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DC-to-DC Power Conversion

High-Efficiency DC Power for Critical Loads

Parasol Elite Power's DC-to-DC conversion systems deliver precise, regulated DC voltage to mission-critical loads — eliminating AC conversion losses, reducing infrastructure complexity, and maximizing efficiency in data centers, battery systems, and industrial applications.

The Challenge

AC Conversion Losses Are Costing You Efficiency

Traditional power distribution converts DC to AC and back to DC multiple times before reaching the load. Each conversion step introduces losses, adds infrastructure, and creates potential failure points. For high-density computing, battery storage, and precision industrial loads, direct DC distribution is a fundamentally more efficient architecture.

98%+
Conversion efficiency of Parasol DC-to-DC systems
3–8%
Typical losses eliminated by removing AC conversion stages
40%
Reduction in power conversion infrastructure footprint
99.99%
Availability target for Parasol DC-to-DC conversion systems
The Solution

Direct DC. Maximum Efficiency. Minimum Complexity.

Parasol DC-to-DC converters step voltage up or down within the DC domain — connecting battery storage, solar generation, fuel cells, and DC loads without the losses and complexity of AC conversion. Purpose-built for behind-the-meter power architectures.

High Conversion Efficiency

98%+ conversion efficiency across the full operating range, minimizing heat generation and reducing cooling infrastructure requirements.

Wide Input Voltage Range

Accepts a broad input voltage range to interface with battery systems, solar arrays, fuel cells, and other DC sources at varying state of charge.

Precise Output Regulation

Tight output voltage regulation protects sensitive computing and industrial loads from voltage excursions that cause equipment damage or downtime.

Bidirectional Operation

Bidirectional models support both power delivery and energy recovery — enabling regenerative braking, battery charging, and grid services.

Seamless EMS Integration

Native integration with the Parasol EMS for real-time monitoring, load management, and coordinated dispatch across the full power system.

Modular & Scalable

Parallel multiple units to scale capacity. Hot-swap modules maintain availability during maintenance without system shutdown.

Applications

Where DC-to-DC Conversion Delivers the Most Value

01
Data Centers

Direct DC distribution to server racks eliminates multiple AC/DC conversion stages, reducing PUE and increasing the power available to compute.

02
Battery Storage

Interface battery systems operating at varying voltages to DC bus infrastructure, maximizing charge/discharge efficiency across the full state of charge.

03
Solar Integration

Step up or down PV array output voltage to match DC bus requirements without the losses of a string inverter and rectifier combination.

04
Industrial Loads

Deliver precise, regulated DC voltage to motors, drives, electrochemical processes, and other industrial loads requiring stable DC power.

Use Cases

Designed for the Most Demanding DC Applications

Hyperscale & Colocation Data Centers

High-density computing facilities adopting 48V or 380V DC distribution architectures to maximize power delivery efficiency to the rack.

Behind-the-Meter BESS Integration

Battery energy storage systems requiring efficient DC coupling to generation sources and loads within a behind-the-meter microgrid architecture.

EV Charging Infrastructure

High-power DC fast charging stations requiring precise voltage conversion from grid-tied rectifiers or on-site battery storage to vehicle charging ports.

Industrial & Electrochemical Processes

Electrolysis, electroplating, aluminum smelting, and other electrochemical processes requiring high-current, precisely regulated DC power.

Get Started

Eliminate Conversion Losses From Your Power Architecture

Talk to Parasol's engineering team about integrating DC-to-DC conversion into your behind-the-meter power system. We'll model the efficiency gains and infrastructure savings available at your site.