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产品名称: 台湾得益 DER EE DE-5000 双显示LCR电表
型号: DE-5000
产品特性:
● 19999 / 9999 數值雙顯示的高精確度LCR儀錶
● 可測量電感 / 電容 / 電阻元件,並於副顯顯示消耗因素(D),品質因素(Q),相位角(θ),等效串聯阻抗(ESR),並聯阻抗(RP)
● 可自動判斷交流阻抗或直流電阻的量測檔位
● 在AUTO-LCR測量模式時,自動判斷L/C/R 的量測,不須切換功能鍵
● 可根據DUT阻抗,自動選擇串聯或並聯模式顯示
● 可選擇100Hz / 120Hz / 1kHz / 10kHz / 100kHz 量測頻率
● SORTING功能,方便使用者做元件分類挑選
● LCD背光功能,方便黑暗地方使用
● 本儀錶使用單一9 V電池,也可選擇外接DC 9 V Adaptor 的電源輸入
● 測試數據可透過光學式 IR to USB 界面,轉存到電腦
規 格
· 量測參數:Ls/ Lp/ Cs/ Cp/ Rs/ Rp/ D/ Q/ Θ/ ESR LCR自動選擇
· 量測模式:串聯 / 並聯模式
· 顯示規格:19999/ 1999 數值雙顯示
· 跳檔方式:自動換檔
· 量測端子:4線式彈片夾及端子,GUARD端子
· AUTO LCR量測範圍:L: 20.000μH ~ 2.000 KH
C: 200.00pF ~ 20.00mF
R: 20.000 Ω ~ 200.0 MΩ
DCR: 200.00 Ω ~200.0 MΩ
· 量測頻率:100Hz、120Hz、1KHz、10KHz、100KHz
· 背光:有
· 元件挑選誤差容許:±0.25%、±0.5%、± 1%、±2%、±5%、±10%、±20%、-20%+80%
· 量測信號:0.5 Vrms
· 量測速率:1.2次/ 秒
· 反應時間:約1秒/ 待測物
· 自動關機:5分鐘內無使用任何按鍵
溫度/溼度
· 操作溫度,濕度:0°C to 50°C; 0-70% 相對濕度
· 儲存溫度,濕度:-20°C to +60°C; 0-80% 相對濕度
外型尺寸/重量
· 尺寸:188(L) x 95(W) x 52.5(H)mm
· 重量:約 350 公克 (單機重量,不含電池及配件)
附 件
· 標準配件:測試棒盒(TL21)、接地線(TL23)、9V電池、說明書、電源轉接器
· 選購配件:IR-USB轉換盒, USB線, 筆式測試夾 (TL22)
電氣規格
規格表示如: ± ( 讀值% +位數數值 ),溫度23°C ± 5°C,濕度<75% R.H.
■ Resistance (Parallel / Series mode)
Range |
Resolution |
100/120Hz |
1kHz |
10kHz |
100kHz |
20.000Ω |
0.001Ω |
─ |
1.0%+3* |
1.0%+3* |
2.0%+3* |
200.00Ω |
0.01Ω |
1.0%+3 |
0.3%+2 |
0.3%+2 |
0.6%+3 |
2.0000kΩ |
0.0001kΩ |
0.3%+2 |
0.3%+2 |
0.3%+2 |
0.6%+3 |
20.000kΩ |
0.001kΩ |
0.3%+2 |
0.3%+2 |
0.3%+2 |
0.6%+3 |
200.00kΩ |
0.01kΩ |
0.5%+2 |
0.5%+2 |
0.5%+2 |
1.0%+3 |
2.0000MΩ (2.000MΩ) |
0.0001MΩ |
1.0%+3 |
1.0%+3 |
1.0%+3 |
─ |
0.001MΩ |
─ |
─ |
─ |
2.0%+3* | |
20.000MΩ (20.00MΩ) |
0.001MΩ |
2.0%+3* |
2.0%+3* |
─ |
─ |
0.01MΩ |
─ |
─ |
2.0%+3* |
─ | |
200.0MΩ |
0.1MΩ |
2.0%+3* |
2.0%+3* |
─ |
─ |
* Do open/short calibration before measuring for above ranges with * to have better precision measurements.
■ DCR
Range |
Resolution |
Accuracy |
200.00Ω |
0.01Ω |
1.0%+3* |
2.0000kΩ |
0.0001kΩ |
0.2%+2 |
20.000kΩ |
0.001kΩ |
0.2%+2 |
200.00kΩ |
0.01kΩ |
0.5%+2 |
2.0000MΩ |
0.0001MΩ |
1.0%+3 |
20.000MΩ |
0.001MΩ |
2.0%+3* |
200.0MΩ |
0.1MΩ |
2.0%+3* |
* Do open/short calibration before measuring for above ranges with * to have better precision measurements.
