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STPM10 数据表(PDF) 31 Page - STMicroelectronics |
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STPM10 数据表(HTML) 31 Page - STMicroelectronics |
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31 / 47 page ![]() STPM10 Theory of operation DocID17728 Rev 5 31/47 7.18 Mode signals The STPM10 includes 8 mode signals located in the DFP data record. 3 out of these are used for internal testing purposes only while 5 are useful to change some operations of the STPM10. The mode signals are not retained when the STPM10 supply is not available and they are cleared when a POR occurs, but they are not cleared when a remote reset command (RRR) is sent through SPI. The mode signals bit can be written using the normal writing procedure of the SPI interface, in the following section. Table 12: Mode signal description Bit Signal name Bit value Status Binary command Hex command 0 Bank 0 Used for RC start-up procedure 0111000x 70 or 71 1 1111000x F0 or F1 1 Reserved 2 Reserved 3 Reserved 4 CSEL 0 Current channel 1 selected when tamper is disabled 0111 100x 78 or 79 1 Current channel 2 selected when tamper is disabled 1111 100x F8 or F9 5 Reserved 6 Reserved 7 Pre-charge 1 Swap the 32-bit data record readings. From 1,2,3,4,5,6,7,8, to 5,6,7,8,1,2,3,4 and vice-versa 1111111x FF CSEL: in normal operation, if the anti-tamper module is not activated, the STPM10 selects channel 1 as the source of current information. For debug or calibration purposes it is possible to select channel 2 as the source of the current channel signal when the tamper module is disabled. This is done by setting the CSEL mode bit. Pre-charge: this command swaps the sequence of data records read, allowing the reading of the last four data records first, and the first four second. The reading sequence is 5, 6, 7, 8, 1, 2, 3, 4. Unlike the other mode signals, the pre-charge command is not retained inside the STPM10, but should be sent each time before the reading of the data records. BANK: it is used to activate RC oscillator (as indicated in Section 7.11.1: "RC start-up procedure"). 7.19 SPI interface The SPI interface supports a simple serial protocol, which is implemented to enable communication of some master system (microcontroller or PC) and the device. Three tasks can be performed with this interface: Remote resetting of the device Reading data records Writing the mode bits and the configuration bits Four pins of the device are dedicated to this purpose: SCS, SYN, SCL and SDA. SCS, SYN and SCL are all input pins, while SDA can be input or output according to whether the SPI is in write or read mode. A high level signal for these pins means a voltage level higher than 0.75 x VCC, while a low level signal means a voltage value lower than 0.25 x VCC. |
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