42/EEC。
二、測溫原理:
人 體測溫儀是測量人體額頭的表面溫度,然后根據(jù)人體額頭的溫度與體溫的關系得到人體的實際體溫的儀器。檢測儀的光學組件將額頭發(fā)射和反射的能量匯集到傳感器 上,通過電子組件將此信息轉(zhuǎn)化成溫度讀數(shù)并顯示在顯示面板上,當溫度讀數(shù)超過高溫38度報警值時,儀器會發(fā)出報警聲。是取代水銀溫度計的必然趨勢。
三、技術參數(shù):測溫范圍 30℃-50℃ (86-122F)測溫度 ±0.4℃(0.7F)反應時間 1秒測量距離 5-15CM自動關機 約5秒顯示度 0.1℃(0.1℉)操作環(huán)境溫度 0℃-50℃(32-122F)相對濕度 10-90%電源 9V堿性電池產(chǎn)品尺寸 160*82*47mm(長*寬*高)產(chǎn)品凈重 157g
四、產(chǎn)品特征:非接觸式高度測量:精度已做到業(yè)界的前三可選擇oC或oF:攝氏度/華氏度相互轉(zhuǎn)換內(nèi)置紅外線激光瞄準:便于測量同一部位可設置報警值:本產(chǎn)品預設值為38度報警儲存32組數(shù)據(jù):便于參考對比體溫變化自動選擇量程:分辯率為0.1oC(0.1oF)帶背光的LCD顯示:任何光線均清晰可見使用環(huán)境溫度:10~40度,溫度25度存儲環(huán)境溫度:-20~60度
次使用前的建議:
為了得到穩(wěn)定而可靠的測溫數(shù)據(jù),在使用非接觸式紅外線體溫計時請先按以下步驟進行必要的檢查:
步:使用傳統(tǒng)的體溫計對某人進行測量,假設得到37.5oC的溫度。
第 二步:使用非接觸式紅外線額溫計對同一人測量,保持額溫計和額頭之間距離5厘米(注意要移開任何可能影響測量的障礙物,如頭發(fā),汗液等),如果得到同樣的 溫度37.5oC則說明該非接觸式紅外線額溫計設置正常且可以使用。如果得到低的讀數(shù),如36.4oC差1.1oC.你需要校準該非接觸式紅外線額溫計, 加上差數(shù)。
按住“MODE”按鍵3秒,屏幕顯示F1,再按向上鍵進入F2,再按“MODE”直接進入0.0,然后再按向上鍵加上差額,再按“MODE”完成。第三部:再次進行檢查。
溫馨提示:
1、從外面進屋,吹了風或許洗了臉,表面的溫度不準確,所以進屋坐坐十五分鐘后才測。
2、孩子哭得利害的時候,汗流滿面的時候,用水銀寶寶是不會配合的,用額溫槍一點就可以測出來了,但記得要抹干汗水后20分鐘再測量,或者是測量耳垂后,才測得準確哦。
3、人體表面溫度與心臟溫度正常是有差別的,親們要注意這個問題,如果室溫在零上二十度以下,額溫測出來后,一般加零點五才是腋下的溫度。如果您在室溫二十度以上,又或許您是直接對著腋下測,呵呵,那啥也不用加了,正好就是您的體溫了。
人 體的體溫一般是比較恒定的,即保持在37℃上下(大致介于36.2 ℃~37.3℃),口腔體溫范圍在35.5℃~37.5℃之間 ,腋窩溫度范圍在34.7℃~37.3℃,直腸溫度范圍在36.6 ℃ ~38℃。人類個體之間的體溫有一定的差異,少數(shù)人的標準體溫可低于36.2℃,也可高于37.3℃。即使同一人體溫在一日內(nèi)也不是完全一樣的,晝夜間體 溫的波動可達1℃左右。
4、低燒是不會報警的,如37.5度,這時候可物理治療,高燒38度的話,額溫槍會發(fā)出聲音報警的,這時候,是必須馬上上醫(yī)院的。(懷了寶寶與喂母乳中的媽媽除外,這二種親的體溫本身就是高的,那怕是38度也是正常的呢)
5、為了得到穩(wěn)定的而可靠的測量數(shù)據(jù),當溫室變化很大時,應該把人體紅外線測溫儀置于室內(nèi)15-20分鐘后再使用。
欄目頁面:http://www.runlian365.com/chanpin/7544.html人體溫度測試儀來源網(wǎng)址:http://www.runlian365.com/chanpin/did-82114-pid-7544.htmlUA120 紅外線專用人體測溫儀溫馨提示:潤聯(lián)為您提供產(chǎn)品的詳細產(chǎn)品價格、產(chǎn)品圖片等產(chǎn)品介紹信息,您可以直接聯(lián)系廠家獲取產(chǎn)品的具體資料,聯(lián)系時請說明是在潤聯(lián)看到的,并告知型號
滿足光伏組件IEC61215各項試驗...
