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AD7865YS-1

Part # AD7865YS-1
Description Single ADC SAR 350ksps 14-bitParallel Automotive 44-Pin M
Category IC
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Analog Devices
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

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
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
a
AD7865
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700 World Wide Web Site: http://www.analog.com
Fax: 781/326-8703 © Analog Devices, Inc., 1999
REV. A
Four-Channel, Simultaneous
Sampling, Fast, 14-Bit ADC
FEATURES
Fast (2.4␣ s) 14-Bit ADC
Four Simultaneously Sampled Inputs
Four Track/Hold Amplifiers
0.35␣ s Track/Hold Acquisition Time
2.4 s Conversion Time per Channel
HW/SW Select of Channel Sequence for Conversion
Single Supply Operation
Selection of Input Ranges: 10 V, 5 V and 2.5 V,
0 V to +5 V and 0 V to +2.5 V
High Speed Parallel Interface Which Also Allows
Interfacing to 3 V Processors
Low Power, 115 mW Typ
Power Saving Mode, 15␣ W Typ
Overvoltage Protection on Analog Inputs
APPLICATIONS
AC Motor Control
Uninterruptible Power Supplies
Industrial Power Meters/Monitors
Data Acquisition Systems
Communications
GENERAL DESCRIPTION
The AD7865 is a fast, low power, four-channel simultaneous
sampling 14-bit A/D converter that operates from a single +5␣ V
supply. The part contains a 2.4 µs successive approximation
ADC, four track/hold amplifiers, 2.5 V reference, on-chip clock
oscillator, signal conditioning circuitry and a high speed parallel
interface. The input signals on four channels are sampled simul-
taneously thus preserving the relative phase information of the
signals on the four analog inputs. The part accepts analog input
ranges of ±10␣ V, ±5 V, ±2.5 V, 0 V to +2.5 V and 0 V to +5 V.
The part allows any subset of the four channels to be converted
in order to maximize the throughput rate on the selected se-
quence. The channels to be converted can be selected either via
hardware (channel select input pins) or via software (program-
ming the channel select register).
A single conversion start signal (CONVST) simultaneously places
all the track/holds into hold and initiates conversion sequence
for the selected channels. The EOC signal indicates the end of
each individual conversion in the selected conversion sequence.
The BUSY signal indicates the end of the conversion sequence.
Data is read from the part via a 14-bit parallel data bus using the
standard CS and RD signals. Maximum throughput for a single
channel is 350 kSPS. For all four channels the maximum through-
put is 100 kSPS.
The AD7865 is available in a small (0.3 sq. inch area) 44-lead
PQFP.
PRODUCT HIGHLIGHTS
1. The AD7865 features four Track/Hold amplifiers and a fast
(2.4 µs) ADC allowing simultaneous sampling and then
conversion of any subset of the four channels.
2. The AD7865 operates from a single +5␣ V supply and con-
sumes only 115 mW typ, making it ideal for low power and
portable applications.
3. The part offers a high speed parallel interface for easy con-
nection to microprocessors, microcontrollers and digital
signal processors.
4. The part is offered in three versions with different analog
input ranges. The AD7865-1 offers the standard industrial
ranges of ± 10 V and ±5 V; the AD7865-2 offers a unipolar
range of 0 V to +2.5 V or 0 V to +5 V and the AD7865-3
offers the common signal processing input range of ±2.5 V.
5. The part features very tight aperture delay matching between
the four input sample and hold amplifiers.
