MAX6651EEE Maxim Integrated Products, MAX6651EEE Datasheet - Page 5

IC REG/MONITOR FAN-SPEED 16-QSOP

MAX6651EEE

Manufacturer Part Number
MAX6651EEE
Description
IC REG/MONITOR FAN-SPEED 16-QSOP
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX6651EEE

Applications
Fan Controller, Brushless (BLDC)
Number Of Outputs
1
Voltage - Load
0.3 V ~ 5.2 V
Voltage - Supply
3 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-QSOP
Operating Supply Voltage
3 V to 5.5 V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Current - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
Q1113225

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The MAX6650/MAX6651 use an SMBus/I
interface to regulate and monitor the speed of
5VDC/12VDC brush-less fans with built-in open-collec-
tor/drain tachometers. Regulating fan speed propor-
tionally with temperature saves power, increases fan
life, and reduces acoustic noise. Since fan speed is
proportional to the voltage across the fan, the
MAX6650/MAX6651 control the speed by regulating the
voltage on the low side of the fan with an external MOS-
FET or bipolar transistor.
The MAX6650/MAX6651 each contain two internal con-
trol loops. The first loop controls the voltage across the
fan. The internal digital-to-analog converter (DAC) sets
the reference voltage for an internal amplifier (Figure 1),
which then drives the gate of an external N-channel
MOSFET (or the base of a bipolar transistor) to regulate
the voltage on the low side of the fan. As the reference
voltage provided by the DAC changes, the feedback
amplifier automatically adjusts the feedback voltage,
which changes the voltage across the fan.
MAX6650
PIN
10
1
2
3
4
5
6
7
8
9
PIN
MAX6651
2, 3, 16
7, 12
10
11
13
14
15
1
4
5
6
8
9
_______________________________________________________________________________________
Detailed Description
with SMBus/I
TACH2, TACH3,
GPIO4, GPIO3
Fan-Speed Regulators and Monitors
TACH0
TACH1
NAME
GPIO1
GPIO0
GPIO2
GND
ADD
SDA
OUT
SCL
V
FB
CC
2
C-Compatible
Tachometer Input. Used to close the loop around the tachometer.
Tachometer Inputs. Used to monitor tachometers only.
Ground
2-Wire Serial-Data Input/Output (open drain)
2-Wire Serial Clock Input
Slave Address Select Input (Table 1)
General-Purpose Input/Output (open drain)
General-Purpose Input/Output (open drain). Configurable to act either as an out-
put or as an input (FULL ON or general purpose).
General-Purpose Input/Output (open drain). Configurable to act as a general
input/output line or an active-low ALERT output.
General-Purpose Input/Output (open drain). Configurable to act as a general
input/output line, an internal clock output, or an external clock input.
Output. Drives the external MOSFET or bipolar transistor.
+3.0V to +5.5V Power Supply
Feedback Input. Closes the loop around the external MOSFET or bipolar tran-
sistor.
2
C-Compatible Interface
The second control loop consists of the internal digital
logic that controls the fan’s speed. The MAX6650/
MAX6651 control fan speed by forcing the tachometer
frequency to equal a reference frequency set by the
Fan-Speed Register, the prescaler, and the internal
oscillator (see the Fan-Speed Register section). When
the tachometer frequency is too high, the value of the
DAC’s input register is increased by the regulator.
Once the DAC voltage increases, the analog control
loop forces the feedback voltage to rise, which reduces
the voltage across the fan. Since fan speed is propor-
tional to the voltage across the fan, the fan slows down.
From a software perspective, the MAX6650/MAX6651
appear as a set of byte-wide registers that contain
speed control, tachometer count, alarm conditions, or
configuration bits. These devices use a standard
SMBus/I
the internal registers.
2
C-compatible 2-wire serial interface to access
FUNCTION
2-Wire SMBus/I
Pin Description
Digital Interface
2
C-Compatible
5

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