Current-Voltage Measurement System (IV Tester) -20W Version for Continuous Solar SimulatorsMain Features:? Designed for use with continuous or pulse solar simulators? An output trigger TTL signal is used to synchronize its data acquisition with pulse solarsimulators? Variable resistive load? Max Electrical Power Reading: 20W base model, 60W high power model? Base Model Voltage range 200V (can be modified with additional shunt to suitapplication)? Base Model Current range 1A (can be modified with additional coil to suit application)? High Power Model Voltage range 60V (can be modified with additional shunt to suitapplication)? High Power Model Current range 3A (can be modified with additional coil to suitapplication)? Separate terminal interface for voltage and current measurements? Interfaces to PC via GPIB cable for display and data storage (hence GPIB card requiredin computer)? Saves each IV curve dataset in separate ASCII text file? I-V range selectable? Number of sample points selectable (between 10-100 points)? Sci-IVTest Windows based control softwareParameters Measured by IV SoftwareVoc, IocVsc, IscVmax, Imax, Pmaxefficiency (%)Light and dark I-V characteristics上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司Voc Slope (similar to Rs)Rp or Rshunt (system measures slope near Isc for this value)FF or Fill FactorJSc (mA/cm2)Forward and Reverse Sweep FeatureSKU: SSIVT-20CThe SSIVT is an electrical current-voltage measurement system used to characterizephotovoltaic cell performance. This current-voltage tester works by sampling various currentversus voltage combinations of the photovoltaic cell with a variable impedance load. Theperformance of the photovoltaic cell is determined by measuring this output I-V relationshipwhile it is being illuminated by light. This relationship is typically called an "I-V curve" and canbe obtained by exposing the photovoltaic cell to a constant level of light while varying anexternal impedance load such that its current-voltage values change. Since multiple I-V datapoints are required to create an I-V curve, an external trigger function model is available foruse with pulse solar simulators. This allows the tester to create multiple sequential pulses(typically 10-100 points selectable) to complete the IV curve measurements. Universal input100-240VAC, 50/60Hz. Software and GPIB Board is included. An external computer (soldseparately) such as the PC computer controller is required to control this current-voltagemeasurement system.Purpose of Current Vs Voltage Measurement TestA solar cell may be operated over a wide range of voltage and current combinations, but thereis generally an optimum combination for maximum energy collection efficiency. By varying anexternal load resistance from zero to infinity, the optimum I-V combination where the solar celldelivers the most power can be found.Current and Voltage Measurement RangeThe standard I-V Test system can measure electrical power from photovoltaic cells up to 20W.The voltage envelope is limited to 200V and the current is limited to 1A. A higher powered60W version is available where the voltage is limited to 60V and the current is limited to 3A.For higher loads, shunts to measure a portion of the current can be used. In general, thelimitation of the standard model is the 1A current limit. If your solar cell can generate morecurrent than 1A, then we recommend upgrading to the 60W model.Voltage Scaling FactorAlthough the maximum voltage of the base unit is 200V, the software can rescale its scanningrange to 2V, 10V, 20V or 200V. Once the scale is selected, the maximum number of I-Vmeasurement points that can be taken in that selected range is 100 points.Current Density - Voltage (J-V) MeasurementsThe software currently only measures I-V characteristics and JSc (mA/cm2), but other J-V上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司values can be derrived as J=I/area. The software outputs the I-V characteristics in an ASCIIfile which can then be read to derrive current density values.SoftwareSoftware is written in Labview, but a Labview Runtime engine allows it to run on Windows XPwithout the Labview development toolkit.System NotesThe I-V Measurement System sweeps the IV curve with an automatically adjustable resistiveload and records multiple I-V data points along the way. The voltage and current ranges aresoftware selectable and so is the number of points taken, from 10-100 points depending onthe time length of the test allowable. The I-V data point values are then recorded and plottedon a computer display and saved in an ASCII text file. The points are selected by voltage,hence the voltage readings are evenly spaced.I-V Measurement BasicsFill Factor: Fill factor refers to the "squareness" of the I-V curve. It describes