■ Capacitance (Parallel / Series mode)
Range |
Resolution |
100/120Hz |
1kHz |
10kHz |
100kHz |
200.00pF |
0.01pF |
─ |
─ |
1.2%+5* |
2.0%+5* |
2000.0pF |
0.1pF |
─ |
2.0%+3* |
0.3%+2 |
0.6%+3 |
20.000nF |
0.001nF |
2.0%+3* |
0.3%+2 |
0.3%+2 |
0.6%+3 |
200.00nF |
0.01nF |
0.3%+2 |
0.3%+2 |
0.3%+2 |
0.6%+3 |
2000.0nF |
0.1nF |
0.3%+2 |
0.3%+2 |
0.6%+2 |
2.0%+5* |
20.000μF (20.00μF) |
0.001μF |
0.3%+2 |
0.6%+2 |
1.2%+5* |
─ |
0.01μF |
─ |
─ |
─ |
3.0%+5 (10μF max.)* | |
200.00μF (200.0μF) |
0.01μF |
0.6%+2 |
1.0%+3* |
─ |
─ |
0.1μF |
─ |
─ |
3.0%+5 (100μF max.)* |
─ | |
2000.0μF (2000μF) |
0.1μF |
1.0%+3* |
─ |
─ |
─ |
1μF |
─ |
1.2%+3* |
─ |
─ | |
20.00mF |
0.01mF |
1.2%+3* |
─ |
─ |
─ |
If reading <2000, unit on display is pF
* Do open/short calibration before measuring for above ranges with * to have better precision measurements.
■ Inductance (Parallel / Series mode).
Range |
Resolution |
100/120Hz |
1kHz |
10kHz |
100kHz |
20.000μH |
0.001μH |
─ |
─ |
─ |
2.5%+5* |
200.00μH |
0.01μH |
─ |
─ |
1.2%+5* |
0.6%+3 |
2000.0μH |
0.1μH |
─ |
2.0%+5* |
0.6%+3 |
0.6%+3 |
20.000mH |
0.001mH |
1.2%+5* |
1.0%+5 |
0.3%+2 |
0.6%+3 |
200.00mH |
0.01mH |
0.3%+2 |
0.6%+3 |
0.3%+2 |
1.2%+5* |
2000.0mH |
0.1mH |
0.3%+2 |
0.3%+2 |
0.6%+3 |
─ |
20.000H |
0.001H |
0.3%+2 |
0.6%+3 |
1.2%+5* |
─ |
200.0H |
0.1H |
0.6%+3 |
1.2%+5* |
─ |
─ |
2.000KH |
0.001KH |
1.2%+5* |
─ |
─ |
─ |
If reading <2000, unit on display is μH
* Do open/short calibration before measuring for above ranges with * to have better precision measurements.
■ Accuracy v.s. Resistance (ZDUT)
|
DCR |
100/120Hz |
1kHz |
10kHz |
100kHz |
0.1~1Ω |
1.2%+5* |
1.2%+5* |
1.2%+5* |
1.2%+5* |
2.5%+5* |
1~10Ω |
0.6%+3* |
0.6%+3* |
0.6%+3* |
0.6%+3* |
1.2%+5* |
10~100kΩ |
0.3%+2 |
0.3%+2 |
0.3%+2 |
0.3%+2 |
0.6%+3 |
100k~1MΩ |
0.6%+3 |
0.6%+3 |
0.6%+3 |
0.6%+3 |
2.5%+5* 100k~2MΩ |
1M~20MΩ |
1.2%+5* |
1.2%+5* |
1.2%+5* |
2.5%+5* | |
>20MΩ |
2.5%+5* |
2.5%+5* |
2.5%+5* |
─ |
─ |
* Do open/short calibration before measuring for above ranges with * to have better precision measurements.
If D > 0.1, the accuracy should be multiplied by
If D << 0.1 in capacitance mode ZC = 1/2πfC
If D << 0.1 in inductance mode ZL = 2πfL
Sub-display parameters accuracy
Ae = impedance (Z) accuracy
Definition: Q = 1/D & Rp = ESR * (1+1/D2)
D value accuracy De = ± Ae *(1+D)
ESR accuracy Re= ± ZM * Ae (Ω)
ie., ZM = impedance calculated by 1/2πf C or 2πf L
Phase angle θ accuracy θe= ± (180/π) * Ae (deg)
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