TRPGR30ENATGB
TRPGR30ENATGB is 32-mm Low-Frequency Glass-Encapsulated Transponder manufactured by Texas Instruments.
FEATURES
- Best-in-Class Performance Through Half Duplex (HDX) Technology
- Patented Transponder Tuning Provides Stable and High Read Performance
- 80-Bit Read-Only Type
- EN 14803 Numbering
- Insensitive to Almost All Nonmetallic Materials
APPLICATIONS
- Waste Container Management
DESCRIPTION
Texas Instruments 32-mm low-frequency (LF) glass transponders provide superior performance and operate at a resonance frequency of 134.2 k Hz. The products are pliant to ISO 11784 and ISO 11785 global open standards. Texas Instruments LF glass transponders are manufactured with TI's patented tuning process to provide consistent read performance. Prior to delivery, the transponders undergo plete functional and parametric testing to provide the high quality customers have e to expect from TI.
Absolute Maximum Ratings(1) over operating free-air temperature range (unless otherwise noted)
TA TSTG
Operating temperature Storage temperature
- 25°C to 70°C
- 40°C to 85°C
(1) Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under Specifications is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.
Specifications
PARAMETER Functionality Memory (bits) Memory (pages) Resonance frequency Modulation Transmission principle Power source Typical reading range Typical reading time Case material Protection glass EMC Signal penetration Mechanical shock Dimensions Weight
TRPGR30ENATGB Read only 80 (64-bit unique ID + 16-bit BCC) 1 134.6 k Hz FSK (frequency shift keying) 134.2 k Hz and 124.2 k Hz HDX (half duplex) Powered from the reader signal (battery-less) ≤110 cm(1) 70 ms Glass Hermetically sealed Programmed code is not affected by natural electromagnetic interference or x-rays Transponder can be read through almost all nonmetallic material...