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MAX8577EUB+

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MAX8577EUB+

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Part Number MAX8577EUB+
Manufacturer Maxim Integrated
Description IC REG CTRLR BUCK 10UMAX
Datasheet MAX8577EUB+ Datasheet
Package 10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
In Stock 1,594 piece(s)
Unit Price $ 2.4000 *
Lead Time Can Ship Immediately
Estimated Delivery Time Jun 5 - Jun 10 (Choose Expedited Shipping)
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Part Number # MAX8577EUB+ (PMIC - Voltage Regulators - DC DC Switching Controllers) is manufactured by Maxim Integrated and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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MAX8577EUB+ Specifications

ManufacturerMaxim Integrated
CategoryIntegrated Circuits (ICs) - PMIC - Voltage Regulators - DC DC Switching Controllers
Datasheet MAX8577EUB+Datasheet
Package10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
Series-
Output TypeTransistor Driver
FunctionStep-Down
Output ConfigurationPositive
TopologyBuck
Number of Outputs1
Output Phases1
Voltage - Supply (Vcc/Vdd)3 V ~ 28 V
Frequency - Switching200kHz ~ 500kHz
Duty Cycle (Max)-
Synchronous RectifierYes
Clock SyncNo
Serial Interfaces-
Control FeaturesCurrent Limit, Soft Start
Operating Temperature-40°C ~ 85°C (TA)
Package / Case10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
Supplier Device Package10-uMAX

MAX8577EUB+ Datasheet

Page 1

Page 2

General Description The MAX8576–MAX8579 synchronous PWM buck con- trollers use a hysteretic voltage-mode control algorithm to achieve a fast transient response without requiring loop compensation. The MAX8576/MAX8577 contain an internal LDO regulator allowing the controllers to func- tion from only one 3V to 28V input supply. The MAX8578/MAX8579 do not contain the internal LDO and require a separate supply to power the IC when the input supply is higher than 5.5V. The MAX8576– MAX8579 output voltages are adjustable from 0.6V to 0.9 x VIN at loads up to 15A. Nominal switching frequency is programmable over the 200kHz to 500kHz range. High-side MOSFET sensing is used for adjustable hiccup current-limit and short-cir- cuit protection. The MAX8576/MAX8578 can start up into a precharged output without pulling the output volt- age down. The MAX8577/MAX8579 have startup output overvoltage protection (OVP), and will pull down a precharged output. Applications Motherboard Power Supplies AGP and PCI-Express Power Supplies Graphic-Card Power Supplies Set-Top Boxes Point-of-Load Power Supplies Features ♦ 3V to 28V Supply Voltage Range ♦ 1.2% Accurate Over Temperature ♦ Adjustable Output Voltage Down to 0.6V ♦ 200kHz to 500kHz Switching Frequency ♦ Adjustable Temperature-Compensated Hiccup Current Limit ♦ Lossless Peak Current Sensing ♦ Monotonic Startup into Prebias Output (MAX8576/MAX8578) ♦ Startup Overvoltage Protection (MAX8577/MAX8579) ♦ Enable/Shutdown ♦ Adjustable Soft-Start M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers ________________________________________________________________ Maxim Integrated Products 1 OCSET IN DH LXGND VL SS FB MAX8576 MAX8577 BSTDL INPUT UP TO 28V OUTPUT 0.6V TO 0.9 x VIN Typical Operating Circuit 19-3289; Rev 1; 6/05 For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at 1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com. EVALU ATION KIT AVAIL ABLE Ordering Information PART TEMP RANGE PIN-PACKAGE MAX8576EUB -40°C to +85°C 10 µMAX® MAX8577EUB -40°C to +85°C 10 µMAX MAX8578EUB -40°C to +85°C 10 µMAX MAX8579EUB -40°C to +85°C 10 µMAX Pin Configurations appear at end of data sheet.µMAX is a registered trademark of Maxim Integrated Products, Inc.

