isl6265a Intersil Corporation, isl6265a Datasheet

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isl6265a

Manufacturer Part Number
isl6265a
Description
Multi-output Controller With Integrated Mosfet Drivers For Amd Svi Capable Mobile Cpus
Manufacturer
Intersil Corporation
Datasheet

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Multi-Output Controller with Integrated
MOSFET Drivers for AMD SVI Capable
Mobile CPUs
The ISL6265A is a multi-output controller with embedded
gate drivers. A single-phase controller powers the
Northbridge (VDDNB) portion of the CPU. The two
remaining controller channels can be configured for
two-phase or individual single-phase outputs. For uniplane
CPU applications, the ISL6265A is configured as a
two-phase buck converter. This allows the controller to
interleave channels to effectively double the output voltage
ripple frequency, and thereby reduce output voltage ripple
amplitude with fewer components, lower component cost,
reduced power dissipation, and smaller area. For dual-plane
processors, the ISL6265A can be configured as independent
single-phase controllers powering VDD0 and VDD1.
The heart of the ISL6265A is the patented R
Intersil’s Robust Ripple Regulator modulator. Compared with
the traditional buck regulator, the R
faster transient response. This is due to the R
commanding variable switching frequency during a load
transient.
The Serial VID Interface (SVI) allows dynamic adjustment of
the Core and Northbridge output voltages independently and
in combination from 0.500V to 1.55V. Core and Northbridge
output voltages achieve a 0.5% system accuracy
over-temperature.
A unity-gain differential amplifier is provided for remote CPU
die sensing. This allows the voltage on the CPU die to be
accurately regulated per AMD mobile CPU specifications.
Core output current sensing is realized using lossless
inductor DCR sensing. All outputs feature overcurrent,
overvoltage and undervoltage protection.
Ordering Information
ISL6265AHRTZ
ISL6265AHRTZ-T* 6265A HRTZ -10 to +100 48 Ld 6x6 TQFN
*Please refer to TB347 for details on reel specifications.
NOTE: These Intersil Pb-free plastic packaged products employ
special Pb-free material sets, molding compounds/die attach materials,
and 100% matte tin plate plus anneal (e3 termination finish, which is
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
PART NUMBER
(Note)
6265A HRTZ -10 to +100 48 Ld 6x6 TQFN L48.6x6
MARKING
PART
®
1
RANGE
TEMP
(°C)
3
Data Sheet
Technology™ has a
Tape and Reel
PACKAGE
(Pb-Free)
3
Technology™,
3
modulator
1-888-INTERSIL or 1-888-468-3774
L48.6x6
DWG. #
PKG.
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
OFS/VFIXEN
Features
• Core Configuration Flexibility
• Precision Voltage Regulators
• Voltage Positioning with Adjustable Load Line and Offset
• Internal Gate Drivers with 2A Driving Capability
• Differential Remote CPU Die Voltage Sensing
• Core Differential Current Sensing: DCR or Resistor
• Northbridge Lossless r
• Serial VID Interface
• Core Outputs Feature Phase Shedding with PSI_L
• Adjustable Output-Voltage Offset
• Digital Soft-Start of all Outputs
• User Programmable Switching Frequency
• Static and Dynamic Current Sharing (Uniplane Core)
• Overvoltage, Undervoltage, and Overcurrent Protection
• Pb-Free (RoHS compliant)
Pinout
- Dual Plane, Single-Phase Controllers
- Uniplane, Two-Phase Controller
- 0.5% System Accuracy Over-temperature
- Two Wire Clock and Data Bus
- Supports High-Speed I
- 0.500V to 1.55V in 12.5mV Steps
- Supports PSI_L Power-Saving Mode
ENABLE
PWROK
PGOOD
COMP0
OCSET
VDIFF0
RBIAS
VW0
SVD
SVC
FB0
All other trademarks mentioned are the property of their respective owners.
May 11, 2009
10
11
12
|
1
2
3
4
5
6
7
8
9
Intersil (and design) is a registered trademark of Intersil Americas Inc.
48
13 14 15 16 17 18 19 20 21 22
47 46 45 44 43 42 41 40 39
Copyright Intersil Americas Inc. 2009. All Rights Reserved
(48 LD 6X6 TQFN)
DS(ON)
TOP VIEW
ISL6265A
[BOTTOM]
2
C
GND
49
Current Sensing
ISL6265A
38 37
23 24
FN6884.0
26
25
36
35
34
33
32
31
30
29
28
27
BOOT_NB
BOOT0
UGATE0
PHASE0
PGND0
LGATE0
PVCC
LGATE1
PGND1
PHASE1
UGATE1
BOOT1

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isl6265a Summary of contents

Page 1

... ISL6265AHRTZ 6265A HRTZ -10 to +100 48 Ld 6x6 TQFN L48.6x6 ISL6265AHRTZ-T* 6265A HRTZ -10 to +100 48 Ld 6x6 TQFN *Please refer to TB347 for details on reel specifications. NOTE: These Intersil Pb-free plastic packaged products employ special Pb-free material sets, molding compounds/die attach materials, ...

