参数资料
型号: LT1111CS8-5#PBF
厂商: Linear Technology
文件页数: 10/16页
文件大小: 0K
描述: IC REG BUCK BST INV 5V .4A 8SOIC
标准包装: 100
类型: 降压(降压),升压(升压),反相
输出类型: 固定
输出数: 1
输出电压: 5V
输入电压: 2 V ~ 30 V
频率 - 开关: 72kHz
电流 - 输出: 400mA
同步整流器:
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
包装: 管件
供应商设备封装: 8-SOIC
产品目录页面: 1325 (CN2011-ZH PDF)
LT1111
A PPLICATI
Diode Selection
S I FOR ATIO
At the end of the switch ON time the current in L1 is 1 :
Speed, forward drop, and leakage current are the three
main considerations in selecting a catch diode for LT1111
converters. General purpose rectifiers such as the 1N4001
I PEAK =
V I N
L
t ON
( 20 )
(
)
V OUT = ? 1 + ? 1 . 25 V
are unsuitable for use in any switching regulator applica-
tion. Although they are rated at 1A, the switching time of
a 1N4001 is in the 10 μ s to 50 μ s range. At best, efficiency
will be severely compromised when these diodes are
used; at worst, the circuit may not work at all. Most
LT1111 circuits will be well served by a 1N5818 Schottky
diode, or its surface mount equivalent, the MBRS130T3.
The combination of 500mV forward drop at 1A current,
fast turn ON and turn OFF time, and 4 μ A to 10 μ A leakage
current fit nicely with LT1111 requirements. At peak
switch currents of 100mA or less, a 1N4148 signal diode
may be used. This diode has leakage current in the 1nA to
5nA range at 25 ° C and lower cost than a 1N5818. (You can
also use them to get your circuit up and running, but
beware of destroying the diode at 1A switch currents.)
Step-Up (Boost Mode) Operation
A step-up DC/DC converter delivers an output voltage
higher than the input voltage. Step-up converters are not
short-circuit protected since there is a DC path from input
Immediately after switch turn-off, the SW1 voltage pin
starts to rise because current cannot instantaneously stop
flowing in L1. When the voltage reaches V OUT + V D , the
inductor current flows through D1 into C1, increasing
V OUT . This action is repeated as needed by the LT1111 to
keep V FB at the internal reference voltage of 1.25V. R1 and
R2 set the output voltage according to the formula
? R 2 ?
( 21 )
? R 1 ?
Step-Down (Buck Mode) Operation
A step-down DC/DC converter converts a higher voltage
to a lower voltage. The usual hookup for an LT1111 based
step-down converter is shown in Figure 5.
V IN
R3
100 ?
to output.
+
C2
I LIM
V IN
SW1
The usual step-up configuration for the LT1111 is shown
in Figure 4. The LT1111 first pulls SW1 low causing V IN –
V CESAT to appear across L1. A current then builds up in L1.
LT1111
GND
FB
SW2
L1
R2
V OUT
V IN
L1
D1
V OUT
D1
1N5818
+
C1
R1
R3*
I LIM
V IN
R2
Figure 5. Step-Down Mode Hookup
LT1111 ? F05
SW1
+
LT1111
FB
C1
When the switch turns on, SW2 pulls up to V IN – V SW . This
GND
SW2
R1
puts a voltage across L1 equal to V IN – V SW – V OUT ,
causing a current to build up in L1. At the end of the switch
ON time, the current in L1 is equal to:
*OPTIONAL
Figure 4. Step-Up Mode Hookup.
Refer to Table 1 for Component Values.
LT1111 ? F04
I PEAK =
V IN ? V SW ? V OUT
L
t ON
( 22 )
Note 1: This simple expression neglects the effect of switch and coil
resistance. This is taken into account in the “Inductor Selection” section.
1111fd
10
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