RFID IP

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Compare 42 IP from 9 vendors (1 - 10)
  • UHF RFID tag IP with 3.6kBit EEPROM and -18dBm sensitivity
    • 130GF_RFID_EPCGen2_01 IP is intended for use in passive UHF transponder applications.
    • IP derives its operating power from an RF electromagnetic field generated by a reader, which is received and rectified by the IP.
    • The tag IP sends the answer back to the reader using a backscatter modulation technique.
    Block Diagram -- UHF RFID tag IP with 3.6kBit EEPROM and -18dBm sensitivity
  • UHF Passive RFID Front-End - EPCGlobal Class 1 Gen 2/ISO18000-6C Compliant
    • This macro-cell is an ultra low power analog/RF front-end core designed for SilTerra 0.18μm CMOS technology.
    • It is ideal for use in passive UHF RFID integrated circuits compliant with EPCGlobal Class 1 Gen 2 / ISO18000-6C standards.
    Block Diagram -- UHF Passive RFID Front-End - EPCGlobal Class 1 Gen 2/ISO18000-6C Compliant
  • UHF RFID tag IP with 512bit EEPROM and -19dBm sensitivity
    • 180SMIC_RFID_EPCGen2_01 IP is intended for use in passive UHF transponder applications.
    • IP derives its operating power from an RF electromagnetic field generated by a reader, which is received and rectified by the IP.
    • The IP tag sends the answer back to the reader using a backscatter modulation technique.
    Block Diagram -- UHF RFID tag IP with 512bit EEPROM and -19dBm sensitivity
  • UHF RFID EPC Gen2V2 physical interface
    • SMIC 180nm EEPROM technology
    • Operating temperature range -40…+85 °C
    • Operating frequency 860 - 960 MHz
    • EPC Class 1 Generation 2 V2 compliant
    • Two pads RF operation functionality
    Block Diagram -- UHF RFID EPC Gen2V2 physical interface
  • UHF RFID EPC Gen2 physical interface
    • Global Foundries Embedded EEPROM 130nm
    • Operating temperature range -40…+85 °C
    • 2 operation modes: Passive mode and Battery assisted passive (BAP) mode
    • Operating frequency 860 - 960 MHz
    Block Diagram -- UHF RFID EPC Gen2 physical interface
  • UHF RFID EPC Gen2 physical interface
    • Global Foundries Embedded EEPROM 0.13 um
    • Operating temperature range -40…+85 °C
    Block Diagram -- UHF RFID EPC Gen2 physical interface
  • UHF RFID tag IC with cryptographic authentication and -15 dBm sensitivity
    • SMIC EEPROM CMOS 180 nm
    • Passive operation – no battery needed
    • Input impedance 14-j580 Ohm
    Block Diagram -- UHF RFID tag IC with cryptographic authentication and -15 dBm sensitivity
  • UHF RFID tag IC with 3.6kBit EEPROM and -19.5dBm sensitivity
    • GF Embedded EEPROM 130 nm
    • Read sensitivity -19.5 dBm
    • Write sensitivity -17 dBm
    • Impedance 20-j300 Ohm @915 MHz
    Block Diagram -- UHF RFID tag IC with 3.6kBit EEPROM and -19.5dBm sensitivity
  • NVM MTP ULP TSMC 180nm CM018RI 3.3V
    • The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increasing the write cycle endurance specification
    • The NVM IP is ideal for applications such as passive and semi-passive tags used in radio-frequency identification (RFID) and near-field communication (NFC), as well as other low-power analog and wireless applications
    • Originally developed in industry standard 180-nm/3.3V processes, the reprogrammable NVM IP enables the MTP functionality required by the Gen2 EPC and ISO15693 RFID standards with best-in-class power consumption
    • Delivered as a hard IP block, the Synopsys MTP ULP NVM IP operates from a single supply and includes all the necessary support and control circuitry, including all high-voltage generation and distribution required for programming
  • NVM MTP ULP TSMC 180nm G 3.3V
    • The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increasing the write cycle endurance specification
    • The NVM IP is ideal for applications such as passive and semi-passive tags used in radio-frequency identification (RFID) and near-field communication (NFC), as well as other low-power analog and wireless applications
    • Originally developed in industry standard 180-nm/3.3V processes, the reprogrammable NVM IP enables the MTP functionality required by the Gen2 EPC and ISO15693 RFID standards with best-in-class power consumption
    • Delivered as a hard IP block, the Synopsys MTP ULP NVM IP operates from a single supply and includes all the necessary support and control circuitry, including all high-voltage generation and distribution required for programming
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