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PDF MAX1907A Data sheet ( Hoja de datos )

Número de pieza MAX1907A
Descripción (MAX1907A / MAX1981A) Quick-PWM Master Controllers
Fabricantes Maxim Integrated Products 
Logotipo Maxim Integrated Products Logotipo



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19-2678; Rev 0; 9/02
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Quick-PWM Master Controllers for Voltage-
Positioned CPU Core Power Supplies (IMVP-IV)
General Description
The MAX1907A/MAX1981A are single-phase, Quick-
PWM™ master controllers for IMVP-IV™ CPU core sup-
plies. Multi-phase operation is achieved using a
Quick-PWM slave controller (MAX1980). Multiphase
operation reduces input ripple current requirements
and output voltage ripple while easing component
selection and layout difficulties. The MAX1907A/
MAX1981A include active voltage positioning with
adjustable gain and offset, reducing power dissipation
and bulk output capacitance requirements.
The MAX1907A/MAX1981A are intended for two differ-
ent notebook CPU core applications: either bucking
down the battery directly, or 5V system supply to create
the core voltage. The single-stage conversion method
allows these devices to directly step down high-voltage
batteries for the highest possible efficiency.
Alternatively, two-stage conversion (stepping down the
5V system supply instead of the battery) at higher
switching frequency provides the minimum possible
physical size.
The MAX1907A/MAX1981A meet the IMVP-IV specifica-
tions and include logic to interface with the CPU power
good signals from the VCCP and VCCMCH rails within the
system. The regulator features power-up sequencing,
automatically ramping up to the Intel-specified boot volt-
age. The MAX1907A/MAX1981A feature independent
four-level logic inputs for setting the boot voltage
(B0–B2) and the suspend voltage (S0–S2).
The MAX1907A/MAX1981A include output undervoltage
protection, thermal protection, and system power-OK
(SYSPOK) input/output. When any of these protection fea-
tures detect a fault, the MAX1907A/MAX1981A immedi-
ately shut down. Additionally, the MAX1907A includes
overvoltage protection.
The MAX1907A/MAX1981A are available in a thin 40-pin
QFN package.
Applications
IMVP-IV™ Notebook Computers
Single-Phase CPU Core Supply
Multiphase CPU Core Supply
Voltage-Positioned Step-Down Converters
Servers/Desktop Computers
Typical Operating Circuit appears at end of data sheet.
Quick-PWM is a trademark of Maxim Integrated Products, Inc.
IMVP-IV is a trademark of Intel Corp.
Features
Quick-PWM Master Controllers
Multiphase Conversion with Slave Controller
(MAX1980)
Active Voltage Positioning with Adjustable Gain
and Offset
Adjustable Slew Rate Control
±0.75% VOUT Accuracy Over Line, Load, and
Temperature
6-Bit On-Board DAC (16mV Increments)
0.700V to 1.708V Output Adjust Range
Selectable 200kHz/300kHz/550kHz/1000kHz
Switching Frequency
2V to 28V Battery Input Voltage Range
Drive Large Synchronous Rectifier MOSFETs
Output Overvoltage Protection (MAX1907A Only)
Undervoltage and Thermal Fault Protection
Power Sequencing and Selectable Boot Voltage
Low-Profile 40-Pin Thin QFN, 6mm 6mm
Package
Ordering Information
PART
TEMP RANGE PIN-PACKAGE
MAX1907AETL -40°C to +100°C 40-QFN Thin 6mm x 6mm
MAX1981AETL -40°C to +100°C 40-QFN Thin 6mm x 6mm
Pin Configuration
TOP VIEW
40 39 38 37 36 35 34 33 32 31
B0 1
B1 2
B2 3
S0 4
S1 5
S2 6
SHDN 7
REF 8
ILIM 9
VCC 10
MAX1907A
MAX1981A
30 VDD
29 DL
28 PGND
27 DDO
26 D0
25 D1
24 D2
23 D3
22 D4
21 D5
11 12 13 14 15 16 17 18 19 20
40-Pin, 6mm x 6mm Thin QFN
________________________________________________________________ Maxim Integrated Products 1
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.

