参数资料
型号: MAX8756ETI+T
厂商: Maxim Integrated Products
文件页数: 19/30页
文件大小: 0K
描述: IC CNTRL DUAL PS 28-TQFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
应用: 控制器,笔记本电脑电源系统
输入电压: 4 V ~ 26 V
输出数: 2
输出电压: 1.5V,1.8V,1 V ~ 2.3 V
工作温度: 0°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 28-WFQFN 裸露焊盘
供应商设备封装: 28-TQFN-EP(4x4)
包装: 带卷 (TR)
Interleaved High-Efficiency, Dual Power-Supply
Controllers for Notebook Computers
inductor ripple current. Therefore, the maximum load
TO ERROR
AMPLIFIER
capability is a function of the current-sense resistance,
inductor value, switching frequency, and duty cycle
FB
CSL
2V
ADJUSTABLE
OUTPUT
FIXED OUTPUT
FB = V CC
(V OUT / V IN ).
In forced-PWM mode, the MAX8716/MAX8717/
MAX8756/MAX8757 also implement a negative current
limit to prevent excessive reverse inductor currents
when V OUT is sinking current. The negative current-limit
threshold is set to approximately -120% of the positive
current limit and tracks the positive current limit when
ILIM is adjusted.
Connect ILIM_ to V CC for the 50mV default threshold, or
adjust the current-limit threshold with an external resis-
tor-divider at ILIM_. Use a 2μA to 20μA divider current
for accuracy and noise immunity. The current-limit
threshold adjustment range is from 50mV to 200mV. In
the adjustable mode, the current-limit threshold voltage
equals precisely 1/10 the voltage seen at ILIM_. The
logic threshold for switchover to the 50mV default value
is approximately V CC - 1V.
Figure 5. Dual Mode Feedback Decoder
Adjustable/Fixed Output Voltages
(Dual-Mode Feedback)
Connect FB1 and FB2 to V CC to enable the fixed SMPS
output voltages (3.3V and 5V, respectively, for the
MAX8716/MAX8717/MAX8757, and 1.5V and 1.8V for
the MAX8756, respectively), set by a preset, internal
resistive voltage-divider connected between CSL_ and
analog ground. See Figure 5. Connect a resistive volt-
age-divider at FB_ between CSL_ and GND to adjust
the respective output voltage between 1V and 5.5V.
Choose R2 (resistance from FB to AGND) to be approx-
imately 10k Ω and solve for R1 (resistance from OUT to
FB) using the equation:
Carefully observe the PCB layout guidelines to ensure
that noise and DC errors do not corrupt the differential
current-sense signals seen by CSH_ and CSL_. Place
the IC close to the sense resistor with short, direct
traces, making a Kelvin-sense connection to the cur-
rent-sense resistor.
MOSFET Gate Drivers (DH_, DL_)
The DH_ and DL_ drivers are optimized for driving
moderate-sized high-side, and larger low-side power
MOSFETs. This is consistent with the low duty factor
seen in notebook applications, where a large V IN -
V OUT differential exists. The high-side gate drivers
(DH_) source and sink 2A, and the low-side gate dri-
vers (DL_) source 1.7A and sink 3.3A. This ensures
robust gate drive for high-current applications. The
R 1 = R 2 ?
? 1 ?
? V OUT _
? V FB _
?
?
DH_ floating high-side MOSFET drivers are powered by
diode-capacitor charge pumps at BST_ (Figure 6) while
the DL_ synchronous-rectifier drivers are powered
directly by the external 5V supply (V DD ).
where V FB_ = 1V nominal.
Current-Limit Protection (ILIM_)
The current-limit circuit uses differential current-sense
inputs (CSH_ and CSL_) to limit the peak inductor cur-
rent. If the magnitude of the current-sense signal
exceeds the current-limit threshold, the PWM controller
turns off the high-side MOSFET (Figure 3). At the next
rising edge of the internal oscillator, the PWM controller
does not initiate a new cycle unless the current-sense
signal drops below the current-limit threshold. The
actual maximum load current is less than the peak cur-
rent-limit threshold by an amount equal to half of the
Adaptive dead-time circuits monitor the DL_ and DH_ dri-
vers and prevent either FET from turning on until the other
is fully off. The adaptive driver dead-time allows operation
without shoot-through with a wide range of MOSFETs,
minimizing delays and maintaining efficiency. There must
be a low-resistance, low-inductance path from the DL_
and DH_ drivers to the MOSFET gates for the adaptive
dead-time circuits to work properly; otherwise, the sense
circuitry in the MAX8716/MAX8717/MAX8756/MAX8757
interprets the MOSFET gates as “off” while charge actually
remains. Use very short, wide traces (50 mils to 100 mils
wide if the MOSFET is 1in from the driver).
______________________________________________________________________________________
19
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