Power Conversion for Data Centers & AI Infrastructure

Artificial Intelligence, high-performance computing, cloud services and data-intensive applications are driving rapidly increasing power demand in data centers and AI infrastructure. As rack power and compute density increase, every conversion stage adversely affects system efficiency, thermal load, power density and reliability.

RECOM provides AC/DC and DC/DC power-conversion solutions to support data center and AI power architectures. These include AC/DC conversion for 48VDC-class distribution, high-voltage DC input conversion for emerging architectures, intermediate-bus and board-level DC/DC conversion, point-of-load regulation and auxiliary power with monitoring and control functions where required.

Power Conversion Across Data Center and AI Power Architectures

Modern data center and AI compute systems use distributed power architectures to move energy efficiently from the incoming supply to individual electronic loads. Depending on the system, the power chain can include bidirectional AC/DC conversion, an AC/DC or DC/DC 48VDC-class rack or system bus supply, intermediate-bus conversion and local point-of-load regulation. Higher distribution voltages reduce current for a given power level and can therefore lower resistive losses and conductor requirements.

48VDC-Class Power Distribution and Conversion

48VDC-class distribution is widely used in current data center and rack architectures because it carries the same power at substantially lower current than legacy lower-voltage buses. Efficient conversion to a 48VDC-class rail helps limit conversion losses and heat while providing a practical intermediate voltage for downstream DC/DC stages. Compatible power supplies can also provide standby rails, remote on/off, status signals and digital interfaces for monitoring and control. In many rack-level systems, hot-swappable, backplane-connected power shelves are standard. RECOM solutions are therefore primarily positioned in selected downstream, board-level and auxiliary power-conversion stages rather than as a direct replacement for the rack power shelf itself.
  系列 功率(W) 输入电压(V) 主输出电压(V) 隔离电压 (kV) 安装类型
1 RECOM | RACM1200-V Series | AC/DC, Connector, 1200W, Single Output
重点
1200 80 - 264 24 ‐ 28, 30 ‐ 36, 48 ‐ 56 4 连接器
2 RECOM | RACM600-L Series | AC/DC, Connector/Screw Terminal, 600W, Single Output
重点
600 80 - 275 19.2 ‐ 28.8, 38.4 ‐ 56, 9.6 ‐ 14.4 4 连接器/螺丝端子
3 RECOM | RACM3000-M Series | AC/DC, Connector/Screw Terminal, 3000W, Single Output
即将推出
3000 90 - 264 24 ‐ 28, 33 ‐ 40, 42 ‐ 53.5 4 连接器/螺丝端子

High-Voltage DC for Next-Generation AI Infrastructure

The rapid increase in AI rack power is accelerating the move toward higher-voltage DC distribution. Emerging 800VDC architectures are being developed and standardized to reduce distribution current, conductor requirements and the number of power-conversion stages between the facility and high-density compute equipment. Power conversion connected directly to an 800VDC rail requires converter architectures designed for the relevant continuous working voltage and system insulation requirements; a high isolation test voltage alone does not indicate suitability for operation from an 800VDC rail.

As photovoltaic generation and ESS batteries are inherently DC, high-voltage DC/DC conversion can interface these sources with lower equipment-level DC rails and support the transition from established 48VDC-class architectures toward higher-voltage data center power distribution. Related power-electronics systems such as energy-storage converters, solar inverters and high-voltage converters may also require isolated auxiliary power for control, monitoring and gate-drive circuits.
  系列 功率(W) 输入电压(V) 主输出电压(V) 隔离电压 (kV) 安装类型
1 RECOM | RACPRO1-T240 Series | AC/DC, DIN-Rail, 240W, Single Output
重点
240 320 - 575 24 ‐ 28 5 导轨
2 RECOM | RACPRO1-T480 Series | AC/DC, DIN-Rail, 480W, Single Output
重点
480 320 - 575 24 ‐ 28, 48 ‐ 56 5 导轨
3 RECOM | RACPRO1-T960 Series | AC/DC, DIN-Rail, 960W, Single Output
重点
960 320 - 575 24 ‐ 28, 48 ‐ 56 5 导轨

