參數(shù)資料
型號: ISL6569
廠商: Intersil Corporation
英文描述: Multi-Phase PWM Controller
中文描述: 多相PWM控制器
文件頁數(shù): 14/22頁
文件大?。?/td> 497K
代理商: ISL6569
14
FN9085.7
December 29, 2004
Following the delay, the soft start ramps linearly until V
RAMP
reaches VID. For the system described above, this first linear
ramp will continue for approximately
The final portion of the soft-start sequence is the time
remaining after V
RAMP
reaches VID and before I
RAMP
gets to
zero. This is also characterized by a slight change in the slope
of the output voltage ramp which, for the current example,
exists for a time of
This behavior is seen in the example in Figure 10 of a converter
switching at 500kHz. For this converter, R
FB
is set to 2.67k
leading to T
SS
= 4.0ms, t
DELAY
= 700ns, t
RAMP1
= 2.23ms,
and t
RAMP2
= 1.17ms.
NOTE: Switching frequency 500kHz and R
FB
= 2.67k
Fault Monitoring and Protection
The ISL6569 actively monitors voltage and current feedback
to detect fault conditions. Fault monitors trigger protective
measures to prevent damage to a microprocessor load. One
common power good indication signal is provided for linking
to external system monitors. The schematic in Figure 11
outlines the interaction between the fault monitors and the
power good signal.
I
Power Good Signal
The power good pin (PGOOD) is an open-drain logic output
which indicates that the converter is operating properly and
the output voltage is within a set window. The under-voltage
(UV) and over-voltage (OV) comparators create the output
voltage window. The controller also takes advantage of
current feedback to detect output over-current (OC)
conditions. PGOOD pulls low during shutdown and releases
high during soft-start once the output voltage exceeds the
UV threshold. Once high, PGOOD will only transition low
when the controller is disabled or a fault condition is
detected. It will return high under certain circumstances
once a fault clears.
Under-Voltage Protection
The voltage on V
DIFF
is internally offset by 350mV before it
is compared with the DAC reference voltage. By positively
offsetting the output voltage, an UV threshold is created
which moves relative to the VID code. During soft-start, the
slow rising output voltage eventually exceeds the UV
threshold. Assuming the POR leg of the PGOOD NOR gate
has not detected an OC fault, the PGOOD signal will go
high.
If a fault condition arises during operation and the output
voltage drops below the UV threshold, PGOOD will
immediately pull low, but converter operation will continue.
PGOOD will return high once the output voltage surpasses
the UV threshold.
f the ISL6569 is disabled during operation, the PGOOD
signal will not pull low until the output voltage decays below
the UV threshold.
Over-Voltage Protection
When the output of the differential amplifier (VDIFF) reaches
2.2V, PGOOD immediately goes low indicating a fault. Two
protective actions are taken by the ISL6569 to protect the
microprocessor load.
t
RAMP1
T
1.4
t
DELAY
=
5.27ms
=
(EQ. 11)
t
RAMP2
T
SS
t
RAMP1
t
DELAY
=
2.34ms
=
(EQ. 12)
FIGURE 10. SOFT-START WAVEFORMS FOR ISL6569 BASED
MULTI-PHASE BUCK CONVERTER
1ms/DIV
EN, 5V/DIV
VOUT, 500mV/DIV
t
DELAY
t
RAMP1
t
RAMP2
FIGURE 11. POWER GOOD AND PROTECTION CIRCUITRY
OVP
POR
CIRCUIT
-
+
2.2V
VDIFF
-
+
90
μ
A
I
AVG
-
+
DAC
REFERENCE
OV
OC
UV
350mV
-
PGOOD
+
ISL6569
相關PDF資料
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ISL6569CB-T Multi-Phase PWM Controller
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