参数资料
型号: ISL6548ACRZA-T
厂商: Intersil
文件页数: 7/16页
文件大小: 0K
描述: IC REG/CTLR ACPI DUAL DDR 28QFN
标准包装: 1
应用: 存储器,DDR/DDR2 稳压器
电流 - 电源: 7mA
工作温度: 0°C ~ 70°C
安装类型: 表面贴装
封装/外壳: 28-VQFN 裸露焊盘
供应商设备封装: 28-QFN(6x6)
包装: 标准包装
产品目录页面: 1243 (CN2011-ZH PDF)
其它名称: ISL6548ACRZA-TDKR
ISL6548A
C VTTOUT ? V DDQ
10 ? 2A ? R U || R L
I PEAK = -------------------------------------------------
UGATE (Pin 26)
Connect this pin to the upper MOSFET’s gate. This pin
provides the PWM-controlled gate drive for the upper
MOSFET. This pin is also monitored by the adaptive shoot-
through protection circuitry to determine when the upper
MOSFET has turned off. Do not insert any circuitry between
this pin and the gate of the upper MOSFET, as it may
interfere with the internal adaptive shoot-through protection
circuitry and render it ineffective.
LGATE (Pin 28)
Connect this pin to the lower MOSFET’s gate. This pin
provides the PWM-controlled gate drive for the lower
MOSFET. This pin is also monitored by the adaptive shoot-
through protection circuitry to determine when the lower
MOSFET has turned off. Do not insert any circuitry between
this pin and the gate of the lower MOSFET, as it may
interfere with the internal adaptive shoot-through protection
circuitry and render it ineffective.
FB (Pin 15) and COMP (Pin 16)
The V DDQ switching regulator employs a single voltage
control loop. FB is the negative input to the voltage loop error
amplifier. The V DDQ output voltage is set by an external
resistor divider connected to FB. With a properly selected
divider, V DDQ can be set to any voltage between the power
rail (reduced by converter losses) and the 0.8V reference.
Loop compensation is achieved by connecting an AC
network across COMP and FB.
The FB pin is also monitored for under and overvoltage
events.
PHASE (Pin 24)
Connect this pin to the upper MOSFET’s source. This pin is
used to monitor the voltage drop across the upper MOSFET
for overcurrent protection.
OCSET (Pin 22)
Connect a resistor (R OCSET ) from this pin to the drain of the
upper MOSFET. R OCSET , an internal 20 μ A current source
(I OCSET ), and the upper MOSFET on-resistance (r DS(ON) )
set the converter overcurrent (OC) trip point according to the
following equation:
I OCSET xR OCSET
r DS ( ON )
An overcurrent trip cycles the soft-start function.
VDDQ (Pins 7, 8)
The VDDQ pins should be connected externally together to
the regulated V DDQ output. During S0/S1 states, the VDDQ
pins serve as inputs to the V TT regulator and to the V TT
Reference precision divider.
7
DDR_VTT (Pins 5, 6)
The DDR_VTT pins should be connect externally together.
During S0/S1 states, the DDR_VTT pins serve as the
outputs of the V TT linear regulator. During S3 state, the V TT
regulator is disabled.
DDR_VTTSNS (Pin 9)
VTTSNS is used as the feedback for control of the V TT linear
regulator. Connect this pin to the V TT output at the physical
point of desired regulation.
VREF_IN (Pin 14)
A capacitor, C SS , connected between VREF_IN and ground
is required. This capacitor and the parallel combination of
the Upper and Lower Divider Impedance (R U ||R L ), sets the
time constant for the start up ramp when transitioning from
S3/S4/S5 to S0/S1/S2.
The minimum value for C SS can be found through the
following equation:
C SS > ------------------------------------------------
The calculated capacitance, C SS , will charge the output
capacitor bank on the V TT rail in a controlled manner without
reaching the current limit of the V TT LDO.
BOOT (Pin 25)
This pin provides ground referenced bias voltage to the
upper MOSFET driver. A bootstrap circuit is used to create a
voltage suitable to drive a logic-level N-channel MOSFET.
PWM4 (Pin 19)
This pin provides the PWM output for the GMCH core
switching regulator. Connect this pin to the PWM input of an
Intersil MOSFET driver.
FB4 (Pin 18) and COMP4 (Pin 17)
The GMCH core switching regulator employs a single
voltage control loop. FB4 is the negative input to the voltage
loop error amplifier. The GMCH core output voltage is set by
an external resistor divider connected to FB4. With a
properly selected divider, V GMCH can be set to any voltage
between the power rail (reduced by converter losses) and
the 0.8V reference. Loop compensation is achieved by
connecting an AC network across COMP4 and FB4.
The FB4 pin is also monitored for undervoltage events.
FB2 (Pin 11)
Connect the output of the V TT_GMCH/CPU linear regulator to
this pin through a properly sized resistor divider. The voltage
at this pin is regulated to 0.8V. This pin is monitored for
undervoltage events.
FN9189.2
January 3, 2006
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