ISL6567CRZ Intersil, ISL6567CRZ Datasheet

IC CTLR PWM 2PHASE BUCK 24-QFN

ISL6567CRZ

Manufacturer Part Number
ISL6567CRZ
Description
IC CTLR PWM 2PHASE BUCK 24-QFN
Manufacturer
Intersil
Datasheet

Specifications of ISL6567CRZ

Pwm Type
Voltage Mode
Number Of Outputs
1
Frequency - Max
1.5MHz
Duty Cycle
66%
Voltage - Supply
4.9 V ~ 5.5 V
Buck
Yes
Boost
No
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
No
Operating Temperature
0°C ~ 70°C
Package / Case
24-VQFN
Frequency-max
1.5MHz
Rohs Compliant
YES
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

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Quantity
Price
Part Number:
ISL6567CRZ
Manufacturer:
Intersil
Quantity:
620
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ISL6567CRZ
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INTERSIL
Quantity:
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INTERSIL
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INTERSIL
Quantity:
20 000
Multipurpose Two-Phase Buck PWM
Controller with Integrated MOSFET
Drivers
The ISL6567 two-phase synchronous buck PWM control IC
provides a precision voltage regulation system for
point-of-load and other high-current applications requiring an
efficient and compact implementation. Multi-phase power
conversion is a marked departure from single phase
converter configurations employed to satisfy the increasing
current demands of various electronic circuits. By distributing
the power and load current, implementation of multi-phase
converters utilize 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 resulting from the phase
interleaving inherent to this topology.
Outstanding features of this controller IC include an internal
0.6V reference with a system regulation accuracy of ±0.6%,
an optional external reference input, and user-adjustable
switching frequency. Precision regulation is further
enhanced by the available unity-gain differential amplifier
targeted at remote voltage sensing capability, while output
regulation is monitored and its quality is reported via a
PGOOD pin. Also included is an internal shunt regulator with
optional external connection capability which extends the
operational input voltage range. For applications requiring
voltage tracking or sequencing, the ISL6567 offers a host of
possibilities, including coincidental, ratiometric, or offset
tracking, as well as sequential start-ups, user adjustable for
a wide range of applications.
Protection features of this controller IC include overvoltage
and overcurrent protection. Overvoltage results in the
converter turning the lower MOSFETs ON to clamp the rising
output voltage. The ISL6567 uses cost and space-saving
r
voltage positioning, and overcurrent protection. Channel
current balancing is automatic and accurate with the
integrated current-balance control system. Overcurrent
protection can be tailored to various application with no need
for additional parts.
DS(ON)
sensing for channel current balance, dynamic
®
1
Data Sheet
1-888-INTERSIL or 1-888-468-3774
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
Features
• Integrated Two-Phase Power Conversion
• Shunt Regulator for Wide Input Power Conversion
• Precision Channel Current Sharing
• Precision Output Voltage Regulation
• 0.6V Internal Reference
• Full Spectrum Voltage Tracking
• Sequential Start-up Control
• Adjustable Switching Frequency
• Fast Transient Recovery Time
• Unity-Gain Differential Amplifier
• Overcurrent Protection
• Overvoltage Protection
• Start-up into Pre-Charged Output
• Small, QFN Package Footprint
• Pb-Free (RoHS Compliant)
Ordering Information
ISL6567CRZ
ISL6567CRZ-T* 65 67CRZ
ISL6567IRZ
ISL6567IRZ-T*
ISL6567EVAL1Z Evaluation Platform
*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
- Integrated 4A Drivers for High Efficiency
- 5V and Higher Bias
- Up to 20V Power-Down-Conversion
- Loss-Less Current Sampling - Uses r
- ±0.6% System Accuracy Over-Temperature
- Coincidental, Ratiometric, or Offset
- 150kHz to 1.5MHz
- Increased Voltage Sensing Accuracy
(Commercial Range)
(Note)
All other trademarks mentioned are the property of their respective owners.
May 28, 2009
|
Intersil (and design) is a registered trademark of Intersil Americas Inc.
Copyright © Intersil Americas Inc. 2005-2009. All Rights Reserved
65 67CRZ
65 67IRZ
65 67IRZ
MARKING
PART
-40 to +85 24 Ld 4x4 QFN L24.4x4C
-40 to +85 24 Ld 4x4 QFN L24.4x4C
RANGE
0 to +70 24 Ld 4x4 QFN L24.4x4C
0 to +70 24 Ld 4x4 QFN L24.4x4C
TEMP.
(°C)
PACKAGE
(Pb-Free)
DS(ON)
ISL6567
FN9243.3
DWG. #
PKG.

Related parts for ISL6567CRZ

ISL6567CRZ Summary of contents

Page 1

... Pb-Free (RoHS Compliant) Ordering Information PART NUMBER PART (Note) MARKING ISL6567CRZ 65 67CRZ ISL6567CRZ-T* 65 67CRZ ISL6567IRZ 65 67IRZ ISL6567IRZ-T* 65 67IRZ ISL6567EVAL1Z Evaluation Platform *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 ...

Page 2

Pinout 2 ISL6567 ISL6567 ISL6567 (24 LD QFN) TOP VIEW RGND VSEN 2 MON GND VDIFF COMP ...

Page 3

Block Diagram MON 300mV + 110% - 90% VCC 10µA 10µA OVP COMP 120% REFTRK REFERENCE VDIFF RGND X1 VSEN VCC VREG SHUNT LINEAR REGULATOR PGOOD FS EN VCC 20µA OSCILLATOR POWER-ON RESET (POR) PWM1 SOFT-START ...