Page 3

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers 2 _______________________________________________________________________________________ ABSOLUTE MAXIMUM RATINGS Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. IN to GND (MAX8576/MAX8577) ...........................-0.3V to +30V VL to GND (MAX8576/MAX8577).............................-0.3V to +6V IN to VL (MAX8576/MAX8577) ...............................-0.3V to +30V VCC to GND (MAX8578/MAX8579) ..........................-0.3V to +6V SS to GND (MAX8576/MAX8577) ...............-0.3V to (VVL + 0.3)V SS to GND (MAX8578/MAX8579)...............-0.3V to (VCC + 0.3)V DL to GND (MAX8576/MAX8577) ...............-0.3V to (VVL + 0.3)V DL to GND (MAX8578/MAX8579) ..............-0.3V to (VCC + 0.3)V BST to GND............................................................-0.3V to +36V BST to LX..................................................................-0.3V to +6V LX to GND .....................-1V (-2.5V for <50ns Transient) to +30V DH to LX..................................................-0.3V to +(VBST + 0.3)V FB to GND ................................................................-0.3V to +6V EN to GND (MAX8578/MAX8679EUB) .....................-0.3V to +6V OCSET to GND (MAX8576/MAX8677) ........-0.3V to (VIN + 0.3)V OCSET to GND (MAX8578/MAX8679) ...................-0.3V to +30V OCSET to LX (MAX8576/MAX8677) ............-0.6V to (VIN + 0.3)V OCSET to LX (MAX8578/MAX8679) .......................-0.6V to +30V DH and DL Continuous Current ............................±250mA RMS Continuous Power Dissipation (TA = +70°C) 10-Pin µMAX (derate 5.6mW/°C above +70°C) ...........444mW Operating Temperature Range ...........................-40°C to +85°C Junction Temperature ......................................................+150°C Storage Temperature Range .............................-65°C to +150°C Lead Temperature (soldering, 10s) ................................+300°C ELECTRICAL CHARACTERISTICS (VIN = 12V (MAX8576/MAX8577 only), 4.7µF capacitor from VL (MAX8576/MAX8577 only) or VCC (MAX8578/MAX8579 only) to GND; VCC = VEN = 5V (MAX8578/MAX8579 only); 0.01µF capacitor from SS to GND; VFB = 0.65V; VBST = 5V; VLX = VGND = 0V; VOCSET = 11.5V; DH = unconnected; DL = unconnected; TA = 0°C to +85°C, unless otherwise noted. Typical values are at TA = +25°C.) PARAMETER CONDITIONS MIN TYP MAX UNITS SUPPLY VOLTAGES MAX8576/MAX8577 5.5 28.0 IN Supply Voltage IN = VL (MAX8576/MAX8577) 3.0 5.5 V VCC Input Voltage MAX8576/MAX8577 3.0 5.5 V VL Output Voltage IVL = 10mA (MAX8576/MAX8577) 4.75 5.0 5.25 V VL Maximum Output Current MAX8576/MAX8577 20 mA Rising 2.75 2.8 2.90 Falling 2.4 2.45 2.5 VVL or VCC Undervoltage Lockout (UVLO) Hysteresis 350 mV VIN = 12V 0.6 2 VIN = VVL = 5V 1.1 3 No switching, VFB = 0.65V (MAX8576/MAX8577) VIN = VVL = 3.3V 0.6 2 VCC = 5V 0.6 2 Supply Current VEN = 0V or VFB = 0.65V, no switching (MAX8578/MAX8579) VCC = 3.3V 0.6 2 mA REGULATOR Output Regulation Accuracy VFB peak 0.593 0.6 0.607 V Output Regulation Hysteresis (Note 1) 12.5 20 28.0 mV FB falling to DL falling 50 FB Propagation Delay FB rising to DH falling 70 ns Overvoltage-Protection (OVP) Threshold 0.70 0.75 0.80 V TA = +85°C 60High-Side Current-Sense Program Current (Note 2) TA = +25°C 42.5 50 57.5 µA

