Voltage Regulator Rectifier (HCR)|Silicon Controlled Rectifier KHSA-25KA12V-2 with Forward Current R

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seat: Beijing
Validity to: Long-term effective
Last update: 2017-09-27 07:28
Browse the number: 326
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Product details

Series

Name

Parameter

Remark

1

Input

AC415V, 3 phase,frequency: 50Hz


2

Ambient Temperature

-5° - 45°


4

Output DC IdN

0-25000A

Continuously adjustable

5

Output DC UdN

0-12V

Continuously adjustable

6

regulated current accuracy

±0.5%


7

Power factor

>0.85


8

Mode of connection

double reverse star 6 pulse wave


9

Control method

Constant current,

Local control/ remote control

switching gear control

10

Control function

PLC+HMI

communicate with pc

11

Current DC output mode

forward output / reverse output

Forward, reverse and interval time can be set

12

Cooling mode

Water / air


13

Protection function

Over-current protection,Over-voltage protection,

Element damage Alarm,Over-temperature protection,

Cooler fault alarm


14

Record

voltage AC, voltage DC, current DC, power DC,

control angle, transformer oil temperature


15

Allow overload capacity

120% IdN   1 min

Within 24 hours

16

Noise

≤60dB

ahead 1m

17

Remote communication way

RS485


Digest of High Current Rectifier(HCR)technical documents.

Part twelve of User Manual

Chapter IV: Intelligent Fault Detector


 

Foreword:

As a new generation of intelligent SCR fault and bus temperature detector researched and developed for large rectifying (variable current) electrical equipment by means of modern electronics technology, BS-T1228-III has fault position display and light warning in the front panel and fault relay control output and fault remote transmission function in the real panel (communication with the host computer through 485) in case of detection equipment fault. With simple and easy use, this instrument may only be correctly wired according to the wiring diagram of each part at the rear of the detector.

Ⅰ.Functions

1. 108 normally open contacts for fault detection, including:

96 KP detection points

12 high bus temperature points

2. Fault position display

3. Light indication alarm in case of fault

4. Relay output control functions in case of fault

5. Fault position remote transmission function

Ⅱ. Description of monitoring point matrix wiring:

KP fault detector has up to 108 normally open contacts for monitoring, which are accessed in matrix mode in wiring. The method for access of the normally open contacts to the monitoring board terminal block is shown below.

1. Monitoring element:

The element has two wiring pins, assumed pin 1 and pin 2.

2.  Concatenated diode:

Connect a diode in only one pin (pin 1 or 2, one pin rather than pin 1) of each element and lead from one pin (pin not connected with the normally open contact) of the diode and one pin (pin not connected with the diode) of the normally open contact with two wires respectively, as shown in Figure 2 below.

3. Element arrangement in matrix mode:

3.1 Make 96 KP fault monitoring points and 12 temperature monitoring points into a matrix of 12 rows and 9 columns and make sure to connect the outgoing lines from one end of all diodes to the row lines and the outgoing lines from one end of the elements to the column line without mistakenly connecting.

3.2 Arrange all KP (ZP) monitoring elements in columns 1-8 and all temperature monitoring elements in the 9th column.

Figure 3 below shows the permutation and combination mode of 108 elements.

Ⅲ. Why to concatenate the diode:

1. Not concatenate diode:

Figure 4 is the wiring diagram without concatenated diode. According to this figure, if KP101 in the 10th row and 1st column, KP102 in the 10th row and 2nd column and KP111 in the 11th row and 1st column are damaged, KP112 in the 11th row and 2nd column is not changed. But the monitor detection results show that KP111 bad flexibility in the low 11th row makes the column line in the 1st column low. With KP101 bad flexibility, the low column line in the 1st column is transferred to the 10th row, the row line in the 10th row is low  and the column line in the 2nd column is low due to KP102 bad flexibility. The monitor detects that KP112 and subsequent elements (KP112 and subsequent elements may not be damaged actually) are damaged and obtains an error result.

2. Concatenate diode

Figure 5 is the wiring diagram with concatenated diode. According to this figure, if KP101 in the 10th row and 1st column, KP102 in the 10th row and 2nd column and KP111 in the 11th row and 1st column are damaged, KP112 in the 11th row and 1st column is not changed. But the monitor detection results show that the 11th row is low, KP111 damage and flexibility make the 1st row line low. With KP101 damage and flexibility, the low column line in the 1st column is transferred to the diode D101 concatenated. Due to the role of D101, the low signal is blocked and the row line in the 10th row is not low. In this time, the low signal is not transmitted to the column line in the 2nd column although KP102 damage and flexibility and the monitor detects KP112 without error results.

Ⅳ. Front Panel

The upper part of the front panel displays the detector model, the two nixie tubes in the left below the model display the row number of the fault element in the access of the detecting element according to the matrix method and one nixie tube in the right below the mode displays the column number of the fault element. Four circular window indicator lights from bottom to up below the element row nixie tube and column nixie tube are used for indication of single element damage, double element damage, damage of double elements on the same arm and high bus temperature fault. Two nixie tubes at the bottom of the front panel indicate the high bus temperature element position. The explanatory note expressing the nixie tube or indicator light meaning is printed below or in the right of each nixie tube or indicator light.

