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 APW7045
Advanced PWM and Linear Power Controller
Features
*
2 Regulated Voltage are provided
General Description
The APW7045 integrates PWM controller and linear controller, as well as the monitoring and protection functions into a single package, which provides two controlled power outputs with over-voltage and overcurrent protections. The PWM controller regulates the DDR termination voltage (1.25V) or GPU Voltage (2.05V) with a synchronous-rectified buck converter. The linear controller regulates the Memory Voltage (2.5V). The pre cision reference and voltage-mode PWM control provide 1% static regulation. The linear controller drives an external N-channel MOSFET to provide adjustable voltage. The APW7045 monitors two output voltages, and a single Power Good signal is issued when the PWM voltage is within 10% of the DAC setting and the lineat regulator output level is above under-voltage threshold. Additional built-in over-voltage protection for the PWM output uses the lower MOSFET to prevent output voltages above 115% of the DAC setting. The PWM over-current function monitors the output current by using the voltage drop across the upper MOSFET's RDS(ON), eliminating the need for a current sensing resistor.
-Switching Power for Fixed Voltage (1.0V) -Linear Regulator for VMEM(2.5V) * *
Simple Single-Loop Control Design
-Voltage-Mode PWM Control
Excellent Output Voltage Regulation
-PWM Output: 1% -Linear Output: 3% *
Fast Transient Response
-High-Bandwidth Error Amplifier -Full 0% to 100% Duty Ratio * * *
Power-Good Output Voltage Monitor Over-Voltage and Over-Current Fault Monitors Small Converter Size
-200KHz Free-Running Oscillator ;
Progammable from 50KHz to 800KHz
-Reduce External Component Count
Pin Description Applications
* * * *
Motherboard Power Regulation for Computers Low-Voltage Distributed Power Supplies VGA Card Power Regulation DDR SDRAM Power Regulation
VC C DR IVE PG O O D SD FB2 SS FAULT GND 1 2 3 4 5 6 7 8 16 15 14 13 12 11 10 9 UG ATE PH AS E LG ATE PG ND O C SE T VS EN 1 FB1 CO M P
ANPEC reserves the right to make changes to improve reliability or manufacturability without notice, and advise customers to obtain the latest version of relevant information to verify before placing orders. Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003 1 www.anpec.com.tw
APW7045
Ordering and Marking Information
A P W 7 04 5
H a n d lin g C o d e Tem p. R ange P ackage C ode V o lta g e C o d e V o lta g e C o d e 1 0 : 1 .0 V P ackage C ode K : S O P - 1 6 (1 5 0 m il) Tem p. R ange C : 0 to 7 0 C H a n d lin g C o d e T U : Tube
N : S S O P -1 6
T R : T ape & Reel
A P W 7 0 4 5 K /N :
A P W 7045 XXXXX
X X X X X - D a te C o d e
Block Diagram
FB2 V SEN1 OC SET VCC
X1.10
SD
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
+
X 0.75
DRIVE
+
+ X0.90
200 A
Power-on Reset (POR)
+ 1.5V INHIBIT SO FT ST ART & FA ULT LOGIC OS CILLATO R
+ -
PGO OD
X 1.15
+ -
VCC OV OC1
UG ATE + INHIBIT
PHASE
+
ERROR AM P1
+ PW M COM P 1 PW M 1
GA TE CONTROL V CC SY NCH DRIV E
V CC DAC
LGATE PGN D GN D
+ -
FAULT
SS
FB1
CO MP
2
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APW7045
Absolute Maximum Ratings
Symbol VCC VI , VO TA TJ TSTG TS Supply Voltage Input , Output or I/O Voltage Operating Ambient Temperature Range Junction Temperature Range Storage Temperature Range Soldering Temperature Parameter Rating 15 GND -0.3 V to VCC +0.3 0 to 70 0 to 125 -65 to +150 300 ,10 seconds Unit V V C C C C
Thermal Characteristics
Symbol JA Parameter Thermal Resistance in Free Air SOIC SOIC (with 3in2 of Copper) Value 75 65 Unit C/W
Electrical Characteristics
(Recommended operating conditions , Unless otherwise noted) Refer to Block and Simplified Power System Diagrams , and Typical Application Schematic.
