Toshiba HV6CS-MU operation manual Installation, Mounting the VCB, Mounting in the panel

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3. Installation

Make sure the location satisfied the requirements listed under Storage and Installation Location (page 3) and check the dimensions using the diagrams in other catalogs or external view diagrams and panel cut diagram. Prior to installation, the maximum fault current capacity of the power system at the point of installation should be verified. This value must not exceed the symmetrical interrupting capability of the circuit breaker. See typical circuit breaker nameplate below.

DANGER

Do not exceed the ratings specified on the breaker nameplate or system accessories. Underrated equipment can fail during operation causing fire, explosion, severe injury, death, and property damage.

Typical Circuit Breaker Nameplate

3.1Mounting the VCB

3.1.1Mounting in the panel

The standard panel thickness is t3.2. Consult Toshiba when using with other thicknesses. To mount the VCB, perform the steps shown in Figures 8 through 10 in that order, referring to the tightening torque in Table 5.

Figure 7 Remove the four (4) panel

 

Figure 8 Align to the panel holes

mounting bolts (M8) and two (2) pan-head

 

and mount the VCB with two (2)

screws (M4) from the VCB.

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upper bolts on the panel.

 

 

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Contents HV6CS Vacuum Circuit Breakers Fixed Type 7.2kV Voltage Class Page Important Notice About This Manual Contacting TIC’s Customer Support Center Table of Contents Safety Alert Symbol General Safety InformationEquipment Warning Labels Equipment Inspection Operating the VCB Connecting and disconnecting the main circuitDuring Use Installation locationSpecial environmental conditions Applicable standards pertaining to switching surges Part Names Receipt and Unpacking From Receipt to StorageWrong Incorrect Method of Transportation TransportTransportation Manual handling Storage Mounting the VCB InstallationMounting in the panel Screw Tightening Tightening torque Nominal Torque Dia Mounting Directly onto the FloorPage Pass the cable or conductor through the insulating cylinder Main Circuit Terminal ConnectionsControl Circuit Cable Connections Ground Terminal ConnectionsFor Motorized Spring-operated VCBs OperationManual Operation Closing the CircuitCharging Handle Closed Lever Opening the Circuit Electrical Operation Motorized Operation Control CircuitUndervoltage Trip Plug Installed in UV Trip DeviceMaintenance Record Maintenance/InspectionsTypes of Maintenance and Inspection Work During Maintenance/InspectionsInspection Frequency Type of inspection Inspection frequency Periodic Inspection CheckpointsLocation Inspection Criteria Disposition Remarks Method Vacuum CheckPrecautions Test Procedure Dielectric Breakdown Characteristics Page Toshiba

HV6CS-MU specifications

The Toshiba HV6CS-MU is a high-performance semiconductor device, primarily designed for automotive applications, particularly in battery management systems and electric vehicles. This versatile chip is part of Toshiba's HV series, known for its reliability, robustness, and efficiency in handling high voltage operations.

One of the standout features of the HV6CS-MU is its ability to operate at high voltages, making it suitable for demanding environments where traditional components may falter. It supports voltages up to 600V, which is essential for managing the power requirements of electric and hybrid vehicles. This high voltage capability allows for efficient energy management in various systems, from power inverters to energy storage units.

Additionally, the HV6CS-MU leverages Toshiba's proprietary technologies, including advanced gate drive and protection circuits. These technologies ensure that the device operates safely and reliably under various conditions. The built-in protection features help guard against over-voltage, over-current, and thermal problems, which are critical for maintaining system integrity and longevity.

Another compelling aspect of the HV6CS-MU is its efficiency. With low on-resistance and fast switching times, it minimizes power loss during operation. This efficiency translates not only to improved performance but also to extended battery life in electric vehicles. The ability to conserve energy is paramount in today's automotive industry, where sustainability and energy efficiency are increasingly important.

Furthermore, the HV6CS-MU is designed with a robust thermal management system. It can operate at elevated temperatures without compromising performance, making it suitable for various automotive environments. This feature is particularly vital in electric vehicles, where components are often subjected to significant heat during operation.

In terms of packaging, the HV6CS-MU comes in a compact, integrated format, allowing for ease of installation within various electronic assemblies. Its small footprint makes it ideal for space-constrained applications, providing engineers with more design flexibility.

In summary, the Toshiba HV6CS-MU is a state-of-the-art semiconductor device that embodies advanced technology, high efficiency, and robust performance characteristics. Its high voltage operation, integrated protection features, and efficient energy management make it a pivotal component in modern automotive designs, particularly in the realm of electric and hybrid vehicles. As the industry continues to evolve towards electrification, devices like the HV6CS-MU will play an essential role in shaping the future of automotive technology.