Vicor introduces the latest K=1/16, 384VDC-24VDC products in ChiP package to further enrich high-voltage bus conversion

The new BCM6123TD1E2663Txx is a high-density, high-efficiency, fixed-ratio DC-DC converter module housed in a ChiP package. It delivers an isolated, ultra-low voltage (SELV) 24V secondary output with a 384VDC rated input voltage. This advanced module comes in a through-hole package measuring 61mm x 23mm x 7.26mm, making it ideal for space-constrained applications. ![0.jpg](http://i.bosscdn.com/blog/20/17/11/2216630286488.jpg) This latest addition to Vicor’s high-voltage bus converter family expands their range of solutions, including K=1/8 (384-48VNOM), K=1/32 (384-12VNOM), and the newly introduced K=1/16 (384-24VNOM). These modules are designed to simplify the creation of universal bus voltages such as 12V, 24V, and 48V directly from a 384VDC source, making them suitable for industrial, telecom, and lighting applications. ![1.jpg](http://i.bosscdn.com/blog/20/17/11/2216632615739.jpg) Based on Vicor’s patented sinusoidal amplitude converter topology, the high-voltage BCMChiP achieves up to 98% peak efficiency and a power density of 2400W per cubic inch. These flexible modules can be easily integrated into high-power arrays, with outputs that can be connected in series for higher output voltages. Each module supports both analog and digital signal interfaces, and all operate within a wide temperature range of -40°C to 100°C. Additionally, Vicor’s BCMs are bidirectional, allowing designers to incorporate this feature into their systems and enhance overall functionality. The sinusoidal amplitude converter also helps reduce the large capacitance needed at the load by leveraging its low AC impedance, effectively reflecting the module's total capacitance back to the primary side. For example, a 500μF 24V point-of-load capacitor requirement can be met with just 2μF on the primary side of the module, significantly reducing system costs and component count. For more information about these products, visit [Vicor’s official website](http://).

Battery

The Solar Battery is an innovative device that harnesses the power of the sun to store energy for later use. It combines the benefits of solar panels and energy storage, providing a sustainable and reliable solution for powering your home or business. Let's explore how to use it, how it works, and what it can do.

How to Use the Solar Battery:

Using a Solar Battery is quite straightforward. Here are the basic steps:

1. Installation: The Solar Battery is typically installed alongside your existing solar panel system. It can also be retrofitted to an existing solar panel setup. A professional installer can guide you through the process.

2. Charging: During daylight hours, the solar panels generate electricity from the sun's energy. This electricity is used to power your home or business, and any excess energy is directed to charge the Solar Battery.

3. Energy Storage: The Solar Battery stores the excess energy generated by the solar panels. It can store energy for later use when the sun is not shining or during power outages. The stored energy can be used during the night or when the demand exceeds the solar panel's production capacity.

4. Powering Devices: The stored energy in the Solar Battery can be used to power various devices in your home or business. It can provide electricity to appliances, lighting, and other electrical systems just like a traditional power source.

5. Monitoring: Many Solar Battery systems come with monitoring capabilities, allowing you to track the energy production, storage, and usage. This helps you optimize your energy consumption and make informed decisions.

How the Solar Battery Works:

The Solar Battery works by utilizing advanced lithium-ion battery technology combined with a charge controller and inverter. Here's a simplified explanation of how it operates:

1. Solar Panel Integration: The Solar Battery is connected to the solar panel system, which generates DC (direct current) electricity from sunlight.

2. Charge Controller: The charge controller regulates the flow of electricity from the solar panels to the battery. It ensures that the battery is charged efficiently and protects it from overcharging or discharging.

3. Battery Storage: The Solar Battery stores the excess electricity generated by the solar panels. It converts and stores the DC electricity as AC (alternating current) energy, which is the standard for most household appliances.

4. Inverter: The inverter converts the stored AC energy back to DC electricity when needed. This allows the Solar Battery to power devices and appliances in your home or business.

5. Energy Management: The Solar Battery's management system optimizes the flow of electricity, ensuring efficient usage and minimizing wastage. It intelligently manages the stored energy based on your consumption patterns and energy needs.

What the Solar Battery Can Do:

The Solar Battery offers several benefits and capabilities:

1. Energy Independence: By storing excess solar energy, the Solar Battery reduces reliance on the grid and allows you to use renewable energy even during non-sunny periods or power outages.

2. Cost Savings: Utilizing stored solar energy can significantly reduce your electricity bills by minimizing the need to draw power from the grid during peak rate periods.

3. Environmental Impact: By using solar energy, the Solar Battery helps reduce greenhouse gas emissions and dependence on fossil fuels, contributing to a cleaner and greener environment.

4. Backup Power: During power outages, the Solar Battery can provide a reliable backup power source, ensuring uninterrupted operation of critical devices and appliances.

5. Load Shifting: The Solar Battery allows you to shift energy usage from high-demand periods to low-demand periods, further optimizing energy consumption and potentially reducing costs.

Lithium-ion Battery, Lead-acid Battery, Rechargeable Battery, Battery Capacity, Battery Voltage

Bosin Power Limited , https://www.bosinsolar.com

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