EL5164

600MHz Current Feedback Amplifiers with Enable

OVERVIEW

The EL5164, EL5165, and EL5364 are current feedback amplifiers with a very high bandwidth of 600MHz. This makes these amplifiers ideal for today’s high speed video and monitor applications.

With a supply current of just 3.5mA per amplifier and the ability to run from a single supply voltage from 5V to 12V, these amplifiers are also ideal for handheld, portable or battery-powered equipment.

The EL5164 and EL5364 also incorporate an enable and disable function to reduce the supply current to 14µA typical per amplifier. Allowing the CE pin to float, or applying a low logic level, enables the amplifier.

The EL5165 is offered in the 5 Ld SOT-23 package, EL5164 is available in the 6 Ld SOT-23 and the industry-standard 8 Ld SOIC packages, and the EL5364 in a 16 Ld SOIC and 16 Ld QSOP packages. All operate over the industrial temperature range of -40°C to +85°C.

KEY FEATURES

  • 600MHz -3dB bandwidth
  • 4700V/µs slew rate
  • 3.5mA supply current
  • Single and dual supply operation, from 5V to 12V supply span
  • Fast enable/disable (EL5164 and EL5364 only)
  • Available in SOT-23 packages
  • High speed, 1.4GHz product available (EL5166 and EL5167)
  • 500MHz products available in Single (EL5162, EL5163), Dual (EL5262, EL5263) and Triple (EL5362)
  • Pb-Free (RoHS compliant)

PARAMETRICS

Parameters
EL5164
Basic Information
Production Status
Mass Production
iSim Model
YES
# of Devices/ Channels
1
Bandwidth (MHz)
600
Slew Rate (V/μs)
4700
VS (min)
5 V
VS (max)
12 V
IS (per amp)
5 mA
Noise VN (nV/√Hz)
2.1
IBIAS
2 µA
IBIAS (max)
10 µA
Max Offset Voltage
5 mV
IOUT
140 mA
VOUT (V)
7.6
Rail-to-Rail Input
No
Rail-to-Rail Output
No
PSRR (dB)
79
CMRR (dB)
62
Thermal Shutdown
No
Gain Min
1
Diff Gain (%)
0.01
Diff Phase (°)
0.01
AVOL (dB)
112
Enable
Yes
Topology
CFA
Distortion Conditions
2.5Vpp, 5MHz
Output Headroom (V)
0.9
Qualification Level
Standard
Can Sample
YES
Temperature Range
-40 to +85

Below you will find information to support the development of your application.

You can find an explanation of orderable part numbers here.

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