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- Capacitor Banks is mainly used to absorb excess power supply from the incoming power supply.
- It can neutralized between “apparent” and “real” electrical energy power.
- Any excess from incoming source (Apparent power) will be restore in capacitor to ensure equal level of consumption (real power).
- When the consumption (real power) is measured below 85% or 0.85 power factor level, means there is an excess of 15% of apparent power (unused). As per TNB charges, penalty will be imposed for power usage below this level.
- In normal situation, good maintenance of capacitor banks will maintain the power factor level at normal level (0.85) or in a good condition (0.90-0.95).
- But in order to maintain an efficient level of power factor (0.98), a jointly control system needs to be installed, as well. If we can maintain the power factor level in an efficient manner, we then optimize and save on energy consumption (KwH).
[/vc_column_text][/vc_column][/vc_row][vc_row el_class=”x-capasitor-banks_images”][vc_column width=”1/2″][vc_single_image image=”335″ img_size=”full” css_animation=”bottom-to-top”][/vc_column][vc_column width=”1/2″][vc_single_image image=”338″ img_size=”full” css_animation=”bottom-to-top”][/vc_column][/vc_row][vc_row disable_element=”yes” css=”.vc_custom_1667980199529{padding-top: 80px !important;}” el_id=”differences-to-capasitor-bank”][vc_column][vc_custom_heading text=”Normal Power Factor” use_theme_fonts=”yes”][/vc_column][/vc_row][vc_row css_animation=”bottom-to-top” css=”.vc_custom_1667980226056{padding-top: 60px !important;}” el_class=”x-icons_block x-different_capasitor”][vc_column][stm_info_box title=”Suitable for both LPC and SPC” image=”349″ vc_image_size=”full”]Suitable for both small power consumer (SPC) and Large Power Consumer (LPC). Capacitor Banks is normally used by LPC (Large Power Consumer).[/stm_info_box][stm_info_box title=”STAR connection” image=”348″ vc_image_size=”full”]Star Connection provides optimum utilization for each phase without interfering others (separate capacitor for each phase). So, there is no wastage or excessive usage of capacitors. Other Capacitor bank acts as “Delta” connection.[/stm_info_box][stm_info_box title=”Most effective” image=”347″ vc_image_size=”full”]Effectively correcting power factor because it’s located at DB and MCB (near to the load) compared to capacitor bank that is located at MSB.[/stm_info_box][stm_info_box title=”Easy Maintenance” image=”346″ vc_image_size=”full”]Our product is installed within safety parameters and the switch is normally tempered to the board and can be reachable.[/stm_info_box][/vc_column][/vc_row][vc_row full_width=”stretch_row” css=”.vc_custom_1633500320088{margin-top: 80px !important;margin-bottom: -60px !important;padding-top: 80px !important;padding-bottom: 80px !important;background-color: #f2f2f2 !important;background-position: center !important;background-repeat: no-repeat !important;background-size: cover !important;}”][vc_column][vc_custom_heading text=”” font_container=”tag:h2|text_align:center” use_theme_fonts=”yes” subtitle=”In Binatenaga, our main purpose is to help domestic users in saving their electricity bills in terms of eliminating their power factor surcharge in electricity bills. Therefore, we are focus on development and commercialization of power factor device.”][vc_row_inner][vc_column_inner el_class=”x-quick-links_block”][vc_btn title=”Our Product” css_animation=”left-to-right” link=”url:https%3A%2F%2Fbinatenaga.com.my%2Four-solutions%2Four-main-product%2F”][/vc_column_inner][/vc_row_inner][/vc_column][/vc_row]