|Category||Analog & Mixed-Signal Processing => Amplifiers => Operational Amplifiers => General Purpose => Single|
|Description||LTC1152, Rail-to-rail Input Rail-to-rail Output Zero-drift op Amp|
|Company||Linear Technology Corporation|
|Datasheet||Download LTC1152 datasheet
|Cross ref.||Similar parts: AD8551, MAX495|
Input Common-Mode Range Includes Both Rails Output Swings Rail to Rail Output Will Drive 1k Load No External Components Required Input Offset Voltage: 10µV Max Input Offset Drift: 100nV/°C Max Minimum CMRR: 115dB Supply Current: 3.0mA Max Shutdown Pin Drops Supply Current to 5µA Max Output Configurable to Drive Any Capacitive Load Operates from to 14V Total Supply Voltage
The is a high performance, low power zero-drift op amp featuring an input stage that common modes to both power supply rails and an output stage that provides rail-to-rail swing, even into heavy loads. The wide input common-mode range is achieved with a high frequency on-board charge pump. This technique eliminates the crossover distortion and limited CMRR imposed by competing technologies. The is a C-LoadTM of amp, enabling it to drive any capacitive load. The LTC1152 shares the excellent DC performance specs of LTC's other zero-drift amplifiers. Typical offset voltage is 1µV and typical offset drift is 10nV/°C. CMRR and PSRR are 130dB and 120dB and open-loop gain is 130dB. Input noise voltage is 2µVP-P from to 10Hz. Gain-bandwidth product is 0.7MHz and slew rate is 0.5V/µs, all with supply current of 3.0mA max over temperature. The LTC1152 also includes a shutdown feature which drops supply current to 1µA and puts the output stage in a high impedance state. The LTC1152 is available in 8-pin PDIP and 8-pin SO packages and uses the standard op amp pinout, allowing be a plug-in replacement for many standard op amps.
, LTC and LT are registered trademarks of Linear Technology Corporation. C-Load is trademark of Linear Technology Corporation.
Rail-to-Rail Amplifiers and Buffers High Resolution Data Acquisition Systems Supply Current Sensing in Either Rail Low Supply Voltage Transducer Amplifiers High Accuracy Instrumentation Single Negative Supply Operation
Total Supply Voltage V 14V Input Voltage............................ 0.3V Output Short-Circuit Duration (Pin 6)............. Indefinite Operating Temperature Range to 85°C Storage Temperature Range................ to 150°C Lead Temperature (Soldering, 10 sec)................. 300°C
SYMBOL PARAMETER VOS Input Offset Voltage VOS IB IOS en in CMRR PSRR AVOL VOUT Average Input Offset Drift Long-Term Offset Drift Input Bias Current Input Offset Current Input Noise Voltage (Note 3) Input Noise Current Common-Mode Rejection Ratio Power Supply Rejection Ratio Large-Signal Voltage Gain Maximum Output Voltage Swing (Note 4)TA = operating temperature range, unless otherwise specified.
UNITS µV nV/°C nV/Mo pA µVP-P fA/Hz dB V V/µs MHz
Slew Rate Gain-Bandwidth Product Supply Current Output Leakage Current Charge Pump Output Voltage Shutdown Pin Input Low Voltage Shutdown Pin Input High Voltage Shutdown Pin Input Current Internal Charge Pump Frequency Internal Sampling Frequency
SYMBOL PARAMETER VOS Input Offset Voltage VOS IB IOS en in CMRR AVOL VOUT SR GBW IS IOSD VCP VIL VIH IIN fCP fSMPL Average Input Offset Drift Input Bias Current Input Offset Current Input Noise Voltage (Note 3) Input Noise Current Common-Mode Rejection Ratio Large-Signal Voltage Gain Maximum Output Voltage Swing (Note 4) Slew Rate Gain-Bandwidth Product Supply Current Output Leakage Current Charge Pump Output Voltage Shutdown Pin Input Low Voltage Shutdown Pin Input High Voltage Shutdown Pin Input Current Internal Charge Pump Frequency Internal Sampling FrequencyTA = operating temperature range, unless otherwise specified.
The q denotes specifications which apply over the full operating temperature range. Note 1: These parameters are guaranteed by design. Thermocouple effects preclude measurement of these voltage levels during automated testing. Note T 0°C these parameters are guaranteed by design and not tested. Note to 10Hz noise is specified DC coupled a 10-sec window; to 1Hz noise is specified a 100-sec window with an RC highpass
filter at 0.1Hz. Contact LTC factory for sample tested or 100% tested noise parts. Note 4: All output swing measurements are taken with the load resistor connected from output to ground. For single supply tests, only the positive swing is specified (negative swing will be 0V due to the pull-down effect of the load resistor). For dual supply operation, both positive and negative swing are specified.
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