FUNCTIONAL BLOCK DIAGRAM
SIGNAL
SCALING
SIGNAL
SCALING
SIGNAL
SCALING
SIGNAL
SCALING
FRSTDATA
AGND
CHANNEL
SELECT
REGISTER
MUX
DB0–DB3
+2.5V
REFERENCE
TRACK/HOLD
3 4
6kV
AD7865
EOC
V
DRIVE
RD
CLK IN
/SL1
INT/EXT
CLK/SL2
SL3 SL4
H/S
SEL
DGND
AV
DD
V
REF
AGND
CONVST
BUSY
DB13
DV
DD
V
IN4A
V
IN3B
V
IN3A
V
IN2B
V
IN1B
STBY
V
REFAGND
AGND
V
IN1A
V
IN2A
14-BIT
ADC
CONVERSION
CONTROL LOGIC
INT
CLOCK
INT/EXT
CLOCK
SELECT
OUTPUT
LATCH
WR
CS
DB0
V
IN4B
–2–
AD7865–SPECIFICATIONS
REV. A
(V
DD
= +5 V 5%, AGND = DGND = 0 V, V
REF
= Internal. Clock = Internal; all specifi-
cations T
MIN
to T
MAX
unless otherwise noted.)
Parameter A, Y Versions
1
B Version Units Test Conditions/Comments
SAMPLE AND HOLD
–3 dB Full Power Bandwidth 3 3 MHz typ
Aperture Delay 20 20 ns max
Aperture Jitter 50 50 ps typ
Aperture Delay Matching 4 4 ns max
DYNAMIC PERFORMANCE
2
f
IN
= 100 kHz, f
S
= 350 kSPS
Signal to (Noise + Distortion) Ratio
3
@ +25°C
AD7865-1, AD7865-3 78 78 dB min Typically 80 dB
AD7865-2 77 77 dB min Typically 78 dB
T
MIN
to T
MAX
AD7865-1, AD7865-3 77 77 dB min
AD7865-2 76 76 dB min
Total Harmonic Distortion
3, 4
–86 –86 dB max
Peak Harmonic or Spurious Noise
3, 4
–86 –86 dB max
Intermodulation Distortion
3
fa = 49 kHz, fb = 50 kHz
2nd Order Terms –95 –95 dB typ
3rd Order Terms –95 –95 dB typ
Channel-to-Channel Isolation
3, 5
–88 –88 dB max f
IN
= 50 kHz Sine Wave
DC ACCURACY Any Channel
Resolution 14 14 Bits
Relative Accuracy (INL)
3
±2 ±1.5 LSB max Typically 0.6 LSBs
Differential Nonlinearity (DNL)
3
±1 ±1 LSB max No Missing Codes Guaranteed
AD7865-1
Positive Gain Error
3
±10 ±8 LSB max Typically ±2 LSBs
Positive Gain Error Match
3
8 8 LSB max Typically 2 LSBs
Negative Gain Error
3
±10 ±8 LSB max Typically ±2 LSBs
Negative Gain Error Match
3
8 8 LSB max Typically 2 LSBs
Bipolar Zero Error ±12 ±10 LSB max Typically ±2 LSBs
Bipolar Zero Error Match 6 6 LSB max Typically 1.5 LSBs
AD7865-2
Positive Gain Error
3
±16 ±16 LSB max Typically ±2 LSBs
Positive Gain Error Match
3
8 8 LSB max Typically 2 LSBs
Unipolar Offset Error
3
±10 ±10 LSB max Typically ±2 LSBs
Unipolar Offset Error Match
3
10 10 LSB max Typically 2 LSBs
AD7865-3
Positive Gain Error
3
±16 ±14 LSB max Typically ±6 LSBs
Positive Gain Error Match
3
8 8 LSB max Typically 2 LSBs
Negative Gain Error
3
±16 ±14 LSB max Typically ±6 LSBs
Negative Gain Error Match
3
8 8 LSB max Typically 2 LSBs
Bipolar Zero Error ±14 ±12 LSB max Typically ±5 LSBs
Bipolar Zero Error Match 8 6 LSB max Typically 2 LSBs
ANALOG INPUTS
AD7865-1
Input Voltage Range ±5,␣ ±10␣ ±5,␣ ±10␣ Volts
Input Current 1, 1 1, 1 mA max V
IN
= –5 V and –10 V Respectively,
Typically 0.7 mA
AD7865-2
Input Voltage Range 0 V to +2.5 V, 0 V to +2.5 V,
