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HCS473-SLROM 数据表(PDF) 42 Page - Microchip Technology |
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HCS473-SLROM 数据表(HTML) 42 Page - Microchip Technology |
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42 / 68 page ![]() HCS473 DS40035C-page 40 Preliminary 2002 Microchip Technology Inc. FIGURE 5-2: TYPICAL DECODER OPERATION 5.3 Synchronization with Decoder The technology features a sophisticated synchronization technique (Figure 5-3) which does not require the calculation and storage of future codes. If the stored counter value for that particular transmitter and the counter value that was just decrypted are within a window of 16 codes, the counter is stored and the command is executed. If the counter value was not within the single operation window, but is within the double operation window of 32K codes (when using a 16-bit counter), the transmitted synchronization value is stored in temporary location and it goes back to wait- ing for another transmission. When the next valid transmission is received, it will check the new value with the one in temporary storage. If the two values are sequential, it is assumed that the counter had just gotten out of the single operation ‘win- dow’. Since it is now back in sync, the new synchroni- zation value is stored and the command executed. If a transmitter has somehow gotten out of the double operation window, the transmitter will not work and must be relearned. Since the entire window rotates after each valid transmission, codes that have been used are part of the ‘blocked’ (32K) codes and are no longer valid. This eliminates the possibility of grabbing a previous code and retransmitting to gain entry. FIGURE 5-3: SYNCHRONIZATION WINDOW (16-BIT COUNTER) 5.4 Inductive Communication Communication between a base station and a HCS473 transponder occurs via magnetic coupling between the transponder coil and base station coil. The base station coil forms part of a series RLC circuit. The base station communicates to the transponder by switching the 125 kHz signal to the series RLC circuit on and off. Thus, the base station magnetic field is switched on and off. The transponder coil is connected in parallel with a res- onating capacitor (125 kHz) and the HCS473. When the transponder is brought into the base station magnetic field, it magnetically couples with this field and draws energy from it. This loading effect can be observed as a decrease in voltage across the base sta- tion resonating capacitor. The K EELOQ transponder communicates to the base station by “shorting out” its parallel LC circuit. This detunes the transponder and removes the load, which is observed as an increase in voltage across the base station resonating capacitor. The base station capacitor voltage is the input to the base station AM demodulator circuit. The demodulator extracts the transponder data for further processing by the base station software. ? Transmission Received Does Serial Number Match ? Decrypt Transmission Is Decryption Valid ? Is Counter Within 16 ? Is Counter Within 32K ? Update Counter Execute Command Save Counter in Temp Location Start No No No No Yes Yes Yes Yes Yes No and No Note: The synchronization method described in this section is only a typical implementation and because it is usually implemented in firmware, it can be altered to fit the needs of a particular system Blocked Entire Window rotates to eliminate use of previously used codes Current Position (32K Codes) Double Operation (32K Codes) Single Operation Window (16 Codes) |
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