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MAX6659 View Datasheet(PDF) - Maxim Integrated

Part Name
Description
Manufacturer
MAX6659 Datasheet PDF : 16 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
±1°C, SMBus-Compatible Remote/Local Temperature
Sensors with Overtemperature Alarms
Functional Diagram
VCC
DXP
DXN
ALERT
OVERT1
(OVERT2)
MUX
REMOTE
LOCAL
DIODE
FAULT
S
Q
R
S
Q
R
S
Q
R
MAX6659 ONLY
ADC
REGISTER BANK
COMMAND BYTE
REMOTE TEMPERATURE
LOCAL TEMPERATURE
ALERT THRESHOLD
ALERT RESPONSE
ADDRESS
OVERT1 THRESHOLD
(OVERT2 THRESHOLD)
MAX6657
MAX6658
MAX6659
2
CONTROL
LOGIC
(STBY)
SMBus
8
READ
8
WRITE
7
ADDRESS
DECODER
SMBDATA
SMBCLK
(ADD)
( ) ARE FOR MAX6659 ONLY
Detailed Description
The MAX6657/MAX6658/MAX6659 are temperature
sensors designed to work in conjunction with a micro-
processor or other intelligence in thermostatic,
process-control, or monitoring applications. Com-
munication with the MAX6657/MAX6658/MAX6659
occurs through the SMBus serial interface and dedicat-
ed alert pins. Two independent overtemperature alarms
(OVERT1 and OVERT2) are asserted if their software
programmed temperature thresholds are exceeded.
OVERT1 and OVERT2 can be connected to fans, a sys-
tem shutdown, or other thermal management circuitry.
The MAX6657/MAX6658/MAX6659 convert tempera-
tures to digital data either at a programmed rate or a
single conversion. Conversions have a 0.125°C resolu-
tion (extended resolution) or 1°C resolution (legacy res-
olution). Extended resolution represents temperature as
10 bits + sign bit and is available for autonomous con-
versions that are 4Hz and slower and single-shot con-
versions. Legacy resolution represents temperature as
7 bits + sign bit and allows for faster autonomous con-
version rates of 8Hz and 16Hz.
ADC and Multiplexer
The averaging ADC integrates over a 60ms period
(each channel, typically, in the 7-bit + sign legacy
mode). Using an averaging ADC attains excellent noise
rejection.
The multiplexer automatically steers bias currents
through the remote and local diodes. The ADC and
associated circuitry measure each diode’s forward volt-
age and compute the temperature based on this volt-
age. If the remote channel is not used, connect DXP to
DXN. Do not leave DXP and DXN unconnected. When a
conversion is initiated, both channels are converted
6 _______________________________________________________________________________________

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