
LMP8358MA/NOPB
ActiveZERO-DRIFT, PROGRAMMABLE INSTRUMENTATION AMPLIFIER WITH DIAGNOSTICS
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LMP8358MA/NOPB
ActiveZERO-DRIFT, PROGRAMMABLE INSTRUMENTATION AMPLIFIER WITH DIAGNOSTICS
Technical Specifications
Parameters and characteristics commom to parts in this series
Specification | LMP8358MA/NOPB | LMP8358 Series |
---|---|---|
-3db Bandwidth | 930 kHz | 930 kHz |
Amplifier Type | Zero-Drift | Zero-Drift |
Board Type | - | Fully Populated |
Channels per IC | - | 1 - Single |
Current - Input Bias | 6 pA | 6 pA |
Current - Output / Channel [custom] | 41 mA | 41 mA |
Current - Supply | 1.9 mA | 1.9 mA |
Current - Supply (Main IC) | - | 1.9 mA |
Gain Bandwidth Product | 240 MHz | 240 MHz |
Mounting Type | Surface Mount | Surface Mount |
Number of Circuits | 1 | 1 |
Operating Temperature [Max] | 125 °C | 125 °C |
Operating Temperature [Min] | -40 °C | -40 °C |
Output Type | Rail-to-Rail | Rail-to-Rail |
Package / Case | 14-SOIC | 14-SOIC, 14-TSSOP |
Package / Case | - | 0.173 " |
Package / Case | - | 4.4 mm |
Package / Case [x] | 0.154 in | 0.154 in |
Package / Case [y] | 3.9 mm | 3.9 mm |
Slew Rate | 11 V/µs | 11 V/µs |
Supplied Contents | - | Board(s) |
Supplier Device Package | - | 14-TSSOP |
Utilized IC / Part | - | LMP8358 |
Voltage - Input Offset | 0.9 µV | 0.9 µV |
Voltage - Supply Span (Max) [Max] | 5.5 V | 5.5 V |
Voltage - Supply Span (Min) [Min] | 2.7 V | 2.7 V |
LMP8358 Series
Zero-Drift, Programmable Instrumentation Amplifier with Diagnostics
Part | Current - Supply | Number of Circuits | Voltage - Input Offset | Operating Temperature [Max] | Operating Temperature [Min] | Voltage - Supply Span (Min) [Min] | Output Type | Slew Rate | Gain Bandwidth Product | Mounting Type | Package / Case [x] | Package / Case [y] | Package / Case | -3db Bandwidth | Voltage - Supply Span (Max) [Max] | Amplifier Type | Current - Input Bias | Current - Output / Channel [custom] | Package / Case [custom] | Package / Case [custom] | Supplier Device Package | Current - Supply (Main IC) | Board Type | Utilized IC / Part | Supplied Contents | Channels per IC |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments LMP8358MAX/NOPB | 1.9 mA | 1 | 0.9 µV | 125 °C | -40 °C | 2.7 V | Rail-to-Rail | 11 V/µs | 240 MHz | Surface Mount | 0.154 in | 3.9 mm | 14-SOIC | 930 kHz | 5.5 V | Zero-Drift | 6 pA | 41 mA | ||||||||
Texas Instruments LMP8358MTX/NOPB | 1.9 mA | 1 | 0.9 µV | 125 °C | -40 °C | 2.7 V | Rail-to-Rail | 11 V/µs | 240 MHz | Surface Mount | 14-TSSOP | 930 kHz | 5.5 V | Zero-Drift | 6 pA | 41 mA | 0.173 " | 4.4 mm | 14-TSSOP | |||||||
Texas Instruments LMP8358MT/NOPB | 1.9 mA | 1 | 0.9 µV | 125 °C | -40 °C | 2.7 V | Rail-to-Rail | 11 V/µs | 240 MHz | Surface Mount | 14-TSSOP | 930 kHz | 5.5 V | Zero-Drift | 6 pA | 41 mA | 0.173 " | 4.4 mm | 14-TSSOP | |||||||
Texas Instruments LMP8358MAEVAL/NOPB | Rail-to-Rail | 11 V/µs | 930 kHz | Zero-Drift | 41 mA | 1.9 mA | Fully Populated | LMP8358 | Board(s) | 1 - Single | ||||||||||||||||
Texas Instruments LMP8358MA/NOPB | 1.9 mA | 1 | 0.9 µV | 125 °C | -40 °C | 2.7 V | Rail-to-Rail | 11 V/µs | 240 MHz | Surface Mount | 0.154 in | 3.9 mm | 14-SOIC | 930 kHz | 5.5 V | Zero-Drift | 6 pA | 41 mA |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
Distributor | Package | Quantity | $ | |
---|---|---|---|---|
Digikey | Tube | 1 | $ 7.59 | |
10 | $ 6.86 | |||
55 | $ 6.54 | |||
110 | $ 5.68 | |||
275 | $ 5.42 | |||
550 | $ 4.94 | |||
1045 | $ 4.30 | |||
Texas Instruments | TUBE | 1 | $ 5.81 | |
100 | $ 4.74 | |||
250 | $ 3.72 | |||
1000 | $ 3.16 |
Description
General part information
LMP8358 Series
The LMP8358 is a precision programmable-gain instrumentation amplifier in TI's LMP precision amplifier family. Its gain can be programmed to 10, 20, 50, 100, 200, 500, or 1000 through an SPI-compatible serial interface or through a parallel interface. Alternatively, its gain can be set to an arbitrary value using two external resistors. The LMP8358 uses patented techniques to measure and continuously correct its input offset voltage, eliminating offset drift over time and temperature and the effect of 1/f noise. Its ground-sensing CMOS input features a high CMRR and low input bias currents. It is capable of sensing differential input voltages in a common-mode range that extends from 100mV below the negative supply to 1.4V below the positive supply, making it an ideal solution for interfacing with ground-referenced sensors, supply-referenced sensor bridges, and any other application requiring precision and long-term stability. Additionally, the LMP8358 includes fault detection circuitry to detect open and shorted inputs and deteriorating connections to the signal source. Other features that make the LMP8358 a versatile solution for many applications are its rail-to-rail output, low input voltage noise and high gain-bandwidth product.
The LMP8358 is a precision programmable-gain instrumentation amplifier in TI's LMP precision amplifier family. Its gain can be programmed to 10, 20, 50, 100, 200, 500, or 1000 through an SPI-compatible serial interface or through a parallel interface. Alternatively, its gain can be set to an arbitrary value using two external resistors. The LMP8358 uses patented techniques to measure and continuously correct its input offset voltage, eliminating offset drift over time and temperature and the effect of 1/f noise. Its ground-sensing CMOS input features a high CMRR and low input bias currents. It is capable of sensing differential input voltages in a common-mode range that extends from 100mV below the negative supply to 1.4V below the positive supply, making it an ideal solution for interfacing with ground-referenced sensors, supply-referenced sensor bridges, and any other application requiring precision and long-term stability. Additionally, the LMP8358 includes fault detection circuitry to detect open and shorted inputs and deteriorating connections to the signal source. Other features that make the LMP8358 a versatile solution for many applications are its rail-to-rail output, low input voltage noise and high gain-bandwidth product.