
From toys to construction site tools, OLogic brings robotic ideas to life
OLogic extols high-density power modules to drive today’s robotic revolution
Case study: Harvesting robots
Harvesting robots are machines designed to perform various tasks on farms, often autonomously. They are equipped with sensors, cameras, and GPS systems to navigate and understand their environment. These large robotic vehicles or equipment are typically powered from a high-voltage DC source of 400V or more. The key goals were:
Vicor fixed-ratio power modules enable safe conversion of 400V or 800V batteries typically used in these applications to 48V SELV and reach more than 1,600W of power. The high efficiency of these modules, along with downstream Vicor PoL converters and regulators, greatly reduces power losses and simplifies thermal management, increasing productivity and reliability.
Safely convert high-voltage power to SELV
Rugged, highly integrated power modules for high reliability
Higher efficiency reduces power losses
In this type of design, the Vicor BCM® converter series can provide high-voltage battery conversion to a safe, nominal 48V. One example is the BCM4414 capable of more than 1,600W at greater than 97% efficiency from its 111 x 36 x 9mm package. The BCM is a fixed ratio converter with an output voltage 1/16 of the input voltage. Fixed ratio or regulated point-of-load converters such as Vicor NBMs™, PRMs™, ZVS Buck and ZVS Buck-Boost regulators power individual, downstream, lower-voltage rails as needed.
非絶縁 電圧変換比固定
入力電圧: 36 – 60V
出力電圧: 7.2 – 15.3V
出力電流: Up to 2400W
効率: 98%以上
As small as: 23 x 17 x 5.2mm
非絶縁 レギュレータ
入力電圧: 12V (8 – 18V), 24V (8 – 42V), 48V (30 – 60V)
出力電圧: 2.2-16V
出力電流: 最大22A
ピーク効率: 最大 98%
10.0 x 10.0 x 2.56mm 他
From toys to construction site tools, OLogic brings robotic ideas to life
OLogic extols high-density power modules to drive today’s robotic revolution
Compact power modules allow space for advanced sensors that improve security and performance
Inspection robots can monitor infrastructure more frequently and allow for rapid remediation before problems occur, saving lives, time, and money
Rugged, reliable, and efficient power modules maximize uptime in harsh environments
Harvesting robots perform various tasks on farms, often autonomously and are equipped with sensors, cameras, and GPS systems to navigate their environment
High-efficiency power modules maximize system run-time and improve productivity
Logistic robots like AMRs and AGVs provide inventory management and order fulfillment tasks within large warehouse environments