SNOS413E August 2000 – November 2016 LPV321-N , LPV324-N , LPV358-N
PRODUCTION DATA.
| MIN | MAX | UNIT | ||
|---|---|---|---|---|
| Differential input voltage | ±Supply voltage | |||
| Supply voltage (V+– V −) | 5.5 | V | ||
| Output short circuit to V + | See(2) | |||
| Output short circuit to V − | See(3) | |||
| Junction temperature, TJ(MAX)(4) | 150 | °C | ||
| Storage temperature, Tstg | –65 | 150 | °C | |
| VALUE | UNIT | |||
|---|---|---|---|---|
| LPV321-N in DBV and DCK Packages | ||||
| V(ESD) | Electrostatic discharge | Human-body model (HBM), per ANSI/ESDA/JEDEC JS-001(1) | ±1500 | V |
| Machine model | ±100 | |||
| LPV358-N in D and DGK Packages | ||||
| V(ESD) | Electrostatic discharge | Human-body model (HBM), per ANSI/ESDA/JEDEC JS-001(1) | ±1500 | V |
| Machine model | ±100 | |||
| LPV324-N in D and PW Packages | ||||
| V(ESD) | Electrostatic discharge | Human-body model (HBM), per ANSI/ESDA/JEDEC JS-001(1) | ±2000 | V |
| Machine model | ±100 | |||
| MIN | MAX | UNIT | |
|---|---|---|---|
| Supply voltage | 2.7 | 5 | V |
| Operating temperature | –40 | 85 | °C |
| THERMAL METRIC(1) | LPV321-N | LPV358-N | LPV324-N | UNIT | ||||
|---|---|---|---|---|---|---|---|---|
| DBV (SOT-23) |
DCK (SC70) |
DGK (VSSOP) |
D (SOIC) |
D (SOIC) |
PW (TSSOP) |
|||
| 5 PINS | 5 PINS | 8 PINS | 8 PINS | 14 PINS | 14 PINS | |||
| RθJA | Junction-to-ambient thermal resistance | 206.6 | 296.7 | 187.5 | 130.1 | 103.9 | 132.7 | °C/W |
| RθJC(top) | Junction-to-case (top) thermal resistance | 167.2 | 128.1 | 77.7 | 74.3 | 61.6 | 59.1 | °C/W |
| RθJB | Junction-to-board thermal resistance | 65.5 | 74.3 | 108 | 70.7 | 58.4 | 75.1 | °C/W |
| ψJT | Junction-to-top characterization parameter | 50.2 | 6.5 | 15.2 | 23.1 | 21.2 | 10.8 | °C/W |
| ψJB | Junction-to-board characterization parameter | 65.1 | 73.6 | 106.5 | 70.2 | 58.1 | 74.58 | °C/W |
| RθJC(bot) | Junction-to-case (bottom) thermal resistance | — | — | — | — | — | — | °C/W |
| PARAMETER | TEST CONDITIONS | MIN(1) | TYP(2) | MAX(1) | UNIT | |
|---|---|---|---|---|---|---|
| VOS | Input offset voltage | 1.2 | 7 | mV | ||
| TCVOS | Input offset voltage average drift | 2 | µV/°C | |||
| IB | Input bias current | 1.7 | 50 | nA | ||
| IOS | Input offset current | 0.6 | 40 | nA | ||
| CMRR | Common mode rejection ratio | 0 V ≤ VCM ≤ 1.7 V | 50 | 70 | dB | |
| PSRR | Power supply rejection ratio | 2.7 V ≤ V+ ≤ 5 V, VO = 1 V, VCM = 1 V | 50 | 65 | dB | |
| VCM | Input common-mode voltage | For CMRR ≥ 50 dB | 0 | −0.2 | V | |
| 1.9 | 1.7 | |||||
| VO | Output swing | RL = 100 kΩ to 1.35 V | V+ − 100 | V+ − 3 | mV | |
| 80 | 180 | |||||
| IS | Supply current | LPV321-N | 4 | 8 | µA | |
| LPV358-N, both amplifiers | 8 | 16 | ||||
| LPV324-N, all four amplifiers | 16 | 24 | ||||
| PARAMETER | TEST CONDITIONS | MIN(1) | TYP(2) | MAX(1) | UNIT | |
|---|---|---|---|---|---|---|
| GBWP | Gain-bandwidth product | CL = 22 pF | 112 | kHz | ||
| Φm | Phase margin | 97 | ° | |||
| Gm | Gain margin | 35 | dB | |||
| en | Input-referred voltage noise | f = 1 kHz | 178 | nV/√Hz | ||
| in | Input-referred current noise | f = 1 kHz | 0.5 | pA/√Hz | ||
| PARAMETER | TEST CONDITIONS | MIN(1) | TYP(2) | MAX(1) | UNIT | ||
|---|---|---|---|---|---|---|---|
| VOS | Input offset voltage | TJ = 25°C | 1.5 | 7 | mV | ||
| TJ = –40°C to 85°C | 10 | ||||||
