LT1014 |
RFQ for LT1014 |
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| Technical/Catalog Information | LT1014ACN |
| Vendor | Linear Technology |
| Category | Integrated Circuits (ICs) |
| Packaging | Tube |
| Amplifier Type | General Purpose |
| Number of Circuits | 4 - Quad |
| Package / Case | 14-DIP (300 mil) |
| Slew Rate | 0.4 V/s |
| Gain Bandwidth Product | - |
| Current - Supply | 350A |
| Current - Output / Channel | 20mA |
| Voltage - Supply, Single/Dual (±) | 4 V ~ 44 V, ±2 V ~ 22 V |
| Output Type | - |
| -3db Bandwidth | - |
| Current - Input Bias | 12nA |
| Operating Temperature | 0°C ~ 70°C |
| Voltage - Input Offset | 60V |
| Drawing Number | 161; 05-08-1510; N; 8 |
| Lead Free Status | Contains Lead |
| RoHS Status | RoHS Non-Compliant |
| Other Names | LT1014ACN LT1014ACN |
| Product | Manufacturers | Pack | D/C |
| LT1014 | - | - | 03+ |
Fig. 13-22 This circuit is an alternate to that of Fig. 13-19, but it also provides a ratiometric output for A/D converters (and does not require switched-capacitor ICs). Calibration is the same as for Fig. 13-19. Linear Technology Linear Applications Handbook 1990 p Ahl1-1.
The LT®1014 is the first precision quad operational amplifier which directly upgrades designs in the industry standard 14-pin DIP LM324/LM348/OP-11/4156 pin configuration. It is no longer necessary to compromise specifications, while saving board space and cost, as compared to single operational amplifiers.
The LT1014's low offset voltage of 50mV, drift of 0.3mV/°C, offset current of 0.15nA, gain of 8 million, common-mode rejection of 117dB and power supply rejection of 120dB qualify it as four truly precision operational amplifiers. Particularly important is the low offset voltage, since no offset null terminals are provided in the quad configuration. Although supply current is only 350mA per amplifier, a new output stage design sources and sinks in excess of 20mA of load current, while retaining high voltage gain.
Similarly, the LT1013 is the first precision dual op amp in the 8-pin industry standard configuration, upgrading the performance of such popular devices as the MC1458/ 1558, LM158 and OP-221. The LT1013's specifications are similar to (even somewhat better than) the LT1014's.
Both the LT1013 and LT1014 can be operated off a single 5V power supply: input common-mode range includes ground; the output can also swing to within a few millivolts of ground. Crossover distortion, so apparent on previous single-supply designs, is eliminated. A full set of specifications is provided with ±15V and single 5V supplies.
Typical Application |
Features |
| Battery-Powered Precision Instrumentation Strain Gauge Signal Conditioners Thermocouple Amplifiers Instrumentation Amplifiers4mA20mA Current Loop TransmittersMultiple Limit Threshold DetectionActive FiltersMultiple Gain Blocks | Single Supply Operation Input Voltage Range Extends to Ground Output Swings to Ground while Sinking CurrentPin Compatible to 1458 and 324 with Precision SpecsGuaranteed Offset Voltage 150mV Max.Guaranteed Low Drift 2mV/°C Max.Guaranteed Offset Current 0.8nA Max.Guaranteed High Gain 5mA Load Current 1.5 Million Min. 17mA Load Current 0.8 Million Min.Guaranteed Low Supply Current 500mA Max.Low Voltage Noise, 0.1Hz to 10Hz 0.55mVp-pLow Current Noise-Better than 0P-07, 0.07pA/ÖHz |
Supply Voltage ............................................ ±22V
Differential Input Voltage .............................±30V
Input Voltage ......Equal to Positive Supply Voltage
..........................5V Below Negative Supply Voltage
Output Short-Circuit Duration ..................Indefinite
Storage Temperature Range
All Grades ...................................65°C to 150°C
Lead Temperature (Soldering, 10 sec.).........300°C
Operating Temperature Range
LT1013AM/LT1013M/
LT1014AM/LT1014M ...................55 °C to 125°C
LT1013AC/LT1013C/LT1013D
LT1014AC/LT1014C/LT1014D .............0°C to 70°C
LT1013I/ LT1014I ......................... 40°C to 85°C