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  C 510 is operating with high accuracy in determining the magnetic properties of electrical steel return to overview
     
 

This abbreviation “C 510” stands for a unique measuring instrument composed of modules and operating with high accuracy in determining the magnetic properties of electrical steel in all the usual material qualities, thicknesses and geometries.
With its user interface and measuring possibilitiesof the new C 510 enables quality control during the whole production process – from strip steel supplied as raw material to the finished punched part and the complete stator ,transformer or ring core. By determining the magnetic properties and in particular hysteresis losses/ (loss in wattage ), the C 510 provides information about the quality of each material, as well as each manufactured part.

Easy to handle and easy to operate

The new C 510 consists of a fully digitalized measuring unit and a superordinated PC.
For user-friendly operation and data processing under Windows XP the familiar MPG -Expert software already applied in BROCKHAUS laboratory measuring equipment is used. So there are excellent input and presentation possibilities. Data transmission to superordinated data capture systems is optimised. The comprehensive MPG-Expert software ensures the variety of measuring possibilities offered by the new C 510 and enables quick time-saving changeover between very different measuring tasks.
As an alternative the C 510 can be operated as a stand-alone instrument with a high-resolution graphics screen and laser-printer. In order to carry out comprehensive quality controls for companies processing electric sheets the new C 510 can be supplied with the following 3 measuring coil systems for different measuring requirements:
- Single-sheet-test measuring sensor (Type SST) for electric sheet strip steel
This sensor was developed for use in material entry checks, in machine inputs of automatic cutting and punching machines and in production lines for transformer cores. The SST measuring sensors are double-yoke measuring systems constructed under consideration of the IEC standard 4040-3. The primary and secondary coils enclose the sample. The c-shaped measuring yoke surrounds the magnetic circuit. The magnetic field is determined by measuring the generating current with the aid of a precision resistor
- Measuring sensor for punched parts and small cuts (Type C 510)
This sensor is composed of an upper and a lower yoke. It encloses the material sample to be measured on both sides with a measuring pole area of 26 x 25 mm. The primary coil of the measuring sensor creates a magnetic field in the sample which is measured with a Rogowski coil. In the secondary coil system a voltage is induced which provides a standard for the electromagnetic properties of the sample.
- Measuring module for rings, stators, transformers (Type RST)
With the newly developed BROCKHAUS measuring module RST the magnetic properties of ring cores, stators and transformers can now be determined directly on the part under conditions similar to those in the manufacturing process. The controls take place in an alternating field conforming to international standards with regard to precision and accurate setting. What is special about this technique is that, depending on the size of the object to be measured (magnetic distance), 1 to 2 windings suffice to carry out a comprehensive check of the magnetic properties without any additional preparation of the sample.

The C 510’s main advantage is the control of material quality

Not only because of the optimal price/performance ratio and the ensuing high economic efficiency do companies engaged in the processing of electric sheets choose the BROCKHAUS C 510. It is, moreover, the modular construction which makes it possible to produce exactly according to the customer’s requirements. So the C 510 always provides the best individual solution for the quality control of the material to be processed.
These are oriented and non-oriented electric sheets and the punched parts of all material qualities and geometries which are produced from these.

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