Page 2

... RBIAS VW0 COMP0 FB0 VDIFF0 V0 VSEN0 1 RTN0 DROOP ISP0 CURRENT SENSE ISN0 ISP1 CURRENT SENSE ISN1 V1 VSEN1 1 RTN1 VDIFF1 FIGURE 1. SIMPLIFIED FUNCTION BLOCK DIAGRAM OF ISL6265A 2 ISL6265A FB_NB COMP_NB VSEN_NB VNB 1 3.0kΩ 1.5kΩ E/A VREF_NB FLT VNB FAULT RTN1 V0 PROTECTION V1 ISEN0 ISEN1 E/A I_OFS ...

Page 3

... Simplified Application Circuit for Dual Plane and Northbridge Support SVI DATA SVI CLOCK ENABLE PWROK VDDPWRGD REMOTE SENSE REMOTE SENSE VDD_PLANE_STRAP FIGURE 2. ISL6265A BASED DUAL-PLANE AND NORTHBRIDGE CONVERTERS WITH INDUCTOR DCR CURRENT SENSING 3 ISL6265A VIN +5V VIN VCC PVCC GND SVD SVC ...

Page 4

... OFS/VFIXEN VDIFF0 FB0 COMP0 VW0 VDIFF1 OPEN OPEN FB1 COMP1 OPEN OPEN VW1 FSET_NB COMP_NB FB_NB FIGURE 3. ISL6265A BASED UNIPLANE AND NORTHBRIDGE CONVERTERS WITH INDUCTOR DCR CURRENT SENSING 4 ISL6265A VIN +5V VCC PVCC GND UGATE0 BOOT0 PHASE0 LGATE0 PGND0 ISP0 ISN0 RBIAS ...

Page 5

... DNP UNIPLANE SENSE VSEN1 OFS/VFIXEN VDIFF0 FB0 COMP0 VW0 VDIFF1 FB1 COMP1 VW1 FSET_NB COMP_NB FB_NB FIGURE 4. ISL6265A BASED UNIPLANE OR DUAL PLANE CORE CONVERTER WITH INDUCTOR DCR CURRENT SENSING 5 ISL6265A VIN VCC PVCC GND UGATE0 BOOT0 PHASE0 LGATE0 PGND0 ISP0 ISN0 RBIAS ...

Page 6

... AMPLIFIERS Error Amp DC Gain (Note 3) Error Amp Gain-Bandwidth Product (Note 3) Error Amp Slew Rate (Note 3) 6 ISL6265A Thermal Information Thermal Resistance (Typical, Notes 1, 2) θ TQFN . . . . . . . . . . . . . . . . . . . . Maximum Junction Temperature . . . . . . . . . . . . . . . . . . . . . . +150°C Maximum Storage Temperature Range . . . . . . . . . .-65°C to +150°C Pb-Free Reflow Profile .see link below http://www ...

Page 7

... LGATE Sink Current (Note 4) I SNK(LGATE) UGATE to PHASE Resistance R GATE DRIVER SWITCHING TIMING (Refer to “ISL6265A Gate Driver Timing Diagram” on page 8) UGATE Rise Time (Note 3) LGATE Rise Time (Note 3) UGATE Fall Time (Note 3) LGATE Fall Time (Note 3) UGATE Turn-on Propagation Delay ...

Page 8

... Schmitt Trigger Input Hysteresis SVD Low Level Output Voltage SVC, SVD Leakage DIFF AMP Accuracy NOTES: 3. Limits should be considered typical and are not production tested. 4. Limits established by characterization and are not production tested. ISL6265A Gate Driver Timing Diagram PWM t PDHU UGATE LGATE 1V t ...

Page 9

... PVCC The power supply pin for the internal MOSFET gate drivers of the ISL6265A. Connect this pin to a +5V power supply. Decouple this pin with a quality 1.0µF ceramic capacitor. GND The bias and reference ground for the IC. The GND connection for the ISL6265A is through the thermal pad on the bottom of the package ...

Page 10

... The return path of the lower gate driver for CORE_0 and CORE_1 respectively. Connect these pins to the corresponding sources of the lower MOSFETs. Theory of Operation The ISL6265A is a flexible multi-output controller supporting Northbridge and single or dual power planes required by Class M AMD Mobile CPUs. In single plane applications, both core voltage regulators operate single-phase. In uniplane core applications, the core voltage regulators are configured to operate as a two-phase regulator ...

