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Teams connect through supported APIs and publishing integrations and use the resulting technical evidence in review.",audience:"AI providers controlling final output and professional publishers with recurring release workflows. Readers, partners, and governance reviewers can inspect the resulting records.",differentiator:"Encypher authored the C2PA standard for unstructured text and co-chairs its task force. Its platform joins marking, signing, public verification, source-use evidence, and recipient-copy tracing around one signed record.",primaryValue:"Put your name on your work. Mark what your AI creates. Encypher brings digital signing, AI marking, and content checks into one platform. Add a record people can check to see who signed your content and whether it has changed. 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Meter and Trace turn the evidence into source-use and recipient-copy records."),audience:"AI companies, publishers, official communications teams, and enterprises that need one marking, detection, identity, and evidence layer across text and media.",differentiator:"One vendor and one integration cover supported output types while cryptographic validation, watermark detection, soft-binding recovery, and policy decisions stay separate.",primaryValue:"Use the same platform for the technical marking, detection, and evidence layer of Article 50, public provenance checks, source-use reporting, and leak response."},"/products/mark":{title:"Encypher Mark",pagePath:"/products/mark",pageType:"ProductPage",whatWeDo:"Encypher Mark applies signed provenance and supported content-level marks across AI output, published work, and official files through one output policy.",audience:"AI product teams marking generated text and media for Article 50 workflows, publishers signing content before distribution, and organizations authenticating official records.",differentiator:"The same marking policy and public verification layer cover text, images, audio, video, and files. 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1overing the verification, retrieval, citation, and usage events the integration agrees to send.",differentiator:"Meter joins one partner at a time, so there is no self-serve path today. It does not guess at all AI use on the open web. Each report names the Encypher events and the partner-supplied events it includes, and it says what fell outside the integration.",primaryValue:"Pilot one source-use report, review it with your partner, and bring the shared facts into licensing and source-performance talks."},"/products/trace":{title:"Encypher Trace",pagePath:"/products/trace",pageType:"ProductPage",whatWeDo:"Encypher Trace is available now for recipient-specific leak tracing. It puts a unique hidden mark in each distributed copy. A copy that surfaces later can be tied back to the recipient version that carried it.",audience:"Publishers, studios, law firms, deal teams, and enterprises distributing sensitive drafts, screeners, reports, or partner materials that need recipient-level attribution after a leak appears.",differentiator:"Trace works inside the content copy, so it keeps reporting when portal logs and download controls have nothing to show. It reports which marked copy is present. It does not stop a re
1cipient from sharing the file.",primaryValue:"Give every distributed copy its own attribution trail, check leaked material against that trail, and export the record for counsel, security, or partner review."},"/pricing":{title:"Encypher Pricing & Licensing",pagePath:"/pricing",whatWeDo:"Encypher pricing centers on Mark, Meter, and Trace. Mark signs AI output, published work, and official files. Meter is an early partner program with no self-serve signup. Trace adds recipient-specific attribution.",audience:"AI companies marking generated output, publishers carrying verified identity and rights terms with content, and organizations authenticating official files.",differentiator:"Mark pricing follows what you declare and how you operate. Signing published work and official content is an ongoing free plan under fair-use guardrails. Declared AI outputs run on their own meter, and the Mark Trial covers ".concat(o," declared AI outputs and ").concat(s," per-content Article 50 evidence records each month. ").concat(c," raise the allowance for declared AI outputs and add production identity and controls."),primaryValue:"Start by signing published work, an official file, or a sample AI output. Pay when you need your own organization identity on declared AI outputs, production controls, or a higher allowance for declared AI outputs."},"/coalition":{title:"Content Licensing Coalition - Encypher",pagePath:"/coalition",pageType:"ProductPage",whatWeDo:"Opt-in publisher content licensing coalition powered by cryptographic provenance. Coalition track: Encypher negotiates with per-deal approval, the majority of every deal goes to the publisher, and exact terms are in the coalition agreement. Self-Service track: publishers negotiate their own deals and keep 100%, with Encypher verification and reporting infrastructure.",audience:"Publishers, newsrooms, and content creators who want to earn revenue when AI companies and platforms license their content. Publisher networks and platforms can enroll their catalog as a bloc.",differentiator:"Membership is opt-in via a separate agreement and off by default, with per-deal approval and withdrawal rights. Licensing workflows use signed provenance records and publisher-supplied identity and rights terms; those records do not establish authorship or ownership by themselves.",primaryValue:"Opt in to earn revenue from your signed content. Encypher negotiates for the member cohort and you approve every deal. Self-Service publishers bring their own deals and use Encypher infrastructure."},"/partners":{title:"Partner with Encypher",pagePath:"/partners",whatWeDo:"Five partner tracks cover publisher platforms and networks, marketplaces and wire services, CDN infrastructure, DSPs and SSPs, and specialist watermark providers. The Watermark Partner Network brings qualified provider signals into one public verification layer while keeping each provider visible.",audience:"Publisher platforms, content marketplaces, wire services, CDN providers, ad-tech platforms, and watermark companies that need distribution, identity, evidence, or a shared verification endpoint.",differentiator:"Partners keep their product, brand, evidence, and commercial relationship. Encypher supplies the C2PA identity, public verification, integration, evidence, and billing layer around qualified partner signals.",primaryValue:"Reach platform buyers through one marking and verification integration instead of making each buyer assemble separate provenance and watermark systems."