Datasheet
Table Of Contents
- Table 1. Device summary
- 1 Package pin connections
- 2 Absolute maximum ratings and operating conditions
- 3 Electrical characteristics
- Table 4. Electrical characteristics at Vcc+ = 2.5 V with Vcc- = 0 V, Vicm = Vcc/2, Tamb = 25° C, and RL connected to Vcc/2 (unless otherwise specified)
- Table 5. Shutdown characteristics VCC = 2.5 V
- Table 6. Electrical characteristics at Vcc+ = 2.7 V with Vcc- = 0 V, Vicm = Vcc/2, Tamb = 25° C, and RL connected to Vcc/2 (unless otherwise specified)
- Table 7. Shutdown characteristics VCC = 2.7 V
- Table 8. Electrical characteristics at Vcc+ = 5 V with Vcc- = 0 V, Vicm = Vcc/2, Tamb = 25° C, and RL connected to Vcc/2 (unless otherwise specified)
- Table 9. Shutdown characteristics VCC = 5 V
- Figure 2. Supply current vs. supply voltage at Vicm = VCC/2
- Figure 3. Supply current vs. Vicm at VCC = 5 V
- Figure 4. Vio distribution at VCC = 5 V
- Figure 5. Input offset voltage vs. input common mode voltage at VCC = 5 V
- Figure 6. Output current vs. output voltage at VCC = 2.7 V
- Figure 7. Output current vs. output voltage at VCC = 5 V
- Figure 8. Output current vs. supply voltage at Vicm = VCC/2
- Figure 9. Voltage gain and phase with CL = 40 pF
- Figure 10. Voltage gain and phase with CL = 100 pF
- Figure 11. Voltage gain and phase with CL = 200 pF
- Figure 12. Phase margin vs. output current at VCC = 5 V
- Figure 13. Stability in follower configuration
- Figure 14. Positive and negative slew rate vs. supply voltage
- Figure 15. Positive slew rate at VCC = 5 V with CL = 100 pF
- Figure 16. Negative slew rate at VCC = 5 V with CL = 100 pF
- Figure 17. Noise vs. frequency at VCC = 5 V
- Figure 18. 0.1 Hz to 10 Hz noise at VCC = 5 V
- Figure 19. Distortion + noise vs. frequency
- Figure 20. Distortion + noise vs. output voltage
- 4 Application information
- 5 Package information
- 5.1 SC70-5 (or SOT323-5) package information
- 5.2 SOT23-5 package information
- 5.3 SOT23-6 package information
- 5.4 DFN8 2 x 2 mm package information
- 5.5 MiniSO-8 package information
- 5.6 MiniSO-10 package information
- 5.7 TSSOP14 package information
- 5.8 TSSOP16 package information
- 5.9 SO-8 package information
- 5.10 SO-14 package information
- 6 Ordering information
- 7 Revision history

Electrical characteristics LMV82x, LMV82xA
14/32 Doc ID 022467 Rev 3
Figure 14. Positive and negative slew rate vs.
supply voltage
Figure 15. Positive slew rate at V
CC
= 5 V with
C
L
= 100 pF
3.03.0 3.5 4.04.0 4.5 5.05.0 5.5
-2.5-2.5
-2.0-2.0
-1.5-1.5
-1.0-1.0
-0.5-0.5
0.00.0
0.50.5
1.01.0
1.51.5
2.02.0
2.52.5
T=-40°C
T=25°C
T=125°C
T=-40°C
Cl=100pF
Rl=1M
Ω
Vicm=Vcc/2
Vload=Vcc/2
T=125°C
T=25°C
Slew rate (V/µs)
Supply Voltage (V)
01234
-2.0-2.0
-1.5
-1.0-1.0
-0.5
0.00.0
0.5
1.01.0
1.5
2.02.0
Vcc=5V
Vicm=Vcc/2
Cl=100pF
Rl=1M
Ω
T=25°C
T=125°C
T=-40°C
Output Voltage (V)
Time (µs)
Figure 16. Negative slew rate at V
CC
= 5 V with
C
L
= 100 pF
Figure 17. Noise vs. frequency at V
CC
= 5 V
0.0 0.5 1.0 1.5
-2.0-2.0
-1.5-1.5
-1.0-1.0
-0.5-0.5
0.00.0
0.50.5
1.01.0
1.51.5
2.02.0
Vcc=5V
Vicm=Vcc/2
Cl=100pF
Rl=1M
Ω
T=25°C
T=125°C
T=-40°C
Output Voltage (V)
Time (µs)
100 1000 10000
00
20
4040
60
8080
100
Vcc=5V
T=25°C
Vicm=2.5V
Vicm=0.5V
Equivalent input noise voltage density (nV/VHz)
Frequency (Hz)
Figure 18. 0.1 Hz to 10 Hz noise at V
CC
= 5 V Figure 19. Distortion + noise vs. frequency
0246810
-6
-4
-2
0
2
4
6
Vcc=5V
Vicm=2.5V
T=25°C
Voltage noise (µV)
Time (s)
100 1000 10000
10
-4
10
-3
10
-2
Vcc=5V
Vicm=(Vcc-1)/2
Vin=3Vpp
Gain=1
BW=80kHz
T=25°C
Rl=10k
Ω
Rl=100k
Ω
THD + N (%)
Frequency (Hz)