| Specification : | |
| Brand Profile | Uniview (UNV Technologies) |
| Model Code Matrix | OEK-M11 (OEK-M11 IC Card) |
| Product Category | Access Control System Smart Contactless Proximity IC Cards |
| Wireless Frequency | High-Frequency Architecture Index: 13.56 MHz Sensing Spectrum |
| Communication Standard | ISO / IEC 14443A Global Smart Credential Protocol Compliance |
| Functional Strategy | Multi-Purpose Read and Write Memory Architecture Capability |
| Proximity Sensing Range | High-Speed Proximity Detection: ≤ 10 cm (≤ 3.9 inches) Range |
| EEPROM Memory Module | 1K Byte Secure Memory Storage Allocation Core Block |
| EEPROM Write Endurance | Outstanding Lifecycle Framework: ≥ 100,000 Continuous Writing Times |
| Chassis Component Material | High-Flexibility Wear-Resistant White Polyvinyl Chloride (PVC) |
| Physical Dimensions | 85.5 mm Length × 54.0 mm Width ± 0.3 mm Thickness (3.36" × 2.13") |
| Visual Color Palette | Clean Blank Glossy Uniform White (Optimized for Badge Printing) |
| Operating Temperature | High-Resilience Architectural Range: -20°C to +50°C (-4°F to 122°F) |
| Target Integration Setup | UNV RFID Terminal Series, Smart Turnstiles, Time Attendance Consoles |
High-Frequency 13.56 MHz Non-Contact Sensing: Operates on an advanced high-frequency proximity spectrum, providing lightning-fast card swipes and secure contact-free entry gate authentication.
Integrated 1K Byte Read & Write EEPROM: Features a built-in memory storage chip engineered to securely hold encryption algorithms and card profiles over at least 100,000 write cycles.
Global ISO/IEC 14443A Standard Compliance: Vetted to match rigid international wireless communication metrics, working seamlessly with standard high-frequency readers and turnstiles.
Durable Standardized Printable PVC Body: Manufactured from premium blank white PVC polymer that supports full-color sublimation printing for custom staff photo IDs and lanyards.
Wide -20°C to +50°C Thermal Operational Stability: High-resilience internal hardware logic maintains digital integrity and mechanical shape through extreme seasonal temperature shifts.v