NJU77582R-TE1

$0.50

Product Attribute Attribute Value
Manufacturer: NJR
Product Category: Operational Amplifiers – Op Amps
Mounting Style: SMD/SMT
Package / Case: MSOP-8
Number of Channels: 2 Channel
Supply Voltage – Max: 5.5 V
GBP – Gain Bandwidth Product: 20 MHz
Output Current per Channel: 2.3 mA
SR – Slew Rate: 10 V/us
Vos – Input Offset Voltage: 1 mV
Supply Voltage – Min: 2.7 V
Minimum Operating Temperature: – 55 C
Maximum Operating Temperature: + 125 C
Ib – Input Bias Current: 1 pA
Shutdown: No Shutdown
CMRR – Common Mode Rejection Ratio: 60 dB
en – Input Voltage Noise Density: 7 nV/sqrt Hz
Packaging: Reel
Packaging: Cut Tape
Amplifier Type: General Purpose
Brand: NJR
Input Type: Rail to Rail
Ios – Input Offset Current: 1 pA
Maximum Dual Supply Voltage: 2.75 V
Minimum Dual Supply Voltage: 1.35 V
Output Type: Rail to Rail
Product: Operational Amplifiers
Product Type: Op Amps – Operational Amplifiers
PSRR – Power Supply Rejection Ratio: 70 dB
Factory Pack Quantity: 2000
Subcategory: Amplifier ICs
Technology: Si
THD plus Noise: 0.005 %

Additional Details

Product Compliance

USHTS: 8542330001

TARIC: 8542330000

ECCN: EAR99

More Information

NJU77582 Dual Rail-to-Rail I/O Op-Amps
NJR (New Japan Radio) NJU77582 Dual Rail-to-Rail I/O Operational Amplifiers (Op-Amps) provide extensive bandwidth and coffee noise. The aggregate of low noise (6nV√Hz at 10kHz), excessive-advantage bandwidth (20MHz), and speedy slew price (10V/μs) make the devices best for a spread of programs. These NJU77582 operational amplifiers buffer ADC, DAC, and different huge output swing devices in unmarried-supply structures with the aid of permitting rail-to-rail enter and output. The operational amplifiers feature Enhanced C-Drive™ that can at once pressure a 1000pF capacitive load. This function is right for high-speed signal cable drivers and high-pace energetic filter out circuits that are sensitive to wiring capacitance. The NJU77582 operational amplifiers consist of an integrated EMI clear out to reduce malfunctions due to RF noises from mobile phones and different wireless devices.