APW7045 Min. Typ. Max. 4
Symbol VCC Supply Current ICC
Parameter
Test Conditions UGATE, LGATE, DRIVE open Vocset=4.5V Vocset=4.5V
Unit
Nominal Supply Current
mA
Power-on Reset VCC VOCSET VSD Oscillator FOSC VOSC Free Running Frequency Ramp Amplitude Fault= Open Fault= Open 185 200 1.9 215 kHz VP-P Rising VCC Threshold Falling VCC Threshold Rising VOCSET Threshold Shutdown Input High Voltage Shutdown Input Low Voltage 2.0 0.8 10.7 8.2 1.26 V V
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Electrical Characteristics (Cont.)
(Recommended operating conditions, Unless otherwise noted) Refer to Block and Simplified Power System Diagram, and Typical Application Schematic.
APW7045 Min. Typ. Max. 1.00 -1.0 1.5 3 40 88 15 6 1 2.1 1 1.6 115 2 200 28 109 93 2 0.2 +1.0 Unit
Symbol
Parameter
Test Conditions
DAC Reference Voltage VDAC Reference Voltage APW7045-10 Reference Voltage accuracy Linear Regulator Reference Voltage Regulation Output Drive Current VDRIVE=4V Synchronous PWM Controller Error Amplifier DC Gain GBWP Gain-Bandwidth Product SR Slew Rate COMP=10pF PWM Controller Gate Driver IUGATE UGATE Source VCC=12V, VUGATE =6V RUGATE UGATE Sink VUGATE1 =1V ILGATE LGATE Source VCC=12V, VLGATE =1V RLGATE LGATE Sink VLGATE= 1V Protection VSEN1 Over-Voltage VSEN1 Rising VSEN1 Over-Voltage Hysteresis IOCSET OCSET Current Source VOCSET= 4.5V ISS Soft Start Current Power Good VSEN1 Upper Threshold VSEN1 Rising VSEN1 Under Voltage VSEN1 Rising VSEN1 Hysteresis Upper /Lower Threshold VPGOOD PGOOD Voltage Low IPGOOD= -4mA
V % V % mA dB MHz V/s A
20
3.5 3 120 230
A % % A A % % % V
170
0.8
Functional Pin Description
VCC (Pin 1) Provide a 12V bias supply for the IC to this pin. This pin also provides the gate bias charge for all the MOSFETs controlled by the IC. The voltage at this pin is monitored for Power-On Reset (POR) purposes. DRIVE (Pin 2) Connect this pin to the gate of an external MOSFET. This pin provides the drive for the VMEM regulator's pass transistor.
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Functional Pin Description (Cont.)
PGOOD (Pin 3) PGOOD is an open collector output used to indicate the status of the output voltages. This pin is pulled low when the synchronous regulator output is not within 10% of the DAC reference voltage or linear regulator output is below under-voltage threshold. SD (Pin 4) The pin shuts down all the outputs. A TLL-compatible , logic level high signal applied at this pin immediately discharges the soft-start capacitor , disabling all the outputs . Left open , this pin is pulled low by an internal pull-down resistor , enabling operation. FB2 (Pin 5) Connect this pin to a resistor divider to set the linear regulator output voltage (VMEM). The output voltage set by the resistor divider is determined using the following formula : VMEM= 1.5V x (1 + ROUT ) RGND (RT to GND, RT 10k is more accurate) Conversely, connecting a resistor from this pin to +12V reduces the switching frequency according to the following equation : Fs =200 + 47920 (kHz) RT
(RT to 12V, RT 250 k is more accurate) Nominally, the voltage at this pin is 1.26V. In the event of an over-voltage or over-current condition, this pin is internally pulled to VCC. GND (Pin 8) Signal ground for the IC. All voltage levels are measured with respect to this pin. COMP and FB1 (Pin 9, and 10) COMP and FB1 are the available external pins of the PWM converter error amplifier. The FB1 pin is the inverting input of the error amplifier. Similarly , the COMP pin is the error amplifier output. These pins are used to compensate the voltage-mode control feedback loop of the synchronous PWM converter. VSEN1 (Pin 11) This pin is connected to the PWM converter's output voltage. The PGOOD and OVP comparator circuits use this signal to report output voltage status and for over- voltage protection. OCSET (Pin 12) Connect a resistor (ROCSET ) from this pin to the drain of PWM converter's upper MOSFET. ROCSET, an internal 200A current source (I OCSET ), and the MOSFET's on-resistance(RDS(ON)) set the converter's over-current (OC) trip point according to the following equation: IPEAK = IOCSET x ROCSET RDS(ON)
Where ROUT is the resistor connected from VMEM to FB2, and RGND is the resistor connected from FB2 to ground. The voltage at this pin is also monitored for Under-Voltage protection. SS (Pin 6) Connect a capacitor from this pin to ground. This capacitor , along with an internal 28uA current source , sets the soft-start interval of the converter. FAULT (Pin 7) This pin provides oscillator switching frequency adjustment, referring to the typical performence. By placing a resistor (RT, k) from this pin to GND, the nominal 200kHz switching frequency is increased according to the following equation : Fs =200 + 4000 x (1.16 - 1.4 ) (kHz) RT RT-1
5
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Functional Pin Description (Cont.)
