
Dual low-power, rail-to-rail I/O operational amplifier featuring a 10MHz gain bandwidth product and 14V/µs slew rate. This general-purpose op amp offers 2 channels, a 60dB CMRR, and 78dB PSRR, operating from 1.8V to 24V supply voltages. With a 390µA operating supply current and 4mA output current per channel, it is housed in a lead-free, 8-pin SOIC surface-mount package. Suitable for industrial temperature ranges (-40°C to 85°C), it provides 100dB voltage gain and 180nA input bias current.
Texas Instruments LM6132BIMX/NOPB technical specifications.
| Amplifier Type | GENERAL PURPOSE |
| Bandwidth | 10MHz |
| Package/Case | SOIC |
| Common Mode Rejection Ratio | 60dB |
| Gain Bandwidth Product | 10MHz |
| Input Bias Current | 180nA |
| Input Offset Voltage (Vos) | 6mV |
| JESD-30 Code | R-PDSO-G8 |
| Lead Free | Lead Free |
| Max Operating Temperature | 85°C |
| Min Operating Temperature | -40°C |
| Max Supply Voltage | 24V |
| Min Supply Voltage | 1.8V |
| Moisture Sensitivity Level | 1 |
| Mount | Surface Mount |
| Number of Amplifiers | 2 |
| Number of Channels | 2 |
| Number of Circuits | 2 |
| Number of Elements | 2 |
| Number of Functions | 2 |
| Operating Supply Current | 390uA |
| Output Current | 4mA |
| Output Current per Channel | 4mA |
| Package Body Material | Plastic |
| Package Quantity | 2500 |
| Package Shape | Rectangular |
| Packaging | Tape and Reel |
| Peak Reflow Temperature (Cel) | 260°C |
| Power Supply Rejection Ratio (PSRR) | 78dB |
| Radiation Hardening | No |
| Reach SVHC Compliant | No |
| RoHS Compliant | Yes |
| Slew Rate | 14V/µs |
| Supply Current | 360uA |
| Surface Mount | Yes |
| Temperature Grade | INDUSTRIAL |
| Terminal Finish | Tin |
| Terminal Form | Gull Wing |
| Terminal Position | DUAL |
| Time @ Peak Reflow Temperature-Max (s) | 40s |
| Unity Gain Bandwidth Product | 10MHz |
| Voltage Gain | 100dB |
| Width | 3.9mm |
| RoHS | Compliant |
Download the complete datasheet for Texas Instruments LM6132BIMX/NOPB to view detailed technical specifications.
This datasheet cannot be embedded due to technical restrictions.
