The communication in the physical layer between an interrogator and a tag of a passive Radio Frequency Identification (RFID) system operating between 860-960 MHz is defined by the Gen 2 protocol. The tag can be cons...The communication in the physical layer between an interrogator and a tag of a passive Radio Frequency Identification (RFID) system operating between 860-960 MHz is defined by the Gen 2 protocol. The tag can be considered a remote executing unit or a computer that executes instructions from the Gen 2 protocol. The selection of the parameter and command configuration within the protocol limitations is critical especially if the time available for the memory operations in a passive RFID system is limited. An effort is made to map the operation of the tag not in its states of operation as elaborately explained in the protocol but rather in its elementary format. The research reported in this article identifies all the parameters that affect the dynamic operation of the tag. The operation is further divided into singulation, read and write; identifying the significant parameters in each case. The choices of the different commands that can be adopted to perform identical operations on the tag are analyzed. The elements to consider in selecting the optimum command configuration are described. The impact of the different parameter and command configuration on the singulation, read and write time is calculated and recorded using a tested Gen 2 simulator program.展开更多
Companies can add Gen2 support on existing Zebra RFID printer/encoders while continuing to use Gen 1 and other protocols: no new hardware required. Vernon Hills,Ⅲ., December 14,2005-Zebra Technologies (Nasdaq:ZBRA),a...Companies can add Gen2 support on existing Zebra RFID printer/encoders while continuing to use Gen 1 and other protocols: no new hardware required. Vernon Hills,Ⅲ., December 14,2005-Zebra Technologies (Nasdaq:ZBRA),a leading manufacturer of radio frequency identification (RFID) printer/encoders worldwide,展开更多
为了便于实际项目需要,设计了一种采用对绞线结构且带有E-Marker芯片的全功能USB Type-C高速电缆。采用polar SI 9000仿真软件对整条Type C线缆链路按产品实际制程的要求进行阻抗模拟仿真,得出Type C整条链路阻抗的曲线。实验结果表明, ...为了便于实际项目需要,设计了一种采用对绞线结构且带有E-Marker芯片的全功能USB Type-C高速电缆。采用polar SI 9000仿真软件对整条Type C线缆链路按产品实际制程的要求进行阻抗模拟仿真,得出Type C整条链路阻抗的曲线。实验结果表明, Type C整条链路阻抗一致性越好,其IMR、IRL性能就越好。采用一种新的线夹工艺,解决在Type C接头外模尺寸不变的情况下Type C Gen2 SI性能及可制造的问题。实验证明,通过这种新的线夹工艺,不但可以解决困扰Type C SI性能的串扰难点,还可以解决可制造问题。目前,采用该设计方案的Type C线缆已拿到USB协会的1M Type C Gen 2证书。展开更多
文摘The communication in the physical layer between an interrogator and a tag of a passive Radio Frequency Identification (RFID) system operating between 860-960 MHz is defined by the Gen 2 protocol. The tag can be considered a remote executing unit or a computer that executes instructions from the Gen 2 protocol. The selection of the parameter and command configuration within the protocol limitations is critical especially if the time available for the memory operations in a passive RFID system is limited. An effort is made to map the operation of the tag not in its states of operation as elaborately explained in the protocol but rather in its elementary format. The research reported in this article identifies all the parameters that affect the dynamic operation of the tag. The operation is further divided into singulation, read and write; identifying the significant parameters in each case. The choices of the different commands that can be adopted to perform identical operations on the tag are analyzed. The elements to consider in selecting the optimum command configuration are described. The impact of the different parameter and command configuration on the singulation, read and write time is calculated and recorded using a tested Gen 2 simulator program.
文摘Companies can add Gen2 support on existing Zebra RFID printer/encoders while continuing to use Gen 1 and other protocols: no new hardware required. Vernon Hills,Ⅲ., December 14,2005-Zebra Technologies (Nasdaq:ZBRA),a leading manufacturer of radio frequency identification (RFID) printer/encoders worldwide,
文摘为了便于实际项目需要,设计了一种采用对绞线结构且带有E-Marker芯片的全功能USB Type-C高速电缆。采用polar SI 9000仿真软件对整条Type C线缆链路按产品实际制程的要求进行阻抗模拟仿真,得出Type C整条链路阻抗的曲线。实验结果表明, Type C整条链路阻抗一致性越好,其IMR、IRL性能就越好。采用一种新的线夹工艺,解决在Type C接头外模尺寸不变的情况下Type C Gen2 SI性能及可制造的问题。实验证明,通过这种新的线夹工艺,不但可以解决困扰Type C SI性能的串扰难点,还可以解决可制造问题。目前,采用该设计方案的Type C线缆已拿到USB协会的1M Type C Gen 2证书。