Datasheet
Table Of Contents
- Features
- Applications
- Description
- Package Types
- Functional Block Diagram
- 1.0 Electrical Characteristics
- PIN FUNCTION TABLE
- electrical characteristics
- 2.0 Typical Performance Characteristics
- FIGURE 2-1: Integral Nonlinearity (INL) vs. Sample Rate.
- FIGURE 2-2: Integral Nonlinearity (INL) vs. Vref.
- FIGURE 2-3: Integral Nonlinearity (INL) vs. Code (Representative Part).
- FIGURE 2-4: Integral Nonlinearity (INL) vs. Sample Rate (Vdd = 2.7V).
- FIGURE 2-5: Integral Nonlinearity (INL) vs. Vref (Vdd = 2.7V).
- FIGURE 2-6: Integral Nonlinearity (INL) vs. Code (Representative Part, Vdd = 2.7V).
- FIGURE 2-7: Integral Nonlinearity (INL) vs. Temperature.
- FIGURE 2-8: Differential Nonlinearity (DNL) vs. Sample Rate.
- FIGURE 2-9: Differential Nonlinearity (DNL) vs. Vref.
- FIGURE 2-10: Integral Nonlinearity (INL) vs. Temperature (Vdd = 2.7V).
- FIGURE 2-11: Differential Nonlinearity (DNL) vs. Sample Rate (Vdd = 2.7V).
- FIGURE 2-12: Differential Nonlinearity (DNL) vs. Vref (Vdd = 2.7V).
- FIGURE 2-13: Differential Nonlinearity (DNL) vs. Code (Representative Part).
- FIGURE 2-14: Differential Nonlinearity (DNL) vs. Temperature.
- FIGURE 2-15: Gain Error vs. Vref.
- FIGURE 2-16: Differential Nonlinearity (DNL) vs. Code (Representative Part, Vdd = 2.7V).
- FIGURE 2-17: Differential Nonlinearity (DNL) vs. Temperature (Vdd = 2.7V).
- FIGURE 2-18: Offset Error vs. Vref.
- FIGURE 2-19: Gain Error vs. Temperature.
- FIGURE 2-20: Signal to Noise Ratio (SNR) vs. Input Frequency.
- FIGURE 2-21: Total Harmonic Distortion (THD) vs. Input Frequency.
- FIGURE 2-22: Offset Error vs. Temperature.
- FIGURE 2-23: Signal to Noise Ratio and Distortion (SINAD) vs. Input Frequency.
- FIGURE 2-24: Signal to Noise and Distortion (SINAD) vs. Input Signal Level.
- FIGURE 2-25: Effective Number of Bits (ENOB) vs. Vref.
- FIGURE 2-26: Spurious Free Dynamic Range (SFDR) vs. Input Frequency.
- FIGURE 2-27: Frequency Spectrum of 10kHz Input (Representative Part).
- FIGURE 2-28: Effective Number of Bits (ENOB) vs. Input Frequency.
- FIGURE 2-29: Power Supply Rejection (PSR) vs. Ripple Frequency.
- FIGURE 2-30: Frequency Spectrum of 1kHz Input (Representative Part, Vdd = 2.7V).
- FIGURE 2-31: Idd vs. Vdd.
- FIGURE 2-32: Idd vs. Clock Frequency.
- FIGURE 2-33: Idd vs. Temperature.
- FIGURE 2-34: Iref vs. Vdd.
- FIGURE 2-35: Iref vs. Clock Frequency.
- FIGURE 2-36: Iref vs. Temperature.
- FIGURE 2-37: Idds vs. Vdd.
- FIGURE 2-38: Idds vs. Temperature.
- FIGURE 2-39: Analog Input Leakage Current vs. Temperature.
- 3.0 Pin Descriptions
- 4.0 Device Operation
- 5.0 Serial Communications
- 6.0 Applications Information
- 7.0 Packaging Information
- Appendix A: Revision History
- Product Identification System
- Worldwide Sales and Service

© 2007 Microchip Technology Inc. DS21293C-page 11
MCP3001
Note: Unless otherwise indicated, V
DD
= V
REF
= 5V, f
SAMPLE
= 200 ksps, f
CLK
= 14*Sample Rate,T
A
= 25°C
FIGURE 2-31: I
DD
vs. V
DD
.
FIGURE 2-32: I
DD
vs. Clock Frequency.
FIGURE 2-33: I
DD
vs. Temperature.
FIGURE 2-34: I
REF
vs. V
DD
.
FIGURE 2-35: I
REF
vs. Clock Frequency.
FIGURE 2-36: I
REF
vs. Temperature.
0
50
100
150
200
250
300
350
400
450
500
2.02.53.03.54.04.55.05.56.0
V
DD
(V)
I
DD
(µA)
V
REF
= V
DD
All points at f
CLK
= 2.8 MHz except
at V
REF
= V
DD
= 2.5V, f
CLK
=1.05 MHz
0
50
100
150
200
250
300
350
400
450
500
10 100 1000 10000
Clock Frequency (kHz)
I
DD
(µA)
V
DD
= V
REF
= 5V
V
DD
= V
REF
= 2.7V
0
50
100
150
200
250
300
350
400
450
500
550
600
-50 -25 0 25 50 75 100
Temperature (°C)
I
DD
(µA)
V
DD
= V
REF
= 5V
f
CLK
= 2.8 MHz
V
DD
= V
REF
= 2.7V
f
CLK
= 1.05 MHz
0
10
20
30
40
50
60
70
80
90
100
110
120
2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0
V
DD
(V)
I
REF
(µA)
V
REF =
V
DD
All points at f
CLK
= 2.8 MHz except
at V
REF
= V
DD
= 2.5V, f
CLK
= 1.05 MHz
0
10
20
30
40
50
60
70
80
90
100
110
120
10 100 1000 10000
Clock Frequency (kHz)
I
REF
(µA)
V
DD
= V
REF
= 5V
V
DD
= V
REF
= 2.7V
0
10
20
30
40
50
60
70
80
90
100
110
120
-50-25 0 255075100
Temperature (°C)
I
REF
(µA)
V
DD
= V
REF
= 5V
f
CLK
= 2.8 MHz
V
DD
= V
REF
= 2.7V
f
CLK
= 1.05 MHz