Intermediate-Bus and Board-Level DC/DC Conversion

As AI power architectures evolve, multiple DC/DC conversion stages may bridge high-voltage distribution, 48VDC-class intermediate rails and the low-voltage rails required by board-level electronics. After rack- or system-level distribution, DC/DC converters step the bus voltage down to intermediate and local supply rails. A common example is conversion from a 48VDC-class bus to a lower intermediate voltage before additional regulation close to the load. High efficiency, power density, transient behavior and thermal performance are critical at this stage because conversion losses directly increase the heat that must be removed from the system.

Depending on the architecture, isolated converters can separate voltage domains, while compact SMD switching regulators and non-isolated power modules can generate local rails for controllers, FPGAs, networking, storage and other digital electronics. Discrete power solutions combining power ICs with matched transformers can provide an alternative approach for compact isolated auxiliary and board-level DC/DC conversion.

Isolated DC/DC Converters

  系列 功率(W) 输入电压(V) 主输出电压(V) 隔离电压 (kV) 安装类型
1 RECOM | RA3 Series | DC/DC, SMD (pinless), 3W
重点
3 5, 12, 24 15 / -3, 15 / -5, 20 / -5, 7 / -1, 8, 9 5.2 SMD (无引脚)
2 RECOM | ROF-78K-0.5 Series | DC/DC, SMD (pinless), Single Output
重点 新
1.65 - 12 4.5 - 36, 6.5 - 36, 8 - 36, 11 - 36, 15 - 36, 18 - 36, 28 - 36 12, 15, 24, 3.3, 5, 6.5, 9 SMD (无引脚)
3 RECOM | RPA100E-W Series | DC/DC, THT, 100W, Single Output
重点
100 18 - 75 10.8 ‐ 13.2, 4 ‐ 5.5 1.5 THT
4 RECOM | RPA300E Series | DC/DC, THT, 300W, Single Output
重点
300 36 - 72 16 ‐ 35 2.25 THT
5
新
10 40 - 60 5 1.5 SMD (无引脚)
6
新
6 18 - 75 5 1.5 SMD (无引脚)

