| 数据搜索系统,热门电子元器件搜索 |
|
HCS473-SLROM 数据表(PDF) 34 Page - Microchip Technology |
|
|
|||||||||||||||||||||||||||||
HCS473-SLROM 数据表(HTML) 34 Page - Microchip Technology |
|
34 / 68 page ![]() HCS473 DS40035C-page 32 Preliminary 2002 Microchip Technology Inc. FIGURE 3-20: LF DATA RESPONSE ADJUSTMENTS (LFRSP=1) FIGURE 3-21: LF COMMUNICATION ANALOG DELAYS 3.2.7 RECEIVE STABILITY - CALCULATING COMMUNICATION T E The HCS473’s internal oscillator may vary ±10% over the device’s rated voltage and temperature range for commercial temperature devices. A certain percentage of industrial temperature devices vary further on the slow side, -20%, when used at higher voltages (V DD > 3.5V) and cold temperature. When the internal oscilla- tor varies, both its transmitted T E and expected TE when receiving will vary. The HCS473 receive capability is ensured over a ±10% oscillator variance, with receive capability no longer robust as oscillator variance approaches ±15%. Indus- trial devices operating at V DD voltages greater than 3.5V (and cold temperature) are therefore not guaran- teed to be able to properly receive when communicated to using an exact T E. When designing for these specific operating conditions, the system designer must imple- ment a method to adjust communication timing to the speed of the HCS473. Communication reliability with the transponder may be improved by the transponder reader calculating the HCS473’s T E from the Field Acknowledge sequence and using this exact time element in communication to and in reception routines from the transponder. Always begin and end the time measurement on rising edges. Whether LF or RF, the falling edge decay rates may vary but the rising edge relationships should remain consistent. A common T E calculation method would be to time an 8T E sequence from the first Field Acknowledge, then divide the value down to determine the single T E value. An 8 TE measurement will give good resolution and may be easily right-shifted (divide by 2) three times for the math portion of the calculation (Figure 3-22). IFF, Read and Request Hop CRC RF Response (RFRSP=1) Inductive (LC Pins) RF Response (DATA Pin) 32-Bit LF Response (LFRSP=1) TFINH 1 LFTE Next Command TCMD TCMD Resulting 125 kHz on Transponder Reader Digital Representation of Communication from Transponder Reader Antenna (TX) 600 µs 400 µs Resulting 125 kHz on Transponder Card Antenna (RX) Resulting digital signal processed by HCS473, after analog filter 600 µs 400 µs TFILTR TFILTF TANTR TANTF Bit ‘1’, 200 µs LFTE Bit ‘0’, 200 µs LFTE |
|
链接网址 |
| ALLDATASHEET是否为您带来帮助? [ DONATE ] |
关于 Alldatasheet | 广告服务 | 联系我们 | 隐私政策 | 数据表链接 | 链接交换 | 制造商名单 All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |