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OpenAI ṣafihan Imọye Ikọkọ lati daabobo data ile-iṣẹ

OpenAI ṣe ikede agboorun Imọye Aladani tuntun kan ti o ṣafikun Ilana Aabo Aladani si ẹbun Idaduro Data Zero ati awọn awotẹlẹ iṣẹ Ifilọlẹ Ikọkọ ti a ṣeto fun itusilẹ isubu yii.

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Source-provided image accompanying OpenAI unveils Private Intelligence to protect enterprise data
Ijabọ iroyinOrisun ti o gbasilẹ
Olutẹwe
venturebeat.com
Orisun ọna asopọ
venturebeat.comhttps://venturebeat.com/security/openais-new-private-intelligence-targets-a-growing-enterprise-concern-who-can-see-your-ai-data
Orisun iru
Ijabọ nipasẹ ijade iroyin kan - kii ṣe iwe-ipamọ ẹgbẹ akọkọ.

Ohun ti a ko le jẹrisi ni ominira: Ibeere yii jẹ ikasi si iṣan ti a npè ni. A ko jẹrisi rẹ lodi si iwe-ipamọ ẹgbẹ akọkọ. (venturebeat.com)

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API (Àwòrán Ètò Ìlò)
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Kini o ṣẹlẹ

OpenAI introduced Private Intelligence, an umbrella that expands its (ZDR) program with Private Safety Processing (PSP) now available and a preview of Private slated for later this year.

At OpenAI’s DevDay 2026, the company announced a two‑part initiative called Private Intelligence. The first part, with Private Safety Processing (ZDR + PSP), builds on OpenAI’s existing ZDR policy that excludes customer prompts and responses from abuse‑monitoring logs. PSP adds an encrypted storage layer where selected content is kept in a customer‑controlled bucket (AWS S3, Azure Blob, or Google Cloud Storage) for up to 30 days, allowing an automated, hardware‑attested safety runtime to review the data without human inspection.

OpenAI says the safety runtime can only emit predefined safety signals and encrypted results, preventing its personnel from seeing raw customer content. The encrypted records are not used for model training or shared with other OpenAI groups, and the company retains only metadata indexes.

The second component, Private , was presented as a preview. OpenAI described it as a confidential‑computing solution that will provide verifiable controls during inference, but detailed technical specifications, supported models, and pricing were not disclosed. The rollout is planned for the fall of 2026.

Awọn alaye orisun: venturebeat.com ↗

Kini idi ti o ṣe pataki

The rollout gives enterprise customers a technical guarantee that sensitive prompts and model outputs are not visible to OpenAI staff and are not used for training, addressing growing concerns over data leakage and intellectual‑property exposure as AI models become more capable.

Enterprise AI adopters have increasingly demanded stronger guarantees that proprietary code, research data, or confidential documents cannot be accessed by AI providers or inadvertently incorporated into future models. Private Safety Processing translates OpenAI’s policy promises into a concrete architecture, reducing reliance on contractual language alone.

The feature addresses recent reports that companies such as Palantir, Nvidia, and Booz Allen Hamilton are restricting model use over data‑privacy concerns, and it counters the “snoop‑and‑scoop” worries highlighted by the Navier‑Stokes controversy. By keeping encrypted data in customer‑controlled storage and limiting human access, OpenAI aims to differentiate its enterprise offering from competitors that rely on less transparent data‑handling practices.

If widely adopted, Private Intelligence could set a new baseline for privacy‑by‑design in AI services, influencing industry standards and potentially prompting regulators to expect similar technical safeguards from other AI providers.

Interactive Mechanism

Ibaraẹnisọrọ Mechanism: Bii O Ṣe Nṣiṣẹ Lootọ

Ṣawari imọ-ẹrọ abẹlẹ lẹhin idagbasoke yii ni ibaraenisọrọ.

Model Parameter Size:8B Parameters
VRAM Required5.5 GBGPU memory footprint
Target HardwareMacBook / Single GPUDeployment tier
Privacy100% Air-GappedLocal device capability
Core takeaway: Small, quantized models (3B–8B) now run directly inside smartphones and laptops with complete data privacy, while mammoth 400B+ models remain the domain of datacenter clusters.
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Kini lati wo tókàn

How OpenAI will implement Private , which models it will support, pricing, and whether customers can independently verify the confidential‑computing environment.

The specific hardware trusted‑execution environment OpenAI will use for Private and whether it will be compatible with existing ChatGPT Enterprise or API workloads.

Which model families (e.g., GPT‑4, GPT‑4‑Turbo) will support the Private service and whether the feature will be optional or mandatory for certain enterprise contracts.

Pricing and billing structures for the encrypted storage and safety‑runtime components, which OpenAI has not disclosed.

Independent verification mechanisms that customers can employ to attest that OpenAI’s runtime does not expose their data, and any third‑party audits that may be conducted.

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