how closelymatched the voltage is at its maximum power point and the current is also at its maximumpower point. The higher the fill factor match, the more square the I-V curve.Conversion Efficiency: The conversion efficiency of a solar cell is the percentage of lightenergy that gets converted to electrical power.References:The U.S. Department of Energy maintains a good website on how to use I-V measurementsystems in solar cell testing. Please see www.eere.energy.gov/solar/current_voltage.htmlTechnical Specifications? Base unit 200V max. (scale to 2V or 10V, but 20V and 200V scales possible please ask)? Dwell time (wait time between each I-V reading) - programable, but cannot be below3ms? Number of I-V scanned points - 10 to 100 programable? Hardware Voltage Resolution: 50μv @ 2V scale, 500μV @ 20V scale (accuracy perreading)? Hardware Current Resolution: 50μA @ 1A scale (accuracy per reading)? I-V Measurement Sweep Resolution: (voltage scale selected / number of I-V scannedpoints)? Software Display Resolution: typically mV and mA (but 3 decimals shown, so can be3.456E-1 A for addition decimal)上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司Current-Voltage Measurement System (IV Tester) -20W Version for Flash Solar SimulatorsMain Features:? Designed for use with continuous or pulse solar simulators? An output trigger TTL signal is used to synchronize its data acquisition with pulse solarsimulators? Variable resistive load? Max Electrical Power Reading: 20W base model, 60W high power model? Base Model Voltage range 200V (can be modified with additional shunt to suitapplication)? Base Model Current range 1A (can be modified with additional coil to suit application)? High Power Model Voltage range 60V (can be modified with additional shunt to suitapplication)? High Power Model Current range 3A (can be modified with additional coil to suitapplication)? Separate terminal interface for voltage and current measurements? Interfaces to PC via GPIB cable for display and data storage (hence GPIB card requiredin computer)? Saves each IV curve dataset in separate ASCII text file? I-V range selectable? Number of sample points selectable (between 10-100 points)? Sci-IVTest Windows based control softwareParameters Measured by IV SoftwareVoc, IocVsc, IscVmax, Imax, Pmaxefficiency (%)Light and dark I-V characteristics上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊睿科學儀器有限公司Voc Slope (similar to Rs)Rp or Rshunt (system measures slope near Isc for this value)FF or Fill FactorJSc (mA/cm2)Forward and Reverse Sweep FeatureSKU: SSIVT-20FThe SSIVT is an electrical current-voltage measurement system used to characterizephotovoltaic cell performance. This current-voltage tester works by sampling various currentversus voltage combinations of the photovoltaic cell with a variable impedance load. Theperformance of the photovoltaic cell is determined by measuring this output I-V relationshipwhile it is being illuminated by light. This relationship is typically called an "I-V curve" and canbe obtained by exposing the photovoltaic cell to a constant level of light while varying anexternal impedance load such that its current-voltage values change. Since multiple I-V datapoints are required to create an I-V curve, an external trigger function model is available foruse with pulse solar simulators. This allows the tester to create multiple sequential pulses(typically 10-100 points selectable) to complete the IV curve measurements. Universal input100-240VAC, 50/60Hz. Software and GPIB Board is included. An external computer (soldseparately) such as the PC computer controller is required to control this current-voltagemeasurement system.Purpose of Current Vs Voltage Measurement TestA solar cell may be operated over a wide range of voltage and current combinations, but thereis generally an optimum combination for maximum energy collection efficiency. By varying anexternal load resistance from zero to infinity, the optimum I-V combination where the solar celldelivers the most power can be found.Current and Voltage Measurement RangeThe standard I-V Test system can measure electrical power from photovoltaic cells up to 20W.The voltage envelope is limited to 200V and the current is limited to 1A. A higher powered60W version is available where the voltage is limited to 60V and the current is limited to 3A.For higher loads, shunts to measure a portion of the current can be used. In general, thelimitation of the standard model is the 1A current limit. If your solar cell can generate morecurrent than 1A, then we recommend upgrading to the 60W model.Voltage Scaling FactorAlthough the maximum voltage of the base unit is 200V, the software can rescale its scanningrange to 2V, 10V, 20V or 200V. Once the scale is selected, the maximum number