Page 4

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers _______________________________________________________________________________________ 3 ELECTRICAL CHARACTERISTICS (continued) (VIN = 12V (MAX8576/MAX8577 only), 4.7µF capacitor from VL (MAX8576/MAX8577 only) or VCC (MAX8578/MAX8579 only) to GND; VCC = VEN = 5V (MAX8578/MAX8579 only); 0.01µF capacitor from SS to GND; VFB = 0.65V; VBST = 5V; VLX = VGND = 0V; VOCSET = 11.5V; DH = unconnected; DL = unconnected; TA = 0°C to +85°C, unless otherwise noted. Typical values are at TA = +25°C.) PARAMETER CONDITIONS MIN TYP MAX UNITS High-Side Current-Sense Overcurrent Trip Adjustment Range VIN - VOCSET 0.05 0.40 V Soft-Start Internal Resistance 45 80 125 kΩ Fault Hiccup Internal SS Pulldown Current VLX < VOCSET and VFB < VSS 250 nA DRIVER SPECIFICATIONS Sourcing current 2.6 4.0 DH Driver Resistance Sinking current 1.9 3.0 Ω Sourcing current 2.6 4.0 DL Driver Resistance Sinking current 1.1 2.0 Ω Dead Time DH low to DL high and DL low to DH high (adaptive) 40 ns DH Minimum On-Time 140 245 ns Normal operation 120 220 DL Minimum On-Time Current fault 580 ns BST Current VBST - VLX = 5.5V, VLX = 28V, VFB < VSS 1.65 mA EN Input Voltage Low VCC = 3V (MAX8578/MAX8579) 0.7 V Input Voltage High VCC = 5.5V (MAX8578/MAX8579) 1.5 V THERMAL SHUTDOWN Thermal Shutdown Rising temperature, hysteresis = 20°C (typ) +160 °C ELECTRICAL CHARACTERISTICS (VIN = 12V (MAX8576/MAX8577 only), 4.7µF capacitor from VL (MAX8576/MAX8577 only) or VCC (MAX8578/MAX8579 only) to GND; VCC = VEN = 5V (MAX8578/MAX8579 only); 0.01µF capacitor from SS to GND; VFB = 0.65V; VBST = 5V; VLX = VGND = 0V; VOCSET = 11.5V; DH = unconnected; DL = unconnected; TA = -40°C to +85°C, unless otherwise noted. Note 3) PARAMETER CONDITIONS MIN TYP MAX UNITS SUPPLY VOLTAGES MAX8576/MAX8577 5.5 28.0 IN Supply Voltage IN = VL, MAX8576/MAX8577 3.0 5.5 V VCC Input Voltage MAX8576/MAX8577 3.0 5.5 V VL Output Voltage IVL = 10mA, MAX8576/MAX8577 4.75 5.25 V VL Maximum Output Current MAX8576/MAX8577 20 mA

Page 5

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers 4 _______________________________________________________________________________________ Note 1: Guaranteed by design. Note 2: This current linearly compensates for the MOSFET temperature coefficient. Note 3: Specifications to -40°C are guaranteed by design and not production tested. ELECTRICAL CHARACTERISTICS (continued) (VIN = 12V (MAX8576/MAX8577 only), 4.7µF capacitor from VL (MAX8576/MAX8577 only) or VCC (MAX8578/MAX8579 only) to GND; VCC = VEN = 5V (MAX8578/MAX8579 only); 0.01µF capacitor from SS to GND; VFB = 0.65V; VBST = 5V; VLX = VGND = 0V; VOCSET = 11.5V; DH = unconnected; DL = unconnected; TA = -40°C to +85°C, unless otherwise noted. Note 3) PARAMETER CONDITIONS MIN TYP MAX UNITS Rising 2.75 2.90VL or VCC Undervoltage Lockout (UVLO) Falling 2.40 2.55 V VIN = 12V 2 VIN = VVL = 5V 3.5 No switching, VFB = 0.65V (MAX8576/MAX8577) VIN = VVL = 3.3V 2 VCC = 5V 2 Supply Current VEN = 0V or VFB = 0.65V, no switching (MAX8578/MAX8579) VCC = 3.3V 2 mA REGULATOR Output Regulation Accuracy VFB peak 0.591 0.607 V Overvoltage-Protection (OVP) Threshold 0.70 0.80 V High-Side Current-Sense Over- Current Trip Adjustment Range VIN - VOCSET 0.05 0.40 V DRIVER SPECIFICATIONS Sourcing current 4 DH Driver Resistance Sinking current 3.0 Ω Sourcing current 4.0 DL Driver Resistance Sinking current 2.0 Ω DH Minimum On-Time 245 ns DL Minimum On-Time Normal operation 220 ns EN Input Voltage Low VCC = 3V, MAX8578/MAX8579 0.7 V Input Voltage High VCC = 5.5V, MAX8578/MAX8579 1.5 V

