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MCP3201 Datasheet(PDF) 3 Page - Microchip Technology

Part # MCP3201
Description  2.7V 12-Bit A/D Converter with SPI Serial Interface
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP3201 Datasheet(HTML) 3 Page - Microchip Technology

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© 2008 Microchip Technology Inc.
DS21290E-page 3
MCP3201
1.0
ELECTRICAL
CHARACTERISTICS
1.1
Maximum Ratings†
VDD...................................................................................7.0V
All inputs and outputs w.r.t. VSS ................ -0.6V to VDD +0.6V
Storage temperature .....................................-65°C to +150°C
Ambient temp. with power applied ................-65°C to +125°C
ESD protection on all pins (HBM) .................................> 4 kV
†Notice:
Stresses above those listed under “Maximum
ratings” may cause permanent damage to the device. This is
a stress rating only and functional operation of the device at
those or any other conditions above those indicated in the
operational listings of this specification is not implied.
Exposure to maximum rating conditions for extended periods
may affect device reliability.
ELECTRICAL CHARACTERISTICS
Electrical Specifications:
All parameters apply at VDD = 5V, VSS = 0V, VREF = 5V, TA = -40°C to +85°C, fSAMPLE = 100 ksps, and
fCLK = 16*fSAMPLE, unless otherwise noted.
Parameter
Sym
Min
Typ
Max
Units
Conditions
Conversion Rate:
Conversion Time
tCONV
12
clock
cycles
Analog Input Sample Time
tSAMPLE
1.5
clock
cycles
Throughput Rate
fSAMPLE
100
50
ksps
ksps
VDD = VREF = 5V
VDD = VREF = 2.7V
DC Accuracy:
Resolution
12
bits
Integral Nonlinearity
INL
±0.75
±1
±1
±2
LSB
LSB
MCP3201-B
MCP3201-C
Differential Nonlinearity
DNL
±0.5
±1
LSB
No missing codes over
temperature
Offset Error
±1.25
±3
LSB
Gain Error
±1.25
±5
LSB
Dynamic Performance:
Total Harmonic Distortion
THD
-82
dB
VIN = 0.1V to 4.9V@1 kHz
Signal to Noise and Distortion
(SINAD)
SINAD
72
dB
VIN = 0.1V to 4.9V@1 kHz
Spurious Free Dynamic Range
SFDR
86
dB
VIN = 0.1V to 4.9V@1 kHz
Reference Input:
Voltage Range
0.25
VDD
V
Note 2
Current Drain
100
.001
150
3
µA
µA
CS = VDD = 5V
Analog Inputs:
Input Voltage Range (IN+)
IN+
IN-
VREF+IN-
V
Input Voltage Range (IN-)
IN-
VSS-100
VSS+100
mV
Leakage Current
0.001
±1
µA
Switch Resistance
RSS
1K
W
See Figure 4-1
Sample Capacitor
CSAMPLE
20
pF
See Figure 4-1
Digital Input/Output:
Data Coding Format
Straight Binary
High Level Input Voltage
VIH
0.7 VDD
——
V
Low Level Input Voltage
VIL
0.3 VDD
V
Note 1:
This parameter is established by characterization and not 100% tested.
2:
See graph that relates linearity performance to VREF level.
3:
Because the sample cap will eventually lose charge, effective clock rates below 10 kHz can affect linearity performance,
especially at elevated temperatures. See Section 6.2 “Maintaining Minimum Clock Speed” for more information.


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