Analog Devices AD7418ARM, AD7418AR, AD7417BR, AD7417AR, AD7416ARM Datasheet

...
10-Bit Digital Temperature Sensor (AD7416) and
a
Four/Single-Channel ADCs (AD7417/AD7418)
FEATURES 10-Bit ADC with 15 s and 30 s Conversion Times Single and Four Single-Ended Analog Input Channels On-Chip Temperature Sensor: –55C to +125ⴗC On-Chip Track/Hold Over-Temperature Indicator Automatic Power Down at the End of a Conversion Wide Operating Supply Range: 2.7 V to 5.5 V
2C®
-Compatible Serial Interface
I Selectable Serial Bus Address Allows Connection of Up
to Eight AD7416/AD7417s to a Single Bus
AD7416 is a Superior Replacement for LM75
APPLICATIONS Data Acquisition with Ambient Temperature Monitoring Industrial Process Control Automotive Battery Charging Applications Personal Computers
GENERAL DESCRIPTION
The AD7417 and AD7418 are 10-bit, 4- and single-channel A/D converters with an on-chip temperature sensor that can operate from a single 2.7 V to 5.5 V power supply. The devices contain a 15 µs successive-approximation converter, a 5-channel multiplexer, a temperature sensor, a clock oscillator, a track/ hold, and a reference (2.5 V). The AD7416 is a temperature­monitoring-only device in an 8-lead package.
The temperature sensor on the parts can be accessed via multi­plexer Channel 0. When Channel 0 is selected and a conversion is initiated, the resulting ADC code at the end of the conversion gives a measurement of the ambient temperature (±1°C @ 25°C). On-chip registers can be programmed with high and low tem­perature limits, and an open drain Over-Temperature Indicator (OTI) output is provided, which becomes active when a pro­grammed limit is exceeded.
A configuration register allows programming of the sense of the OTI output (active high or active low) and its operating mode (comparator or interrupt). A programmable fault queue counter allows the number of out of limit measurements that must occur before triggering the OTI output to be set, to prevent spurious triggering of the OTI output in noisy environments.
(continued on page 7)
I2C is a registered trademark of Philips Corporation.
A0
A1
A2
V
IN1
V
IN2
V
IN3
V
IN4
NC = NO CONNECT
V
IN1
AD7416/AD7417/AD7418
FUNCTIONAL BLOCK DIAGRAMS
BANDGAP
TEMPERATURE
SENSOR
ADDRESS
POINTER
REGISTER
TEMP
SENSOR
MUX
NC NC GND
V
DD
TEMP
SENSOR
MUX
AGND
REF
REF
2.5V
SAMPLING
CAPACITOR
REF
2.5V
SAMPLING
CAPACITOR
ANALOG-DIGITAL
CONVERTER
TEMPERATURE
VALUE
REGISTER
T
OTI
REGISTER
T
HYST
REGISTER
CONFIGURATION
REGISTER
SERIAL BUS
INTERFACE
IN
V
BALANCE
REF
IN
V
BALANCE
10-BIT
SETPOINT
SETPOINT
V
DD
OVER-TEMP REG
CHARGE
DISTRIBUTION
DAC
CONTROL
CLOCK
CONVST
OVER-TEMP REG
CLOCK
CONVST
LOGIC
+
CHARGE
DISTRIBUTION
DAC
CONTROL
LOGIC
+
AD7416
SETPOINT
COMPARATOR
FAULT
QUEUE
COUNTER
A > B
B
A
DATA OUT
I2C
INTERFACE
AD7417
A > B
B
A
DATA OUT
I2C
INTERFACE
AD7418
A2A1A0
+V
OTI
GND
SDA
SCL
OTI
SCL
SDA
OTI
SCL
SDA
S
REV. D
Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. Tel: 781/329-4700 www.analog.com Fax: 781/326-8703 © Analog Devices, Inc., 2002
AD7416/AD7417/AD7418
AD7417/AD7418–SPECIFICATIONS
Parameter A Version B Version
(VDD = 2.7 V to 5.5 V, GND = 0 V, REFIN = 2.5 V, unless otherwise noted)
1
Unit Test Conditions/Comments
DC ACCURACY Any Channel
Resolution 10 10 Bits Minimum Resolution for Which No
Missing Codes are Guaranteed 10 10 Bits
Relative Accuracy
Differential Nonlinearity
Gain Error
Gain Error Match Offset Error
2
2
2
2
2
± 1 ± 1 LSB max This Spec Is Typical for VDD of
3.6 V to 5.5 V
± 1 ± 1 LSB max This Spec Is Typical for VDD of
3.6 V to 5.5 V
± 3 ± 3 LSB max External Reference ± 10 ± 10 LSB max Internal Reference ± 0.6 ± 0.6 LSB max AD7417 Only ± 4 ± 4 LSB max
Offset Error Match ± 0.7 ± 0.7 LSB max AD7417 Only
ANALOG INPUTS
Input Voltage Range V
Input Leakage Current
3
REF
V
REF
00V min ± 1 ± 1 µA max
V max
Input Capacitance 10 10 pF max
TEMPERATURE SENSOR
1
Measurement Error
Ambient Temperature 25°C ± 2 ± 1 °C max T
MIN
to T
MAX
± 3 ± 2 °C max
Temperature Resolution 1/4 1/4 °C/LSB
CONVERSION RATE
Track/Hold Acquisition Time
4
400 400 ns max Source Impedance < 10
Conversion Time
Temperature Sensor 30 30 µs max Typically 27 µs
Channels 1 to 4 15 15 µs max Typically 10 µs
REFERENCE INPUT
REFIN Input Voltage Range
5, 6
6
2.625 2.625 V max 2.5 V + 5%
2.375 2.375 V min 2.5 V – 5% Input Impedance 40 40 k min Input Capacitance 10 10 pF max
ON-CHIP REFERENCE Nominal 2.5 V
Reference Error Temperature Coefficient
6
6
± 25 ± 25 mV max 80 80 ppm/°C typ
DIGITAL INPUTS
Input High Voltage, V Input Low Voltage, V
IL
IH
+VS × 0.7 +VS × 0.7 V min +VS × 0.3 +VS × 0.3 V max
Input Leakage Current 1 1 µA max
DIGITAL OUTPUTS
Output Low Voltage, V
OL
0.4 0.4 V max IOL = 3 mA Output High Current 1 1 µA max VOH = 5 V
POWER REQUIREMENTS
V
DD
5.5 5.5 V max For Specified Performance
2.7 2.7 V min I
DD
Logic Inputs = 0 V or V Normal Operation 600 600 µA max Power Down 1 1 µA max 50 nA Typically
Auto Power-Down Mode V
= 3 V. See Operating Modes
DD
10 sps Throughput Rate 6 6 µW typ 1 ksps Throughput Rate 60 60 µW typ 10 ksps Throughput Rate 600 600 µW typ
Power Down 3 3 µW max Typically 0.15 µW
DD
–2–
REV. D
AD7416/AD7417/AD7418
NOTES
1
B version applies to AD7417 only with temperature range of –40°C to +85°C. A version temperature range is –55°C to +125°C. For VDD = 2.7 V, TA = 85°C max and temperature sensor measurement error = ± 3°C.
2
See Terminology.
3
Refers to the input current when the part is not converting. Primarily due to reverse leakage current in the ESD protection diodes.
4
Sample tested during initial release and after any redesign or process change that may affect this parameter.
5
On-chip reference shuts down when external reference is applied.
6
The accuracy of the temperature sensor is affected by reference tolerance. The relationship between the two is explained in the section titled Temperature Sensor.
Specifications subject to change without notice.
