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CS3001_08 Datasheet, PDF (3/16 Pages) Cirrus Logic – Precision Low-voltage Amplifier; DC to 2 kHz
CS3001
CS3002
1. CHARACTERISTICS AND SPECIFICATIONS
ELECTRICAL CHARACTERISTICS V+ = +5 V, V- = 0V, VCM = 2.5 V (Note 1)
CS3001/CS3002
Parameter
Min Typ
Max
Input Offset Voltage
(Note 2) •
-
-
±10
Average Input Offset Drift
(Note 2) •
-
±0.01 ±0.05
Long Term Input Offset Voltage Stability
(Note 3)
Input Bias Current
TA = 25º C
•
-
±100
-
-
-
±1000
Input Offset Current
TA = 25º C
•
-
±200
-
-
-
±2000
Input Noise Voltage Density RS = 100 Ω, f0 = 1 Hz
RS = 100 Ω, f0 = 1 kHz
-
6
-
6
Input Noise Voltage
0.1 to 10 Hz
-
125
Input Noise Current Density f0 = 1 Hz
-
100
Input Noise Current
0.1 to 10 Hz
-
1.9
Input Common Mode Voltage Range
• -0.1
- (V+)-1.25
Common Mode Rejection Ratio (dc)
(Note 4) •
115
120
-
Power Supply Rejection Ratio
• 120 136
-
Large Signal Voltage Gain RL = 2 kΩ to V+/2
(Note 5) • 200 300
-
Output Voltage Swing
RL = 2 kΩ to V+/2
RL = 100 kΩ to V+/2
• +4.7
-
-
+4.99
Slew Rate
RL = 2 k, 100 pF
5
-
Overload Recovery Time
-
100
-
Supply Current
PWDN active (CS3001 Only)
CS3001 •
-
2.1
2.8
CS3002 •
-
3.6
4.8
(Note 6) •
15
PWDN Threshold
(Note 6) • (V+) -1.0 -
-
Start-up Time
(Note 7) •
-
9
12
Unit
µV
µV/ºC
pA
pA
pA
pA
nV/ Hz
nV/ Hz
nVp-p
fA/ Hz
pAp-p
V
dB
dB
dB
V
V
V/µs
µs
mA
mA
µA
V
ms
Notes: 1. Symbol “•” denotes specification applies over -40 to +85 ° C.
2. This parameter is guaranteed by design and laboratory characterization. Thermocouple effects prohibit
accurate measurement of these parameters in automatic test systems.
3. 1000-hour life test data @ 125 °C indicates randomly distributed variation approximately equal to
measurement repeatability of 1 µV.
4. Measured within the specified common mode range limits.
5. Guaranteed within the output limits of (V+ -0.3 V) to (V- +0.3 V). Tested with proprietary production test
method.
6. PWDN input has an internal pullup resistor to V+ of approximately 800 kΩ and is the major source of
current consumption when PWDN is active low.
7. The device has a controlled start-up behavior due to its complex open loop gain characteristics. Start-
up time applies when supply voltage is applied or when PDWN is released.
DS490F8
3