},"/tools":{title:"Encypher Tools",pagePath:"/tools",pageType:"CollectionPage",whatWeDo:"Encypher tools let readers, developers, publishers, and compliance teams verify signed content, sign supported content, run EU AI Act readiness checks, and map C2PA workflows without starting with a paid account.",audience:"Developers testing C2PA integrations, publishers exploring provenance, AI teams checking output marking workflows, and compliance teams preparing for Article 50 transparency obligations.",differentiator:"The tools run the same signing and verification paths as the platform where possible. Each one reports what it can prove, including its coverage limits, instead of hiding them behind a marketing score.",primaryValue:"Try provenance in the browser, run a free public check on signed material, and pick the product path that fits the workflow."},"/tools/verify":{title:"Free C2PA and Watermark Verification",pagePath:"/tools/verify",whatWeDo:"The public verifier checks C2PA credentials and supported watermark signals across ".concat(n.cp," file and media formats. It reports invalid, missing, unsupported, and detected states separately. When embedded metadata is missing, it can resolve linked provenance when the applicable watermark and resolver are present. No account or API key is needed."),audience:"Readers, journalists, legal and compliance teams, AI companies, publishers, developers, and anyone who needs to inspect provenance or integrity evidence.",differentiator:"One public check handles supported C2PA and watermark evidence without presenting unlike signals as the same proof.",primaryValue:"Paste text or upload a supp
1orted file, inspect the available evidence, and share the same free result with any recipient."},"/verify":{title:"Encypher Verify",pagePath:"/verify",pageType:"ProductPage",whatWeDo:"Encypher Verify gives product teams one endpoint for C2PA credentials and supported watermark signals across text, images, audio, video, and files. It can recover linked provenance through C2PA soft binding when the applicable watermark and resolver are present.",audience:"AI platforms, product leaders, legal and compliance teams, security reviewers, and developers replacing a separate marking and detection stack for each output type.",differentiator:"One endpoint returns a normalized result while keeping cryptographic validation, watermark detection, soft-binding recovery, and policy decisions as separate evidence.",primaryValue:"Use one vendor and one integration for the technical marking, detection, and evidence layer of Article 50. Basic public verification remains free."},"/verify/api":{title:"Universal Verification API",pagePath:"/verify/api",whatWeDo:"The verification API accepts supported text and media through one contract, selects the applicable C2PA parser and watermark detectors, attempts conditional recovery, and returns one normalized result.",audience:"Developers and platform teams integrating verification across several models, workflows, and output types.",differentiator:"The contract preserves credential, watermark, recovery, and policy evidence separately instead of flattening them into one verified flag.",primaryValue:"Integrate verification once, apply the same contract across the product portfolio, and give product, legal, and audit one evidence schema."},"/content-provenance/recover-stripped-metadata":{title:"Recover Provenance After Metadata Is Stripped",pagePath:"/content-provenance/recover-stripped-metadata",whatWeDo:"C2PA soft binding can recover a linked provenance record after embedded metadata is removed when the applicable watermark and resolver are present.",audience:"AI providers, publishers, distribution platforms, and compliance teams designing provenance that must survive metadata-stripping workflows.",differentiator:"The verifier labels recovered provenance separately from an embedded manifest and reports when detection, resolution, or recovery is unavailable.",primaryValue:"Design the fallback before distribution and preserve a public path back to the provenance record without overstating what survived in the file."},"/content-provenance/usage-reporting":{title:"Usage Reporting for Publishers",pagePath:"/content-provenance/usage-reporting",whatWeDo:"This page explains the Content Telemetry Standard's five events and how C2PA labels carry IDs, license terms and a reporting request.",audience:"Publishers negotiating AI deals.",differentiator:"Encypher labels carry license terms and a usage-reporting request alongside provenance.",primaryValue:"See what reports can and cannot show, and follow three steps for signing, counting AI fetches, and putting reporting and audit rights in AI deals."},"/trust":{title:"Trust and C2PA Conformance",pagePath:"/trust",whatWeDo:"The trust page publishes Encypher's C2PA conformance, CA trust-list, TSA trust-list, terms, privacy, subprocessors, and service status evidence for buyer diligence.",audience:"Security reviewers, legal teams, procurement teams, standards implementers, and enterprise buyers who need primary-source evidence before adopting Encypher.",differentiator:"It links to the official C2PA Conformance Explorer, the conforming products list, the CA trust list, and the TSA trust list. A buyer reads the primary records directly.",primaryValue:"Give diligence teams a primary-source path to verify Encypher's conformance and trust-list status."},"/chat":{title:"Provenance Chat",pagePath:"/chat",whatWeDo:"Provenance Chat is an indexable demo that streams AI answers and attempts to sign each response as it is produced. The UI reports whether Encypher created sentence-level proof, document-level proof, or no signature, and routes signed text to free verification.",audience:"AI product teams, compliance leads, developers, and publishers evaluating how generated text can carry machine-readable provenance and be checked after copy-paste.",differentiator:"The demo shows the proof state it reached for each response. It keeps sentence-level marks, document-level fallback proof, and unsigned outcomes apart.",primaryValue:"See AI-output provenance in a live workflow and verify the resulting signed text at /tools/verify."