Energypac applies new technologies that cross traditional scientific disciplines and conventional industrial boundaries to solve product development tasks, thus producing added value for its customers. Energypac R&D creates the basic elements that make a product both desirable and competitive. Energypac R&D activities focus on products and applications that are reliable, self-diagnostic, cost-efficient to operate, and that produce minimal environmental impacts throughout their lifecycles. A paramount priority in Energypac R&D activities is to develop and safeguard the company’s critical areas of expertise. Energypac research and development wing has co-operation agreements with research institutes, engineering consultants, licensees, and other corporate partners in fields that are of crucial importance to the well-being of society and the conservation of the environment. |
| |
| Product development is based on effective work process management to ensure that the set targets are reached. These boundary conditions form the hub of the process around which a reliable and cost-effective product is developed. The performance of the products and their features are verified through simulations and tests. Energypac actively develops the compatibility of its products and common technology platforms, as well as designing products that are easy to manufacture. A substantial proportion of the company’s investments in product development are targeted at reducing environmental impacts. |
| |
| Energypac’s Research & Development team is comprised of talented, experienced, and young engineers who love to search for better and takes personal interest to innovate and add value to technological advancement. This is a knowledge based operation equipped with rare and important books, journals, equipments, tools & tackles, affiliation with various local and international research institutions. |
| |
| Our Research & Development wing is having significant roles in developing our products. Some of those could be laid down as follows: (Create bullet like products and services and place it under Routine Works) |
| |
Detailed electrical design
All electrical calculations
Detailed mechanical design
Raw material specification
OLTC specification
Accessories specification
Performance forecast
Bill of materials
Special instructions
esting procedure
Complete manual
Costing including wastage
|
| |
| Recent achievements of R&D team: (Place this under Recent Achievements) |
| |
| 1. Design of New Loading Transformer |
| |
| 2. Installation of Communication Module to Upgrade the New Vacuum Chamber |
| |
| 3. Improvement of Testing: |
| |
 |
Implementation of Power Analyzer: |
| |
|
 |
Good bye to two watt meter method |
| |
|
 |
Real time data retrieved |
| |
|
 |
3 channel view of voltage, current, watt, power factor, and frequency |
| |
|
 |
Harmonic Spectrum, Flicker, THD, and LOH measurement |
| |
|
 |
Real time data saving |
| |
|
 |
Graphical analysis |
| |
|
 |
Instant test report |
| |
|
 |
More accuracy with less time |
|
| |
|
Human Machine Interface: |
| |
|
 |
Computer control interface |
| |
|
 |
No load loss, full load loss and DF with same panel |
| |
|
 |
Software controlled testing |
| |
|
 |
Time efficient |
| |
|
 |
Automatic change of internal connections |
| |
|
 |
International standard testing panel |
|
| |
|
|
Invention of New Testing Scheme: |
| |
|
 |
Capacitive compensation for full load test for higher MVA |
| |
|
 |
Combined DF and HV test for 132 kV rating job |
| |
|
 |
Inductive compensation in DF testing for reducing huge capacitive effect for higher MVA job |
|
| |
|
|
Partial Discharge Measurement: |
| |
|
 |
Supported directly from erection to commissioning |
| |
|
 |
Performed regular test for environmental noise |
| |
|
 |
Plan to perform type test for CT and PT |
|
| |
|
|
On Site Loss Measurement: |
| |
|
 |
To provide loss measurement service at site to determine the amount of loss than the defined loss |
| |
|
 |
To find out the cause of losses |
| |
|
 |
To suggest the cure of preventing loss |
| |
|
 |
To improve design for loss corrections |
|
| |
| 4. Software development: |
| |
 |
Transformer Design: Based on Excel and VBA |
| |
 |
Design Analysis Cost, Force and Performance: Based on C# |
| |
 |
MIS Software: Based on PHP, Java Script, HTML, and MY-SQL |
| |
 |
Drawing Management: Based on C# and Access |
|
| |