of I-Vmeasurement points that can be taken in that selected range is 100 points.Current Density - Voltage (J-V) MeasurementsThe software currently only measures I-V characteristics and JSc (mA/cm2), but other J-V上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司values can be derrived as J=I/area. The software outputs the I-V characteristics in an ASCIIfile which can then be read to derrive current density values.SoftwareSoftware is written in Labview, but a Labview Runtime engine allows it to run on Windows XPwithout the Labview development toolkit.System NotesThe I-V Measurement System sweeps the IV curve with an automatically adjustable resistiveload and records multiple I-V data points along the way. The voltage and current ranges aresoftware selectable and so is the number of points taken, from 10-100 points depending onthe time length of the test allowable. The I-V data point values are then recorded and plottedon a computer display and saved in an ASCII text file. The points are selected by voltage,hence the voltage readings are evenly spaced.I-V Measurement BasicsFill Factor: Fill factor refers to the "squareness" of the I-V curve. It describes how closelymatched the voltage is at its maximum power point and the current is also at its maximumpower point. The higher the fill factor match, the more square the I-V curve.Conversion Efficiency: The conversion efficiency of a solar cell is the percentage of lightenergy that gets converted to electrical power.References:The U.S. Department of Energy maintains a good website on how to use I-V measurementsystems in solar cell testing. Please see www.eere.energy.gov/solar/current_voltage.htmlTechnical Specifications? Base unit 200V max. (scale to 2V or 10V, but 20V and 200V scales possible please ask)? Dwell time (wait time between each I-V reading) - programable, but cannot be below3ms? Number of I-V scanned points - 10 to 100 programable? Hardware Voltage Resolution: 50μv @ 2V scale, 500μV @ 20V scale (accuracy perreading)? Hardware Current Resolution: 50μA @ 1A scale (accuracy per reading)? I-V Measurement Sweep Resolution: (voltage scale selected / number of I-V scannedpoints)? Software Display Resolution: typically mV and mA (but 3 decimals shown, so can be3.456E-1 A for addition decimal)上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊睿科學儀器有限公司Current-Voltage Measurement System (IV Tester) -60W Version for Continuous Solar SimulatorsMain Features:? Designed for use with continuous or pulse solar simulators? An output trigger TTL signal is used to synchronize its data acquisition with pulse solarsimulators? Variable resistive load? Max Electrical Power Reading: 20W base model, 60W high power model? Base Model Voltage range 200V (can be modified with additional shunt to suitapplication)? Base Model Current range 1A (can be modified with additional coil to suit application)? High Power Model Voltage range 60V (can be modified with additional shunt to suitapplication)? High Power Model Current range 3A (can be modified with additional coil to suitapplication)? Separate terminal interface for voltage and current measurements? Interfaces to PC via GPIB cable for display and data storage (hence GPIB card requiredin computer)? Saves each IV curve dataset in separate ASCII text file? I-V range selectable? Number of sample points selectable (between 10-100 points)? Sci-IVTest Windows based control softwareParameters Measured by IV SoftwareVoc, IocVsc, IscVmax, Imax, Pmaxefficiency (%)Light and dark I-V characteristics上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司Voc Slope (similar to Rs)Rp or Rshunt (system measures slope near Isc for this value)FF or Fill FactorJSc (mA/cm2)Forward and Reverse Sweep FeatureSKU: SSIVT-60CThe SSIVT is an electrical current-voltage measurement system used to characterizephotovoltaic cell performance. This current-voltage tester works by sampling various currentversus voltage combinations of the photovoltaic cell with a variable impedance load. Theperformance of the photovoltaic cell is determined by measuring this output I-V relationshipwhile it is being illuminated by light. This relationship is typically called an "I-V curve" and canbe obtained by exposing the photovoltaic cell to a constant level of light while varying anexternal impedance load such that its current-voltage values change. Since multiple I-V datapoints are required to create an I-V curve, an external trigger function model is available foruse with pulse solar simulators. This allows the tester to create multiple sequential pulses(typically 10-100 points selectable) to complete the IV curve measurements. Universal input100-240VAC, 50/60Hz. Software and GPIB Board is included. An external computer (soldseparately) such as the PC computer controller