},"/rights-management":{title:"Rights Management: A W3C ODRL Policy Engine for AI Licensing",pagePath:"/rights-management",whatWeDo:"Encypher runs a deterministic W3C ODRL 2.2 policy engine (odrl-engine/0.2.0): it takes a rights policy plus an intended use and returns a machine-readable verdict of permitted, permitted with duties, prohibited, no matching rule, or invalid, with a usable boolean. Publishers set Bronze (crawling), Silver (RAG), and Gold (training) terms once; every signed document then carries its own W3C ODRL policy, bound at signing time. RSL 1.0 compatible for interchange.",audience:"Publishers, media organizations, and content creators who want to control how their content is used by AI companies. AI companies who need a deterministic, machine-readable rights verdict they can resolve, evaluate, and log at scale.",differentiator:"Most rights offerings publish a format. Encypher built the evaluator: fail-closed (ambiguou
1s, malformed, unsupported, or over-limit input denies rather than grants), prohibition wins over permission, defaults to deny, dependency-free, and version-stamped with hashes of the policy and request so a verdict can be reproduced. It is exposed publicly at POST /public/rights/odrl/evaluate with no key, server-side on authenticated verification with an intended_use, and as a per-document policy at GET /public/rights/{document_id}/odrl, so the C2PA manifest, the rights snapshot, and the policy all resolve under the same document id.",primaryValue:"Get a reproducible permit or prohibit answer for any intended use, in a form your own systems can act on. The verdict is advisory. Encypher reports what a policy says about a use and never grants permission on a publisher's behalf. A license-required outcome sits on top of a permit as a pricing term the publisher set, and the engine reports it beside the verdict."},"/faq":{title:"Encypher FAQ",pagePath:"/faq",pageType:"CollectionPage",whatWeDo:"Encypher provides cryptographic content provenance so people can check who signed content and whether it changed across text, images, audio, video, and documents.",audience:"Publishers, AI companies, official communications teams, and enterprises that need independent source, signer, integrity, and supplied-rights evidence.",differentiator:"Provenance creates a cryptographically checkable record at signing time instead of estimating origin after the fact.",primaryValue:"Answers to common questions about provenance, C2PA, the EU AI Act, and pricing, each linking to a deeper guide."},"/glossary":{title:"Content Provenance Glossary: Key Terms and Definitions",pagePath:"/glossary",pageType:"CollectionPage",whatWeDo:"A comprehensive reference for 40+ terms in the content provenance ecosystem. Covers C2PA, cryptographic watermarking, sentence-level attribution, willful infringement, the EU AI Act, and Encypher technologies. Maintained by the team that authored the C2PA standard for unstructured text, part of the C2PA 2.3 specification.",audience:"Publishers, AI companies, legal teams, developers, journalists, and regulators working with content provenance, AI content marking, and copyright enforcement.",differentiator:"Written by Encypher, the authors of the C2PA text-provenance standard and co-chairs of the C2PA Text Provenance Task Force. Definitions reflect the current C2PA specification and practical implementation experience.",primaryValue:"Authoritative definitions that distinguish C2PA (document-level, open standard) from Encypher sentence-level attribution, statistical from cryptographic watermarking, and innocent from willful infringement."},"/c2pa-standard":{title:"The C2PA Standard: How Content Provenance Works",pagePath:"/c2pa-standard",whatWeDo:"C2PA (Coalition for Content Provenance and Authenticity) is the open standard for embedding cryptographic provenance into digital content, backed by over 400 member organizations including Adobe, Microsoft, Google, BBC, and OpenAI. C2PA 2.3, including the standard for unstructured text, was published ".concat(n.NG,". Encypher authored the C2PA standard for unstructured text and co-chairs the C2PA Text Provenance Task Force."),audience:"Developers implementing content provenance, publishers protecting content rights, AI companies achieving EU AI Act compliance, media organizations verifying authenticity, and any organization that needs to prove the origin of digital content.",differentiator:"Encypher wrote the part of the C2PA standard that covers text, the framework that lets articles, social posts, and other unstructured text carry cryptographic proof of origin. Encypher is a full-stack commercial C2PA implementation with sentence-level text provenance.",primaryValue:"Open standard backed by ".concat(i.KV," member organizations. Free to implement. Verification requires no account or third-party dependency. Machine-readable rights terms that travel with content. EU AI Act Article 50 marking via C2PA digital source type fields.")},"/c2pa-standard/conformance":{title:"C2PA Conformance Explorer",pagePath:"/c2pa-standard/conformance",whatWeDo:"Encypher hosts a searchable directory of every C2PA conformant product, sourced live from the official C2PA conformance program. Search by company, filter by product type (generator or val
