Static Var Compensator 400V 480V

Personalización: Disponible
Tipo: Caja de Distribución
Estructura: Placa Fija

Products Details

Información Básica.

No. de Modelo.
SVG030
Certificación
ISO9001: 2000, CCC, ce
Forma
All Tipo de empaquetado
Voltaje de la operación
Baja Tensión
Tamaño
486*88*504 mm
Rango de aplicación
corrección de factor de potencia
Material de Shell
caja recubierta de aluminio-zinc
Shell Grado de la protección
IP30
Marca
huakun
tipo de montaje
montado en pared/montado en rack
estructura de la red eléctrica
3p3w/3p4w
nivel de ruido
<65db
rango de compensación armónica
orden armónico de 2 a 50th
eficiencia de compensación armónica
> 97%
uso
corrección armónica, compensación var reactiva
Paquete de Transporte
caja de madera
Especificación
682*567*277cm
Marca Comercial
huakun
Origen
Shanghai, China
Código del HS
8543709990
Capacidad de Producción
20000pcs/año

Descripción de Producto

Static Var Compensator 400V 480VStatic Var Compensator 400V 480VStatic Var Generator (SVG) is a product aimed for Power Factor Correction, Voltage Regulation along with Three-phase Balancing Function. SHHKK-SVG can do bi-directional power factor correction, PF from 1.0 inductive to 1.0 capacitive. Benefiting from inverter technology, SVG compensation is stepless, which means SVG output shall match the system reactive power, no over-compensation or under compensation. For single module, SVG capacity ranges from 35kvar to 150kvar. For cabinet system, it's unlimited parallel design .
Compared with the traditional capacitor bank, SVG has the advantages of fast response and high
compensation accuracy without under-compensation or over-compensation problems.
Δ  Improved power factor PF ≥ 0.99
Δ  Compensated inductive or capacitive reactive
Δ  Unaffected by harmonics

Static Var Compensator 400V 480VHKK-SVG static var generator is a bridge converter composed of fully controlled power electronic devices for dynamic reactive compensation. The basic principle is that the load current is detected in real time by the external current transformer (CT), and the reactive content of load current is extracted by the internal DSP computing. Finally, the instruction value is calculated to control the PWM signal generator to send the control signal to the internal IGBT, so that the inverter can produce the reactive compensation current to meet the requirement, and finally realize the dynamic reactive compensation.
Static Var Compensator 400V 480VStatic Var Compensator 400V 480VStatic Var Compensator 400V 480VStatic Var Compensator 400V 480VStatic Var Compensator 400V 480V
System parameters
Rated input wire voltage
3 8 0 V(-1 5%~+2 0%)
Grid frequency
5 0 / 6 0 H z ( r a n g e : 4 5 H z~6 2 H z)
Number of parallel machines
1 ~ 1 0 s e t s
Overall efficiency
≥9 7%
Grid structure
T h r e e - p h a s e t h r e e - w i r e / t h r e e - p h a s e f o u r - w i r e
Current transformer
1 5 0/5~1 0 0 0 0/5
Circuit topology
T r i - l e v e l
 P e r f o r m a n c e   i n d e x
Response time
<1 5 m s
Scope of compensation
F r o m - 1 t o 1 , c a p a c i t i v e  a n d  i n d u c t i v e  c o n t i n u i t y  i s  a d j u s t a b l e
Cooling mode
I n t e l l i g e n t   a i r   c o o l i n g
Noise index
<5 6 d B
Static Var Compensator 400V 480VStatic Var Compensator 400V 480VStatic Var Compensator 400V 480VStatic Var Compensator 400V 480V

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