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ADP1055ACPZ-R7 датащи(PDF) 44 Page - Analog Devices

номер детали ADP1055ACPZ-R7
подробное описание детали  Digital Controller for Power Supply Applications with PMBus Interface
PDF  140 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
Logo AD - Analog Devices

ADP1055ACPZ-R7 датащи(HTML) 44 Page - Analog Devices

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ADP1055
Data Sheet
Rev. A | Page 44 of 140
Table 10. Contents of Black Box Records
Byte
Register Address
Register Name
Header Block
1
Rec_No[7:0]
2
Rec_No[15:8]
3
Rec_No[23:16]
4
0xFE95
FIRST_FAULT_ID[7:0]
Data Block
5
0x78
STATUS_WORD[7:0] (same as
STATUS_BYTE[7:0])
6
0x79
STATUS_WORD[15:8]
7
0x7A
STATUS_VOUT
8
0x7B
STATUS_IOUT
9
0x7C
STATUS_INPUT
10
0x7D
STATUS_TEMPERATURE
11
0x7E
STATUS_CML
12
0x7F
STATUS_OTHER
13
0x80
STATUS_MFR_SPECIFIC
14
0xFE94
STATUS_UNKNOWN[7:0]
15
0xFE94
STATUS_UNKNOWN[15:8]
16
0x88
READ_VIN[7:0]
17
0x88
READ_VIN[15:8]
18
0x89
READ_IIN[7:0]
19
0x89
READ_IIN[15:8]
20
0x8B
READ_VOUT[7:0]
21
0x8B
READ_VOUT[15:8]
22
0x8C
READ_IOUT[7:0]
23
0x8C
READ_IOUT[15:8]
24
0x8D
Reserved[7:0]
25
0x8D
Reserved[15:8]
26
0x8E
READ_TEMPERATURE_2[7:0]
27
0x8E
READ_TEMPERATURE_2[15:8]
28
0x8F
READ_TEMPERATURE_3[7:0]
29
0x8F
READ_TEMPERATURE_3[15:8]
30
0x94
READ_DUTY_CYCLE[7:0]
31
0x94
READ_DUTY_CYCLE[15:8]
32
0x95
READ_FREQUENCY[7:0]
33
0x95
READ_FREQUENCY[15:8]
34
0x96
READ_POUT[7:0]
35
0x96
READ_POUT[15:8]
PEC Block
36
PEC[7:0]
Undefined Block
37
64
BLACK BOX TIMING
Two EEPROM pages (Page 2 and Page 3) are used to store the
black box data; each page contains eight records. Due to the
page erase requirement of the EEPROM, when the black box
has completed writing the last record to either page (Rec_No =
8n − 1; n > 0, that is, 7, 15, 23, 31, and so on), a page erase
operation is automatically initiated on the other page. The erase
operation takes an additional 32 ms to complete.
During the erase operation, any PMBus transaction to the
device receives a no acknowledge (NACK), and the busy bit
(Bit 7) of STATUS_BYTE is set accordingly. At the end of the
erase operation, the device resumes normal operation. The
minimum time required to program a complete black box
record is calculated as follows:
TPROG_BBOX (MIN) = (num_of_bytes + 1) × TPROG
where:
TPROG = 30.72 μs.
num_of_bytes = 36 (36 bytes in each black box record).
If the erase operation is part of the sequence of saving data to the
black box, the additional erase time is added to TPROG_BBOX (MIN),
as follows:
TPROG_BBOX (MIN) = ~1.2 ms
TERASE = ~32 ms
TPROG_BBOX (MAX) = ~33.2 ms
When black box writing is enabled with the option to record
retry attempts (Register 0xFE48[1:0] = 10 or 11), data can be
saved between every unsuccessful attempt to restart the device.
It is recommended that the minimum retry time be set to a value
greater than 1.2 ms. If the retry time is insufficient for black box
recording, the device prolongs the retry time so that the recording
can finish before attempting to restart the power supply. This
delay may result in inconsistent retry times between successive
restart attempts. The retry time is programmed using the PMBus
commands xxx_FAULT_RESPONSE, where xxx refers to the
various configurable faults for that device.
At every eighth recording, the TERASE time is added to the
TPROG_BBOX (MIN) time, resulting in the TPROG_BBOX (MAX) time. If the
retry time is less than the maximum time, the device again delays
the restart attempt to wait for the completion of the black box
recording and the successive page erase.
Black box operation is a direct result of a fault condition that
triggers a power supply shutdown. To ensure that the black box
is written to in the event of a brownout condition, a holdup
capacitor on the VDD pin is recommended to ensure that all
the information is written to the black box before the ADP1055
reaches the UVLO threshold. (Instead of a holdup capacitor, an
equivalent capacitor from the rail where 3.3 V is derived can be
used to maintain the VDD voltage above UVLO.) The capacitor
must be large enough to maintain power to the system over a
time that exceeds TPROG_BBOX (MIN) which is approximately 10 μF
on a 10 V rail until VDD falls below UVLO.



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