1idator), and filter by media category.",audience:"Publishers evaluating C2PA adoption who need to verify which products have completed conformance testing. Enterprise buyers requiring standards-compliant tools. Developers building C2PA integrations.",differentiator:"Live data from the official C2PA conformance list. Every product listed has completed the C2PA conformance testing program and appears on the official record. Generator and validator conformance currently covers ".concat(n.WF," formats, the maximum under conformance program v0.1."),primaryValue:"Verify which tools and platforms have earned official C2PA conformance status before making adoption decisions."},"/c2pa-standard/implementation-guide":{title:"C2PA Implementation Guide for Developers",pagePath:"/c2pa-standard/implementation-guide",whatWeDo:"Encypher provides a REST API with Python, TypeScript, Go, and Rust SDKs for implementing C2PA content provenance. Sign text, images, audio, and video. Verify any C2PA-signed content for free.",audience:"Developers integrating content provenance into CMS platforms, AI pipelines, media publishing systems, and document management tools. Engineers building C2PA compliance into AI output systems.",differentiator:"One API signs and verifies ".concat(n.cp," file and media formats. Text can be checked per sentence, which other providers do not offer. The free verification endpoint needs no authentication. SDKs cover Python, TypeScript, Go, and Rust, with batch processing."),primaryValue:"API quickstart in under 5 minutes. Publisher signing is free under fair-use guardrails. A free public check needs no account. Open-source SDK implementations are available."},"/c2pa-standard/manifest-structure":{title:"C2PA Manifest Structure",pagePath:"/c2pa-standard/manifest-structure",whatWeDo:"The C2PA manifest is a structured data package embedded in or alongside content. It contains claims about the content (what it is, who created it, when), cryptographic assertions (signed statements), and the COSE signature that proves who made the claims.",audience:"Developers implementing C2PA verification. Engineers building content provenance infrastructure. Anyone who needs to understand what a C2PA manifest contains and how its components relate.",differentiator:"JUMBF (JPEG Universal Metadata Box Format) is the container. COSE (CBOR Object Signing and Encryption) is the signature format. Claims are what is being asserted. Assertions are the specific claims. The certificate chain proves signer identity.",primaryValue:"Technical understanding of C2PA manifest structure to support implementation, verification, and evaluation of C2PA-based provenance infrastructure."},"/c2pa-standard/media-types":{title:"C2PA Supported Media Types",pagePath:"/c2pa-standard/media-types",whatWeDo:"Encypher signs and verifies ".concat(n.cp," file and media formats with C2PA provenance across images, audio, video, documents, and fonts. Each format has its own embedding method, defined by the C2PA specification. The official C2PA conformance record covers ").concat(n.WF," of those formats, the maximum under conformance program v0.1. Encypher is helping extend the program to more asset types."),audience:"Developers and integration engineers evaluating format coverage for content provenance. Publishers and enterprises determining whether their content types are supported.",differentiator:"".concat(n.cp," file and media formats in a single API. Each format is embedded with its own container-native method. Images use JUMBF, audio uses RIFF, ID3, or ISO BMFF, video uses ISO BMFF, and text uses a hidden mark unique to Encypher."),primaryValue:"Complete format coverage reference. All supported MIME types, embedding methods, and links to format-specific documentation."},"/c2pa-standard/members":{title:"C2PA Members: Who Is Building the Standard",pagePath:"/c2pa-standard/members",whatWeDo:"The Coalition for Content Provenance and Authenticity has over 400 member organizations across technology, media, and publishing. Members include Adobe, Microsoft, Google, OpenAI, BBC, Reuters, AP, Intel, Arm, and Encypher. Encypher co-chairs the Text Provenance Task Force.",audience:"Publishers evaluating C2PA adoption, enterprises making standards-based technology decisions, AI companies assessing the industry standard for content provenance, and anyone needing to understand who is behind the C2PA standard.",differentiator:"C2PA was founded by Adobe, Microsoft, Intel, BBC, and the Content Authenticity Initiative, and many companies share control of it. OpenAI joined as a member, so content creators and AI companies now back the same standard. That breadth is what makes it usable as infrastru
1cture.",primaryValue:"Understanding who built C2PA and why their participation makes it the viable standard for content provenance at internet scale."},"/c2pa-standard/section-a7":{title:"The C2PA Standard for Unstructured Text",pagePath:"/c2pa-standard/section-a7",whatWeDo:"The C2PA standard for unstructured text defines how provenance manifests are embedded into articles, posts, and other free-form text. Encypher, through Erik Svilich, authored this standard as part of the C2PA 2.3 specification, published ".concat(n.NG,". This is the foundational open standard for text content provenance."),audience:"Developers implementing text provenance. Standards researchers and engineers working with C2PA. Publishers and enterprises evaluating text provenance infrastructure. Anyone seeking to understand the technical foundation of text provenance.",differentiator:"Encypher authored the text provenance specification for C2PA. Erik Svilich co-chairs the C2PA Text Provenance Task Force. Encypher's implementation extends C2PA's document-level authentication to individual sentence granularity, a capability unique to Encypher.",primaryValue:"Understanding the open standard that governs text provenance. One standard encoding, which Encypher extends with sentence-level attribution and a document-compatibility option. Direct link to the specification for independent review."},"/c2pa-standard/vs-synthid":{title:"C2PA vs. SynthID: Open Standard vs. Proprietary Watermarking",pagePath:"/c2pa-standard/vs-synthid",whatWeDo:"This page explains how open C2PA credentials and provider-specific SynthID watermarks create different evidence. A platform can use both while keeping each result separate.",audience:"AI companies and enterprises comparing Article 50 marking options, open-standard provenance, generation-time watermarks, and verification architecture.",differentiator:"C2PA provides signed identity and integrity evidence that open-source libraries can validate. SynthID provides a provider-specific statistical signal from a compatible generation pipeline.",primaryValue:"Choose the right signal for each question, use both when the workflow calls for both, and preserve each signal's limits in verification."},"/cryptographic-watermarking":{title:"Cryptographic Watermarking: Proof Embedded in Content",pagePath:"/cryptographic-watermarking",whatWeDo:"Cryptographic watermarking embeds a cryptographically signed re
