Four Types of Business Databases
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Product Description
This product series comprises an intelligent bank vault custody management system that leverages RFID radio-frequency identification technology to assign a unique identification number to each vault box for centralized management. By integrating RFID, network video surveillance, networking, and database technologies, the system establishes a comprehensive digital management platform that consolidates functions such as vault-box tracking, monitoring, data entry, query, sealing, and statistical analysis. This solution eliminates the challenges posed by the time constraints of escort companies, high escort costs, and low operational efficiency in daily operations, while technically maximizing the security of cash management and utilization. As a result, intelligent and information-based management practices are seamlessly integrated across all aspects of banking operations. This product series complies with the GA 38–2021 standards for bank security and prevention.
The product features dynamic data encryption during transmission and local data encryption, and shall comply with the requirements of GM/T 0028-2014 “Security Technical Requirements for Cryptographic Modules” and GM/T 0039-2015 “Security Testing Requirements for Cryptographic Modules,” as well as the relevant requirements for Security Level 1. It is equipped with RFID-based in-position detection for the safe deposit box, enabling local inventory of the cash boxes within the safe. Additionally, back-end administrators can remotely conduct inventory of the cash box information stored inside the safe. For offline operation, the custody safe is equipped with a manual time-setting function as well as an automatic time-setting function. All operations performed in the business database must be electronically logged in the back-end system, with automatic storage of no fewer than 100,000 records of the most recent operational information; these records must be tamper-proof and non-deletable by manual intervention. When the storage area for operational information reaches capacity, it shall automatically overwrite old entries in a circular fashion. In the event of power failure or abnormal power supply, the system’s basic information and recorded operational data must remain intact. Users may register a single fingerprint; in the event of an anomaly… circumstances When a coerced fingerprint is enrolled, the fingerprint can still be recognized and authenticated normally, but the locker door will not open, and the server will receive a coercion alert. Back-end administrators can enforce access control over locker operators and implement more granular permission management for locker doors: register and manage locker information through the management system; predefine operational tasks for smart lockers based on specific needs, with operations restricted when no task is assigned; enable end-to-end control of inbound and outbound logistics processes, as well as functions for submitting and approving such tasks; monitor the status of each functional module of the device to quickly identify fault locations; manage institutions, personnel, roles, and associated permissions; support configurable working hours, ensuring that devices cannot be operated outside of business hours; and integrate with relevant systems—such as unified authentication platforms and surveillance systems—as required by the institution. The solution boasts the industry’s strongest R&D capabilities.
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