AD7416–SPECIFICATIONS
(VDD = 2.7 V to 5.5 V, GND = 0 V, REFIN = 2.5 V, unless otherwise noted)
Parameter Min Typ Max Unit Test Conditions/Comments
TEMPERATURE SENSOR AND ADC
Accuracy ± 2.0 °CT
± 3.0 °CT
= –25°C to +100°C (VDD = 3 V min)
A
= –55°C to +125°C (VDD = 3 V min)
A
Resolution 10 Bits Temperature Conversion Time 40 µs Update Rate, t OTI Delay 1 × t
R
R
Supply Current 1.0 mA I
400 µs
6 × t
R
350 600 µAI
ms Depends on Fault Queue Setting
2
C Active
2
C Inactive
0.2 1.5 µA Shutdown Mode
Default Temperature 80 °C
T
OTI
T
Default Temperature 75 °C
HYST
DIGITAL INPUTS
Input High Voltage, V Input Low Voltage, V
IL
Input High Current, I Input Low Current, I Input Capacitance, C
IL
IN
IH
IH
+VS × 0.7 +VS + 0.5 V –0.3 +VS × 0.3 V
0.005 1.0 µAV –0.005 –1.0 µAV 20 pF All Digital Inputs
= 5 V
IN
= 0 V
IN
DIGITAL OUTPUTS
Output Low Voltage, V
OL
Output High Current 1 µAV Output Fall Time, t OS Output Low Voltage, V
AC ELECTRICAL CHARACTERISTICS
Serial Clock Period, t Data In Setup Time to SCL High, t Data Out Stable after SCL Low, t
f
OL
2
1
2
3
2.5 µs See Figure 1 50 ns See Figure 1 0 ns See Figure 1
0.4 V IOL = 3 mA = 5 V
OH
250 ns CL = 400 pF, IO = 3 mA
0.8 V I
OUT
= 4 mA
AD7416/AD7417/AD7418
SDA Low Setup Time to SCL Low
(Start Condition), t
4
50 ns See Figure 1
SDA High Hold Time after SCL High
(Stop Condition), t
SDA and SCL Fall Time, t
NOTES
1
For VDD = 2.7 V to 3 V, TA max = 85°C and accuracy = ± 3°C.
2
Sample tested during initial release and after any redesign or process change that may affect this parameter.
Specifications subject to change without notice.
5
6
50 ns See Figure 1
300 ns See Figure 1
1
1
t
1
SCL
SDA
DATA IN
SDA
DATA OUT
t
4
t
2
Figure 1. Diagram for Serial Bus Timing
REV. D –3–
t
5
t
3
t
6
AD7416/AD7417/AD7418
AD7417 PIN FUNCTION DESCRIPTION
Pin No. Mnemonic Description
1, 16 NC No Connection. Do not connect anything to this pin.
2 SDA Digital I/O. Serial Bus Bidirectional Data. Push-pull output. 3 SCL Digital Input. Serial Bus Clock. 4 OTI This is a logic output. The Over Temperature Indicator (OTI) is set if the result of a conversion on
Channel 0 (temperature sensor) is greater than an 8-bit word in the Over Temperature Register (OTR). The signal is reset at the end of a serial read operation. Open-drain output.
5 REF
IN
6 GND Ground Reference for Track/Hold, Comparator and Capacitor DAC, and Digital Circuitry. 7–10 A
IN1
to A
11 A2 Digital Input. The highest programmable bit of the Serial Bus Address. 12 A1 Digital Input. The middle programmable bit of the Serial Bus Address. 13 A0 Digital Input. The lowest programmable bit of the Serial Bus Address. 14 V
DD
15 CONVST Logic Input Signal. Convert Start Signal. The rising edge of this signal fully powers up the part. The
Reference Input. An external 2.5 V reference can be connected to the AD7417 at this pin. To enable the on-chip reference the REF
pin should be tied to GND. If an external reference is connected to
IN
the AD7417, the internal reference will shut down.
Analog Input Channels. The AD7417 has four analog input channels. The input channels are single-
IN4
ended with respect to GND. The input channels can convert voltage signals in the range 0 V to V A channel is selected by writing to the configuration register of the AD7417. (See Control Byte section.)
