EL5174

550MHz Differential Twisted-Pair Drivers

OVERVIEW

The EL5174 and EL5374 are single and triple high bandwidth amplifiers with an output in differential form. They are primarily targeted for applications such as driving twisted-pair lines in component video applications. The inputs can be in either single-ended or differential form but the outputs are always in differential form.

On the EL5174 and EL5374, two feedback inputs provide the user with the ability to set the gain of each device (stable at minimum gain of one). For a fixed gain of two, please see the EL5173, EL5373 data sheet (FN7312).

The output common mode level for each channel is set by the associated REF pin, which has a -3dB bandwidth of over 110MHz. Generally, these pins are grounded but can be tied to any voltage reference.

All outputs are short circuit protected to withstand temporary overload condition.

The EL5174 is available in a 8 Ld SOIC package and the EL5374 is available in a 28 Ld QSOP package. All are specified for operation over the full -40°C to +85°C temperature range.

KEY FEATURES

  • Fully differential inputs, outputs, and feedback
  • Differential input range ±2.3V
  • 550MHz 3dB bandwidth
  • 1100V/µs slew rate
  • Low distortion at 5MHz
  • Single 5V or dual ±5V supplies
  • 60mA maximum output current
  • Low power - 12.5mA per channel
  • Pb-free (RoHS compliant)

PARAMETRICS

Parameters
EL5174
Basic Information
Production Status
Mass Production
# of Devices/ Channels
1
Bandwidth (MHz)
550
Slew Rate (V/μs)
1100
VS (min)
4.75 V
VS (max)
11 V
IS (per amp)
12.5 mA
Noise VN (nV/√Hz)
21
IBIAS
14 µA
IBIAS (max)
30 µA
Max Offset Voltage
25 mV
IOUT
60 mA
VOUT (V)
7.6
Rail-to-Rail Input
No
Rail-to-Rail Output
No
PSRR (dB)
75
CMRR (dB)
78
Thermal Shutdown
No
Gain Min
1
Diff Gain (%)
0.06
Diff Phase (°)
0.13
Enable
No
Topology
VFA
Distortion Conditions
2Vpp, 5MHz
Output Headroom (V)
1.6
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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