OCSET (Pin 12) An over-current trip cycles the soft-start function. The voltage at this pin is monitored for Power-On Reset (POR) purpose and pulling this pin low with an open drain device will shutdown the IC. PGND (Pin 13) This is the power ground connection. Tie the synchronous PWM converter's lower MOSFET source to this pin. LGATE (Pin 14) Connect LGATE to the PWM converter's lower MOSFET gate. This pin provides the gate drive for the lower MOSFET. Connect UGATE pin to the PWM converter's upper MOSFET gate. This pin provides the gate drive for the upper MOSFET. PHASE (Pin 15) Connect the PHASE pin to the PWM converter's upper MOSFET source. This pin is used to monitor the voltage drop across the upper MOSFET for over-current protection. UGATE (Pin 16)
Simplified Power System Diagram
+ 3.3 V IN 5.0V IN
Q3 Q1 V MEM Linea r C ontroller PW M C ontroller Q2 V TT
A P W 7045
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Typical Performance Curve
RT(K) vs. Switching frequency
10000
1000
RT(K)
100
RT Pull up to 12V
10
RT Pull down to GND
1 0 100 200 300 400 500 600 700 800 900
Switching frequency
Typical Application Circuit
R8 12V 10R C9 1uF C3 L1 5.0V 220pF R1 1KR 3.3V C10 330uF
1 2 VCC DRIVE PGOOD SD FB2 SS FAULT GND UGATE PHASE LGATE PGND OCSET VSEN1 FB1 COMP 16 15 14 13 12 11 10 9
C2 330uF
1uH C1 10uF
R2 5.1R R3 5.1R
Q6A APM7312 L2 7.8uH Q6B APM7312 R4 100RF C4 330uF VTT (1.25V) C5 330uF
Q7 APM3055L R9 VMEM (2.5V) 67RF C11 330uF
3 4 5 6
R10 100RF
7
C8 0.1uF
8
R11 APW7045 R12 NC OR R6 C6 3KR R5 400RF
C7
10pF
R7 150KR
2700pF
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Package Informaion
SOP-16 (150mil)
D N
H
E
GAUGE PLANE
123 A e B A1 L
1
Dim A A1 B D E e H L N 1
Millimeters Min. 0.313 0.024 0.094 typ. 2.279 0.886 0.295typ. 0.165 1.441 0.094 0.295 See variations 0 8 2.327 0.927 0.386 0.150 Max. 0.407 0.059 Min. 0.053 0.004
Inches Max. 0.069 0.010 0.016typ. 0.394 0.157 0.050typ. 0.028 0.244 0.016 0.050 See variations 0 8
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Package Informaion
SSOP-16
D N
H
E
GAUGE PLANE
123 A e B A1 L
1
Millimeters Dim A A1 B D E e H L N 1 Min. 1.350 0.10 0.20 3.75 5.75 0.4 0 Max. 1.75 0.25 0.30 4.05 6.25 1.27 8
Variations- D Variations SSOP-16 Min. 4.75 Max. 5.05 Dim A A1 B D E e H L N 1
Inches Min. 0.053 0.004 0.008 0.147 0.226 0.016 0 0.069 0.010 0.012 0.160 0.246 0.050 8
Variations- D SSOP-16 0.187 0.199
Max. Variations Min. Max.