1cord of content origin directly into the content file. Verification is deterministic, so it succeeds or fails with no statistical false-positive rate. Encypher implements cryptographic watermarking for text with a hidden mark, and for images, audio, and video with C2PA JUMBF manifests.",audience:"Publishers who need signer and source evidence that travels with content, AI companies meeting EU AI Act Article 50 marking requirements, enterprises building tamper-evident audit trails, and teams that need deterministic verification for signed content.",differentiator:"Deterministic proof versus probabilistic detection. A cryptographic watermark does not produce a probability score: it produces a verified signature or a failed verification for signed content.",primaryValue:"Content provenance designed to survive distribution, carry signer and rights assertions, provide EU AI Act Article 50 machine-readable marking, and enable sentence-level attribution."},"/cryptographic-watermarking/how-it-works":{title:"How Cryptographic Watermarking Works",pagePath:"/cryptographic-watermarking/how-it-works",whatWeDo:"Encypher embeds cryptographic provenance with two technology stacks. For text, a hidden mark carries sentence-level authentication. For media, C2PA JUMBF manifests sit in format-native container locations.",audience:"Developers, security engineers, and technical decision-makers evaluating content provenance infrastructure. Anyone who needs to understand the capabilities before adopting or recommending Encypher.",differentiator:"Sentence-level authentication is Encypher's proprietary technology. It is not a C2PA feature: it extends the C2PA standard to individual sentence granularity. C2PA JUMBF embedding for media files follows the open standard. These are distinct technology layers.",primaryValue:"A clear account of what Encypher delivers: the hidden mark, tamper detection at the sentence level, and forensic leak identification. It also maps each capability to C2PA-standard or proprietary technology."},"/cryptographic-watermarking/legal-implications":{title:"Legal Implications of Cryptographic Watermarking",pagePath:"/cryptographic-watermarking/legal-implications",whatWeDo:"Encypher's cryptographic watermarking can carry signed rights terms and dated provenance evidence with content. That record can support notice, licensing, and infringement analysis, while legal conclusions still depend on the facts and counsel.",audience:"Publishers, legal counsel, and enterprises evaluating the legal significance of content provenance infrastructure.",differentiator:"Embedded rights terms preserve evidence of what the signer asserted and when. They do not by themselves prove ownership, authorization, notice, or willful infringement.",primaryValue:"Understand how signed provenance can support notice and infringement analysis without turning a technical record into a legal verdict."},"/cryptographic-watermarking/survives-distribution":{title:"How Cryptographic Watermarking Survives Distribution",pagePath:"/cryptographic-watermarking/survives-distribution",whatWeDo:"Encypher's cryptographic watermarks persist through the distribution paths that matter for publisher protection: copy-paste from the web, B2B wire service distribution, aggregator scraping, and social media sharing. A hidden mark also persists in training databases built from scraped web content.",audience:"Publishers evaluating whether cryptographic watermarking is durable enough to be useful across their actual distribution workflows. Legal and compliance teams assessing what scenarios produce verifiable provenance records.",differentiator:"Embedded provenance data is preserved by Unicode-compliant text processors in copy operations. JUMBF container manifests are preserved by file processing tools that do not understand them. Both properties make cryptographic provenance durable by default.",primaryValue:"Scenario-by-scenario analysis of watermark durability across real distribution workflows."},"/cryptographic-watermarking/text":{title:"Cryptographic Watermarking for Text",pagePath:"/cryptographic-watermarking/text",whatWeDo:"Encypher embeds cryptographic watermarks into text with a hidden mark. The watermarks survive copy-paste, B2B distribution, and aggregator scraping. Each text str
1ing carries its own proof of origin, and the text looks unchanged to a reader.",audience:"Publishers, journalists, and organizations distributing text content that need durable source and signer evidence through downstream distribution channels.",differentiator:"Each supported text segment can carry verifiable provenance, so reproduced passages can be checked against their signed source record. Recovery still depends on the text and transformations involved.",primaryValue:"Text provenance carried by a hidden mark, with copy-paste survival and sentence-level granularity for partial reproduction attribution."},"/cryptographic-watermarking/vs-statistical-watermarking":{title:"Cryptographic vs. Statistical Watermarking",pagePath:"/cryptographic-watermarking/vs-statistical-watermarking",whatWeDo:"Encypher implements cryptographic watermarking: deterministic, binary verification that does not degrade over time or under editing. Statistical watermarking systems like SynthID embed imperceptible patterns that a trained classifier estimates with probability.",audience:"Organizations evaluating AI watermarking options. Legal and compliance teams determining which type of evidence meets their evidentiary requirements. Developers deciding between Encypher and SynthID-based approaches.",differentiator:"Cryptographic watermarking produces verifiable proof that cannot be falsified without breaking the cryptographic system. Statistical watermarking produces a probability estimate that can be challenged as statistical inference. For disputes, compliance reviews, and licensing enforcement, the difference is decisive.",primaryValue:"Technical and practical understanding of why cryptographic proof is more durable and more defensible than statistical estimation for content authentication."