参数资料
型号: LTC3808EDE#TRPBF
厂商: Linear Technology
文件页数: 14/28页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 14-DFN
标准包装: 2,500
PWM 型: 电流模式
输出数: 1
频率 - 最大: 825kHz
占空比: 100%
电源电压: 2.75 V ~ 9.8 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: 14-WFDFN 裸露焊盘
包装: 带卷 (TR)
LTC3808
APPLICATIO S I FOR ATIO
V OUT
V IN – V OUT
2.0
1.5
1.0
0.5
Top P-Channel Duty Cycle =
V IN
Bottom N-Channel Duty Cycle =
V IN
The MOSFET power dissipations at maximum output
current are:
0
– 50
0
50
100
150
P TOP =
V OUT
V IN
? I OUT ( MAX ) 2 ? ρ T ? R DS ( ON ) + 2 ? V IN 2
JUNCTION TEMPERATURE ( ° C)
3808 F02
? I OUT ( MAX ) ? C RSS ? f
Figure 2. R DS(ON) vs Temperature
P BOT =
V IN – V OUT
V IN
? I OUT ( MAX ) 2 ? ρ T ? R DS ( ON )
which is sensed between the GND and SW pins. The short-
circuit current sense threshold ? V SC is set approximately
90mV when IPRG is floating (60mV when IPRG is tied low;
150mV when IPRG is tied high). The on-resistance of N-
channel MOSFET is determined by:
Both MOSFETs have I 2 R losses and the P TOP equation
includes an additional term for transition losses, which are
largest at high input voltages. The bottom MOSFET losses
are greatest at high input voltage or during a short-circuit
when the bottom duty cycle is 100%.
R DS ( ON ) MAX =
? V SC
I SC ( PEAK )
The LTC3808 utilizes a non-overlapping, anti-shoot-
through gate drive control scheme to ensure that the P-
and N-channel MOSFETs are not turned on at the same
The short-circuit current limit (I SC(PEAK) ) should be larger
than the I OUT(MAX) with some margin to avoid interfering
with the peak current sensing loop. On the other hand, in
order to prevent the MOSFETs from excessive heating and
the inductor from saturation, I SC(PEAK) should be smaller
than the minimum value of their current ratings. A reason-
able range is:
I OUT(MAX) < I SC(PEAK) < I RATING(MIN)
Therefore, the on-resistance of N-channel MOSFET should
be chosen within the following range:
time. To function properly, the control scheme requires
that the MOSFETs used are intended for DC/DC switching
applications. Many power MOSFETs, particularly P-chan-
nel MOSFETs, are intended to be used as static switches
and therefore are slow to turn on or off.
Reasonable starting criteria for selecting the P-channel
MOSFET are that it must typically have a gate charge (Q G )
less than 25nC to 30nC (at 4.5V GS ) and a turn-off delay
(t D(OFF) ) of less than approximately 140ns. However, due
to differences in test and specification methods of various
MOSFET manufacturers, and in the variations in Q G and
? V SC
I RATING ( MIN )
< R DS ( ON ) <
? V SC
I OUT ( MAX )
t D(OFF) with gate drive (V IN ) voltage, the P-channel MOSFET
ultimately should be evaluated in the actual LTC3808
application circuit to ensure proper operation.
where ? V SC is 90mV, 60mV or 150mV with IPRG being
floated, tied to GND or V IN respectively.
The power dissipated in the MOSFET strongly depends on
its respective duty cycles and load current. When the
LTC3808 is operating in continuous mode, the duty cycles
for the MOSFETs are:
Shoot-through  between  the  P-channel  and  N-channel
MOSFETs can most easily be spotted by monitoring the
input supply current. As the input supply voltage in-
creases, if the input supply current increases dramatically,
then the likely cause is shoot-through. Note that some
MOSFETs that do not work well at high input voltages (e.g.,
3808f
14
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