Page 6

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers _______________________________________________________________________________________ 5 EFFICIENCY vs. LOAD CURRENT (CIRCUIT OF FIGURE 2) M A X 8 5 7 6 -7 9 t o c0 1 LOAD CURRENT (A) EF FI C IE N C Y ( % ) 101 10 20 30 40 50 60 70 80 90 100 0 0.1 100 VOUT = 3.3V VOUT = 2.5V VOUT = 1.8VVOUT = 1.5V VIN = 12V EFFICIENCY vs. LOAD CURRENT (CIRCUIT OF FIGURE 3) M A X 8 5 7 6 -7 9 t o c0 2 LOAD CURRENT (A) EF FI C IE N C Y ( % ) 1 10 20 30 40 50 60 70 80 90 100 0 0.1 10 VOUT = 3.3V VOUT = 2.5V VOUT = 1.8V VOUT = 1.5V VIN = 12V LOAD REGULATION (CIRCUIT OF FIGURE 2) M A X 8 5 7 6 -7 9 t o c0 3 LOAD CURRENT (A) O U TP U T V O LT A G E (V ) 105 1.76 1.77 1.78 1.79 1.80 1.81 1.82 1.83 1.84 1.75 0 15 LINE REGULATION (CIRCUIT OF FIGURE 2) M A X 8 5 7 6 -7 9 t o c0 4 INPUT VOLTAGE (V) O U TP U T V O LT A G E (V ) 201510 1.80 1.81 1.82 1.83 1.84 1.85 1.79 5 25 0A LOAD 15A LOAD LINE REGULATION (CIRCUIT OF FIGURE 3) M A X 8 5 7 6 -7 9 t o c0 5 INPUT VOLTAGE (V) O U TP U T V O LT A G E (V ) 201510 1.72 1.74 1.78 1.80 1.82 1.84 1.86 1.70 5 25 NO LOAD 5A LOAD 1.76 SWITCHING FREQUENCY vs. INPUT VOLTAGE (CIRCUIT OF FIGURE 3) M A X 8 5 7 6 -7 9 t o c0 6 INPUT VOLTAGE (V) S W IT C H IN G F R EQ U EN C Y ( kH z) 201510 250 300 350 400 500 550 600 200 5 25 450 LOAD TRANSIENT (CIRCUIT OF FIGURE 2) MAX8576-79 toc07 40μs/div IOUT VOUT 50mV/div AC-COUPLED 6A 12A LOAD TRANSIENT (CIRCUIT OF FIGURE 3) MAX8576-79 toc08 40μs/div IOUT VOUT 50mV/div AC-COUPLED 5A 2.5A Typical Operating Characteristics (TA = +25°C, unless otherwise noted.)

Page 7

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers 6 _______________________________________________________________________________________ Typical Operating Characteristics (continued) ( TA = +25°C, unless otherwise noted.) POWER-DOWN (CIRCUIT OF FIGURE 2, MAX8576) MAX8576-79 toc13 4ms/div VIN VOUT ILX 5V/div 0 1V/div 0 0 10A/div STARTUP AND SHUTDOWN (CIRCUIT OF FIGURE 3) MAX8576-79 toc14 400μs/div VEN VDL VOUT ILX 2V/div 0 10V/div 1V/div 0 0 5A/div 0 POWER-DOWN VCC (CIRCUIT OF FIGURE 3) MAX8576-79 toc11 400μs/div VIN VCC VOUT ILX 10V/div 0 5V/div 1V/div 5A/div 0 POWER-UP (CIRCUIT OF FIGURE 2) MAX8576-79 toc12 1ms/div VIN VOUT ILX 10V/div 0 1V/div 0 0 10A/div POWER-UP VIN (CIRCUIT OF FIGURE 3) MAX8576-79 toc09 400μs/div VIN VCC VOUT ILX 10V/div 0 5V/div 1V/div 5A/div 0 POWER-UP VCC (CIRCUIT OF FIGURE 3) MAX8576-79 toc10 400μs/div VIN VCC VOUT ILX 10V/div 0 5V/div 1V/div 5A/div 0

