技術文件
規格
Brand
EA Elektro-AutomatikSeries
EL 9000 B HP
Load Type
Programmable
Constant Voltage Mode Range
0 → 360 V
Constant Current Mode Range
0 → 20 A
Constant Resistance Mode Range
1.4 → 600 Ω
Constant Wattage Mode Range
0 → 900 W
Rack Units
2 U
原產地
Germany
產品詳情
EL 9000 B HP Series
The electronic DC loads series EA-EL 9000 B HP replace the current EA-EL 9000 HP series. They reduce the required unit height from 3U to 2U. Meaning, the steady power of 7200 W of a former EA-EL 9000 HP device can already be achieved in 6U of height where it required 9U before. The result is a space saving of 33% which allows for achieving even more power in a 19" cabinet.
All models support the four common regulation modes constant voltage (CV), constant current (CC), constant power (CP) and constant resistance (CR). The FPGA-based control circuit provides interesting features, such as a function generator with a table-based function for the simulation of nonlinear internal resistances.
41,886.00 MOP
41,886.01 MOP Each (不含稅)
1
41,886.00 MOP
41,886.01 MOP Each (不含稅)
暫時無法取得庫存資訊。
1
暫時無法取得庫存資訊。
技術文件
規格
Brand
EA Elektro-AutomatikSeries
EL 9000 B HP
Load Type
Programmable
Constant Voltage Mode Range
0 → 360 V
Constant Current Mode Range
0 → 20 A
Constant Resistance Mode Range
1.4 → 600 Ω
Constant Wattage Mode Range
0 → 900 W
Rack Units
2 U
原產地
Germany
產品詳情
EL 9000 B HP Series
The electronic DC loads series EA-EL 9000 B HP replace the current EA-EL 9000 HP series. They reduce the required unit height from 3U to 2U. Meaning, the steady power of 7200 W of a former EA-EL 9000 HP device can already be achieved in 6U of height where it required 9U before. The result is a space saving of 33% which allows for achieving even more power in a 19" cabinet.
All models support the four common regulation modes constant voltage (CV), constant current (CC), constant power (CP) and constant resistance (CR). The FPGA-based control circuit provides interesting features, such as a function generator with a table-based function for the simulation of nonlinear internal resistances.