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ADBMS1818ASWZ-R7 数据表(PDF) 57 Page - Analog Devices

部件名 ADBMS1818ASWZ-R7
功能描述  18-Cell Battery Monitor with Daisy Chain Interface
PDF  92 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADBMS1818ASWZ-R7 数据表(HTML) 57 Page - Analog Devices

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Data Sheet
ADBMS1818
THEORY OF OPERATION
analog.com
Rev. B | 57 of 92
Figure 87. Wake-Up Detection and Idle Timer
Waking a Daisy Chain—Method 2
A more robust wake-up method does not rely on the built-in wake-
up pulse, but manually sends isoSPI traffic for enough time to
wake the entire daisy chain. At a minimum, a pair of long isoSPI
pulses (–1 and +1) is needed for each device, separated by more
than tREADY or tWAKE (if the core state is standby mode or sleep
mode, respectively), but less than tIDLE. This allows each device to
wake up and propagate the next pulse to the following device. This
method works even if some devices in the chain are not in the idle
state. In practice, implementing Method 2 requires toggling the CSB
pin (of the LTC6820, or bottom ADBMS1818 with ISOMD = 0) to
generate the long isoSPI pulses. Alternatively, dummy commands
(such as RDCFGA) can be executed to generate the long isoSPI
pulses.
DATA LINK LAYER
All data transfers on ADBMS1818 occur in byte groups. Every byte
consists of 8 bits. Bytes are transferred with the MSB first. CSB
must remain low for the entire duration of a command sequence,
including between a command byte and subsequent data. On a
write command, data is latched in on the rising edge of CSB.
NETWORK LAYER
Packet Error Code
The PEC is a 15-bit cyclic redundancy check (CRC) value calculat-
ed for all of the bits in a register group in the order they are passed,
using the initial PEC value of 000000000010000 and the following
characteristic polynomial: x15 + x14 + x10 + x8 + x7 + x4 + x3 + 1.
To calculate the 15-bit PEC value, a simple procedure can be
established:
1. Initialize the PEC to 000000000010000 (PEC is a 15‑bit register
group).
2. For each bit DIN coming into the PEC register group, set:
IN0 = DIN XOR PEC, Bit 14
IN3 = IN0 XOR PEC, Bit 2
IN4 = IN0 XOR PEC, Bit 3
IN7 = IN0 XOR PEC, Bit 6
IN8 = IN0 XOR PEC, Bit 7
IN10 = IN0 XOR PEC, Bit 9
IN14 = IN0 XOR PEC, Bit 13
3. Update the 15-bit PEC as follows:
PEC, Bit 14 = IN14
PEC, Bit 13 = PEC, Bit 12
PEC, Bit 12 = PEC, Bit 11
PEC, Bit 11 = PEC, Bit 10
PEC, Bit 10 = IN10
PEC, Bit 9 = PEC, Bit 8
PEC, Bit 8 = IN8
PEC, Bit 7 = IN7
PEC, Bit 6 = PEC, Bit 5
PEC, Bit 5 = PEC, Bit 4
PEC, Bit 4 = IN4
PEC, Bit 3 = IN3
PEC, Bit 2 = PEC, Bit 1
PEC, Bit 1 = PEC, Bit 0
PEC, Bit 0 = IN0
4. Go back to Step 2 until all the data is shifted. The final PEC
(16 bits) is the 15-bit value in the PEC register with a 0 bit
appended to its LSB.
Figure 88 shows the 15-bit PEC algorithm. An example to calculate
the PEC for a 16-bit word (0x0001) is listed in Table 45. The PEC
for 0x0001 is computed as 0x3D6E after stuffing a 0 bit at the LSB.
For longer data streams, the PEC is valid at the end of the last bit of
data sent to the PEC register.
The ADBMS1818 calculates the PEC for any command or data
received and compares it with the PEC following the command or
data. The command or data is regarded as valid only if the PEC
matches. ADBMS1818 also attaches the calculated PEC at the end
of the data it shifts out. Table 46 shows the format of PEC while
writing to or reading from ADBMS1818.



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