| TCVOS | Input offset voltage average drift | 2 | µV/°C | ||||
| IB | Input bias current | TJ = 25°C | 2 | 50 | nA | ||
| TJ = –40°C to 85°C | 60 | ||||||
| IOS | Input offset current | TJ = 25°C | 0.6 | 40 | nA | ||
| TJ = –40°C to 85°C | 50 | ||||||
| CMRR | Common mode rejection ratio | 0 V ≤ VCM ≤ 4 V | 50 | 71 | dB | ||
| PSRR | Power supply rejection ratio | 2.7 V ≤ V+ ≤ 5 V, VO = 1 V, VCM = 1 V | 50 | 65 | dB | ||
| VCM | Input common-mode voltage | For CMRR ≥ 50 dB | 0 | −0.2 | V | ||
| 4.2 | 4 | ||||||
| AV | Large signal voltage gain(1) | RL = 100 kΩ | TJ = 25°C | 15 | 100 | V/mV | |
| TJ = –40°C to 85°C | 10 | ||||||
| VO | Output swing | Sourcing RL = 100 kΩ to 2.5 V |
TJ = 25°C | V+ −100 | V+ −3.5 | mV | |
| TJ = –40°C to 85°C | V+ −200 | ||||||
| Sinking RL = 100 kΩ to 2.5 V |
TJ = 25°C | 90 | 180 | ||||
| TJ = –40°C to 85°C | 220 | ||||||
| IO | Output short circuit current sourcing | LPV3xx-N, VO = 0 V | 2 | 16 | mA | ||
| Output short circuit current sinking | LPV321-N, VO = 5 V | 20 | 60 | ||||
| LPV324-N and LPV358-N, VO = 5 V | 11 | 16 | |||||
| IS | Supply current | LPV321-N | TJ = 25°C | 9 | 12 | µA | |
| TJ = –40°C to 85°C | 15 | ||||||
| LPV358-N, Both amplifiers |
TJ = 25°C | 15 | 20 | ||||
| TJ = –40°C to 85°C | 24 | ||||||
| LPV324-N, All four amplifiers |
TJ = 25°C | 28 | 42 | ||||
| TJ = –40°C to 85°C | 46 | ||||||
| PARAMETER | TEST CONDITIONS | MIN(1) | TYP(2) | MAX(1) | UNIT | |
|---|---|---|---|---|---|---|
| SR | Slew rate(1) | 0.1 | V/µs | |||
| GBWP | Gain-bandwidth product | CL = 22 pF | 152 | kHz | ||
| Φm | Phase margin | 87 | ° | |||
| Gm | Gain margin | 19 | dB | |||
| en | Input-referred voltage noise | f = 1 kHz | 146 | nV/√Hz | ||
| in | Input-referred current noise | f = 1 kHz | 0.3 | pA/√Hz | ||
Figure 1. Supply Current vs Supply Voltage (LPV321-N)
Figure 3. Sourcing Current vs Output Voltage
Figure 5. Sinking Current vs Output Voltage
Figure 7. Output Voltage Swing vs Supply Voltage
Figure 9. Input Current Noise vs Frequency
Figure 11. Crosstalk Rejection vs Frequency
Figure 13. CMRR vs Frequency
Figure 15. CMRR vs Input Common Mode Voltage
Figure 17. ΔVOS vs VCM
Figure 19. Input Voltage vs Output Voltage
Figure 21. Open-Loop Frequency Response
Figure 23. Gain and Phase vs Capacitive Load
Figure 25. Noninverting Large Signal Pulse Response
Figure 27. Inverting Large Signal Pulse Response
Figure 29. Stability vs Capacitive Load
Figure 31. Stability vs Capacitive Load
Figure 33. THD vs Frequency
Figure 35. Short Circuit Current vs Temperature (Sinking)
Figure 2. Input Current vs Temperature
Figure 4. Sourcing Current vs Output Voltage
Figure 6. Sinking Current vs Output Voltage
Figure 8. Input Voltage Noise vs Frequency
Figure 10. Input Current Noise vs Frequency
Figure 12. PSRR vs Frequency
Figure 14. CMRR vs Input Common Mode Voltage
Figure 16. ΔVOS vs VCM
Figure 18. Input Voltage vs Output Voltage
Figure 20. Open-Loop Frequency Response
Figure 22. Gain and Phase vs Capacitive Load
Figure 24. Slew Rate vs Supply Voltage
Figure 26. Noninverting Small Signal Pulse Response
Figure 28. Inverting Small Signal Pulse Response
Figure 30. Stability vs Capacitive Load
Figure 32. Stability vs Capacitive Load
Figure 34. Open-Loop Output Impedance vs Frequency
Figure 36. Short Circuit Current vs Temperature (Sourcing)