See variations 0.625 TYP.
See variations 0.025 TYP.
See variations
See variations
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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APW7045
Physical Specifications
Terminal Material Lead Solderability Solder-Plated Copper (Solder Material : 90/10 or 63/37 SnPb) Meets EIA Specification RSI86-91, ANSI/J-STD-002 Category 3.
Reflow Condition
(IR/Convection or VPR Reflow)
Reference JEDEC Standard J-STD-020A APRIL 1999
temperature Peak temperature
183C Pre-heat temperature
Time
Classification Reflow Profiles
Convection or IR/ Convection Average ramp-up rate(183C to Peak) 3C/second max. 120 seconds max Preheat temperature 125 25C) 60 - 150 seconds Temperature maintained above 183C Time within 5C of actual peak temperature 10 -20 seconds Peak temperature range 220 +5/-0C or 235 +5/-0C Ramp-down rate 6 C /second max. 6 minutes max. Time 25C to peak temperature VPR 10 C /second max.
60 seconds 215-219C or 235 +5/-0C 10 C /second max.
Package Reflow Conditions
pkg. thickness 2.5mm and all bgas Convection 220 +5/-0 C VPR 215-219 C IR/Convection 220 +5/-0 C pkg. thickness < 2.5mm and pkg. volume 350 mm pkg. thickness < 2.5mm and pkg. volume < 350mm Convection 235 +5/-0 C VPR 235 +5/-0 C IR/Convection 235 +5/-0 C
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Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
10
APW7045
Reliability test program
Test item SOLDERABILITY HOLT PCT TST ESD Latch-Up Method MIL-STD-883D-2003 MIL-STD-883D-1005.7 JESD-22-B, A102 MIL-STD-883D-1011.9 MIL-STD-883D-3015.7 JESD 78 Description 245C , 5 SEC 1000 Hrs Bias @ 125 C 168 Hrs, 100 % RH , 121C -65C ~ 150C, 200 Cycles VHBM > 2KV, VMM > 200V 10ms , Itr > 100mA
Carrier Tape & Reel Dimensions
t P P1 D Po E
F W
Bo
Ao
Ko D1 T2
J C A B
T1
Application SOP- 16 (150mil) Application
A 330 3 F 7.5 0.1 A 6.95
B 100 + 2 D
C 13 + 0.5 D1
J 2 0.5 Po
T1 T2 16.4 + 0.3 2.5 0.5 - 0.2 P1 2.0 0.1 E 1.750.1 C1 130.3 Ao
W 16 0.3 Bo
P
E
8.0 0.1 1.75 0.1 Ko t
1.5 + 0.1 1.5 + 0.25 4.0 0.1 B 5.4 T2 2.2 D0 D1
6.5 0.1 10.3 0. 1 2.1 0.1 0.3 0.05 F 5.50.05 C2 210.8 P0 4.00.1 T1 13.50.5 P1 8.00.1 T2 2.00.2 P2 2.00.05 C 801
1.550.05 1.550.1 W 12.00.3 W1 9.5
11
SSOP-16
T 0.30.05
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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(mm)
APW7045
Cover Tape Dimensions
Application SOP- 16 SSOP-16 Carrier Width 24 16.8 Cover Tape Width 21.3 12.3 Devices Per Reel 1000 2500
Customer Service
Anpec Electronics Corp. Head Office : 5F, No. 2 Li-Hsin Road, SBIP, Hsin-Chu, Taiwan, R.O.C. Tel : 886-3-5642000 Fax : 886-3-5642050 Taipei Branch : 7F, No. 137, Lane 235, Pac Chiao Rd., Hsin Tien City, Taipei Hsien, Taiwan, R. O. C. Tel : 886-2-89191368 Fax : 886-2-89191369
Copyright ANPEC Electronics Corp. Rev.A.5 - Jan., 2003
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