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PDF MAX6631 Data sheet ( Hoja de datos )

Número de pieza MAX6631
Descripción 12-Bit Sign Digital Temperature Sensors with Serial Interface
Fabricantes Maxim Integrated 
Logotipo Maxim Integrated Logotipo



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No Preview Available ! MAX6631 Hoja de datos, Descripción, Manual

19-2047; Rev 1; 7/01
12-Bit + Sign Digital Temperature Sensors
with Serial Interface
General Description
The MAX6629–MAX6632 are local digital temperature
sensors with an SPI™-compatible serial interface. The
temperature is converted to a 12-bit + sign word with a
resolution of 0.0625°C/LSB. An extended temperature
range provides useful readings up to +150°C.
These sensors are 3-wire serial interface SPI compati-
ble, allowing the MAX6629–MAX6632 to be readily con-
nected to a variety of microcontrollers (µCs). The
MAX6629–MAX6632 are read-only devices, simplifying
their use in systems where only temperature data is
required.
All four digital temperature sensors require very little
supply current, making them ideal for portable systems.
The MAX6631/MAX6632 perform a temperature-to-digi-
tal conversion once every 8s and require minimal aver-
age supply current, 32µA (typ). The MAX6629/
MAX6630 perform a conversion once every 0.5s and
require only 200µA (typ) supply current. Any of these
temperature sensors can perform conversions more
often—up to approximately four conversions per sec-
ond by reading the conversion results more often.
Applications
Cellular
Hard Disk Drive
HVAC
Automotive
Industrial Control
Systems
SPI is a trademark of Motorola, Inc.
Typical Application Circuit
Features
o Low Power Consumption
32µA typ (MAX6631/MAX6632)
200µA typ (MAX6629/MAX6630)
o 12-Bit + Sign Resolution with 0.0625°C/LSB
o Accuracy
±1°C (max) from 0°C to +70°C
±2.3°C (max) from -20°C to +100°C
±3.2°C (max) from -40°C to +125°C
±6.5°C (max) at +150°C
o +150°C Extended Temperature Range
o SPI-Compatible Serial Interface
o +3.0V to +5.5V Supply Range
o 6-Pin SOT23 Package
Ordering Information
PART
MAX6629MUT-T
MAX6630MUT-T
MAX6631MUT-T
MAX6632MUT-T
TEMP. RANGE
-55°C to +150°C
-55°C to +150°C
-55°C to +150°C
-55°C to +150°C
PIN-
PACKAGE
6 SOT23-6
6 SOT23-6
6 SOT23-6
6 SOT23-6
TOP
MARK
AAPM
AAPN
AAPO
AAPP
+3V TO +5.5V
0.1µF
VCC
MAX6629
MAX6630
MAX6631
MAX6632
SO
CS
GND
SCK
µC
TOP VIEW
Pin Configurations
N.C. 1
6 SO
MAX6629
GND 2 MAX6631 5 CS
GND 1
6 SO
MAX6630
N.C. 2 MAX6632 5 CS
VCC 3
4 SCK
SOT23
VCC 3
4 SCK
SOT23
________________________________________________________________ Maxim Integrated Products 1
For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at
1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com.

1 page




MAX6631 pdf
12-Bit + Sign Digital Temperature Sensors
with Serial Interface
Detailed Description
The MAX6629MAX6632 are local digital temperature
sensors with a serial bus. The MAX6629MAX6632 are
typically interfaced to a µC in temperature sensing and
control applications. The MAX6629MAX6632 convert
temperature to a 12-bit + sign word with a 0.0625°C
LSB. The data is communicated through a simple serial
interface with a CS (Chip Select) line, SO (Data) line,
and SCK (Clock) line. This interface can be directly
connected to, and is fully compatible with, SPI inter-
faces. This interface can also be connected to virtually
any processor, which has at least three general-pur-
pose input/output (GPIO) lines available to implement
software bit banging.
The high resolution of the MAX6629MAX6632 makes
them especially useful in thermal control loops, HVAC
systems, or in any system where quick anticipation of
temperature trends is useful. The MAX6629MAX6632
can produce temperature data in excess of +150°C,
although they are specified for a maximum operating
temperature of +150°C. This extended temperature
range especially makes it useful in automotive under-
hood applications. The low power consumption is also
ideal in battery-operated and portable applications.
The MAX6631/MAX6632 are optimized for minimum
power consumption with their 8s conversions. The
MAX6629/MAX6630 provide faster conversions, 0.5s, at
the expense of power consumption. The low quiescent
supply current enables the device to be powered from
a logic line or the output of a gate where the high level
exceeds 3V, as shown in Figure 1. While the
MAX6629MAX6632 are not specifically equipped with
a software shutdown mode, the hardware shutdown
can easily be implemented by setting the gate output to
low. Pulling CS low without a clock also puts the device
in idle mode. Take care to ensure that the logic output
LOGIC LINE WHERE VLOGIC > 3V
VCC
MAX6629
MAX6630
MAX6631
MAX6632
SO
SCK
CS
GND
Figure 1. Powering the Sensor from a Logic Gate
is not noisy, as excessive noise on VCC can affect tem-
perature measurement accuracy.
ADC Conversion Sequence
The MAX6629MAX6632 continuously convert temper-
ature to digital data. Setting CS low stops any conver-
sion in progress, places the device in idle mode, and
makes data available for reading. Setting CS high starts
a new conversion. CS must remain high for at least 0.3s
to allow for the conversion to be completed. Figure 2
shows the timing relationship between conversion time
and conversion rate.
SPI Digital Interface
The MAX6629MAX6632 are compatible with SPI seri-
al-interface standards (Figure 3) and are designed to
be read-only devices. CSs rising edge always starts a
new conversion and resets the interface. CS must stay
high for a minimum of 300ms to allow the conversion to
MAX6629
MAX6630
0.25s ADC CONVERSION TIME
MAX6629
MAX6630
CONVERSION PERIOD
0.5s
MAX6631
MAX6632
0.25s ADC CONVERSION TIME
MAX6631
MAX6632
CONVERSION PERIOD
8s
Figure 2. Conversion Time and Rate Relationships
_______________________________________________________________________________________ 5

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