MAX6655EVKIT Maxim Integrated Products, MAX6655EVKIT Datasheet - Page 7

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MAX6655EVKIT

Manufacturer Part Number
MAX6655EVKIT
Description
EVAL KIT FOR MAX6655
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX6655EVKIT

Sensor Type
Temperature
Sensing Range
-55°C ~ 125°C
Interface
I²C, SMBus
Sensitivity
±1°C
Voltage - Supply
4.5 V ~ 5.5 V
Embedded
No
Utilized Ic / Part
MAX6655
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Figure 2. SMBus/I
Figure 3. SMBus/I
From a software perspective, the MAX6655/MAX6656
appear as a set of byte-wide registers that contain tem-
perature data, voltage data, alarm threshold values,
and control bits. Use a standard SMBus 2-wire serial
interface to read temperature data and write control
bits and alarm threshold data.
SMBCLK
SMBDATA
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
Dual Remote/Local Temperature Sensors and
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
t
t
SU:STA
SU:STA
2
2
C Write Timing Diagram
C Read Timing Diagram
A
A
t
t
HD:STA
_______________________________________________________________________________________
HD:STA
t
t
LOW
LOW
SMBus Digital Interface
B
B
t
t
HIGH
HIGH
t
t
SU:DAT
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
F = ACKNOWLEDGE BIT CLOCKED INTO MASTER
G = MSB OF DATA CLOCKED INTO SLAVE
H = LSB OF DATA CLOCKED INTO SLAVE
I = MASTER PULLS DATA LINE LOW
Four-Channel Voltage Monitors
D
D
E
E
F
F
The MAX6655/MAX6656 employ four standard SMBus
protocols: Write Byte, Read Byte, Send Byte, and
Receive Byte (Figures 1, 2, and 3). The two shorter pro-
tocols (Receive and Send) allow quicker transfers, pro-
vided that the correct data register was previously
selected by a Write or Read Byte instruction. Use cau-
tion with the shorter protocols in multimaster systems,
since a second master could overwrite the Command
Byte without informing the first master.
t
t
HD:DAT
HD:DAT
G
G
H
H
J = ACKNOWLEDGE CLOCKED INTO SLAVE
K = ACKNOWLEDGE CLOCK PULSE
L = STOP CONDITION
M = NEW START CONDITION
J = ACKNOWLEDGE CLOCKED INTO SLAVE
K = ACKNOWLEDGE CLOCK PULSE
L = STOP CONDITION
M = NEW START CONDITION
I
I
J
J
K
K
t
t
SU:STO
SU:STO
L
L
t
t
BUF
BUF
M
M
7

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