Switching Regulators

  系列 电流(A) 输入电压(V) 主输出电压(V) 安装类型 封装类型
1 RECOM | RPH-3.0 Series | DC/DC, SMD (pinless), 15W, Single Output
重点
3 4.5 - 55 1 ‐ 15 SMD (无引脚) 47-Pad QFN
2 RECOM | RPL-1.0 Series | DC/DC, SMD (pinless), 5W, Single Output
重点
1 3 - 22 0.6 ‐ 12 SMD (无引脚) 11 pad LGA
3 RECOM | RPL-10 Series | DC/DC, SMD (pinless), 50W, Single Output
重点
10 4 - 16 0.6 ‐ 5.5 SMD (无引脚) 29 pad LGA
4 RECOM | RPL-20 Series | DC/DC, SMD (pinless), 100W, Single Output
重点
20 4 - 16 0.6 ‐ 5.5 SMD (无引脚) 29 pad LGA
5 RECOM | RPL-3.0 Series | DC/DC, SMD (pinless), 15W, Single Output
重点
3 4 - 18 0.8 ‐ 5.2 SMD (无引脚) 10 pad LGA
6 RECOM | RPL-5.0 Series | DC/DC, SMD (pinless), 25W, Single Output
重点
5 2.75 - 17 0.6 ‐ 12 SMD (无引脚) 24-Pad QFN
7 RECOM | RPM-1.0 Series | DC/DC, SMD (pinless), Single Output
重点
1 3 - 17 0.9 ‐ 6 SMD (无引脚) 25 pad LGA
8 RECOM | RPM-2.0 Series | DC/DC, SMD (pinless), Single Output
重点
2 3 - 17 0.9 ‐ 6 SMD (无引脚) 25 pad LGA
9 RECOM | RPM-3.0 Series | DC/DC, SMD (pinless), Single Output
重点
3 3 - 17 0.9 ‐ 6 SMD (无引脚) 25 pad LGA
10 RECOM | RPM-6.0 Series | DC/DC, SMD (pinless), Single Output
重点
6 4 - 15 0.9 ‐ 6 SMD (无引脚) 25 pad LGA
11 RECOM | RPMB-2.0 Series | DC/DC, SMD (pinless), Single Output
重点
2 4 - 36, 5.5 - 36, 12.8 - 36, 16 - 36 1 ‐ 9, 9 ‐ 24 SMD (无引脚) 25 pad LGA
12 RECOM | RPMB-3.0 Series | DC/DC, SMD (pinless), Single Output
重点
3 4 - 36, 5.5 - 36, 12.8 - 36, 16 - 36 1 ‐ 9, 9 ‐ 24 SMD (无引脚) 25 pad LGA
13 RECOM | RPMGE-10 Series | DC/DC, PCB Mounting Pins, Single Output
重点
10 18 - 75 3.3 ‐ 8, 8 ‐ 15 PCB安装引脚 开放框架式1/8砖
14 RECOM | RPMGH-40 Series | DC/DC, PCB Mounting Pins, Single Output
重点
40 18 - 75 3.3 ‐ 8, 8 ‐ 24 PCB安装引脚 Open Frame Half Brick
15 RECOM | RPMGQ-20 Series | DC/DC, PCB Mounting Pins, Single Output
重点
20 18 - 75 3.3 ‐ 8, 8 ‐ 24 PCB安装引脚 开放框架式1/4砖
16 RECOM | RPMGS-20 Series | DC/DC, PCB Mounting Pins, Single Output
重点
20 18 - 75 3.3 ‐ 8, 8 ‐ 24 PCB安装引脚 开放框架式1/16砖
17 RECOM | RPMH-0.5 Series | DC/DC, SMD (pinless), Single Output
重点
0.5 4.3 - 65, 6 - 65, 13.5 - 65, 16.5 - 65, 25.5 - 65 15 ‐ 28, 2.64 ‐ 3.63, 4 ‐ 5.5, 7.2 ‐ 13.2, 9 ‐ 16.5 SMD (无引脚) 25 pad LGA
18 RECOM | RPMH-1.5 Series | DC/DC, SMD (pinless), Single Output
重点
1.5 5 - 60, 7 - 60, 14 - 60, 17 - 60, 26 - 60 15 ‐ 28, 2.64 ‐ 3.63, 4 ‐ 5.5, 7.2 ‐ 13.2, 9 ‐ 16.5 SMD (无引脚) 25 pad LGA
