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MAX764ESA+ 参数 Datasheet PDF下载

MAX764ESA+图片预览
型号: MAX764ESA+
PDF下载: 下载PDF文件 查看货源
内容描述: [Switching Regulator, Current-mode, 1.5A, 300kHz Switching Freq-Max, BICMOS, PDSO8, 0.150 INCH, PLASTIC, SOIC-8]
分类和应用:
文件页数/大小: 12 页 / 134 K
品牌: MAXIM [ MAXIM INTEGRATED PRODUCTS ]
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-5 V/-1 2 V/-1 5 V o r Ad ju s t a b le ,  
Hig h -Effic ie n c y, Lo w I DC-DC In ve rt e rs  
Q
FB  
COMPARATOR  
MAX764  
MAX765  
REF  
MAX766  
SHDN  
ERROR  
COMPARATOR  
OUT  
V+  
V+  
N
1.5V  
REFERENCE  
Q
TRIG  
ONE-SHOT  
FROM V+  
S
Q
P
CURRENT  
COMPARATOR  
FROM OUT  
TRIG  
ONE-SHOT  
Q
R
LX  
45/MAX76  
0.2V  
0.1V  
(FULL  
CURRENT)  
(HALF  
CURRENT)  
CURRENT  
CONTROL CIRCUITS  
FROM V+  
GND  
Figure 1. Block Diagram  
1) They can operate with miniature (less than 5mm  
diameter) surface-mount inductors, because of their  
300kHz switching frequency.  
_______________De t a ile d De s c rip t io n  
Op e ra t in g P rin c ip le  
The MAX764/MAX765/MAX766 are BiCMOS, inverting,  
switch-mode power supplies that provide fixed outputs  
of -5V, -12V, and -15V, respectively; they can also be  
set to any desired output voltage using an external  
resistor divider. Their unique control scheme combines  
the advantages of pulse-frequency modulation (pulse  
skipping) and pulse-width modulation (continuous puls-  
ing). The internal P-channel power MOSFET allows  
peak currents of 0.75A, increasing the output current  
capability over previous pulse-frequency-modulation  
(PFM) devices. Figure 1 shows the MAX764/MAX765/  
MAX766 block diagram.  
2) The current-limited PFM control scheme allows efficien-  
cies exceeding 80% over a wide range of load currents.  
3) Maximum quiescent supply current is only 120µA.  
Figures 2 and 3 show the standard application circuits  
for these devices. In these configurations, the IC is  
powered from the total differential voltage between the  
input (V+) and output (V ). The principal benefit of  
OUT  
this arrangement is that it applies the largest available  
signal to the gate of the internal P-channel power MOS-  
FET. This increased gate drive lowers switch on-resis-  
tance and increases DC-DC converter efficiency.  
The MAX764/MAX765/MAX766 offe r thre e ma in  
improvements over prior solutions:  
Since the voltage on the LX pin swings from V+ (when the  
switch is ON) to  
V
plus a diode drop (when the  
I OUTI  
8
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