Page 4

Simplified Power System Diagram PGOOD Typical Application SHUNT C F1 VCC VREG REFTRK MON R PG PGOOD COMP VDIFF R1 4 ...

Page 5

... Recommended Operating Conditions Supply Voltage, VCC . . . . . . . . . . . . . . . . . . . . . . . . . +4.9V to +5.5V Ambient Temperature ISL6567CRZ 0° to +70°C ISL6567IRZ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -40°C to +85°C CAUTION: Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to such conditions may adversely impact product reliability and result in failures not covered by warranty. ...

Page 6

Electrical Specifications Operating Conditions: V MAX limits are 100% tested at +25°C, unless otherwise specified. Temperature limits established by characterization and are not production tested. (Continued) PARAMETER External Reference DC Amplitude Range External Reference DC Offset Range ERROR AMPLIFIER AND ...

Page 7

Timing Diagram t PDHUGATE UGATE LGATE t FLGATE Functional Pin Description VCC (Pin 8) Bias supply for the IC’s small-signal circuitry. Connect this pin supply and locally decouple using a quality 0.1µF ceramic capacitor. This pin is ...

Page 8

For more information, refer to “External Reference Operation” on page 14. EN (Pin 9) This pin is a precision-threshold (approximately 0.6V) enable pin. Pulled above the threshold, the pin enables the controller for operation, initiating a soft-start. Normally a high ...

Page 9

FS (Pin 22) This pin is used to set the switching frequency. Connect a resistor from this pin to ground and size it according to FS the graph in Figure 1 or Equation ⋅ ( ...

Page 10

Operation Figure 2 shows a simplified diagram of the voltage regulation and current loops. The voltage loop is used to precisely regulate the output voltage, while the current feedback is used to balance the output currents, I power channels. VOLTAGE ...

Page 11

... All things being equal, in order to fully realize the thermal advantage important that each channel in a multi-phase converter be controlled to deliver about the same current at any load level. Intersil’s ISL6567 ensure current balance by comparing each channel’s current to the average current delivered by both channels and making appropriate adjustments to each channel’ ...

Page 12

SS pin starts to output a small current which charges the external capacitor connected to this pin internal reference clamp controlled by the potential at the SS pin releases the reference to the input ...

Page 13

SETTING THE OUTPUT VOLTAGE The ISL6567 uses a precision internal reference voltage to set the output voltage. Based on this internal reference, the output voltage can thus be set from 0. level determined by the input voltage, ...

Page 14

... ISL6567 Make note that, in these equations, V reference of the MON comparator (300mV). Intersil recommends the MON threshold is set to be tripped when the external reference voltage reaches at least 90% of the final DC value. Since PGOOD and OVP monitoring are relative to the external reference magnitude important to ...

Page 15

MON pin’s functionality can be used to indicate when a desired threshold has been reached (either by monitoring the reference itself, or the output voltage controlled by the ISL6567). By default, when operating in external-reference mode and desiring PGOOD monitoring ...

Page 16

OVERVOLTAGE PROTECTION Although the normal feedback loop operation naturally counters overvoltage (OV) events the ISL6567 benefits from a secondary, fixed threshold overvoltage protection. Should the output voltage exceed 120% of the reference, the lower MOSFETs are turned on. Once turned ...

Page 17

... It is assumed that the reader is familiar with many of the basic skills and techniques referenced in the following. In addition to this guide, Intersil provides complete reference designs that include schematics, bills of materials, and example board layouts for typical applications. ...

Page 18

V (V) INmin FIGURE 19. NORMALIZED RESISTOR VALUE IN PASSIVE CONFIGURATION; V VCC Figure 20 details the normalized maximum power dissipation R will be subject to in the ...

Page 19

ISL6567 may require to drive the switching MOSFETs. ISL6567 EXTERNAL CIRCUIT PVCC POR CIRCUIT VCC E VREF VREG SHUNT ...

Page 20

Figure 23. Use the following guidelines for locating the 3 poles and zeros of the compensation network: 1. Select a value for R (1kΩ to 5kΩ, typically). Calculate 1 value for R for desired converter bandwidth (F ...

Page 21

In high-speed converters, the output capacitor bank is amongst the costlier (and ...

Page 22

The power components should be placed first. Locate the input capacitors close to the power switches. Minimize the length of the connections between the input capacitors, C and the power switches. Locate the output inductors and output capacitors between the ...

Page 23

Size the trace interconnects commensurate with the signals they are carrying. Use narrow (0.005” to 0.008”) and short traces for the high-impedance, small-signal connections, such as the feedback, compensation, soft-start, frequency set, enable, reference track, etc. The wiring traces from ...

Page 24

Lastly, the conduction loss part of the upper MOSFET’s power dissipation, P can be calculated using UMOS,4, Equation 30 ⎛ ⎞ ⎜ OUT ⎟ --------- - ------------- ( ) UMOS ...

Page 25

... Accordingly, the reader is cautioned to verify that data sheets are current before placing orders. Information furnished by Intersil is believed to be accurate and reliable. However, no responsibility is assumed by Intersil or its subsidiaries for its use; nor for any infringements of patents or other rights of third parties which may result from its use ...

Page 26

Package Outline Drawing L24.4x4C 24 LEAD QUAD FLAT NO-LEAD PLASTIC PACKAGE Rev 2, 10/06 4.00 PIN 1 INDEX AREA (4X) 0.15 TOP VIEW ( TYP ) ( TYPICAL RECOMMENDED LAND PATTERN 26 ISL6567 ...

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