is required to control this current-voltagemeasurement system.Purpose of Current Vs Voltage Measurement TestA solar cell may be operated over a wide range of voltage and current combinations, but thereis generally an optimum combination for maximum energy collection efficiency. By varying anexternal load resistance from zero to infinity, the optimum I-V combination where the solar celldelivers the most power can be found.Current and Voltage Measurement RangeThe standard I-V Test system can measure electrical power from photovoltaic cells up to 20W.The voltage envelope is limited to 200V and the current is limited to 1A. A higher powered60W version is available where the voltage is limited to 60V and the current is limited to 3A.For higher loads, shunts to measure a portion of the current can be used. In general, thelimitation of the standard model is the 1A current limit. If your solar cell can generate morecurrent than 1A, then we recommend upgrading to the 60W model.Voltage Scaling FactorAlthough the maximum voltage of the base unit is 200V, the software can rescale its scanningrange to 2V, 10V, 20V or 200V. Once the scale is selected, the maximum number of I-Vmeasurement points that can be taken in that selected range is 100 points.Current Density - Voltage (J-V) MeasurementsThe software currently only measures I-V characteristics and JSc (mA/cm2), but other J-V上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司values can be derrived as J=I/area. The software outputs the I-V characteristics in an ASCIIfile which can then be read to derrive current density values.SoftwareSoftware is written in Labview, but a Labview Runtime engine allows it to run on Windows XPwithout the Labview development toolkit.System NotesThe I-V Measurement System sweeps the IV curve with an automatically adjustable resistiveload and records multiple I-V data points along the way. The voltage and current ranges aresoftware selectable and so is the number of points taken, from 10-100 points depending onthe time length of the test allowable. The I-V data point values are then recorded and plottedon a computer display and saved in an ASCII text file. The points are selected by voltage,hence the voltage readings are evenly spaced.I-V Measurement BasicsFill Factor: Fill factor refers to the "squareness" of the I-V curve. It describes how closelymatched the voltage is at its maximum power point and the current is also at its maximumpower point. The higher the fill factor match, the more square the I-V curve.Conversion Efficiency: The conversion efficiency of a solar cell is the percentage of lightenergy that gets converted to electrical power.References:The U.S. Department of Energy maintains a good website on how to use I-V measurementsystems in solar cell testing. Please see www.eere.energy.gov/solar/current_voltage.htmlTechnical Specifications? Base unit 200V max. (scale to 2V or 10V, but 20V and 200V scales possible please ask)? Dwell time (wait time between each I-V reading) - programable, but cannot be below3ms? Number of I-V scanned points - 10 to 100 programable? Hardware Voltage Resolution: 50μv @ 2V scale, 500μV @ 20V scale (accuracy perreading)? Hardware Current Resolution: 50μA @ 1A scale (accuracy per reading)? I-V Measurement Sweep Resolution: (voltage scale selected / number of I-V scannedpoints)? Software Display Resolution: typically mV and mA (but 3 decimals shown, so can be3.456E-1 A for addition decimal)上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊睿科學儀器有限公司Current-Voltage Measurement System (IV Tester) -60W Version for Flash Solar SimulatorsMain Features:? Designed for use with continuous or pulse solar simulators? An output trigger TTL signal is used to synchronize its data acquisition with pulse solarsimulators? Variable resistive load? Max Electrical Power Reading: 20W base model, 60W high power model? Base Model Voltage range 200V (can be modified with additional shunt to suitapplication)? Base Model Current range 1A (can be modified with additional coil to suit application)? High Power Model Voltage range 60V (can be modified with additional shunt to suitapplication)? High Power Model Current range 3A (can be modified with additional coil to suitapplication)? Separate terminal interface for voltage and current measurements? Interfaces to PC via GPIB cable for display and data storage (hence GPIB card requiredin computer)? Saves each IV curve dataset in separate ASCII text file? I-V range selectable? Number of sample points selectable (between 10-100 points)? Sci-IVTest Windows based control softwareParameters Measured by IV SoftwareVoc, IocVsc, IscVmax, Imax, Pmaxefficiency (%)Light and dark I-V characteristics上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司Voc Slope (similar to Rs)Rp