参数资料
型号: LT1934ES6-1#TR
厂商: Linear Technology
文件页数: 12/20页
文件大小: 0K
描述: IC REG BUCK ADJ 60MA SOT23-6
标准包装: 2,500
类型: 降压(降压)
输出类型: 可调式
输出数: 1
输出电压: 1.25 V ~ 28 V
输入电压: 3.2 V ~ 34 V
PWM 型: Burst Mode?
电流 - 输出: 60mA
同步整流器:
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: SOT-23-6
包装: 带卷 (TR)
供应商设备封装: SOT-23-6
LT1934/LT1934-1
APPLICATIONS INFORMATION
Minimum Input Voltage V OUT = 3.3V
6.0
LT1934
V OUT = 3.3V
5.5 T A = 25°C
BOOST DIODE TIED TO OUTPUT
to V IN ), then the LT1934’s internal circuitry will pull its
quiescent current through its SW pin. This is ?ne if your
system can tolerate a few mA in this state. If you ground
the SHDN pin, the SW pin current will drop to essentially
5.0
V IN TO START
zero. However, if the V IN pin is grounded while the output
is held high, then parasitic diodes inside the LT1934 can
4.5
4.0
3.5
V IN TO RUN
pull large currents from the output through the SW pin
and the V IN pin. Figure 4 shows a circuit that will run only
when the input voltage is present and that protects against
a shorted or reversed input.
3.0
0.1
1 10 100
LOAD CURRENT (mA)
V IN
D4
5
V IN
BOOST
1
1934 G12
LT1934
8
Minimum Input Voltage V OUT = 5V
LT1934
100k 4
1M
SHDN
GND
2
SW
FB
3
6
V OUT
V OUT = 5V
T A = 25°C
7 BOOST DIODE TIED TO OUTPUT
BACKUP
V IN TO START
D4: MBR0530
1934 F07
6
5
4
V IN TO RUN
Figure 4. Diode D4 Prevents a Shorted Input from Discharging
a Backup Battery Tied to the Output; It Also Protects the Circuit
from a Reversed Input. The LT1934 Runs Only When the Input
is Present
PCB Layout
0.1
1
10 100
LOAD CURRENT (mA)
1934 G13
Figure 3. The Minimum Input Voltage Depends
on Output Voltage, Load Current and Boost Circuit
maximum duty cycle of the LT1934, requiring a higher
input voltage to maintain regulation.
Shorted Input Protection
If the inductor is chosen so that it won’t saturate exces-
sively, an LT1934 buck regulator will tolerate a shorted
output. There is another situation to consider in systems
where the output will be held high when the input to the
LT1934 is absent. This may occur in battery charging ap-
plications or in battery backup systems where a battery
or some other supply is diode OR-ed with the LT1934’s
output. If the V IN pin is allowed to ?oat and the SHDN pin
is held high (either by a logic signal or because it is tied
For proper operation and minimum EMI, care must be
taken during printed circuit board layout. Figure 5 shows
the high current paths in the buck regulator circuit. Note
that large, switched currents ?ow in the power switch,
the catch diode (D1) and the input capacitor (C2). The
loop formed by these components should be as small as
possible. Furthermore, the system ground should be tied
to the regulator ground in only one place; this prevents
the switched current from injecting noise into the system
ground. These components, along with the inductor and
output capacitor, should be placed on the same side of
the circuit board, and their connections should be made
on that layer. Place a local, unbroken ground plane below
these components, and tie this ground plane to system
ground at one location, ideally at the ground terminal of
the output capacitor C1. Additionally, the SW and BOOST
nodes should be kept as small as possible. Finally, keep
the FB node as small as possible so that the ground pin
1934fe
12
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