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HCS301-IP 数据表(PDF) 9 Page - Microchip Technology |
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HCS301-IP 数据表(HTML) 9 Page - Microchip Technology |
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9 / 20 page ![]() © 1996 Microchip Technology Inc. Preliminary DS21143A-page 9 HCS301 5.0 SPECIAL FEATURES 5.1 Code Word Completion Code word completion is an automatic feature that makes sure that the entire code word is transmitted, even if the button is released before the transmission is complete. The HCS301 encoder powers itself up when a button is pushed and powers itself down after the command is finished, if the user has already released the button. If the button is held down beyond the time for one transmission, then multiple transmissions will result. If another button is activated during a transmission, the active transmission will be aborted and the new code will be generated using the new button information. 5.2 Blank Alternate Code Word Federal Communications Commission (FCC) part 15 rules specify the limits on fundamental power and harmonics that can be transmitted. Power is calculated on the worst case average power transmitted in a 100ms window. It is therefore advantageous to minimize the duty cycle of the transmitted word. This can be achieved by minimizing the duty cycle of the individual bits and by blanking out consecutive words. Blank Alternate Code Word (BACW) is used for reducing the average power of a transmission (Figure 5-1). This is a selectable feature that is determined in conjunction with the baudrate selection bits BSL0 and BSL1. Using the BACW allows the user to transmit a higher amplitude transmission if the transmission length is shorter. The FCC puts constraints on the average power that can be transmitted by a device, and BACW effectively prevents continuous transmission by only allowing the transmis- sion of every second or every fourth code word. This reduces the average power transmitted and hence, assists in FCC approval of a transmitter device. 5.3 Envelope Encryption Option Envelope Encryption is a user selectable option which is meant to offer a higher level of security for a code hopping system. During a normal transmission with the envelope encryption turned off, the 28-bit serial number and function code are transmitted in the clear (unen- crypted). If envelope encryption is selected, then the serial number and function code are also encrypted before transmission. The encryption for the serial num- ber is done using a different algorithm than the trans- mission algorithm. The envelope encryption scheme is not nearly as complex as the KEELOQ algorithm and, hence, not as secure. When the envelope encryption is used, the serial number must be decrypted using the envelope key and envelope decryption. After the serial number is obtained, the normal decryption method can be used to decrypt the hopping code. FIGURE 5-1: BLANK ALTERNATE CODE WORD (BACW) One Code Word BACW Disabled (All words transmitted) BACW Enabled (1 out of 2 transmitted) BACW Enabled (1 out of 4 transmitted) A 2A 4A 100ms 100ms 100ms 100ms Amplitude Time |
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