Combined Inverter and DC/DC Converter
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OE Part Number | Applications | DT Part Number |
12368487431 | BMW 225XE (F45) , X1 (F49), M5 Sedan (F60) | PFV10000-12B1 |
What is the difference between an inverter and DC/DC converter in an electric vehicle?
Much like how internal combustion engines and alternators work together on conventional vehicles, hybrid cars and electric motors use inverters and converters to manage power to and from the battery pack to the motors and other on-board systems.
Inverters transform direct current (DC) from the battery into alternating current (AC) to power the vehicle. Inverters also control the motor and convert it to a generator, transferring braking energy back into the battery.
Converters control the DC voltage from the battery, either stepping it up or down based on the system and the power needed. DC/DC converters usually step down the high voltage from the battery pack to the 12-volts used by radios, headlights, and more.
An OE solution for aftermarket power electronics
Inverters and converters work together to manage the vehicle's electric drive and accessory systems. However, many of today’s inverters and converters can be complex, expensive, and prone to failure from excessive heat. They are also heavy and take up a lot of room on the vehicle, compromising both trunk and passenger compartment space. Delphi OE solution combines the inverter and DC/DC converter into one unit.
Delphi CIDD is cost-effective and saves vital weight and space in hybrids (HEV), plug-in hybrid electric (PHEV), and electric vehicles (EV). And by leveraging patented OE technology - Viper-enabled inverter’s double-sided cooling - it tackles the issue of overheating, allowing higher power outputs from a smaller package and increased range.
Combined Inverter and DC/DC Converter (CIDD)
- Enhances durability and reliability through features designed to withstand under the hood and environmental factors such as debris and temperature extremes.
- Improves voltage distribution functionality, enabling both low-side and high-side power for everything from headlights to power steering and air conditioning systems.
- Provides maximum packaging flexibility and space savings by moving the DC/DC unit from its standard location in the rear to the front of the vehicle.
- Enables better power range and minimizing power losses through the elimination of cabling, cooling hoses, connections, and housings, all while simplifying maintenance and repair.
To learn more about OE quality aftermarket EV parts you can trust, contact your Delphi representative today.
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Related product resources and downloads
Resource Highlights
Here we’re looking at how to check the state of health of a high voltage battery.
Being able to analyze a vehicle battery in detail is a basic but important skill. You need to be able show your customer that their battery is operating at peak performance – and if not, it may need to be changed.
Delphi makes it easy and straightforward with the use of DS Hub and a Delphi BlueTech diagnostic tool.
In this video, using an Audi A3 hybrid as an example, our Delphi expert shows you how to:
- Connect your tablet to the vehicle’s ECU
- Find the exact vehicle and its specifications
- Access the detailed data in the Delphi system, including the health of individual battery cells
- Save and export your results for your customer’s peace of mind
Why does battery health need to be checked?
All batteries lose health over time. It is a normal characteristic of any battery whether it be for a mobile phone, or an electric vehicle (EV). In an EV, a battery with lower health usually means a vehicle can travel less distance on a single charge. It can also mean that charge times can be longer, as the charging speed reduces as the health of the battery drops.
What exactly is battery health?
In an electric or hybrid vehicle, battery health can be summarized in 3 areas. The 1st is how much electricity the battery can hold compared to when it was new. The 2nd is how fast the battery can accept a charge or discharge, and the 3rd is how long the battery is likely to last before it falls below a minimum expected performance.
What is the minimum health the battery can be?
Within the warranty period most vehicle manufactures state somewhere between 70%-80%. This means that below this point, the battery is considered not useful for a vehicle. However, this doesn’t always mean that the battery needs replacing. If the vehicle had a 150 miles / 240km range when new, when the battery has 60% health, it would still have approximately 90m / 144km range – perfect for a city car.
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