or Rshunt (system measures slope near Isc for this value)FF or Fill FactorJSc (mA/cm2)Forward and Reverse Sweep FeatureSKU: SSIVT-60FThe SSIVT is an electrical current-voltage measurement system used to characterizephotovoltaic cell performance. This current-voltage tester works by sampling various currentversus voltage combinations of the photovoltaic cell with a variable impedance load. Theperformance of the photovoltaic cell is determined by measuring this output I-V relationshipwhile it is being illuminated by light. This relationship is typically called an "I-V curve" and canbe obtained by exposing the photovoltaic cell to a constant level of light while varying anexternal impedance load such that its current-voltage values change. Since multiple I-V datapoints are required to create an I-V curve, an external trigger function model is available foruse with pulse solar simulators. This allows the tester to create multiple sequential pulses(typically 10-100 points selectable) to complete the IV curve measurements. Universal input100-240VAC, 50/60Hz. Software and GPIB Board is included. An external computer (soldseparately) such as the PC computer controller is required to control this current-voltagemeasurement system.Purpose of Current Vs Voltage Measurement TestA solar cell may be operated over a wide range of voltage and current combinations, but thereis generally an optimum combination for maximum energy collection efficiency. By varying anexternal load resistance from zero to infinity, the optimum I-V combination where the solar celldelivers the most power can be found.Current and Voltage Measurement RangeThe standard I-V Test system can measure electrical power from photovoltaic cells up to 20W.The voltage envelope is limited to 200V and the current is limited to 1A. A higher powered60W version is available where the voltage is limited to 60V and the current is limited to 3A.For higher loads, shunts to measure a portion of the current can be used. In general, thelimitation of the standard model is the 1A current limit. If your solar cell can generate morecurrent than 1A, then we recommend upgrading to the 60W model.Voltage Scaling FactorAlthough the maximum voltage of the base unit is 200V, the software can rescale its scanningrange to 2V, 10V, 20V or 200V. Once the scale is selected, the maximum number of I-Vmeasurement points that can be taken in that selected range is 100 points.Current Density - Voltage (J-V) MeasurementsThe software currently only measures I-V characteristics and JSc (mA/cm2), but other J-V上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司values can be derrived as J=I/area. The software outputs the I-V characteristics in an ASCIIfile which can then be read to derrive current density values.SoftwareSoftware is written in Labview, but a Labview Runtime engine allows it to run on Windows XPwithout the Labview development toolkit.System NotesThe I-V Measurement System sweeps the IV curve with an automatically adjustable resistiveload and records multiple I-V data points along the way. The voltage and current ranges aresoftware selectable and so is the number of points taken, from 10-100 points depending onthe time length of the test allowable. The I-V data point values are then recorded and plottedon a computer display and saved in an ASCII text file. The points are selected by voltage,hence the voltage readings are evenly spaced.I-V Measurement BasicsFill Factor: Fill factor refers to the "squareness" of the I-V curve. It describes how closelymatched the voltage is at its maximum power point and the current is also at its maximumpower point. The higher the fill factor match, the more square the I-V curve.Conversion Efficiency: The conversion efficiency of a solar cell is the percentage of lightenergy that gets converted to electrical power.References:The U.S. Department of Energy maintains a good website on how to use I-V measurementsystems in solar cell testing. Please see www.eere.energy.gov/solar/current_voltage.htmlTechnical Specifications? Base unit 200V max. (scale to 2V or 10V, but 20V and 200V scales possible please ask)? Dwell time (wait time between each I-V reading) - programable, but cannot be below3ms? Number of I-V scanned points - 10 to 100 programable? Hardware Voltage Resolution: 50μv @ 2V scale, 500μV @ 20V scale (accuracy perreading)? Hardware Current Resolution: 50μA @ 1A scale (accuracy per reading)? I-V Measurement Sweep Resolution: (voltage scale selected / number of I-V scannedpoints)? Software Display Resolution: typically mV and mA (but 3 decimals shown, so can be3.456E-1 A for addition decimal)上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊?