MAX4278ESA is a BUFFER. The commonly used packaging method is SOP,
MAX4278ESA amplifier core information:
The MAX4278ESA has a minimum operating temperature of -40 °C and a maximum operating temperature of 85 °C. Its peak reflow temperature is 240°C and its maximum average bias current is 5 µA
How to simply check the efficiency of an amplifier? Looking at its slew rate, the MAX4278ESA has a nominal slew rate of 1600 V/us. When the op amp is used in closed loop, at a certain closed-loop gain (usually 1 or 2, 10, etc.), the frequency when the MAX4278ESA gain becomes 0.707 times the low-frequency gain is 310 MHz.
The MAX4278ESA's nominal supply voltage is 5 V, and its corresponding nominal negative supply voltage is -5 V. The input offset voltage of the MAX4278ESA is 3000 µV (Input offset voltage: the compensation voltage added between the two input terminals to make the op amp output terminal 0V (or close to 0V).)
Related dimensions of MAX4278ESA:
The width of MAX4278ESA is: 3.9 mm and the length is 4.9 mm. MAX4278ESA has 8 terminals. Its terminal position type is: DUAL. Terminal pitch is 1.27 mm. Total pins: 8
Additional information about the MAX4278ESA amplifier:
Its temperature grade is: INDUSTRIAL. And its humidity sensitivity level is: 1. The MAX4278ESA is not Rohs certified. It contains lead. The corresponding JESD-30 code is: R-PDSO-G8.
The corresponding JESD-609 code is: e0. The package code of MAX4278ESA is: SOP. The materials of the MAX4278ESA package are mostly PLASTIC/EPOXY. The package shape is RECTANGULAR. The MAX4278ESA package pin formats are: SMALL OUTLINE.
Its terminal forms are: GULL WING. The maximum seat height is 1.75 mm.
MAX4278ESA is a BUFFER. The commonly used packaging method is SOP,
MAX4278ESA amplifier core information:
The MAX4278ESA has a minimum operating temperature of -40 °C and a maximum operating temperature of 85 °C. Its peak reflow temperature is 240°C and its maximum average bias current is 5 µA
How to simply check the efficiency of an amplifier? Looking at its slew rate, the MAX4278ESA has a nominal slew rate of 1600 V/us. When the op amp is used in closed loop, at a certain closed-loop gain (usually 1 or 2, 10, etc.), the frequency when the MAX4278ESA gain becomes 0.707 times the low-frequency gain is 310 MHz.
The MAX4278ESA's nominal supply voltage is 5 V, and its corresponding nominal negative supply voltage is -5 V. The input offset voltage of the MAX4278ESA is 3000 µV (Input offset voltage: the compensation voltage added between the two input terminals to make the op amp output terminal 0V (or close to 0V).)
Related dimensions of MAX4278ESA:
The width of MAX4278ESA is: 3.9 mm and the length is 4.9 mm. MAX4278ESA has 8 terminals. Its terminal position type is: DUAL. Terminal pitch is 1.27 mm. Total pins: 8
Additional information about the MAX4278ESA amplifier:
Its temperature grade is: INDUSTRIAL. And its humidity sensitivity level is: 1. The MAX4278ESA is not Rohs certified. It contains lead. The corresponding JESD-30 code is: R-PDSO-G8.
The corresponding JESD-609 code is: e0. The package code of MAX4278ESA is: SOP. The materials of the MAX4278ESA package are mostly PLASTIC/EPOXY. The package shape is RECTANGULAR. The MAX4278ESA package pin formats are: SMALL OUTLINE.
Its terminal forms are: GULL WING. The maximum seat height is 1.75 mm.
MAX4178E_A/MAX4278E_A ...........................-40°C to +85°C
MAX4178EUK/MAX4278EUK .........................-40°C to +85°C
MAX4178MJA/MAX4278MJA .......................-55°C to +125°C
Storage Temperature Range .............................-65°C to +160°C
Lead Temperature (soldering, 10s) .................................+300°C
Note 1:
Specifications for the MAX4_78EUK (SOT23 packages) are 100% tested at T
A
= +25°C, and guaranteed by design over
temperature.
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
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