1 page




MAX1907A pdf
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Quick-PWM Master Controllers for Voltage-
Positioned CPU Core Power Supplies (IMVP-IV)
ELECTRICAL CHARACTERISTICS (continued)
(Circuit of Figure 1, V+ = 15V, VCC = VDD = VSHDN = VTON = VDPSLP = VBI = VOAIN- = 5V, VFB = VCSP = VCSN = VOAIN+ = VNEG = VPOS
= 1.26V, ILIM = VCC, SUS = D5 = D1= D0= S0 = S1 = S2 = B0 = GND, VD4 = VD3 = VD2 = 1V, VB2 = 2V. TA = 0°C to +85°C, unless
otherwise specified.)
PARAMETER
DL Gate-Driver Source Current
SYMBOL
Dead Time
VOLTAGE-POSITIONING AMPLIFIER
Input Offset Voltage
Input Bias Current
VOS
IBIAS
CONDITIONS
DL forced to 2.5V
DL rising
DH rising
VCM = 0
OAIN+, OAIN-
MIN TYP MAX UNITS
2A
35
ns
26
-1 +1
<0.1 200
mV
nA
Op Amp Disable Threshold
OAIN-
3 VCC - 1 VCC - 0.4 V
Common-Mode Input
Voltage Range
Common-Mode Rejection Ratio
Power-Supply Rejection Ratio
Large-Signal Voltage Gain
Output Voltage Swing
Input Capacitance
Gain-Bandwidth Product
Slew Rate
Capacitive-Load Stability
LOGIC AND I/O
Logic Input High Voltage
Logic Input Low Voltage
Logic Input Current
SHDN No Fault Threshold
DAC Input High Voltage
DAC Input Low Voltage
DAC Input Current
Driver-Disable Output
High Voltage
Driver-Disable Output
Low Voltage
Four-Level Input Logic Levels
Four-Level Input Current
VCM
CMRR
PSRR
AOA
Guaranteed by CMRR test
VOAIN+ = VOAIN- = 0 to 2.5V
VCC = 4.5V to 5.5V
RL = 1kΩ to VCC/2
|VOAIN+ - VOAIN-| 10mV,
RL = 1kΩ to VCC/2
VCC - VOH
VOL
No sustained oscillations
0
70 115
75 100
80 112
100
70
11
3
0.3
400
VIH SUS, DPSLP, SHDN, SYSPOK
VIL SUS, DPSLP, SHDN, SYSPOK
SUS, DPSLP, SHDN, SYSPOK
To enable No-Fault Mode
VVID(HIGH) D0–D5
VVID(LOW) D0–D5
D0–D5
DDO, ILOAD = 1mA
2.4
-1
12
0.7
-1
2.4
DDO, ILOAD = 1mA
High
TON, S0–S2, B0–B2
Open
REF
Low
TON, S0–S2, B0–B2 forced to GND or VCC
VCC - 0.4
3.15
1.65
-3
2.5
300
200
0.8
+1
15
0.3
+1
0.3
3.85
2.35
0.5
+3
V
dB
dB
mV
pF
MHz
V/µs
pF
V
V
µA
V
V
V
µA
V
V
V
µA
_______________________________________________________________________________________ 5

5 Page





MAX1907A arduino
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Quick-PWM Master Controllers for Voltage-
Positioned CPU Core Power Supplies (IMVP-IV)
Typical Operating Characteristics (continued)
(Circuit of Figure 1, V+ = 12V, VCC = VDD = 5V, B0–B2 set to 1.276V, S0–S2 set to 0.748V.)
VPS AMPLIFIER OFFSET VOLTAGE
vs. COMMON-MODE VOLTAGE
180
160
140
120
100
80
60
40 VPS AMPLIFIER
20 DISABLED
0
012345
COMMON-MODE VOLTAGE (V)
0
0
0
0
POWER-UP SEQUENCE
(HIGHEST FREQUENCY)
MAX1907A/81A toc20
VBOOT
A
VID
B
C
D
100μs/div
A. VSHDN = 0 to 5V, 5V/div
B. VOUT = 0 to 1.436V, 500mV/div
C. DDO, 5V/div
D. CLKEN, 5V/div
0
0
0
0
POWER-UP SEQUENCE
(LOWEST FREQUENCY)
MAX1907A/81A toc21
VBOOT
A
VID
B
C
D
100μs/div
A. VSHDN = 0 to 5V, 5V/div
B. VOUT = 0 to 0.844V, 500mV/div
C. DDO, 5V/div
D. CLKEN, 5V/div
NO LOAD
SOFT-START
MAX1907A/81A toc22
0 VBOOT
A
0
VID B
0
0
0
C
0
D
00
100μs/div
A. VSHDN = 0 to 5V, 5V/div
B. VOUT = 0 to 0.844V, 500mV/div
C. ILM, 10A/div
D. ILS, 10A/div
80mΩ LOAD
IMPVOK DELAY
MAX1907A/81A toc23
VBOOT
A
0
1.436V
B
C
D
1ms/div
A. VSHDN = 0 to 5V, 5V/div
B. VOUT = 0 to 0.844V, 500mV/div
C. IMPVOK 5V/div
D. CLKEN, 5V/div
0
0
0
0
SHUTDOWN SEQUENCE
MAX1907A/81A toc24
A
100μs/div
A. VSHDN = 0 to 5V, 5V/div
B. VOUT = 1.436V to 0, 1V/div
C. IMPVOK 5V/div
D. CLKEN, 5V/div
E. DDO, 5V/div
B
C
D
E
______________________________________________________________________________________ 11

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