Operating Temperature Range .........................-55°C to +125°C
Junction Temperature ......................................................+150°C
Storage Temperature Range .............................-65°C to +165°C
Lead Temperature (soldering, 10sec) .............................+300°C
Soldering Temperature (reflow) .......................................+260°C
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
(V
CC
= +3.3V,
T
A
= 0°C to +85°C,
unless otherwise noted.) (Note 1)
PARAMETER
ADC AND POWER SUPPLY
Temperature Resolution (Note 2)
Initial Temperature Error,
Local Diode (Note 3)
Temperature Error, Remote Diode
(Notes 3 and 4)
Temperature Error, Local Diode
(Notes 2 and 3)
Supply-Voltage Range
Undervoltage Lockout Threshold
Undervoltage Lockout Hysteresis
Power-On Reset Threshold
POR Threshold Hysteresis
Logic inputs
forced to V
CC
or GND
SMBus static
Hardware or software standby,
SMBCLK at 10kHz
0.25 conv/sec
2.0 conv/sec
94
-25
High level
Low level
80
8
100
10
0.7
ADD0, ADD1; momentary upon power-on reset
160
V
CC
, falling edge
1.0
V
CC
input, disables A/D conversion, rising edge
Monotonicity guaranteed
T
A
= +60°C to +100°C
T
A
= 0°C to +85°C
T
R
= +60°C to +100°C
T
R
= -55°C to +125°C
Including long-term drift
T
A
= +60°C to +100°C
T
A
= 0°C to +85°C
8
-2
-3
-3
-5
-2.5
-3.5
3.0
2.60
2.80
50
1.7
50
3
4
35
120
125
70
µA
180
156
25
120
12
ms
%
µA
V
µA
10
µA
2.5
2
3
3
5
2.5
3.5
5.5
2.95
Bits
°C
°C
°C
V
V
mV
V
mV
CONDITIONS
MIN
TYP
MAX
UNITS
Standby Supply Current
Average Operating Supply Current
Conversion Time
Conversion Rate Timing Error
Remote-Diode Source Current
DXN Source Voltage
Address Pin Bias Current
Auto-convert mode, average
measured over 4sec. Logic
inputs forced to V
CC
or GND.
From stop bit to conversion complete (both channels)
Auto-convert mode
DXP forced to 1.5V
2
Maxim Integrated
MAX1617A
Remote/Local Temperature Sensor
with SMBus Serial Interface
ELECTRICAL CHARACTERISTICS (continued)
(V
CC
= +3.3V,
T
A
= 0°C to +85°C,
unless otherwise noted.) (Note 1)
PARAMETER
SMBus INTERFACE
Logic Input High Voltage
Logic Input Low Voltage
Logic Output Low Sink Current
ALERT
Output High Leakage
Current
Logic Input Current
SMBus Input Capacitance
SMBus Clock Frequency
SMBCLK Clock Low Time
SMBCLK Clock High Time
SMBus Start-Condition Setup Time
SMBus Repeated Start-Condition
Setup Time
SMBus Start-Condition Hold Time
SMBus Stop-Condition Setup Time
SMBus Data Valid to SMBCLK
Rising-Edge Time
SMBus Data-Hold Time
SMBCLK Falling Edge to SMBus
Data-Valid Time
t
SU:STA
, 90% to 90% points
t
HD:STA
, 10% of SMBDATA to 90% of SMBCLK
t
SU:STO
, 90% of SMBCLK to 10% of SMBDATA
t
SU:DAT
, 10% or 90% of SMBDATA to 10% of SMBCLK
t
HD:DAT
(Note 6)
Master clocking in data
STBY,
SMBCLK, SMBDATA; V
CC
= 3V to 5.5V
STBY,
SMBCLK, SMBDATA; V
CC
= 3V to 5.5V
ALERT,
SMBDATA forced to 0.4V
ALERT
forced to 5.5V
Logic inputs forced to V
CC
or GND
SMBCLK, SMBDATA
(Note 5)
t
LOW
, 10% to 10% points
t
HIGH
, 90% to 90% points
DC
4.7
4
4.7
500
4
4
250
0
1
-1
5
100
6
1
1
2.2
0.8
V
V
mA
µA
µA
pF
kHz
µs
µs
µs
ns
µs
µs
ns
µs
µs
CONDITIONS
MIN
TYP
MAX
UNITS
ELECTRICAL CHARACTERISTICS
(V
CC
= +3.3V,
T
A
= -55°C to +125°C,
unless otherwise noted.) (Note 1)
PARAMETER
ADC AND POWER SUPPLY
Temperature Resolution (Note 2)
Initial Temperature Error,
Local Diode (Note 3)
Temperature Error, Remote Diode
(Notes 3 and 4)
Supply-Voltage Range
Conversion Time
Conversion Rate Timing Error
From stop bit to conversion complete (both channels)
Auto-convert mode
Monotonicity guaranteed
T
A
= +60°C to +100°C
T
A
= -55°C to +125°C
T
R
= +60°C to +100°C
T
R
= -55°C to +125°C
8
-2
-3
-3
-5
3.0
94
-25
125
2
3
3
5
5.5
156
25
Bits
°C
°C
V
ms
%
CONDITIONS
MIN
TYP
MAX
UNITS
Maxim Integrated
3
MAX1617A
Remote/Local Temperature Sensor
with SMBus Serial Interface
ELECTRICAL CHARACTERISTICS (continued)
(V
CC
= +3.3V,
T
A
= -55°C to +125°C,
unless otherwise noted.) (Note 1)
PARAMETER
SMBus INTERFACE
Logic Input High Voltage
Logic Input Low Voltage
Logic Output Low Sink Current
ALERT
Output High Leakage
Current
Logic Input Current
STBY,
SMBCLK, SMBDATA
V
CC
= 3V
V
CC
= 5.5V
2.2
2.4
0.8
6
1
-2
2
V
V
mA
µA
µA
CONDITIONS
MIN
TYP
MAX
UNITS
STBY,
SMBCLK, SMBDATA; V
CC
= 3V to 5.5V
ALERT,
SMBDATA forced to 0.4V
ALERT
forced to 5.5V
Logic inputs forced to V
CC
or GND
Note 1:
All devices 100% production tested at T
A
= +85°C. Limits over temperature are guaranteed by design.
Note 2:
Guaranteed but not 100% tested.
Note 3:
Quantization error is not included in specifications for temperature accuracy. For example, if the MAX1617A device temper-
ature is exactly +66.7°C, the ADC may report +66°C, +67°C, or +68°C (due to the quantization error plus the +1/2°C offset
used for rounding up) and still be within the guaranteed ±1°C error limits for the +60°C to +100°C temperature range
(Table 2).
Note 4:
A remote diode is any diode-connected transistor from Table 1. T
R
is the junction temperature of the remote diode. See
Remote Diode Selection
for remote diode forward voltage requirements.
Note 5:
The SMBus logic block is a static design that works with clock frequencies down to DC. While slow operation is possible, it
violates the 10kHz minimum clock frequency and SMBus specifications, and may monopolize the bus.
Note 6:
Note that a transition must internally provide at least a hold time in order to bridge the undefined region (300ns max) of
便携式数字数据采集系统(PDDAS)使用了LabVIEW实时模块和PXI,以控制风洞测试和采集记录来自128个不同通道的空气压力数据 "通过LabVIEW实时模块,可以在各种操作情况下获得采集空气压力数据及向风洞提供反馈控制信号所需的确定性响应时间。" – Dave Scheibenhoffer, G Systems 挑战: 用一个可采集、分析和存储来自下一代喷气式战斗机引擎设计的动...[详细]