参数资料
型号: LTC3880IUJ-1#TRPBF
厂商: Linear Technology
文件页数: 16/112页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 40-QFN
软件下载: LTpowerPlay™
标准包装: 2,000
系列: PolyPhase®
PWM 型: 电流模式
输出数: 2
频率 - 最大: 1MHz
电源电压: 4.5 V ~ 24 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 125°C
封装/外壳: 40-WFQFN 裸露焊盘
包装: 带卷 (TR)
LTC3880/LTC3880-1
OPERATION
? ? ? ?
? ? Ea ? ? 1 1 ? ?
? ?
? T USE + 273 T STRESS + 273 ? ? ? ?
? k
AF= e [(1.4/8.617 ? 10
? (1/398 – 1/403)] = 1.66
from0Vto1.024V.Theoutputvoltage,throughfeedback
of the EA, will be regulated to 5.5 times the DAC output
(2.75 times if range = 1). The DAC value is calculated by
the part to synthesize the users desired output voltage.
The output voltage is programmed by the user either
with the resistor configuration pins detailed in Tables 12
and 13 or by the V OUT command (either from NVM or
by PMBus command). Refer to the PMBus command
section of the data sheet or the PMBus specification for
more details. The output voltage can be modified by the
user at any time with a PMBus VOUT_COMMAND. This
command will typically have a latency less than 10ms.
The user is encouraged to reference the PMBus Power
System Management Protocol Specification to understand
how to program the LTC3880. This specification can be
found at http://www.pmbus.org/specs.html.
Continuing the basic operation description, the current
mode controller will turn off the top gate when the peak
current is reached. If the load current increases, V SENSE
will slightly droop with respect to the DAC reference.
This causes the I TH voltage to increase until the average
inductor current matches the new load current. After the
top MOSFET has turned off, the bottom MOSFET is turned
on. In continuous conduction mode, the bottom MOSFET
stays on until the end of the switching cycle.
EEPROM
The LTC3880 contains internal EEPROM (nonvolatile
memory) to store configuration settings and fault log
information. EEPROM endurance retention and mass
write operation time are specified in the Electrical Char-
acteristics and Absolute Maximum Ratings sections.
Write operations above T J = 85°C are possible although
the Electrical Characteristics are not guaranteed and the
EEPROM will be degraded. Read operations performed at
temperatures between 85°C and 125°C will not degrade
the EEPROM. Writing to the EEPROM above 85°C will
result in a degradation of retention characteristics. The
fault logging function, which is useful in debugging system
problems that may occur at high temperatures, only writes
to fault log EEPROM locations. If occasional writes to these
registers occur above 85°C, the slight degradation in the
data retention characteristics of the fault log will not take
away from the usefulness of the function.
It is recommended that the EEPROM not be written
when the die temperature is greater than 85°C. If the die
temperature exceeds 130°C, the LTC3880 will disable all
EEPROM write operations. All EEPROM write operations
will be re-enabled when the die temperature drops below
125°C. (The controller will also disable when the die
temperature exceeds the internal overtemperature fault
limit 160°C with a 10°C hysteresis)
The degradation in EEPROM retention for temperatures
>125°C can be approximated by calculating the dimen-
sionless acceleration factor using the following equation:
– ?
AF = e ? ?
where:
AF = acceleration factor
Ea = activation energy = 1.4eV
K = 8.617 ? 10 –5 eV/°K
T USE = 125°C specified junction temperature
T STRESS = actual junction temperature in °C
Example: Calculate the effect on retention when operating
at a junction temperature of 135°C for 10 hours.
T STRESS = 130°C
T USE = 125°C
–5 )
The equivalent operating time at 125°C = 16.6 hours.
Thus the overall retention of the EEPROM was degraded
by 16.6 hours as a result of operating at a junction tem-
perature of 130°C for 10 hours. The effect of the overstress
is negligible when compared to the overall EEPROM
retention rating of 87,600 hours at a maximum junction
temperature of 125°C.
POWER UP AND INITIALIZATION
The LTC3880 is designed to provide standalone supply
sequencing and controlled turn-on and turn-off opera-
tion. It operates from a single input supply (4.5V to 24V)
while three on-chip linear regulators generate internal
3880fb
16
For more information www.linear.com/LTC3880
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