茖W儀器有限公司Current-Voltage Measurement System (IV Tester) -1000W Version for Flash Solar SimulatorsMain Features:? Designed for use with continuous or pulse solar simulators? An output trigger TTL signal is used to synchronize its data acquisition with pulse solarsimulators? Variable resistive load? Max Electrical Power Reading: 20W base model, 60W high power model? Base Model Voltage range 200V (can be modified with additional shunt to suitapplication)? Base Model Current range 1A (can be modified with additional coil to suit application)? High Power Model Voltage range 60V (can be modified with additional shunt to suitapplication)? High Power Model Current range 3A (can be modified with additional coil to suitapplication)? Separate terminal interface for voltage and current measurements? Interfaces to PC via GPIB cable for display and data storage (hence GPIB card requiredin computer)? Saves each IV curve dataset in separate ASCII text file? I-V range selectable? Number of sample points selectable (between 10-100 points)? Sci-IVTest Windows based control softwareParameters Measured by IV SoftwareVoc, IocVsc, IscVmax, Imax, Pmaxefficiency (%)Light and dark I-V characteristics上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊睿科學儀器有限公司Voc Slope (similar to Rs)Rp or Rshunt (system measures slope near Isc for this value)FF or Fill FactorJSc (mA/cm2)Forward and Reverse Sweep FeatureSKU: SSIVT-1KFThe SSIVT is an electrical current-voltage measurement system used to characterizephotovoltaic cell performance. This current-voltage tester works by sampling various currentversus voltage combinations of the photovoltaic cell with a variable impedance load. Theperformance of the photovoltaic cell is determined by measuring this output I-V relationshipwhile it is being illuminated by light. This relationship is typically called an "I-V curve" and canbe obtained by exposing the photovoltaic cell to a constant level of light while varying anexternal impedance load such that its current-voltage values change. Since multiple I-V datapoints are required to create an I-V curve, an external trigger function model is available foruse with pulse solar simulators. This allows the tester to create multiple sequential pulses(typically 10-100 points selectable) to complete the IV curve measurements. Universal input100-240VAC, 50/60Hz. Software and GPIB Board is included. An external computer (soldseparately) such as the PC computer controller is required to control this current-voltagemeasurement system.Purpose of Current Vs Voltage Measurement TestA solar cell may be operated over a wide range of voltage and current combinations, but thereis generally an optimum combination for maximum energy collection efficiency. By varying anexternal load resistance from zero to infinity, the optimum I-V combination where the solar celldelivers the most power can be found.Current and Voltage Measurement RangeThe standard I-V Test system can measure electrical power from photovoltaic cells up to 20W.The voltage envelope is limited to 200V and the current is limited to 1A. A higher powered60W version is available where the voltage is limited to 60V and the current is limited to 3A.For higher loads, shunts to measure a portion of the current can be used. In general, thelimitation of the standard model is the 1A current limit. If your solar cell can generate morecurrent than 1A, then we recommend upgrading to the 60W model.Voltage Scaling FactorAlthough the maximum voltage of the base unit is 200V, the software can rescale its scanningrange to 2V, 10V, 20V or 200V. Once the scale is selected, the maximum number of I-Vmeasurement points that can be taken in that selected range is 100 points.Current Density - Voltage (J-V) MeasurementsThe software currently only measures I-V characteristics and JSc (mA/cm2), but other J-V上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.com上海泊睿科學儀器有限公司上海市閔行區(qū)莘朱路903號(甲)廠區(qū),201100Tel: 021-54387376,54380568 Fax: 021-54997016 E-mail:br.sci@263.net http://www.br17.comvalues can be derrived as J=I/area. The software outputs the I-V characteristics in an ASCIIfile which can then be read to derrive current density values.SoftwareSoftware is written in Labview, but a Labview Runtime engine allows it to run on Windows XPwithout the Labview development toolkit.System NotesThe I-V Measurement System sweeps the IV curve with an automatically adjustable resistiveload and records multiple I-V data points along the way. The voltage and current ranges aresoftware selectable and so is the number of points taken, from 10-100 points depending onthe time length of the test allowable. The I-V data point values are then recorded and plottedon a computer display and saved in an ASCII text file. The points are selected by voltage,hence the voltage readings are evenly spaced.I-V Measurement BasicsFill Factor: Fill factor refers