CV-AI SoC

The medical-grade edge AI chip behind BD-CARdio

CV-AI SoC is Precise B.D.'s biochip — a medical-grade edge AI chip built to run BD-CARdio's cardiovascular models directly on-device. Inference happens on-chip with hardware-level (HSM) encryption, so raw biosignal data never has to leave the device it's captured on.

>30TOPS/W efficiency
<1mson-device inference latency
<3Wpower consumption
HSMon-chip encryption, zero cloud data
CV-AI SoC PreCiseBD CV-AI SoC chip package, front view with markings and back view showing the BGA solder-ball grid
What it does

CV-AI SoC puts BD-CARdio's cardiovascular models directly onto silicon — inference happens on-chip, in under a millisecond, at under 3W, which is what makes true 24-hour continuous monitoring possible without draining a battery or a network connection. Hardware-level (HSM) security means the raw biosignal data being processed never has to leave the chip.

It's the hardware form of the same inference engine behind AI-Screening and BD-CARdio, which is why it deploys as one of four parallel paths alongside care-robot SDKs, cloud dashboards, and edge servers — see Deployment for how the other three work. CV-AI SoC is specifically the on-device path: the same validated models, running locally instead of over a network.

It's built for embedding into third-party hardware — care robots, ICU and ward-round monitors, remote-care devices, and wearables — through a defined electrical and firmware interface for hardware partners. The full spec sheet below covers the Gen 1 prototype in detail.

How it works

From signal to output, entirely on-chip.

01

Biosignal captured on-device

Cardiovascular signal data is captured directly at the point of sensing.

02

On-chip inference, <1ms

BD-CARdio's validated models run locally on silicon, in under a millisecond, at under 3W.

03

HSM-encrypted, zero cloud data

Hardware-level encryption protects the signal the instant it's captured — it never has to leave the chip.

Full spec sheet

Every number behind the chip and the platform it runs.

Chip

PreCiseBD CV-AI SoC

The specs behind the >30 TOPS/W efficiency, sub-millisecond inference, and on-chip HSM encryption described above.

>30TOPS/W efficiency
<1msinference latency
<3Wpower draw
HSMon-chip security
Platform

BD-CARdio, running on the chip

The TFDA-cleared cardiovascular AI platform CV-AI SoC runs on-device.

TFDAcleared platform
20+indications
>90%accuracy
50k+validated dataset
Deployment

Built for care robots and care environments

The same chip, embedded wherever continuous monitoring needs to happen.

Medical care robots ICU / ward rounds Remote healthcare Wearables
Hardware

CV-AI SoC Gen 1 prototype

The real prototype behind the 3D model above.

12nmFinFET process
7×7mmFCBGA package
>30TOPS (INT8)
<3Wpower
SaaS

License CV-AI SoC through the platform.

Hardware partners and robotics OEMs integrate CV-AI SoC through the same subscription-based access used for AI-Screening and BD-CARdio — full SDK and API access is available for embedding the chip in third-party devices.

Talk to us

See CV-AI SoC running on your own data.

Pricing and integration are scoped to your hardware — single clinic, multi-site hospital network, or robotics/OEM embedding. Talk to our team directly.