},"/content-provenance":{title:"What Is Content Provenance? The Definitive Guide",pagePath:"/content-provenance",whatWeDo:"Content provenance records a signed origin claim, supplied identity or authorship metadata, integrity, and modification history. C2PA authenticates document-level manifests, while Encypher marks and resolvers add sub-document attribution for text. Encypher signs and verifies ".concat(n.cp," file and media formats today, from the same capability matrix its public API serves."),audience:"Publishers documenting supplied rights terms, AI companies implementing Article 50 marking workflows, enterprises requiring tamper-evident audit trails, journalists checking source integrity, and any organization producing digital content that needs signed origin and integrity records.",differentiator:"Encypher authored the C2PA text-provenance standard for unstructured text and co-chairs the C2PA Text Provenance Task Force. Encypher's hidden mark and resolver layer provides sub-document attribution. That attribution sits outside the C2PA manifest, which stays document-level.",primaryValue:"Document-level C2PA integrity, Encypher sub-document attribution, free verification, and machine-readable supplied rights terms for counsel review. Article 50 obligations apply ".concat(n.Gh,"; confirm each deployment with counsel.")},"/content-provenance/eu-ai-act":{title:"EU AI Act Article 50 Text Marking",pagePath:"/content-provenance/eu-ai-act",whatWeDo:"Encypher Mark adds machine-readable marking to AI-generated text and signed provenance to supported files, returns a result teams can retain, and provides a public detection path. It helps teams document Article 50 workflows now in force and the transition described by ".concat(n.Gh,"; it does not replace legal review or every disclosure duty."),audience:"AI system providers, AI product operators, and enterprises delivering AI-generated text, image, audio, video, or synthetic media output to people in the European Union.",differentiator:"Encypher authored the C2PA standard for unstructured text. Mark can sign completed or streaming AI text after generation, while C2PA supplies interoperable provenance for supported file formats and the public verifier exposes the resulting record.",primaryValue:"Start with one representative AI output, prove the marking and detection path, then connect the same workflow to production with organization identity and evidence controls."},"/content-provenance/california-ai-transparency-act":{title:"California AI Transparency Act and C2PA",pagePath:"/content-provenance/california-ai-transparency-act",whatWeDo:"Encypher supplies a C2PA evidence layer for California AI Transparency Act workflows: signed machine-readable provenance, AI source information, actions, timestamps, ingredients, and file-integrity verification. C2PA does not replace the Act's latent-marking, provider-detection, user-interface, privacy, licensing, or operating duties.",audience:"Generative AI providers, online platforms, AI hosting platforms, capture-device manufacturers, compliance teams, and counsel assessing California Business and Professions Code sections 22757.1 through 22757.6.",differentiator:"The guide separates what the enacted California statute requires from what C2PA proves. It maps the August 2, 2026, January 1, 2027, and January 1, 2028 operative dates without claiming that one credential creates a compliance safe harbor.",primaryValue:"A technical duty map, primary-law citations, and a practical implementation sequence for pairing interoperable C2PA provenance with the controls the California Act still requires."},"/policy/california-ab-853-sb-1000":{title:"California AB 853 and SB 1000 Brief",pagePath:"/policy/california-ab-853-sb-1000",whatWeDo:"This brief explains what California's AB 853 requires of AI providers, large platforms and device makers, and what the pending SB 1000 and AB 2713 would change. AB 853 is law. SB 1000 and AB 2713 were awaiting the Governor as of September 29, 2026.",audience:"Policy, legal and product readers assessing California AI provenance duties.",differentiator:"The brief separates enacted duties from pending changes and states where C2PA supports the law without claiming that C2PA alone creates compliance.",primaryValue:"A dated status, plain-language duty table, primary sources, and publisher-specific implications."},"/compare":{title:"Compare Content Provenance Solutions",pagePath:"/compare",pageType:"CollectionPage",whatWeDo:"Fair, technical comparisons of Encypher against SynthID, WordProof, AI detection tools, TollBit, ProRata, and category-level comparisons of C2PA vs blockchain and provenance vs detection.",audience:"Publishers, legal teams, AI companies, and enterprise buyers evaluating content provenance solutions.",differentiator:"Encypher focuses on embedded content provenance that can remain checkable after content leaves an access gate or marketplace.",primaryValue:"Deterministic signer and source evidence that survives downstream distribution and can support licensing, notice, and infringement review."},"/compare/c2pa-vs-blockchain":{title:"C2PA vs Blockchain for Content Provenance",pagePath:"/compare/c2pa-vs-blockchain",whatWeDo:"A technical comparison of C2PA embedded manifests and blockchain hash anchoring as approaches to content provenance. Covers architecture, verification speed, standards, and trade-offs.",audience:"Developers, architects, publishers, and enterprises evaluating content provenance infrastru
1cture.",differentiator:"C2PA manifests are embedded in the file and travel with it. Blockchain proofs are external records requiring a lookup. The architectural difference determines behavior in offline, distributed, and AI pipeline contexts.",primaryValue:"C2PA is the industry standard backed by ".concat(i.KV," organizations. It provides offline verification, no vendor dependency, and provenance that follows the file everywhere.")},"/compare/content-provenance-vs-content-detection":{title:"Content Provenance vs Content Detection: The Category-Defining Comparison",pagePath:"/compare/content-provenance-vs-content-detection",whatWeDo:"This page defines and compares two distinct approaches to content authentication: provenance (cryptographic proof of origin at creation) and detection (statistical identification after the fact). They answer different questions and have different legal standing.",audience:"Publishers, legal teams, enterprises, developers, and anyone evaluating content authentication strategies.",differentiator:"Provenance is deterministic for signed content and established before any dispute. Detection is probabilistic, applied after the fact, and challenged regularly in legal contexts.",primaryValue:"Understanding this distinction is foundational to choosing the right content authentication approach. Provenance provides notice support that can strengthen willful-infringement arguments. Detection provides screening capability."