19 RECOM | RPMVH-0.5 Series | DC/DC, SMD (pinless), Single Output
重点 新
0.5 6 - 115, 7.5 - 115, 14.5 - 115, 28 - 115 15 ‐ 28, 2.64 ‐ 3.63, 4 ‐ 5.5, 7.2 ‐ 13.2 SMD (无引脚) 25 pad LGA
20 RECOM | RPX-0.5Q Series | DC/DC, SMD (pinless), 2.5W, Single Output
重点
0.5 4 - 36 0.8 ‐ 34 SMD (无引脚) QFN
21 RECOM | RPX-1.0 Series | DC/DC, SMD (pinless), 5W, Single Output
重点
1 4 - 36 0.8 ‐ 30 SMD (无引脚) QFN
22 RECOM | RPX-1.5 Series | DC/DC, SMD (pinless), 7.5W, Single Output
重点
1.5 4 - 36 0.8 ‐ 30 SMD (无引脚) QFN
23 RECOM | RPX-1.5Q Series | DC/DC, SMD (pinless), 7.5W, Single Output
重点
1.5 4 - 36 0.8 ‐ 30 SMD (无引脚) QFN
24 RECOM | RPX-2.5 Series | DC/DC, SMD (pinless), 12.5W, Single Output
重点
2.5 4.5 - 28 1.2 ‐ 6 SMD (无引脚) QFN
25 RECOM | RPZ-0.5 Series | DC/DC, SMD (pinless), 2.5W, Single Output
重点
0.5 2.3 - 5.5 0.6 ‐ 5.375 SMD (无引脚) 10-Pad QFN
26 RECOM | RPZ-1.0 Series | DC/DC, SMD (pinless), 5W, Single Output
重点
1 2.3 - 5.5 0.6 ‐ 5.25 SMD (无引脚) 10-Pad QFN
27 RECOM | RPZ-2.0 Series | DC/DC, SMD (pinless), 10W, Single Output
重点
2 2.75 - 6 0.6 ‐ 5.74 SMD (无引脚) 18-Pad QFN
28 RECOM | RPZ-3.0A Series | DC/DC, SMD (pinless), 15W, Single Output
重点
3 2.75 - 6 0.6 ‐ 5.5 SMD (无引脚) 18-Pad QFN
29 RECOM | RPZ-6.0 Series | DC/DC, SMD (pinless), 30W, Single Output
重点
6 2.75 - 7 0.6 ‐ 6.65 SMD (无引脚) 24-Pad QFN
30 RECOM | RPM15-FW Series | DC/DC, Connector, 15W
9.5 - 36, 18 - 75 12, 15, 3.3, 5, ± 12, ± 15 连接器 隔板
31 RECOM | RPM20-FW Series | DC/DC, Connector, 20W
9.5 - 36, 18 - 75 10.8 ‐ 13.2, 13.5 ‐ 16.5, 2.97 ‐ 3.63, 4.5 ‐ 5.5, ± 12, ± 15 连接器 隔板
32 RECOM | RPM30-E Series | DC/DC, Connector, 30W
9.5 - 18, 18 - 36, 36 - 75 10.8 ‐ 13.2, 13.5 ‐ 16.5, 2.97 ‐ 3.63, 4.5 ‐ 5.5, ± 12, ± 15 连接器 隔板
33 RECOM | RPM30-EW Series | DC/DC, Connector, 30W
10 - 40, 18 - 75 10.8 ‐ 13.2, 13.5 ‐ 16.5, 2.97 ‐ 3.63, 4.5 ‐ 5.5, ± 12, ± 15 连接器 隔板
34 RECOM | RPM40-G Series | DC/DC, Connector, 40W
9.5 - 18, 18 - 36, 36 - 75 10.8 ‐ 13.2, 13.5 ‐ 16.5, 2.97 ‐ 3.63, 4.5 ‐ 5.5, 5 / ± 12, 5 / ± 15, ± 10.8 ‐ ± 13.2, ± 13.5 ‐ ± 16.5 连接器 隔板
35 RECOM | RPM40-GW Series | DC/DC, Connector, 40W
9.5 - 36, 18 - 75 10.8 ‐ 13.2, 13.5 ‐ 16.5, 2.97 ‐ 3.63, 4.5 ‐ 5.5, ± 10.8 ‐ ± 13.2, ± 13.5 ‐ ± 16.5 连接器 隔板
36 RECOM | RPM60-G Series | DC/DC, Connector, 60W, Single Output
18 - 36, 36 - 75 10.8 ‐ 13.2, 13.5 ‐ 16.5, 2.97 ‐ 3.63, 4.5 ‐ 5.5 连接器 隔板

