NE5539

Features: • Bandwidth Unity gain: 350 MHz Full power: 48 MHz GBW: 1.2 GHz at 17 dB• Slew rate: 600/Vms• AVOL: 52 dB typical• Low noise: 4 nV/Hz typicalApplication• High speed datacom• Video monitors & TV• Satellite communications• Image processin...

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NE5539 Picture
SeekIC No. : 004433391 Detail

NE5539: Features: • Bandwidth Unity gain: 350 MHz Full power: 48 MHz GBW: 1.2 GHz at 17 dB• Slew rate: 600/Vms• AVOL: 52 dB typical• Low noise: 4 nV/Hz typicalApplication• High...

floor Price/Ceiling Price

Part Number:
NE5539
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/1/9

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Product Details

Description



Features:

• Bandwidth
Unity gain: 350 MHz
Full power: 48 MHz
GBW: 1.2 GHz at 17 dB
• Slew rate: 600/Vms
• AVOL: 52 dB typical
• Low noise: 4 nV/Hz typical



Application

• High speed datacom
• Video monitors & TV
• Satellite communications
• Image processing
• RF instrumentation & oscillators
• Magnetic storage



Pinout

  Connection Diagram


Specifications

SYMBOL PARAMETER
RATING
UNITS
VCC Supply voltage
±12
V
PD(max) Maximum power dissipation; Tamb = 25 °C (still-air)2
  N package
1.45
W
  D package
0.99
W
Tamb Operating temperature range NE5539D, NE5539N
0 to +70
°C
  SE5539N
55 to +125
°C
Tstg Storage temperature range
65 to +150
°C
Tj Max junction temperature
+150
°C
Tsld Lead soldering temperature (10 sec max)
+230
°C
NOTES:
1. Differential input voltage should not exceed 0.25 V to prevent excessive input bias current and common-mode voltage 2.5 V. These voltage limits may be exceeded if current is limited to less than 10 mA.
2. Derate above 25 °C, at the following rates:
N package at 11.6 mW/°C
D package at 7.9 mW/°C



Description

The NE/SE5539 is a very wide bandwidth, high slew rate, monolithic operational amplifier for use in video amplifiers, RF amplifiers, and extremely high slew rate amplifiers.

Emitter-follower inputs of NE/SE5539 provide a true differential input impedance device. Proper external compensation will allow design operation over a wide range of closed-loop gains, both inverting and non-inverting, to meet specific design requirements.




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