Page 8

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers _______________________________________________________________________________________ 7 Typical Operating Characteristics (continued) ( TA = +25°C, unless otherwise noted.) OUTPUT OVERVOLTAGE PROTECTION (CIRCUIT OF FIGURE 2) MAX8576-79 toc19 200μs/div VDH VOUT VDL VFB 20V/div 5V/div 0 0.5V/div 0 1V/div 0 0 NONMONOTONIC OUTPUT-VOLTAGE RISE (CIRCUIT OF FIGURE 2, MAX8577) MAX8576-79 toc17 1ms/div VIN VLX VOUT VDL 10V/div 1.5V 0.5V/div 20V/div 5V/div 0 SHORT CIRCUIT AND RECOVERY (CIRCUIT OF FIGURE 2) MAX8576-79 toc18 10ms/div VIN IOUT IIN VOUT 10V/div 2A/div 10A/div 2V/div 0 STARTUP AND SHUTDOWN (CIRCUIT OF FIGURE 2) MAX8576-79 toc15 4ms/div VGS(Q3) VSS VOUT ILX 10V/div 0 0 0.5V/div 2V/div 0 0 10A/div MONOTONIC OUTPUT-VOLTAGE RISE (CIRCUIT OF FIGURE 2, MAX8576) MAX8576-79 toc16 1ms/div VIN VLX VOUT VDL 10V/div 1.5V 0.5V/div 20V/div 5V/div 0

Page 9

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers 8 _______________________________________________________________________________________ PIN MAX8576/ MAX8577 MAX8578/ MAX8579 NAME FUNCTION 1 1 FB Feedback Input. Regulates at VFB = 0.59V. Connect FB to a resistor-divider to set the output voltage. See the Setting the Output Voltage section. 2 2 S S S oft- S tar t. U se an exter nal cap aci tor ( C SS) to ad j ust the soft- star t ti m e. An i nter nal 80kΩ r esi stor g i ves ap p r oxi m atel y 4m s soft- star t ti m e for a 0.01µF exter nal cap aci tor . An i nter nal 250nA cur r ent si nk i n hi ccup m od e g i ves ap p r oxi m atel y 10% d uty cycl e d ur i ng faul t cond i ti ons. 3 — VL Internal 5V Linear-Regulator Output. Bypass with a 4.7µF or larger ceramic capacitor. Must be connected to IN for operation from a 3.3V to 5.5V input. — 3 VCC Supply Input (3V to 5.5V). Bypass with a 4.7µF or larger ceramic capacitor to GND. 4 4 GND Ground 5 5 DL Low-Side Gate-Drive Output. Drives the synchronous-rectifier MOSFET. 6 6 BST Boost-Capacitor Connection for High-Side Gate-Drive Output. Connect a 0.1µF ceramic capacitor from BST to LX and a Schottky or switching diode and a 4.7Ω series resistor from BST to VL (MAX8576/MAX8577) or VCC (MAX8578/MAX8579). See Figure 4. 7 7 LX External Inductor Connection. Connect LX to the junctions of the MOSFETs and inductor. 8 8 DH High-Side Gate-Drive Output. Drives the high-side MOSFET. 9 — IN Supply Voltage Input of the Internal Linear Regulator (3V to 28V). Connect to VL for operation from 3V to 5.5V input. Connect a 0.47µF or larger ceramic capacitor from IN to GND. — 9 EN Enable Input. A logic low on EN shuts down the converter and discharges the soft-start capacitor. Drive high or connect to VCC for normal operation. 10 10 OCSET Overcurrent-Limit Set. Programs the high-side peak current-limit threshold by setting the maximum-allowed VDS voltage drop across the high-side MOSFET. Connect a resistor from IN to OCSET; an internal 50µA current sink sets the maximum voltage drop relative to VIN. See the Setting the Current Limit section. Pin Description

Page 10

M A X 8 5 7 6 – M A X 8 5 7 9 3V to 28V Input, Low-Cost, Hysteretic Synchronous Step-Down Controllers _______________________________________________________________________________________ 9 Figure 1. Functional Diagram 0.3 0.75V 0.05V OVP LX FAULT SS VCC VL REFOK VLOK GND IN FB OCSET MAX8578/ MAX8579 EN SS RAMP LOGIC DRIVERS GND VL REG POK REF DHI DLI MAX8576–MAX8579 BST DH LX DL MAX8578 MAX8579 MAX8576 MAX8577

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