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HIP6302_04

更新时间: 2024-09-21 04:43:51
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英特矽尔 - INTERSIL 调节器微处理器多相元件控制器
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描述
Microprocessor CORE Voltage Regulator Multi-Phase Buck PWM Controller

HIP6302_04 数据手册

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HIP6302  
®
Data Sheet  
December 27, 2004  
FN4766.3  
Microprocessor CORE Voltage Regulator  
Multi-Phase Buck PWM Controller  
Features  
• Multi-Phase Power Conversion  
The HIP6302 multi-phase PWM control IC together with its  
companion gate drivers, the HIP6601, HIP6602 or HIP6603  
and Intersil MOSFETs provides a precision voltage  
• Precision Channel Current Sharing  
- Loss Less Current Sampling - Uses r  
DS(ON)  
• Precision CORE Voltage Regulation  
regulation system for advanced microprocessors. Multiphase  
power conversion is a marked departure from earlier single  
phase converter configurations previously employed to  
satisfy the ever increasing current demands of modern  
microprocessors. Multi-phase convertors, by distributing the  
power and load current results in smaller and lower cost  
transistors with fewer input and output capacitors. These  
reductions accrue from the higher effective conversion  
frequency with higher frequency ripple current due to the  
phase interleaving process of this topology. For example, a  
two phase convertor operating at 350kHz will have a ripple  
frequency of 700kHz. Moreover, greater convertor bandwidth  
of this design results in faster response to load transients.  
- ±1% System Accuracy Over Temperature  
• Microprocessor Voltage Identification Input  
- 5-Bit VID Input  
- 1.100V to 1.850V in 25mV Steps  
- Programmable “Droop” Voltage  
• Fast Transient Recovery Time  
• Over Current Protection  
• High Ripple Frequency, (Channel Frequency) Times  
Number Channels . . . . . . . . . . . . . . . . . .100kHz to 3MHz  
Pb-Free Available (RoHS Compliant)  
Outstanding features of this controller IC include  
programmable VID codes from the microprocessor that  
range from 1.100V to 1.850V with a system accuracy of  
±1%. Pull up currents on these VID pins eliminates the need  
for external pull up resistors. In addition “droop”  
compensation, used to reduce the overshoot or undershoot  
of the CORE voltage, is easily programmed with a single  
resistor.  
Ordering Information  
o
PART NUMBER TEMP. ( C)  
PACKAGE  
PKG. DWG. #  
M16.15  
HIP6302CB  
0 to 70  
0 to 70  
16 Ld SOIC  
HIP6302CBZ  
(See Note)  
16 Ld SOIC  
(Pb-Free)  
M16.15  
HIP6302CBZA  
(See Note)  
0 to 70  
16 Ld SOIC  
(Pb-Free)  
M16.15  
Another feature of this controller IC is the PGOOD monitor  
circuit which is held low until the CORE voltage increases,  
during its Soft-Start sequence, to within 10% of the  
programmed voltage. Over-voltage, 15% above programmed  
CORE voltage, results in the converter shutting down and  
turning the lower MOSFETs ON to clamp and protect the  
microprocessor. Under voltage is also detected and results  
in PGOOD low if the CORE voltage falls 10% below the  
programmed level. Over-current protection reduces the  
regulator current to less than 25% of the programmed trip  
value. These features provide monitoring and protection for  
the microprocessor and power system.  
HIP6302EVAL1  
Evaluation Platform  
*Add “-T” suffix to part number for tape and reel packaging.  
NOTE: Intersil Pb-free products employ special Pb-free material sets; molding  
compounds/die attach materials and 100% matte tin plate termination finish,  
which are RoHS compliant and compatible with both SnPb and Pb-free  
soldering operations. Intersil Pb-free products are MSL classified at Pb-free  
peak reflow temperatures that meet or exceed the Pb-free requirements of  
IPC/JEDEC J STD-020.  
Pinout  
HIP6302 (SOIC)  
TOP VIEW  
VID4  
VID3  
1
2
3
4
5
6
7
8
16 V  
CC  
15 PGOOD  
14 ISEN1  
13 PWM1  
12 PWM2  
11 ISEN2  
10 VSEN  
VID2  
VID1  
VID0  
COMP  
FB  
FS/DIS  
9
GND  
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.  
1
1-888-INTERSIL or 321-724-7143 | Intersil (and design) is a registered trademark of Intersil Americas Inc.  
Copyright © Intersil Americas Inc. 2003-2004. All Rights Reserved  
All other trademarks mentioned are the property of their respective owners.  

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