Power ICs

  系列 输入电压(V) 主输出电压(V) MAX Iout (mA) 封装类型 最高工作温度 (°C) 拓扑结构
1 RECOM | RVPW012 Series | IC, SMD (pinless)
重点 新
4 - 80 2 ‐ 999 6600 QFN5x5 125 Flyback
2 RECOM | RVPW015 Series | IC, SMD
重点 新
4 - 80 2 ‐ 999 1800 ESOP-8 125 Flyback

Transformers

  系列 隔离电压 (kV) 拓扑结构 原边电感量 (µH) 绕组匝数比 安装类型
1 RECOM | RBE-027 Series | TRANSFORMER, SMD
重点 新
1.5 Flyback 48 3.6:2.4:1:1 SMD
2 RECOM | RBE-038 Series | TRANSFORMER, SMD
重点 新
1.5 Flyback 36 1:4.67:1:4.67:1:1.67 SMD

Auxiliary, Standby and Digital Power Management

Data center and AI infrastructure equipment also needs auxiliary and standby power for system management, monitoring, communication interfaces, cooling controls and other functions that may remain active independently of the main compute load. Power supplies with digital interfaces such as PMBus or CAN support remote monitoring, configuration and fault reporting when these functions are available on the selected product. N+1 redundant power supplies, OR-ing modules and e-fuses ensure power availability during fault or outage conditions.
  系列 功率(W) 输入电压(V) 主输出电压(V) 隔离电压 (kV) 安装类型
1 RECOM | RACM1200-V Series | AC/DC, Connector, 1200W, Single Output
重点
1200 80 - 264 24 ‐ 28, 30 ‐ 36, 48 ‐ 56 4 连接器
2 RECOM | RACM600-L Series | AC/DC, Connector/Screw Terminal, 600W, Single Output
重点
600 80 - 275 19.2 ‐ 28.8, 38.4 ‐ 56, 9.6 ‐ 14.4 4 连接器/螺丝端子
3 RECOM | RACPRO1-4SP Series | AC/DC, DIN-Rail, 4 Channels Output
重点
120, 240 22 - 28 24 导轨
4 RECOM | RACPRO1-RD Series | AC/DC, DIN-Rail, Single Output
重点 新
9 - 56 12 / 24 / 48 0.5 导轨
5 RECOM | RACPRO1-S120 Series | AC/DC, DIN-Rail, 120W, Single Output
重点 新
120 85 - 277 12 ‐ 15, 24 ‐ 29, 48 ‐ 56 4 导轨
6 RECOM | RACPRO1-S240 Series | AC/DC, DIN-Rail, 240W, Single Output
重点 新
240 85 - 277 24 ‐ 29 4 导轨
7 RECOM | RACPRO1-S240E Series | AC/DC, DIN-Rail, 240W, Single Output
重点 新
240 85 - 277 12 ‐ 15, 24 ‐ 29, 48 ‐ 56 4 导轨
8 RECOM | RACPRO1-S480 Series | AC/DC, DIN-Rail, 480W, Single Output
重点 新
480 85 - 277 24 ‐ 28, 48 ‐ 56 4 导轨

常见问题

For a given power level, increasing the distribution voltage reduces current. As the I²R conduction losses are proportional to the square of the current, halving the current reduces the losses four-fold, which reduces the size and weight of busbars and cabling. 48VDC-class distribution is therefore widely used in modern rack and data center power architectures.
An intermediate bus converter, or IBC, converts a rack- or board-level DC distribution voltage into a lower intermediate voltage for downstream regulation. A typical architecture may convert a 48VDC-class bus to a lower intermediate bus before local regulators generate the individual supply rails required by digital electronics.
800VDC is an emerging high-voltage distribution architecture being standardized for next-generation AI infrastructure. The higher voltage reduces current for a given power level, which can reduce conductor requirements and distribution losses. Deployment is expected to coexist with established AC and 48VDC-class architectures during the transition. Converter stages connected directly to an 800VDC rail must be designed for the relevant continuous working voltage and system insulation requirements.
Every conversion loss becomes heat that must be removed by the cooling system. Higher conversion efficiency therefore reduces both electrical losses and thermal load, supporting higher compute density within a given power and cooling envelope. For example, a 96% efficient conversion stage will lose 4% as heat. Increasing the efficiency to 98% halves the losses.
Digital interfaces such as PMBus or CAN can provide remote status, configuration and fault information when supported by the selected power supply. Typical functions may include voltage and current monitoring, status signals, fault diagnostics and programmable operating parameters.
IEC/EN/UL 62368-1 is a key product-safety standard for audio/video and information and communication technology equipment, while IEC/EN/UL 61010-1 and 61010-2-201 are key product standards for measurement and control equipment. The applicable standards requirements depend on the end product, intended use, market and system architecture, so designers should verify the certification requirements of the selected power supply before installation.

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