},"/compare/encypher-vs-detection-tools":{title:"Encypher vs AI Detection Tools: Proof of Origin vs Statistical Detection",pagePath:"/compare/encypher-vs-detection-tools",whatWeDo:"This page compares Encypher with AI detection tools like GPTZero and Originality.ai. Detection estimates whether content is AI-generated. Provenance checks a record created when content was signed.",audience:"Publishers, legal teams, educators, and enterprises evaluating content authentication approaches.",differentiator:"Encypher produces deterministic cryptographic verification for signed content. AI detection tools produce probabilistic estimates after the fact.",primaryValue:"A checkable signer, integrity, and source record for signed content, without a statistical false-positive score."},"/compare/encypher-vs-prorata":{title:"Encypher vs ProRata: Layer 2 Content Provenance vs Layer 3 Output Attribution",pagePath:"/compare/encypher-vs-prorata",whatWeDo:"This page compares Encypher and ProRata. ProRata is an output-side attribution system that routes revenue inside opted-in AI networks. Encypher is an input-side provenance system that embeds proof in content before it enters any AI system.",audience:"Publishers evaluating AI content monetization and enforcement strategies.",differentiator:"ProRata requires AI company participation and estimates contribution algorithmically. Encypher works unilaterally and establishes proof cryptographically.",primaryValue:"Encypher covers the enforcement gap when AI companies have not opted into attribution systems. ProRata covers revenue routing when they have."},"/compare/encypher-vs-synthid":{title:"Encypher vs SynthID: Cryptographic Provenance vs Statistical Watermarking",pagePath:"/compare/encypher-vs-synthid",whatWeDo:"This page compares SynthID's generation-time statistical signal with Encypher's final-output C2PA signing and universal verification layer.",audience:"AI product, legal, compliance, and engineering teams evaluating content marking across models and output types.",differentiator:"SynthID and Encypher answer different questions. Encypher can return supported C2PA and watermark checks through one evidence model without treating unlike signals as the same proof.",primaryValue:"Use generation-time watermarking, signed final-output provenance, or both. Integrate verification once and keep the evidence separate."},"/compare/encypher-vs-tollbit":{title:"Encypher vs TollBit: Layer 2 Content Provenance vs Layer 1 Access Gates",pagePath:"/compare/encypher-vs-tollbit",whatWeDo:"This page explains how TollBit and Encypher occupy different layers of the content protection stack and why publishers need both. TollBit is Layer 1 (cooperative access gating). Encypher is Layer 2 (unilateral embedded provenance).",audience:"Publishers evaluating content protection strategies. Teams deciding between access gates and provenance embedding.",differentiator:"TollBit controls cooperative access. Encypher embeds a provenance record that can still be checked after content leaves the gate.",primaryValue:"TollBit covers front-door access control. Encypher preserves signer, integrity, and supplied-rights evidence through downstream distribution."},"/compare/encypher-vs-wordproof":{title:"Encypher vs WordProof: Embedded Provenance vs Blockchain Timestamping",pagePath:"/compare/encypher-vs-wordproof",whatWeDo:"This page compares Encypher and WordProof. WordProof timestamps content on-chain; Encypher embeds provenance in the text. Timestamping proves that a record existed at a given time. Provenance carries signer, integrity, and rights assertions with the content.",audience:"Publishers and content creators evaluating timestamping, provenance, and source-evidence tools.",differentiator:"Encypher's proof is embedded in the content and travels with it. WordProof's proof is an external blockchain record that stays behind when content is copied or scraped.",primaryValue:"Source and integrity evidence that follows content into distribution channels and downstream use."},"/solutions":{title:"Encypher Solutions",pagePath:"/solutions",pageType:"CollectionPage",whatWeDo:"Mark signs AI output, published work, and official files. Meter is an early partner program that brings signed sources and partner-reported AI use into one report. Trace links a recovered marked copy back to its send record.",audience:"Publishers, AI providers, official communications teams, and enterprise AI portfolio owners that need a checkable record after content leaves their systems.",differentiator:"Each path starts with the record a buyer asks for, and all three share the same open check on signer and integrity evidence.",primaryValue:"Start with one signed result. Add your own organization identity, source-use reporting, or tracing when the job calls for it."},"/ai-copyright-infringement":{title:"AI Copyright Infringement Solution",pagePath:"/ai-copyright-infringement",whatWeDo:"Encypher provides cryptographically verifiable provenance evidence for signed content used in AI copyright analysis. It records origin, integrity, supplied rights terms, and verification activity; legal outcomes depend on the facts and counsel.",audience:"Publishers facing AI content usage disputes and legal teams that need technical evidence for ownership, attribution, licensing, or notice review.",differentiator:"Cryptographic provenance is created when content is signed, and it can survive copy-paste and B2B distribution. It produces an evidence record a reviewer can inspect. It does not produce a statistical detector score.",primaryValue:"Build a better technical record for licensing talks, notices, and counsel review without claiming that software alone proves infringement or damages."