参数资料
型号: SP6133ER1-L/TR
厂商: Exar Corporation
文件页数: 7/20页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM VM 16-QFN
标准包装: 3,000
PWM 型: 电压模式
输出数: 1
频率 - 最大: 345kHz
占空比: 92%
电源电压: 5 V ~ 24 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: 16-VFQFN 裸露焊盘
包装: 带卷 (TR)
THEORY OF OPERATION
Vout
compensation schemes with adequate gain 
and phase margins at crossover frequencies 
greater than 200 kHz.
The common mode output of the error ampli-
fier (COMP) is 0.9V to 2.2V. Therefore, the 
PWM voltage ramp has been set between
 .0V and 2.0V to ensure proper 0% to  00%
duty cycle capability. The voltage loop also
includes two other very important features.
One is a non-synchronous start up mode.
Basically, the GL driver cannot turn on unless
the GH driver has attempted to turn on or
the SS pin has exceeded  .7V. This feature
prevents the controller from “dragging down”
the output voltage during startup or in fault
modes. The second feature is a  00% duty
cycle timeout that ensures synchronized
refreshing of the BST capacitor at very high
duty ratios. In the event that the GH driver is
on for 20 continuous clock cycles, a reset is
given to the PWM flip flop half way through 
the 20th cycle. This forces GL to rise for the
remainder of the cycle, in turn refreshing the
BST capacitor.
Gate Drivers
The SP6 33 contains a pair of powerful 2 Ω
Pull-up and  .5 Ω Pull-down drivers. These
state-of-the-art drivers are designed to drive
an external NFET capable of handling up to
30A. Rise, fall, and non-overlap times have
all been minimized to achieve maximum
efficiency. All  drive  pins  GH,  GL,  &  SWN 
are monitored continuously to ensure that
only one external NFET is ever on at any
given time.
Thermal & Short-Circuit Protection
Because the SP6 33 is designed to drive
large NFETs running at high current, there is
a chance that either the controller or power
converter will become too hot. Therefore, an
internal thermal shutdown (145°C) has been 
included to prevent the IC from malfunction-
ing at extreme temperatures.
Over-Current Protection
Over-current is detected by monitoring a
differential voltage across the output induc-
tor as shown in figure 1. Inputs to an over-
current detection comparator, set to trigger
at 60 mV nominal, are connected to the in-
ductor as shown.
Since the average voltage sensed by the
comparator  is  equal  to  the  product  of  in -
ductor current and inductor DC resistance
(DCR) then I MAX = 60mV / DCR. Solving
this equation for the specific inductor in cir -
cuit  , I MAX =  4.6A. When I MAX is reached,
a 220 ms time-out is initiated, during which
top and bottom drivers are turned off. Fol-
lowing the time-out, a restart is attempted.
If the fault condition persists, then the time-
out is repeated (referred to as hiccup).
SP613X
L = 2.7uH, DCR = 4. mOhm
SWN
RS  RS2
5.  K 5.  K
ISP
CSP CS
ISN 6.8nF 0. uF
Figure 1: Over-current detection circuit
Oct 24-06 Rev L
SP6 33 Synchronous Buck Controller
7
? 2006 Sipex Corporation
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