Dell MAXIM MAX4414-MAX4419 Low-Power, +3V +5V, 400MHz Single-Supply Op Amps with Rail-to-Rail Outputs
Summary
Discover the MAX4414–MAX4419 series of high-speed, ultra-low power operational amplifiers. These devices deliver exceptional performance—featuring up to 400MHz bandwidth and rail-to-rail outputs—while consuming minimal power on a single +3V/+5V supply. The accompanying manual provides comprehensive electrical specifications, detailed application guidance (including video and baseband driving), and package options for optimizing performance. Ideal for portable communications, battery-powered instruments, and advanced telemetry systems requiring both high efficiency and fidelity.
Page 1 Text Content
19-1837; Rev 0; 10/00
Low-Power, +3V/+5V, 400MHz Single-Supply
Op Amps with Rail-to-Rail Outputs General Description Features
The MAX4414–MAX4419 operational amplifiers com- Ultra-Low 1.6m A Supply Current bine high-speed performance, low distortion, and ultra-
Single +3V/+5V Operation
low supply current. Consuming just 1.6m A of supply current per amplifier, these devices operate from a sin-
High Speed
gle +2.7V to +5.5V supply, have Rail-to-Rail® outputs,
400MHz -3d B Bandwidth
and exhibit a common-mode input voltage range that
(MAX4414/MAX4416/MAX4418)
extends from 100m V below ground to within 1.5V of the
200V/µs Slew Rate
positive supply rail.
(MAX4414/MAX4416/MAX4418)
The MAX4414/MAX4416/MAX4418 single/dual/quad op
150MHz -3d B Bandwidth
amps are unity-gain stable and achieve a 400MHz -3d B
(MAX4415/MAX4417/MAX4419)
bandwidth with a 200V/µs slew rate. The MAX4415/
470V/µs Slew Rate
MAX4417/MAX4419 single/dual/quad op amps are
(MAX4415/MAX4417/MAX4419)
compensated for closed-loop gains of +5V/V or greater
and achieve a 150MHz -3d B bandwidth with a 470V/µs Rail-to-Rail Outputs
slew rate. The combination of high-speed, ultra-low
Input Common-Mode Range Extends Beyond VEE
power, and low-distortion makes the MAX4414– MAX4419 ideal for low-power/low-voltage, high-speed Low Differential Gain/Phase: 0.03%/0.15° portable systems such as video, communications, and
SU PP LY UR RE NT (m A) Low Distortion at 5MHz (MAX4414/MAX4416/MAX4418)
instrumentation.
-93d Bc SFDR
The MAX4414/MAX4415 single and MAX4416/
0.003% Total Harmonic Distortion
MAX4417 dual amplifiers are available in space-saving
8-pin µMAX and SO packages, while the MAX4418/ Low Cost
MAX4419 quad amplifiers are available in a 14-pin TSSOP package. Ordering Information ________________________Applications PART TEMP. RANGE PIN-PACKAGE
Battery-Powered Instruments MAX4414EUA -40°C to +85°C 8 µMAX MAX4414ESA -40°C to +85°C 8 SO
Portable Communications
MAX4415EUA -40°C to +85°C 8 µMAX
Keyless Entry Systems
MAX4415ESA -40°C to +85°C 8 SO
Cellular Telephones
AX to c0 Ordering information continued at end of data sheet.
Video Line Drivers Baseband Applications
Typical Operating Characteristic
_____________________Selector Guide
SUPPLY CURRENT vs. SUPPLY VOLTAGE
(PER AMPLIFIER)
MINIMUM -3d B 1.80
NO. OF SLEW RATE
PART GAIN BANDWIDTH
AMPS (V/µs)
(V/V) (MHz)
MAX4414 1.65 MAX4415 1.60
MAX4416 1.55 MAX4417 1.50 1.45
MAX4418
MAX4419
Rail-to-Rail is a registered trademark of Nippon Motorola, Ltd.
Pin Configurations appear at end of data sheet.
SUPPLY VOLTAGE (V)
Maxim Integrated Products
For price, delivery, and to place orders, please contact Maxim Distribution at 1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com.
Page Summary Contents For Dell MAXIM MAX4414-MAX4419 Low-Power, +3V +5V, 400MHz Single-Supply Op Amps with Rail-to-Rail Outputs
Manual Details
| Brand | Dell |
|---|---|
| Pages | 22 |
| File Size | 539.57 KB |
| Published | July 04, 2026 |
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Frequently Asked Questions
What is the typical supply current per amplifier?
The typical quiescent supply current (Iq) ranges from 1.4 mA to 3 mA, depending on the supply voltage and device model.
What are the operational temperature limits for these amplifiers?
The operational temperature range for the MAX4414EUA is -40°C to +85°C.
What is the maximum output power handling (T= +70°C)?
For an 8-Pin SO package, the continuous power dissipation at T=+70°C is 471mW.
Can these amplifiers handle high input voltages?
The absolute maximum differential input voltage is specified as ±2.5V.