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Agnos PCI PTS

AGNOS PCI PTS

EMV L2 framework

Agnos is a comprehensive, pre-certified, EMV L2 framework. Our expertise is to protect solution providers from EMV acceptance complexity by abstracting it, offering generic EMV Level 2 APIs, test automation means, and streamlining certification stages.

Standardization, commoditization, and simplification are at the core of the Agnos product stack which complies with EMV books II/III, A/B and C-x.

Discover our L2 Kernel Library
Agnos PCI PTS

Targeted customers

PSPs, Acquirers/Processor, Transit operators, Gas & Oils companies, Chips manufacturers, Smart card manufacturers

Pros

Benefits

01.

Support any payment acceptance devices

A wide variety of platforms with diverse OSs have been integrated, certified and deployed with the Agnos EMV Level 2 stack worldwide, from common embedded platforms to pure exotic hardware. Agnos EMV stack runs on top of an abstraction layer which allows deployment with any EMV ready hardware.

02.

Cover all use cases and markets

With no assumptions made regarding the Implementation Conformance Statement (ICS), payment system regionalization and physical devices (standalone, ATMs, mPOS, or even more complex client/server architecture), Agnos may be adapted to any merchant context.

03.

Facilitate the maintenance of your payment application

Agnos incorporates automated tests to detect regressions in the regulatory technology (RegTech) environment like EMV Level 2 certification. Like this, Amadis eliminates technical dependencies, thus shielding clients' Level 3 payment applications from EMV Level 2 framework or kernel updates.

04.

Accelerate your certification process

Agnos is a qualified EMV L2 stack, ready for Test Approval certification. With our testing tools for global kernel library, customers accelerate EMV Level 2 certification and optimize its success rate. The Agnos Framework and kernels are constantly qualified to the latest payment scheme test plans.

05.

Memory Foot Print and card-processing speed

Agnos is designed to minimize the memory footprint by sharing similar kernels functions in a card processing library.

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