STP Series Parallel Electroplating DC Rectifier (N+1) Model: STP - 030 - 10000TN | ||||
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Overview | ||||
STP series DC rectifier is a rectifying type DC power supply based on high frequency switching technology of IGBT switching components. It is a product specially developed by our company for industrial applications such as electroplating, electrolysis, water treatment and hard oxidation. Compared with the traditional thyristor rectifying power supply, this series of power supplies can reduce the clients' power consumption by 20%~30%. In order to overcome the harsh environment of the applications and the long-term running conditions, the rectifier is basically water-cooled, also the three-proof treatment adopted for the internal components which can achieve effective heat dissipation of the rectifier and protection of the internal components of the rectifier. This series power supplies can cover all the above-mentioned applications, featured for complete control functions, stable performance and high cost performance. | ||||
Features | ||||
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N+1 redundant system description | ||||
Advanced current mode control & N+1 power redundant design adopted for whole power system, this control mode gives good current-sharing effects, low deviation and high CC/CV precision. This rectifier adopts N+1 redundancy system which taking redundant into account, total real output power 125% of rated value which give the rectifier system good over-loading ability, for example: Total rated power is 22V8000A, the power cabinet has four units inside in four floors, rated power of every unit is 22V2000A, each power unit has 2000A rated output current. Fault of any-one unit would not impact the whole rectifier; the other power units would compensate power loss and keeps output capacity. You could repair & replace the faulty unit without power absence, you could continue with the remaining power units. It has completely improved the irreparable work defects of traditional rectifiers, such as high energy consumption, instability, long maintenance time and delay in production. Really realized: energy saving, stable, uninterrupted work! | ||||
N+1 redundant system drawing & reference photos | ||||
Application | ||||
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Specifications | ||||
Input | Voltage | Three-phase 380Vac±10%, 50/60Hz (default) Three-phase 415Vac±10%, 50/60Hz (optional) Three-phase 440Vac±10%, 50/60Hz (optional) Three-phase 480Vac±10%, 50/60Hz (optional) | ||
Frequency | 50Hz/60Hz±5% | |||
Power | Depends on output power rating | |||
Current | Depends on output power rating | |||
Output | Rated power | 300 kW | ||
Output voltage adjusting range | 0V ~ 30V | |||
Output current adjusting range | 0A ~ 10000A | |||
CC (constant current) accuracy | ≤±1% | |||
Efficiency | ≥90% (measured @ 80%-100% resistive loading) | |||
Power factor | ≥0.92 | |||
Working ability | Withstand long-term continual working at full-loading. | |||
Setting & Display | Control mode | Local | 10-turn potentiometer (default) LCD touch screen (optional). | |
Remote | RS485 communication interface. In line with MODBUS-RTU standard. (optional) | |||
Display mode | Digital LED (default) LCD touch screen (optional) Touch screen display items as below:
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Display accuracy | Voltage | ≤±1% | ||
Current | ≤±1% | |||
Operation panel control function | Output start / stop switch Constant voltage / Constant current state transfer switch Local / Remote transfer switch (available for units equipped with remote control) | |||
Operation panel indication | Working / Fault / Overheat indications (LED) | |||
General features | Working principle | IGBT based High-Frequency PWM Control. | ||
Working mode | CC voltage-limit / CV current-limit working modes, manual switchable. | |||
Cooling method | Water cooling or forced-air cooling. | |||
Protection measures | Half-sealed air duct, three-proof treatment for circuit boards. | |||
Cable I / O | Cable entry from front, exit from back. | |||
Noise | ≤65 ~ 75dB | |||
Protection & Monitoring functions | Input protection | Input lack voltage and lack phase protection. | ||
Output over voltage protection (OVP) | Rectifier automatically cuts off output and alarms when output has over voltage. | |||
Output over current protection (OCP) | Rectifier automatically cuts off output and alarms when the output has over current. | |||
Over temperature protection (OTP) | Rectifier automatically cuts off output and alarms when the internal temperature of the rectifier exceeds OTP threshold value. | |||
Output short-circuit protection | Rectifier automatically cuts off output and alarms when the output has short-circuit. | |||
Working conditions | Ambient temperature | 0ºC~45ºC | ||
Humidity | 10%~90%(non-condensing) No flammable, corrosive object, no vibration & explosion | |||
Height | ≤2000m | |||
Size (W*H*D) (mm) | Refer to "Model list" | |||
Technology advantages | ||||
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Main components | ||||
IGBT | ||||
Infineon (the original Siemens) IGBT module. | ||||
Three-phase bridge rectifier | ||||
SANREX bridge rectifier. | ||||
Main Transformer | ||||
High-frequency Nano crystalline transformer. The transformer is a case type structure. This case is not only the protective layer, but also the output of the transformer, and it also can provide cooling water channel. Another advantage is its large conductive area, small heat. Because the transformer adopts the novel structure, the conformity of production produced is high; it is especially suitable for high rectifier manufacturing. | ||||
Output rectifier diodes | ||||
AN (original Motorola) Schottky. | ||||
Heat sink | ||||
Good quality aluminum panel, thickness up to 42mm | ||||
Output copper bar | ||||
99.9% non-oxidation red copper, designed flow ability beyond 2.5A/m2 | ||||
Cooling water pipe | ||||
RIFENG aluminum plastics compound pipe. | ||||
Breaker | ||||
CHNT or SCHNDEIDER air circuit-breaker. | ||||
Cabinet | ||||
2cm thick good cold-rolled sheet with powder coating for cabinet making. | ||||
Maintenance | ||||
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Installation environment | ||||
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