0 V to +5 V 0 V to +5 V Volts
Input Current 10 10 µA max V
IN
= 2.5 V, 0 V to 2.5 V Range, Typ 1 µA
1 1 mA max V
IN
= 5 V, 0 V to 5 V Range, Typ 0.7 mA
AD7865-3
Input Voltage Range ±2.5 ±2.5␣ Volts
Input Current 1 1 mA max V
IN
= –2.5 V, Typically 0.7 mA
–3–
AD7865
REV. A
Parameter A, Y Versions
1
B Version Units Test Conditions/Comments
REFERENCE INPUT/OUTPUT
V
REF
IN Input Voltage Range 2.375/2.625 2.375/2.625 V
MIN
/V
MAX
2.5 V ± 5%
V
REF
IN Input Capacitance
6
10 10 pF max
V
REF
OUT Output Voltage 2.5 2.5 V␣ nom
V
REF
OUT Error @ +25°C ±10 ±10 mV max
V
REF
OUT Error T
MIN
to T
MAX
±20 ±20 mV max
V
REF
OUT Temperature Coefficient 25 25 ppm/°C typ
V
REF
OUT Output Impedance 6 6 k typ See Reference Section
LOGIC INPUTS
Input High Voltage, V
INH
2.4 2.4 V min V
DD
= 5 V ± 5%
Input Low Voltage, V
INL
0.8 0.8 V max V
DD
= 5 V ± 5%
Input Current, I
IN
±10 ±10 µA max
Input Capacitance, C
IN
6
10 10 pF max
LOGIC OUTPUTS
Output High Voltage, V
OH
4.0 4.0 V min I
SOURCE
= 400 µA
Output Low Voltage, V
OL
0.4 0.4 V max I
SINK
= 1.6 mA
DB13–DB0
High Impedance
Leakage Current ±10 ±10 µA max
Capacitance
6
10 10 pF max
Output Coding
AD7865-1, AD7865-3 Twos Complement
AD7865-2 Straight (Natural) Binary
CONVERSION RATE
Conversion Time 2.4 2.4 µs max For Single Channel
Track/Hold Acquisition Time
2, 3
0.35 0.35 µs max
Throughput Time 350 350 kSPS max For Single Channel
100 100 kSPS max For All Four Channels
POWER REQUIREMENTS
V
DD
+5 +5 V nom ±5% for Specified Performance
I
DD
AD7865-1 Typically 23 mA, Logic Inputs = 0 V or V
DD
Normal Mode 32 32 mA max
Standby Mode 20 20 µA max
AD7865-2 Typically 20 mA, Logic Inputs = 0 V or V
DD
Normal Mode 30 30 mA max
Standby Mode 20 20 µA max
AD7865-3 Typically 23 mA, Logic Inputs = 0 V or V
DD
Normal Mode 32 32 mA max
Standby Mode 20 20 µA max
Power Dissipation
AD7865-1
Normal Mode 160 160 mW max Typically 115␣ mW. V
DD
= +5 V
Standby Mode 100 100 µW max Typically 15␣ µW
AD7865-2
Normal Mode 150 150 mW max Typically 100␣ mW. V
DD
= +5 V
Standby Mode 100 100 µW max Typically 15␣ µW
AD7865-3
Normal Mode 160 160 mW max Typically 115␣ mW. V
DD
= +5 V
Standby Mode 100 100 µW max Typically 15␣ µW
NOTES
1
Temperature ranges are as follows : A, B Versions: –40°C to +85°C, Y Version: –40°C to +105°C.
2
Performance measured through full channel (SHA and ADC).
3
See Terminology.
4
Total Harmonic Distortion and Peak Harmonic or Spurious Noise are specified at –83 dBs for the AD7865-2.
5
Measured between any two channels with the other two channels grounded.
6
Sample tested @ +25°C to ensure compliance.
Specifications subject to change without notice.
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