indie Semiconductor Extends In-cabin User Experience Portfolio With Addition of Qi2 MPP-compliant Wireless Charging Solution
August 20 2024 - 8:00AM
Business Wire
- Enables the Qi2 Magnetic Power Profile capability for
convenient in-cabin wireless charging
- Compliant with the latest Qi standards, and qualified to
automotive AEC-Q100 Grade 2
- Delivers significant bill of materials savings, simplifying
implementation complexity and costs
indie Semiconductor (Nasdaq: INDI), an automotive solutions
innovator, has announced iND87204, its next-generation,
highly-integrated automotive wireless charging system-on-chip
(SoC). Fully compliant with the Wireless Power Consortium’s (WPC)
Qi 2.0 technical standard, iND87204 also extends support to the new
Magnetic Power Profile (MPP) feature - branded “Qi2” by the WPC -
bringing an improved charging experience by magnetically aligning
devices with inductive charger coils for more energy efficient,
reliable and convenient charging. The SoC integrates multiple Arm®
Cortex® processors for application and WPC stack processing, and
all of the key in-vehicle serial interfaces, power management,
DC-DC conversion, signal conditioning, WPC inverter drivers, power
FETs and peripheral drivers to enable a fully Qi2-compliant
wireless charging solution delivering up to 15 watts of power.
With the growing ubiquity of wireless charging capability within
portable devices such as smartphones, tablets and laptops, drivers
and passengers now expect the convenience of wireless device
charging in their vehicles on the move. WPC’s latest standard
featuring the MPP capability will accelerate the demand for
automotive wireless charging due to its much-improved charging
reliability enabled by maintaining portable devices in the optimal
position irrespective of a vehicle’s motion. Enabled by
semiconductor technology, the global in-car automotive wireless
charger market is estimated1 at U.S. $1.9 billion in 2024, and is
forecasted to grow to $13.6 billion by 2034-end, representing a
21.9% CAGR over this period.
“Drivers and passengers are demanding seamless, rapid and more
reliable portable device charging experiences in-vehicle. Building
upon the success of our first-generation wireless charging solution
iND87200, the iND87204 delivers on this vision, featuring the
industry’s highest component integration for a Qi2 MPP-compliant
SoC design, while simultaneously reducing the implementation
footprint and external bill-of-materials by up to 50% relative to
existing solutions,” said Fred Jarrar, vice president and general
manager of indie Semiconductor's Power and ASIC Business Unit. “Our
iND87204 solution is supported by high levels of SoC integration
and turn-key firmware designs, speeding time to market for our
customers while also derisking their developments. The iND87204’s
system innovation will help to accelerate OEM deployment of
mass-market Qi2-based automotive charging, and create a more
engaging in-cabin experience for consumers.”
iND87204 is sampling with lead customers now and will be
production released in the fourth quarter of 2024, fully qualified
to AEC-Q100 Grade 2.
[1]
https://www.factmr.com/report/automotive-wireless-charger-market
About indie
indie is empowering the automotive revolution with next
generation semiconductors and software platforms. We focus on
developing innovative, high-performance and energy-efficient
technology for ADAS, in-cabin user experience and electrification
applications. Our mixed-signal SoCs enable edge sensors spanning
Radar, LiDAR, Ultrasound, and Computer Vision, while our embedded
system control, power management and interfacing solutions
transform the in-cabin experience and accelerate increasingly
automated and electrified vehicles. We are an approved vendor to
Tier 1 partners and our solutions can be found in marquee
automotive OEMs worldwide. Headquartered in Aliso Viejo, CA, indie
has design centers and regional support offices across the United
States, Canada, Argentina, Scotland, Germany, Hungary, Morocco,
Israel, Japan, South Korea, Switzerland and China.
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