Ⅴ. Rear Panel

There are three rows of binding posts on the rear panel of BS-T1228-III intelligent fault detector. In 14 binding posts in the left row, the upper 5 binding posts are fault relay output terminals, i.e. single element damage, double element damage, damage of double elements in the same bridge arm, high bus temperature from up to bottom respectively as well as the common terminal for above four faults. Terminals 6-13 are column line terminals of the elements connected in the matrix mode and the binding post 14 is the temperature column terminal.

There are only 4 terminals in the middle row, i.e. two 220V AC power supply terminals in the top and 485A and 485B communication terminals in the bottom.

In 13 terminals with an installation mark in the right row, 12 terminals from up to bottom are row line terminals of the elements connected in the matrix mode, with 1st row at the top (first under the installation mark) and 12th raw at the bottom, i.e. row 1, row 2, row 3...row 12. The terminal KIN at the bottom (13th) is the address setting allowed terminal.

Ⅵ. Connection

The terminal connection diagram and explanatory note are pasted on both sides and at the back of the enclosure. Make sure to connect correctly according to the note in the connection.

Special notes:

1. 220V AC power supply must be connected in the top two terminals of the binding posts in the middle row. If it is connected to any other two terminals, the detector will be burnt.

2. Do not try to take the circuit board out from the enclosure and be sure to pay attention to the installation mark when reloading if taking out; otherwise, wrong wiring may burn the detector.

3. The detector burnt due to wrong connection of 220V power supply does not enjoy warranty.


The High Current Rectifiers listed on this website is customized, just for your reference. If you have any specific demands,please tell us the parameters in details. We’ll be more than happy to work with you to meet your exact requirements.

The main parameters of our Thyristor / Diode High Current Rectifiers for Industrial Applications:

A)Voltage Specification:  5V - 3000V

B)  Current Specification:  300A - 240000A

C)  Output Current Adjusting Range: 0 - 1000A

 

High Current Rectifier(HRC)KHSA-25KA12V-2  Structure Feature & Advantages

▲ Adopted cophase counter parallel connection Rectification,wihich can increase the power factor and reduce power loss

▲ Three-phase bridge rectification,which has the characteristics of reliability,stability,and low losses

▲ Adopted aluminum frame and glass antimagnetic cabinet, which suit for monitor and maintenance

▲ Power is scalable

▲ Can be maintained with electricity.

▲ With Low noise 

▲ Easy to operate 

▲ Superiority of Ture Rdundancy technique

▲Over / low Voltage protection    

▲Over / low current protection   

▲Over / lack water protection        

▲Over temperature protection

▲Fast fuse protection      

▲Phase protection  

 

Our products of High Current Rectifier (HRC) are customized according to clients’s parameters.They are used in variety of applications as follows:

1.Plating: Chrome, Zine, Nickel, Copper, Gold, Silver

2.Metal smelting: Aluminum, Copper,  Zine, Lead, Manganese, Magnesium, etc.

3.Ionic membrane: Electrolysis of salt, etc

4.Silicon carbide smelting & Graphitization furnace

5.Experimental power supply

6.Copper foil, aluminum foil special power supply

7.Electrochemical: Chlor-alkali, etc

8.Electrolysis: Copper, Zine, Tin, Lead, Aluminum foil, Copper foil

 

The expert teams with 20 years experience can supply equipment design,manufacture, upgrading and after sales service. It’s quality management system meets the requirement of the ISO9001:2008 standard. The Technical level of main equpment is ten years ahead in China,and the control system is twenty years ahead at home and abroad.

We service with pride and care and give you a best solution.

 

 

Packing Details:In iron sheet case with waterproof and anti collision treatment

Delivery Details: 1-3 months, depending on your technical parameters

 

 

Please give us the follows technical information before order:

1  A.C. INPUT

• A.C: rated voltage

• Phases

• Frequency

2  D.C. OUTPUT

• Rated D.C. voltage

• Rated D.C. current

• D.C. voltage fine control range (thyristors)

• D.C: current control range

• Accuracy of current fine control

• Pulse number

• Ripple

 

1. Within the first year, if you need any spare parts for replacement, we can provide to you without

paid. And we will offer lifelong technical support and service.

 

2. Within the first year, if you need any spare parts for replacement, we can provide to you without

paid. And we will offer lifelong technical support and service.

 

 

1.Q:Are you a factory or trading company?
A: We are a factory.

 

2. Q: Where is your factory? How can I visit there?

A: Our factory is located in Xi’an, middle part of China, about an hour bus ride from Xi’an Xianyang Airport, which in the starting point of Ancient Silk Road.Welcome to visit us.

 

3. Q:When can I get the price?

A:Usually we quote within 24 hours after we get your inquiry.




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