},"/solutions/publishers":{title:"Encypher for Publishers and Rights Holders",pagePath:"/solutions/publishers",whatWeDo:"Publishers and rights holders sign source work under a verified, domain-backed publisher identity once their proof is accepted. Text, images, audio, video, and files can carry a signer, time, declarations, supplied rights terms, and an integrity record. WordPress, Ghost, API integration, and free public checks are available. Encypher co-chairs the C2PA Text Provenance Task Force. The text standard was published ".concat(n.NG,"."),audience:"Publishers, media owners, studios, labels, and other organizations that release source content and need their identity, supplied rights terms, and evidence to travel with it.",differentiator:"One signed source record gives recipients a free public check and gives licensing or distribution partners the same signer, time, terms, and integrity evidence. The record reports what the signer supplied; it does not establish legal ownership.",primaryValue:"Connect release and public checking through the publishing workflow. Start with one signed work checked after handoff, then reuse the record for editorial, distribution, and support questions. Verification depends on the received artifact and supported transformations."},"/solutions/ai-companies":{title:"Encypher for AI Companies",pagePath:"/solutions/ai-companies",whatWeDo:"Mark adds watermarking and C2PA ".concat(n.pl," Content Credentials to supported AI output after generation. Teams keep the returned output and identifiers, then use a separate public check to inspect signer, declarations, watermark findings, and integrity. This supports a technical Article 50 marking workflow, not a legal compliance determination. Encypher co-chairs the C2PA Text Provenance Task Force. The text standard was published ").concat(n.NG,"."),audience:"AI product providers controlling final output, their output-pipeline engineers, and governance or customer reviewers who need usable technical evidence.",differentiator:"Connect marking, signing, and public checking without changing the generation call. Watermark findings, credential validation, and integrity are reported separately, and watermark coverage is narrower than signing coverage.",primaryValue:"Mark one representative output, check the delivered result, and let a named reviewer use the evidence before planning rollout. The free monthly allowance signs under the Encypher platform identity; an organization's own identity takes a paid Mark plan with accepted identity proof."},"/solutions/creative-agencies":{title:"C2PA Content Credentials for Creative Agencies",pagePath:"/solutions/creative-agencies",whatWeDo:"Mark signs supported ad creative with C2PA ".concat(n.pl," Content Credentials, so a delivered file can carry its signer, its signing time, the declared actions, and the parent files behind it. Watermarking is available where a workflow calls for it and is reported separately. Encypher co-chairs the C2PA Text Provenance Task Force. The text standard was published ").concat(n.NG,"."),audience:"Creative, production, and studio team
1s whose clients require Content Credentials, signer identity, or source declarations on delivered advertising work.",differentiator:"Encypher covers ".concat(n.iR," and agrees the client's accepting check before signing, so an agency can test one real deliverable through its own export and delivery path. Whether the client accepts the result stays the client's decision."),primaryValue:"Review one client deliverable: agreed scope, a signed sample, a test through the real delivery path, and a written list of gaps. Signing under the agency's own name takes an eligible paid plan with accepted identity proof."},"/campaign-examples":{title:"Signed Campaign Examples and Verification Results",pagePath:"/campaign-examples",pageType:"CollectionPage",whatWeDo:"Encypher publishes owned examples of C2PA ".concat(n.pl," signing and public verification for text, image, audio, and video. Each example shows the signed file and the verification result it returns. Watermark findings are reported separately from C2PA credentials."),audience:"AI teams, creative agencies, and the reviewers they bring along, who want to inspect real signed files and their verification output before starting an evaluation.",differentiator:"Every example is a file Encypher signed, published beside the result its verification returns. Coverage is stated as ".concat(n.iR,", with signing, verification, and formal conformance kept as separate measures."),primaryValue:"Open a signed example for the medium you ship, read its verification result, and check the coverage table before requesting a review or creating an account."},"/solutions/enterprises":{title:"Encypher for Enterprise AI Teams",pagePath:"/solutions/enterprises",whatWeDo:"Encypher gives every connected application one marking policy and one verification endpoint across supported text and media. Product, legal, security, risk, and audit read the same evidence schema.",audience:"Enterprise AI teams that need one repeatable Article 50 technical control across products, models, output types, and business units.",differentiator:"Every application can produce the same signed result and use the same verification contract while C2PA, watermark, recovery, and policy evidence remain distinct.",primaryValue:"Prove one output workflow, measure its reach and gaps, then repeat the same marking and verification pattern across the company."},"/solutions/official-content":{title:"Official Content Authentication",pagePath:"/solutions/official-content",whatWeDo:"Encypher Mark signs completed official text, images, audio, video, PDF, and Microsoft Office documents with a public signer and integrity record.",audience:"Communications, operations, legal, compliance, executive, investor-relations, and public-sector teams that publish statements, notices, reports, filings, policies, or contracts.",differentiator:"One completed-content workflow gives each recipient a free public check. They confirm the signer and see whether the signed content changed, using any C2PA-conformant tool and no account. Trial signing uses the Encypher platform identity. Your own organization identity takes a paid Mark plan with an accepted identity proof.",primaryValue:"Recipients confirm the signing organization and spot post-signing changes without contacting the issuer. The signed result reports signed evidence only. It does not establish ownership, authorship, authority to issue, or legal compliance."}}}}]);
Line numbers count LF bytes from the start of the resource, as the search results do. Vendor segments are library code the classifier recognised; they are stored but not indexed. Bytes are shown as Latin1 characters, one per byte.