参数资料
型号: LT3500HMSE#PBF
厂商: Linear Technology
文件页数: 17/28页
文件大小: 322K
描述: IC REG DL BUCK/LINEAR 16-MSOP
标准包装: 37
拓扑: 降压(降压)(1),线性(LDO)(1)
功能: 任何功能
输出数: 2
频率 - 开关: 500kHz ~ 2.4MHz
电压/电流 - 输出 1: 0.8 V ~ 38.9 V,2A
电压/电流 - 输出 2: 可调式,13mA
带 LED 驱动器:
带监控器:
带序列发生器:
电源电压: 3 V ~ 36 V
工作温度: -40°C ~ 150°C
安装类型: 表面贴装
封装/外壳: 16-TFSOP(0.118",3.00mm 宽)裸露焊盘
供应商设备封装: 16-MSOP,裸露焊盘
包装: 管件
LT3500
17
3500fc
Figure 5. BST Pin Considerations
V
BST
  V
SW
 = V
X
V
BST(MAX)
 = V
X
V
X
 > V
IN
 + 3V
(5d)
(5c)
(5b)
V
BST
  V
SW
 = V
IN
V
BST(MAX)
 = 2 "燰
IN
V
IN
V
IN
D2
D1
D1
D1
D1
(5a)
LT3500
LDRV
BST
SW
V
BST
  V
SW
 = V
OUT1
V
BST(MAX)
 = V
IN
+ V
OUT1
V
BST
  V
SW
 = V
OUT2
V
BST(MAX)
 = V
IN
+ V
OUT2
V
OUT2
 e 2.5V
V
OUT1
V
OUT2
C3
V
IN
V
IN
D2
LT3500
LDRV
BST
SW
V
OUT1
V
IN
V
IN
LT3500
LDRV
BST
SW
V
OUT1
C3
V
IN
V
IN
D2
LT3500
LDRV
BST
SW
D2
V
OUT1
C3
3500 F05
The only reason to consider a larger diode is the worst-
case condition of a high input voltage and shorted output.
With a shorted condition, diode current will increase to a
typical value of 3A, determined by the peak switch current
limit of the LT3500. This is safe for short periods of time,
but it would be prudent to check with the diode manu-
facturer if continuous operation under these conditions
can be tolerated.
BST Pin Considerations
The capacitor and diode tied to the BST pin generate
a voltage that is higher than the input voltage. In most
cases a 0.47糉 capacitor and fast switching diode (such
as the CMDSH-3 or FMMD914) will work well. Almost
any type of  lm or ceramic capacitor is suitable, but the
ESR should be <1?to ensure it can be fully recharged
during the off time of the switch. The capacitor value can
be approximated by:
   
C
BST
=
I
OUT1(MAX)
"DC
50" V
OUT1
V
BST(MIN)
(
)
"f
where I
OUT1(MAX)
 is the maximum load current, and
V
BST(MIN)
 is the minimum boost voltage to fully saturate
the switch.
Figure 5 shows four ways to arrange the boost circuit.
The BST pin must be more than 2.2V above the SW pin
for full ef ciency.
Generally, for outputs of 3.3V and higher the standard
circuit (Figure 5a) is the best. For outputs between 2.8V
and 3.3V, replace the D2 with a small Schottky diode such
as the PMEG4005.
For lower output voltages the boost diode can be tied to
the input (Figure 5b). The circuit in Figure 5a is more ef-
 cient because the BST pin current comes from a lower
voltage source.
Figure 5c shows the boost voltage source from the linear
output that is set to greater than 2.5V (any available DC
sources that are greater than 2.5V is suf cient). The highest
ef ciency is attained by choosing the lowest boost volt-
age above 2.5V. You must also be sure that the maximum
voltage at the BST pin is less than the maximum speci ed
in the Absolute Maximum Ratings section.
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