参数资料
型号: LT3579EFE#PBF
厂商: Linear Technology
文件页数: 13/40页
文件大小: 0K
描述: IC REG MULTI CONFIG SYNC 20TSSOP
标准包装: 74
类型: 升压(升压),反相,回扫,Sepic
输出数: 1
输入电压: 2.5 V ~ 16 V
PWM 型: 电流模式
频率 - 开关: 200kHz ~ 2.5MHz
电流 - 输出: 6A
同步整流器:
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 20-TSSOP(0.173",4.40mm 宽)裸露焊盘
包装: 管件
供应商设备封装: 20-TSSOP-EP
LT3579/LT3579-1
APPLICATIONS INFORMATION
BOOST CONVERTER COMPONENT SELECTION
Table 1. Boost Design Equations
L1
2.2μH
47pF
V OUT – V IN + 0.5V
V OUT + 0.5V – 0.27V
( V IN – 0.27V ) ? DC
f OSC ? 1.8A
( V IN – 0.27V ) ? ( 2 ? DC – 1 )
4A ? f OSC ? ( 1 – DC )
( V IN – 0.27V ) ? DC
V IN
5V
C IN
22μF
D1
30V, 4A
SW1 SW2
V IN FB
100k
FAULT GATE
LT3579
200k
SHDN CLKOUT
RT V C
SYNC GND SS
R T
86.6k
C OUT1
10μF
R FB
130k
C SS
0.1μF
OPTIONAL
M 1
R GATE
6.3k
C F R C
8k
C C
2.2nF
V IN
35791 F06
V OUT
12V
1.7A
C OUT
10μF
Step 1:
Inputs
Step 2:
DC
Step 3:
L1
PARAMETERS/EQUATIONS
Pick V IN , V OUT , and f OSC to calculate equations below.
DC ?
L TYP =
L MIN =
L MAX =
f OSC ? 0.5A
(1)
(2)
(3)
Figure 6. Boost Converter – The Component Values Given Are
Typical Values for a 1MHz, 5V to 12V Boost
? Solve equations 1, 2, and 3.
? Choose the higher value between L TYP and L MIN for L1.
L1 should never exceed L MAX .
( V IN – 0.27V ) ? DC
f OSC ? L1
I OUT = ? 6A – RIPPLE ? ? ( )
1 – DC
f OSC ? ( 0.01 ? V OUT –0.5 ? I OUT ? R DSON_PMOS )
C IN =
+
R FB =
TheLT3579canbeconfiguredasaBoostconverterasin
Figure 6. This topology allows for positive output voltages
that are higher than the input voltage. An external PMOS
(optional) driven by the GATE pin of the LT3579 can achieve
input or output disconnect during a FAULT event. A single
feedback resistor sets the output voltage. For output
voltages higher than 40V, see the Charge Pump topology
in the Charge Pump Aided Regulators section.
Table 1 is a step-by-step set of equations to calculate
component values for the LT3579 when operating as a
Boost converter. Input parameters are input and output
voltage, and switching frequency (V IN , V OUT and f OSC
respectively). Refer to the Appendix for further information
on the design equations presented in Table 1.
Variable Definitions:
Step 4:
I RIPPLE
Step 5:
I OUT
Step 6:
D1
Step 7:
C OUT,
C OUT1
Step 8:
C IN
Step 9:
R FB
I RIPPLE =
? I ?
? 2 ?
V R > V OUT ; I AVG > I OUT
I OUT ? DC
C OUT = C OUT1 =
C IN = C PWR + C VIN
I RIPPLE 6A ? DC
8 ? f OSC ? 0.005 ? V IN 40 ? f OSC ? 0.005 ? V IN
V OUT – 1.215V
83.3μA
87.6
R T =
– 1; f OSC in MHz and R T in k ?
Step 11:
PMOS
V IN = Input Voltage
V OUT = Output Voltage
DC = Power Switch Duty Cycle
f OSC = Switching Frequency
I OUT = Maximum Output Current
I RIPPLE = Inductor Ripple Current
R DSON_PMOS = R DSON of External PMOS (set to 0 if not
using PMOS)
Step 10:
R T f OSC
Only needed for input or output disconnect. See PMOS
Selection in the Appendix for information on sizing the PMOS
and the biasing resistor, R GATE .
Note: The maximum design target for peak switch current is 6A and
is used in this table. The final values for C OUT and C IN may deviate
from the above equations in order to obtain desired load transient
performance for a particular application.
35791f
13
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