Positive Supply Voltage, 2.7 V to 5.5 V.
power-up time for the part is 4 µs. If the CONVST pulse is greater than 4 µs, the falling edge of CONVST places the track/hold mode into hold mode and initiates a conversion. If the pulse is less than 4 µs, an internal timer ensures that the track/hold does not go into hold and conversion is not initiated until the power-up time has elapsed. The track/hold goes into track mode again at the end of conversion. (See Operating Mode section.)
REF
.
AD7417 PIN CONFIGURATION
SOIC/TSSOP
1
NC
2
SDA
3
SCL
4
OTI
5
REF
IN
6
GND
7
A
IN1
8
A
IN2
NC = NO CONNECT
AD7417
TOP VIEW
(Not to Scale)
16
15
14
13
12
11
10
9
NC
CONVST
V
DD
A0
A1
A2
A
IN4
A
IN3
–4–
REV. D
AD7416/AD7417/AD7418

AD7416 PIN FUNCTION DESCRIPTION

Pin No. Mnemonic Description
1 SDA Digital I/O. Serial Bus Bidirectional Data. Push-pull output. 2 SCL Digital Input. Serial Bus Clock.
3 OTI This is a logic output. The Over-Temperature Indicator (OTI) is set if the result of a conversion on
Channel 0 (Temperature Sensor) is greater that an 8-bit word in the Over-Temperature Register
(OTR). The signal is reset at the end of a serial read operation. Open-drain output. 4 GND Ground reference for track/hold, comparator and capacitor DAC, and digital circuitry. 5 A2 Digital Input. The highest programmable bit of the Serial Bus Address. 6 A1 Digital Input. The middle programmable bit of the Serial Bus Address. 7 A0 Digital Input. The lowest programmable bit of the Serial Bus Address. 8VDDPositive Supply Voltage, 2.7 V to 5.5 V.

AD7418 PIN FUNCTION DESCRIPTION

Pin No. Mnemonic Description
1 SDA Digital I/O. Serial Bus Bidirectional Data. Push-pull output. 2 SCL Digital Input. Serial Bus Clock.
3 OTI This is a logic output. The Over-Temperature Indicator (OTI) is set if the result of a conversion on
Channel 0 (Temperature Sensor) is greater that an 8-bit word in the Over-Temperature Register
(OTR). The signal is reset at the end of a serial read operation. Open-drain output. 4 GND Ground reference for track/hold, comparator and capacitor DAC, and digital circuitry. 5A
6 REF
7V
IN
IN
DD
8 CONVST Logic Input Signal. Convert Start Signal. The rising edge of this signal fully powers up the part.
Analog Input Channel. The input channel is single-ended with respect to GND. The input channel
can convert voltage signals in the range 0 V to V
. The analog input channel is selected by writing
REF
to the configuration register of the AD7418 and choosing Channel 4. (See Control Byte section.)
Reference Input. An external 2.5 V reference can be connected to the AD7418 at this pin. To enable
the on-chip reference the REF
pin should be tied to GND. If an external reference is connected to
IN
the AD7418, the internal reference will shut down.
Positive Supply Voltage, 2.7 V to 5.5 V.
The power-up time for the part is 4 µs. If the CONVST pulse is greater than 4 µs, the falling edge
of CONVST places the track/hold mode into hold mode and initiates a conversion. If the pulse is
less than 4 µs, an internal timer ensures that the track/hold does not go into hold and conversion is
not initiated until the power-up time has elapsed. The track/hold goes into track mode again at the
end of conversion. (See Operating Mode section.)
REV. D
AD7416 PIN CONFIGURATION
SOIC/SOIC
SDA
SCL
OTI
GND
1
2
AD7416
TOP VIEW
3
(Not to Scale)
4
8
V
DD
7
A0
6
A1
5
A2
–5–
AD7418 PIN CONFIGURATION
SOIC/SOIC
SDA
SCL
OTI
GND
1
2
AD7418
TOP VIEW
3
(Not to Scale)
4
8
CONVST
7
V
6
REF
5
A
DD
IN
IN
Loading...
+ 11 hidden pages