Toyota is testing new technology that could make hybrids and other vehicles with electric powertrains even more efficient.

Toyota is testing new technology that could make hybrids and other vehicles with electric powertrains even more efficient.

The year-long trial in Japan will evaluate the performance of new power semi-conductors that use a silicon carbide (SiC) material, fitted to a Camry hybrid saloon prototype and a hydrogen fuel cell-powered bus.

The technology
Power semiconductors are found in the power control units that govern the motor drive power in hybrids and other vehicles that use an electric powertrain.

These units control the use of electricity, sending power from the battery to the motors when the car is being driven, and recharging the battery with energy that’s harvested when the car is braking or decelerating.

The type of semiconductors used at present account for about 20 per cent of a vehicle’s electrical losses, so making them more efficient is potentially a good way to increase the efficiency of the complete powertrain.

Compared to the current silicon power semiconductors, the new, high-quality SiC type create less resistance when electricity flows through them. The technology has been developed jointly by Toyota, the Denso Corporation and Toyota Central R&D Labs, as a result of a broader research and development project*.

The test project

In the Camry hybrid prototype, Toyota is installing SiC power semiconductors (transistors and diodes) in the PCU’s internal voltage step-up converter and the inverter that controls the motor. It will collect data, including PCU voltage and current, and driving speeds, patterns, and conditions, such as outside temperature.

By comparing this information with data from the silicon semiconductors currently in use, Toyota will assess the level of efficiency improvement achieved.

The Camry road test will take place mainly in Toyota City over a period of about a year from early February.

Toyota has also recently started collecting operating data from a fuel cell bus that is in regular commercial operation in Toyota City.

The information gained from the trials will be reflected in Toyota’s development programme, with the aim of putting the technology to practical use as soon as possible.

* Conducted by the R&D Partnership for Future Power Electronics Technology under consignment from the New Energy and Industrial Technology Development Organization.

MobilitaSostenibile.it

Share
Published by
MobilitaSostenibile.it

Recent Posts

PERSONALITÀ KIA: annunciato il nuovo suv (e non sarà elettrico) | In barba a tutti i fan “elettrificati”

Kia Seltos è il nuovo suv compatto che la Casa coreana si prepara a lanciare…

17 ore ago

Ultim’ora: è morta la BMW (così come la conoscevamo) | Cambiato il CEO dalla sera alla mattina: chi è Nedeljković

Scossone ai vertici del BMW Group: il consiglio di sorveglianza ha nominato Milan Nedeljković nuovo…

20 ore ago

C’è una sola spia più fastidiosa di quella “motore”: come fare a spegnere il segnale degli airbag senza impazzire

Tra tutte le lucine del cruscotto ce n’è una che fa venire i brividi quasi…

22 ore ago

La Toyota diventa la nuova auto per ricchi: questo motore ha fatto diventare verdi d’invidia gli ingegneri Ferrari

Una nuova super sportiva Toyota, con un motore che supera la soglia dei 600 cavalli,…

24 ore ago

I GIGANTI SI UNISCONO: storica collaborazione Renault-Ford | Partnership per creare due elettriche a basso costo

Renault e Ford hanno annunciato una storica alleanza industriale per sviluppare e produrre due nuove…

2 giorni ago

Revisione obbligatoria: NON SUPERATA | Se hai quest’auto puoi salutarla a vita: decisione drastica

In Francia è arrivata la stretta definitiva sulle auto con airbag Takata in stop drive:…

2 giorni ago