参数资料
型号: LTC3805EMSE#PBF
厂商: Linear Technology
文件页数: 15/20页
文件大小: 0K
描述: IC REG CTRLR BST FLYBK CM 10MSOP
标准包装: 50
PWM 型: 电流模式
输出数: 1
频率 - 最大: 700kHz
占空比: 95%
电源电压: 3.95 V ~ 75 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 85°C
封装/外壳: 10-TFSOP,10-MSOP(0.118",3.00mm 宽)裸露焊盘
包装: 管件
相关产品: 732-2264-6-ND - TRANS FLYBACK LTC3805 36.3UH
732-2264-1-ND - TRANS FLYBACK LTC3805 36.3UH
732-2264-2-ND - TRANS FLYBACK LTC3805 36.3UH
LTC3805
APPLICATIONS INFORMATION
? V SENSE ( VIN(MIN) )
R OC(CRIT) =
I PK ( VIN(MIN) ) =
OvercurrentThresholdAdjustment
Figure 6 shows the connection of the overcurrent pin, OC,
along with the I SENSE pin and the current sense resistor
R SENSE located in the source circuit of the power NMOS
which is driven by the GATE pin. The internal overcurrent
threshold on the OC pin is set at V OCT = 100mV which is the
same as the peak current sense voltage V I(MAX) = 100mV on
the I SENSE pin. The role of the slope compensation adjust-
ment resistor R SLOPE and the slope compensation current
I SLOPE is discussed in the prior section. In combination
with the overcurrent threshold adjust current I OC = 10μA,
an external resistor R OC can be used to lower the overcur-
rent trip threshold from 100mV. This section describes
how to pick R OC to achieve the desired performance. In the
discussion that follows be careful to distinguish between
“current limit” where the converter continues to run with
the I SENSE pin limiting current on a cycle-by-cycle basis
while the output voltage falls below the regulation point
and “overcurrent protection” where the OC pin senses an
overcurrent and shuts down the converter for a timeout
period before attempting an automatic restart.
One overcurrent protection strategy is for the converter
to never enter current limit but to maintain output volt-
age regulation up to the point of tripping the overcurrent
protection. Operation at minimum input voltage V IN(MIN)
hits current limiting for the smallest output current and
is the design point for this strategy.
First, for operation at V IN(MIN) , calculate the duty cycle Duty
Cycle V IN(MIN) using the appropriate formula depending on
whether the converter is a boost, flyback or SEPIC. Then
GATE
use Duty Cycle V IN(MIN) to calculate ? V SENSE ( VIN(MIN) )
using the formula in the prior section. For overcurrent
protection to trip at exactly the point where current limit-
ing would begin set:
10μA
To find the actual output current that trips overcurrent
protection, calculate the peak switch current I PK ( VIN(MIN) )
from:
100mV ? ? V SENSE ( VIN(MIN) )
R SENSE
Then calculate the converter output current that corre-
sponds to I PK ( VIN(MIN) ). Again, the calculation depends
both on converter type and the details of converter design
including inductor current ripple. For minimum input volt-
age, R OC(CRIT) produces an overcurrent trip at an output
current just before loss of output voltage regulation and
the onset of current limiting. Note that the output current
that causes an overcurrent trip is higher for higher input
voltages but that an overcurrent trip will always occur
before loss of output voltage regulation. If desired to
meet a specific design target, an increase in R OC above
R OC(CRIT) can be used to reduce the trip threshold and
make the converter trip for a lower output current.
This calculation is based on steady-state operation. De-
pending on design, overcurrent protection can also be
triggered during a start-up transient, particularly if large
output filter capacitors are being charged as output voltage
rises. If that is a problem, output capacitor charging can
LTC3805
I SENSE
OC
GND
R SLOPE
R OC
I SLOPE
I OC = 10 μ A
3805 F06
R SENSE
Figure 6. Circuit to Decrease Overcurrent Threshold
3805fg
15
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