MAX6615AEE+ Maxim Integrated Products, MAX6615AEE+ Datasheet - Page 7

IC TEMP MONITOR DL-CH 16-QSOP

MAX6615AEE+

Manufacturer Part Number
MAX6615AEE+
Description
IC TEMP MONITOR DL-CH 16-QSOP
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX6615AEE+

Function
Fan Control, Temp Monitor
Topology
ADC, PWM Generator, Tach Counter
Sensor Type
External & Internal
Sensing Temperature
-40°C ~ 125°C, External Sensor
Output Type
SMBus™
Output Alarm
Yes
Output Fan
Yes
Voltage - Supply
3 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
16-QSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Figure 2. SMBus Write Timing Diagram
Figure 3. SMBus Read Timing Diagram
(POR) state. See Tables 3–7 for all other register functions
and the Register Descriptions section.
The averaging ADC integrates over a 120ms period
(each channel, typically), with excellent noise rejection.
For internal temperature measurements, the ADC and
associated circuitry measure the forward voltage of the
internal sensing diode at low- and high-current levels
and compute the temperature based on this voltage.
For thermistor measurements, the reference voltage
and the thermistor voltage are measured and offset is
applied to yield a value that correlates well to thermistor
temperature within a wide temperature range. Both
channels are automatically converted once the conver-
sion process has started. If one of the two channels is
not used, the circuit still performs both measurements,
and the data from the unused channel may be ignored.
If either of the measured temperature values is below
SMBCLK
SMBDATA
Fan-Speed Controllers with Thermistor Inputs
SMBCLK
SMBDATA
A = START CONDITION
B = MSB OF ADDRESS CLOCKED INTO SLAVE
C = LSB OF ADDRESS CLOCKED INTO SLAVE
D = R/W BIT CLOCKED INTO SLAVE
E = SLAVE PULLS SMBDATA LINE LOW
A = START CONDITION
B = MSB OF ADDRESS CLOCKED INTO SLAVE
C = LSB OF ADDRESS CLOCKED INTO SLAVE
D = R/W BIT CLOCKED INTO SLAVE
t
SU:STA
t
SU:STA
A
t
HD:STA
A
t
_______________________________________________________________________________________
Dual-Channel Temperature Monitors and
HD:STA
Temperature Measurements
t
LOW
t
LOW
B
t
HIGH
B
t
HIGH
t
SU:DAT
t
SU:DAT
C
C
F = ACKNOWLEDGE BIT CLOCKED INTO MASTER
G = MSB OF DATA CLOCKED INTO MASTER
H = LSB OF DATA CLOCKED INTO MASTER
I = MASTER PULLS DATA LINE LOW
E = SLAVE PULLS SMBDATA LINE LOW
F = ACKNOWLEDGE BIT CLOCKED INTO MASTER
G = MSB OF DATA CLOCKED INTO SLAVE
H = LSB OF DATA CLOCKED INTO SLAVE
D
D
E
E
F
F
0°, the value in the corresponding temperature register
is clipped to zero when a negative offset is pro-
grammed into the thermistor offset register (17h).
Local (internal) temperature data is expressed directly
in degrees Celsius. Two registers contain the tempera-
ture data for the local channel. The high-byte register
has an MSB of 128°C and an LSB of 1°C. The low- byte
register contains 3 bits, with an MSB of 0.5°C and an
LSB of 0.125°C. The data format is shown in Table 1.
Thermistors allow measurements of external tempera-
tures. Connect a thermistor in series with a resistor,
R
TH_ input and ground, and R
between the reference output, REF, and the TH_ input,
as shown in the Typical Application Circuit .
The voltage across R
resulting in a value that is directly related to tempera-
EXT
t
HD:DAT
. The thermistor should be connected between the
G
G
I = MASTER PULLS DATA LINE LOW
J = ACKNOWLEDGE CLOCKED INTO SLAVE
K = ACKNOWLEDGE CLOCK PULSE
L = STOP CONDITION
M = NEW START CONDITION
H
H
J = ACKNOWLEDGE CLOCKED INTO SLAVE
K = ACKNOWLEDGE CLOCK PULSE
L = STOP CONDITION
M = NEW START CONDITION
EXT
I
is measured by the ADC,
I
J K
EXT
J
K
should be connected
t
SU:STO
t
SU:STO
L
t
BUF
L
t
M
BUF
M
7

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