to the "squareness" of the I-V curve. It describes how closelymatched the voltage is at its maximum power point and the current is also at its maximumpower point. The higher the fill factor match, the more square the I-V curve.Conversion Efficiency: The conversion efficiency of a solar cell is the percentage of lightenergy that gets converted to electrical power.References:The U.S. Department of Energy maintains a good website on how to use I-V measurementsystems in solar cell testing. Please see www.eere.energy.gov/solar/current_voltage.htmlTechnical Specifications? Base unit 200V max. (scale to 2V or 10V, but 20V and 200V scales possible please ask)? Dwell time (wait time between each I-V reading) - programable, but cannot be below3ms? Number of I-V scanned points - 10 to 100 programable? Hardware Voltage Resolution: 50μv @ 2V scale, 500μV @ 20V scale (accuracy perreading)? Hardware Current Resolution: 50μA @ 1A scale (accuracy per reading)? I-V Measurement Sweep Resolution: (voltage scale selected / number of I-V scannedpoints)? Software Display Resolution: typically mV and mA (but 3 decimals shown, so can be3.456E-1 A for addition decimal)上海泊?茖W儀器有限公司
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型號:RL022546溫度測試儀 FLC5016W 多路溫度記錄儀(曲線型) | 型號:RL022547多路溫度巡檢儀/16路溫度測試儀/可顯示曲線 | 型號:RL022548手持式多路溫度測試儀4通道記錄儀 |
多路溫度記錄儀多路溫度測試儀(曲線型)FLC5008WFLC5016WFLC5024WFLC5032W
1、大屏幕液晶顯示(各路溫度值全部顯示及一路報警溫度顯示)和測量參數(shù)設定的完美結(jié)合,滿足用戶測量顯示的全部要求,功能更完善;
2、在被測物體帶電的情況下,可進行帶電測試(隔離電壓AC400V),安全可靠。
3、通道之間掃描速度可以設定;
4、可以設定溫度上下限報警(可以任意設定一路報警通道),可以定制全部通道報警(多通道);
5、還可以選配報警同時具有信號輸出,可以控制溫度的上升或降低,從而保證被測產(chǎn)品的正常工作。
6、溫度單位攝氏(℃)華氏(F)可以自動轉(zhuǎn)換;
7、同一臺儀器可以選用T、J、K熱電偶滿足不同溫度范圍的測試;
8、測試通道可以任意設定,滿足測量和速度的要求;
9、本機還帶有日期和時間,斷電仍工作;
10、狀態(tài)欄實時顯示設定參數(shù),同時可以在設定中恢復出廠設定功能;
11、各通道不均勻度:0.5度,儀器分辯率為0.1度,測量精度優(yōu)于0.5級;
12、熱電偶斷線具有自動檢測功能;
13、配有微型打印機(可設定打印時間間隔)和通訊接口(RS232或485);
14、記錄時間:記錄數(shù)據(jù)間隔時間可設定:1S~99h,可以記錄8000組數(shù)據(jù);記錄時間間隔越長,總的記錄時間也越久。
15、斷電數(shù)據(jù)保護:用FLASH保存參數(shù)和歷史數(shù)據(jù),斷電后保存。
16、在繪制溫度曲線狀態(tài)時可以設定溫度上下限自動判斷停止,無需人工操作。
17、儀器自動采集溫度數(shù)據(jù),液晶屏幕上直接繪制溫度曲線(每屏只能顯示單條,可以切換顯示),顯示曲線中的小值以及對應的時間和序號。同時儀器將自動保存溫度數(shù)據(jù)和溫度曲線,通過微型打印機輸出歷史存儲的溫度數(shù)據(jù)和溫度曲線,也可以將保存后的溫度數(shù)據(jù)通過軟件導入到電腦中進行分析。
18、同時選配計算機系統(tǒng)軟件采集溫度數(shù)據(jù),繪制溫度曲線,將溫度數(shù)據(jù)曲線保存到電腦;
19、機箱:303(寬)143(高)260(深)(mm);機柜開孔尺寸:300(寬)140(高)260(深)(mm)
20、重量約3.5Kg
欄目頁面:http://www.runlian365.com/chanpin/3864.html溫度曲線測試儀來源網(wǎng)址:http://www.runlian365.com/chanpin/did-22546-pid-3864.html溫度測試儀 FLC5016W 多路溫度記錄儀(曲線型)型號:RL022547多路溫度巡檢儀/16路溫度測試儀/可顯示曲線
概述 JK-16S十六通道真彩無紙記錄儀是以先進的CPU為核心,并輔以大規(guī)模集成電路、大容量FLASH存儲、信號智能調(diào)理、SmartBus總線以及高分辨率圖形液晶顯示器的新型智能化無紙記錄儀表,采用長壽命320×234TFT真彩液晶顯示屏,支持16通道通用模擬輸入或8通道模擬輸出與16通道報警輸出,設定數(shù)據(jù)與記錄數(shù)據(jù)具掉電保護功能,具有體積小、通道數(shù)多、功耗低、精度高、通用性強、運行穩(wěn)定、可靠性高等特點。二、特點 ◆ 全隔離輸入,可同時輸入多種信號,無需更換模塊,通過軟件組態(tài)即可; ◆ 采用32M大容量的FLASH閃存芯片存儲歷史數(shù)據(jù),掉電不丟失數(shù)據(jù); ◆ 標準串行通訊接口: RS-232 和RS-485; ◆ 支持Modbus RTU 協(xié)議; ◆ 剪貼板的復制和粘貼功能方便用戶的參數(shù)設置; ◆ 可以組態(tài)工程位號、工程單位; ◆ 4 組曲線顯示組合,自由曲線搭配,自定義曲線顏色; ◆ 內(nèi)置GB2312 二級漢字字庫,包含6500 個漢字; ◆ 支持漢字拼音輸入,數(shù)字、英文、特殊符號、上下標等選擇輸入,解決了單位及漢字位號的輸入問題。漢字位號、單位自定義組合輸入; ◆ 支持外接微型打印機,滿足用戶現(xiàn)場打印的需求;三、技術指標 輸入通道:1~16路 輸入信號:信號調(diào)理模塊化、智能化、通用輸入、在線校正,并含DC24V配電 電 流:4~20mA(可配電)0~10mA 電 壓:0~20mV、0~100mV、0~5V、1~5V 熱 電 阻:Pt100、Cu50 熱 電 偶:B、E、J、K、S、T 電阻信號:0~400Ω 脈 沖:0~30kHz,三角波、方波、正旋波等脈傳感器,NPN、PNP三極管脈沖傳感器 基本誤差:±2%(0~45℃,10~85%RH) 輸出通道:1~6路無源觸點,1~8路4~20mA電源智能輸出模塊 隔離功能:信號點點隔離,提供24VDC全隔離配電(可選) 顯示方式:總貌、實時趨勢、歷史趨勢、數(shù)顯、棒圖、掉電一覽、報警一覽、調(diào)節(jié)畫面等 真彩液晶:5.6寸TFT真彩液晶屏,高亮度、寬視角、顯示清晰明了 算法功能:多種帶溫壓補償?shù)牧髁克惴、PID算法等(可選) 存儲介質(zhì):0~248M,F(xiàn)LASH,非易失性存儲器,掉電不丟失,長記錄時間可達10年以上 通訊方式:RS232Z或RS485,Modbus RTU從協(xié)議 記錄管理:網(wǎng)絡連接64臺儀表,進行集中顯示、存儲、打印、管理、分析等 儀表壽命:無任何機械傳動部件,無磨損、無耗材,數(shù)據(jù)有限期10年 記錄間隔:1秒至240秒,共分11檔:1/2/4/8/12/24/36/60/120/180/240秒。 記錄容量:64/128/192/248MB(FLASH容量可選擇) 供電電源:85~265VAC,45~65Hz 開孔尺寸:138×138(mm×mm) 報 警:多6個繼電器接點,觸點負載(阻性)0.5A 125VAC / 1A 30VDC
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AT4204手持式多路溫度測試儀采用高性能32位ARM微處理器控制,可同時對多路溫度數(shù)據(jù)進行采集,上超下超報警和通訊傳輸,兼容多種溫度傳感器,響應速度快,數(shù)據(jù)穩(wěn)定,同時具備斷偶檢測功能。超低功耗設計和高密度SMD裝配工藝,真彩TFT液晶顯示屏,并具有鍵盤,觸摸屏雙控制。采用鋰電池供電,USB通訊。中英文操作界面可快速切換。儀器標配的數(shù)據(jù)采集軟件為您進行數(shù)據(jù)分析提供強有力的支持! | |||||||||||||||||||||||||||||||
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測量范圍 | 電壓: 10V – 1000V 電流: 1A – 20A 功率: 10W – 10kW |
數(shù)據(jù)采集點 | 400 點 / I-V 曲線 |
數(shù)據(jù)存儲 | 300個 IV曲線(內(nèi)存) |
輸入 檢測器 探測單元 | 太陽能電池組件/陣列 x 1(用兩條電纜連接) 日照強度計或參考電池,熱電偶 x 2 |
接口 | USB x 1(PC), RS-485 x 1(傳感器) |
測量參數(shù) | I-V曲線, Pm, Isc, Voc, FF, Ipm, Vpm 太陽發(fā)光, 溫度 x 2 STC變換, I-V 曲線導數(shù) |
電源 測試儀 探測單元 | D號電池×4或AC適配器DC9V,1.3A 006P型電池(9V) |
尺寸 檢測器 探測單元 | W: 230mm x L: 300mm x H: 160mm, 重量: 3.0 kg W: 210mm x L: 85mm x H: 55mm, 重量: 0.48 kg |
重量 | 3.0kg 探測單元:0.48kg 電池盒:0.75kg |
PC 操作系統(tǒng) | Windows 2000/XP |