Page 11

... FIGURE 6. MODULATOR WAVEFORMS DURING LOAD Power-On Reset The ISL6265A requires a +5V input supply tied to VCC and PVCC to exceed a rising power-on reset (POR) threshold before the controller has sufficient bias to guarantee proper operation. Once this threshold is reached or exceeded, the ISL6265A has enough bias to begin checking RTN1, OFS/VFIXEN, ENABLE, and SVI inputs ...

Page 12

... Interval locks core output configuration and pre-Metal VID code. All outputs soft-start to this level. Interval PGOOD signal goes HIGH indicating proper operation. Interval CPU detects VDDPWRGD high and drives PWROK high to allow ISL6265A to prepare for SVI code. Interval SVC and SVD data lines communicate change in VID code. ...

Page 13

... VID transition. The AMD requirements under these conditions do not require the regulator to meet the minimum slew rate specification of -5mV/µs. In either case, the slew rate is not allowed to exceed 10mV/µs. The ISL6265A does not change the state of PGOOD (VDDPWRGD in AMD specifications) when a VID-on-the-fly transition occurs. ...

Page 14

... NOTE: Indicates a VID not required for AMD Family 10h processors. 14 ISL6265A TABLE 3. SERIAL VID CODES VOLTAGE VOLTAGE (V) SVID[6:0] 1.1500 100_0000b 0.7500 1.1375 100_0001b 0.7375 1.1250 100_0010b 0.7250 1.1125 100_0011b ...

Page 15

... The processor then sends the PSI-L bit and VID bits during the data phase. The Serial VID 8-bit data field encoding is outlined in Table 5. If ISL6265A receives a valid 8-bit code during the data phase, it sends the acknowledge bit. Finally, the processor sends the stop sequence ...

Page 16

... Core and Northbridge regulators feature two different types of current sense circuits. CORE CONTINUOUS CURRENT SENSE The ISL6265A provides for load current to be measured using either resistors in series with the individual output inductors or using the intrinsic series resistance of the inductors as shown in the applications circuits in Figures 2 and 3 ...

Page 17

... Conversely, when the low-side MOSFET conducts negative (EQ. 11) inductor current, the phase voltage is positive with respect to the GND and PGND pins. The ISL6265A monitors the phase voltage when the low-side MOSFET is conducting inductor current to determine the direction of the inductor current. When the output load current is less than half the inductor ripple current, the inductor current goes negative ...

Page 18

... Power-Good Signal The power-good pin (PGOOD open-drain logic output that signals if the ISL6265A is not regulating Core and Northbridge output voltages within the proper levels output current in one or more outputs has exceeded the maximum current setpoint ...

Page 19

... The ISL6265A monitors the individual Core and Northbridge output voltages using differential remote sense amplifiers. level range will The ISL6265A features a severe overvoltage (OV) threshold of 1.8V. If any of the outputs exceed this voltage fault is immediately triggered. PGOOD is latched low and the low-side MOSFETs of the offending output(s) are turned on. ...

Page 20

... Take into account that the rated value capacitor can degrade as much as 50% as the DC voltage across it increases. 20 ISL6265A Selection of the Input Capacitor The input capacitors are responsible for sourcing the AC component of the input current flowing into the upper MOSFETs. Their RMS current capability must be sufficient to ...

Page 21

... I is the sum of the DC component of the inductor PEAK current plus 1/2 of the inductor ripple current 21 ISL6265A - t saturation - t Selecting The Bootstrap Capacitor All three integrated drivers feature an internal bootstrap schottky diode. Simply adding an external capacitor across ...

Page 22

... The bottom of the ISL6265A QFN package is the signal ground (GND) terminal for analog and logic signals of the IC. Connect the GND pad of the ISL6265A to the island of ground plane under the top layer using several vias, for a robust thermal and electrical conduction path. Connect the input capacitors, the output capacitors, and the source of the lower MOSFETs to the power ground plane ...

Page 23

... Package Outline Drawing L48.6x6 48 LEAD THIN QUAD FLAT NO-LEAD PLASTIC PACKAGE Rev 1, 4/07 6.00 6 PIN 1 INDEX AREA (4X) 0.15 TOP VIEW ( 5. 75 TYP ) ( TYPICAL RECOMMENDED LAND PATTERN 23 ISL6265A 48X 0.45 ± 0.10 BOTTOM VIEW MAX 0. SIDE VIEW REF ( 48X 48X DETAIL " ...

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