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Philips Semiconductors Transimpedance Amplifier (280MHz) NE5210 Data Sheet User Manual

Summary

The NE5210 is a 7kOhm transimpedance wide-band, low-noise amplifier with differential outputs from Philips Semiconductors. Operating from a single 5V supply with 280MHz bandwidth and 3.5pA/sqrt(Hz) noise, it is designed for signal recovery in fiber-optic receivers and serves as a wideband gain block for RF processing, current-to-voltage conversion, and sensor preamplification. Housed in a 14-pin SO package, it targets engineers in medical instrumentation, telecommunications, and RF applications requiring high-performance amplification.

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查询NE5210供应商 Philips Semiconductors Product specification

NE5210Transimpedance amplifier (280MHz)

DESCRIPTION PIN CONFIGURATION The NE5210 is a 7kΩ transimpedance wide band, low noise

amplifier with differential outputs, particularly suitable for signal D Package

recovery in fiber-optic receivers. The part is ideally suited for many

other RF applications as a general purpose gain block. GND2 OUT (–)

GND2 GND2

FEATURES NC OUT (+)

Low noise: 3.5p A/√Hz GND1

Single 5V supply NC GND1

Large bandwidth: 280MHz

VCC1 GND1

Differential outputs GND1

Low input/output impedances

TOP VIEW

High power supply rejection ratio

SD00318

High overload threshold current

Wideband gain block

Wide dynamic range

Medical and scientific instrumentation

7kΩ differential transresistance

Sensor preamplifiers Single-ended to differential conversion

APPLICATIONS

Low noise RF amplifiers

Fiber-optic receivers, analog and digital

RF signal processing

Current-to-voltage converters

ORDERING INFORMATION

DESCRIPTION TEMPERATURE RANGE ORDER CODE DWG #

14-Pin Plastic Small Outline (SO) Package 0 to +70°C NE5210D SOT108-1

ABSOLUTE MAXIMUM RATINGS SYMBOL PARAMETER RATING UNIT VCC Power supply TA Operating ambient temperature range 0 to +70 °C TJ Operating junction temperature range -55 to +150 °C TSTG Storage temperature range -65 to +150 °C PDMAX Power dissipation, TA=25°C (still air)1 1.0 IINMAX Maximum input current2 m A NOTES: 1. Maximum dissipation is determined by the operating ambient temperature and the thermal resistance: θJA=125°C/W. 2. The use of a pull-up resistor to VCC for the PIN diode, is recommended.

RECOMMENDED OPERATING CONDITIONS SYMBOL PARAMETER RATING UNIT VCC Supply voltage 4.5 to 5.5 TA Ambient temperature range 0 to +70 °C TJ Junction temperature range 0 to +90 °C

11995 Apr 26 853-1654 15170

Page Summary Contents For Philips Semiconductors Transimpedance Amplifier (280MHz) NE5210 Data Sheet User Manual

Page 1 查询NE5210供应商 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) DESCRIPTION PIN CONFIGURATION The NE5210 is a 7kΩ transimpedance wide band, low noise amplifier with di...
Page 2 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) DC ELECTRICAL CHARACTERISTICS Min and Max limits apply over operating temperature range at VCC=5V, unless otherwise...
Page 3 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) AC ELECTRICAL CHARACTERISTICS (Continued) LIMITS SYMBOL PARAMETER TEST CONDITIONS UNIT Min Typ Max Maximum output v...
Page 4 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) TEST CIRCUITS (Continued) NETWORK ANALYZER S-PARAMETER TEST SET PORT 1 PORT 2 CURRENT PROBE 1m V/m A VCC2VCC1 IN TR...
Page 5 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) TEST CIRCUITS (Continued) NETWORK ANALYZER S-PARAMETER TEST SET PORT 1 PORT 2 CURRENT PROBE 1m V/m A 10µF VCC2VCC1 ...
Page 6 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) TEST CIRCUITS (Continued) PULSE GEN. VCC1 VCC2 0.1µF IN ZO = 50ΩA DUT OSCILLOSCOPE ZO = 50Ω Measurement done using ...
Page 7 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) TEST CIRCUITS (Continued) Typical Differential Output Voltage vs Current Input IF IA LT OUT + IN DUT VOUT (V) OUT –...
Page 8 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) LT TA LY IN IA LT (I TYPICAL PERFORMANCE CHARACTERISTICS NE5210 Supply Current NE5210 Output Bias Voltage Output Vo...
Page 9 Philips Semiconductors Product specification IN NE5210Transimpedance amplifier (280MHz) IN IN TYPICAL PERFORMANCE CHARACTERISTICS (Continued) NE5210 Differential Transresistance Gain vs Frequency Gain...
Page 10 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) IS TA IS TA TYPICAL PERFORMANCE CHARACTERISTICS (Continued) NE5210 Output Resistance NE5210 Output Resistance NE521...
Page 11 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) THEORY OF OPERATION Transimpedance amplifiers have been widely used as the OUTPUT + preamplifier in fiber-optic rec...
Page 12 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) For a given wavelength λ; (meters) Energy of one Photon = hc watt sec (Joule) IC1 R3 R1 Where h=Planck’s Constant =...
Page 13 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) This represents the maximum limit attainable with the NE5210 quiescent values of 3.3V (for a 5V supply), then the c...
Page 14 Philips Semiconductors Product specification NE5210Transimpedance amplifier (280MHz) OUT (–) GND 2 GND 2 GND 2 OUT (+) GND 1 INPUT GND 1 VCC1 GND 1 ECN No.: 06027 1992 Mar 13 GND 1 VCC 2 SD00488 Figur...

Manual Details

Brand Philips
Pages 14
File Size 170.78 KB
Published July 04, 2026
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Frequently Asked Questions

What is the bandwidth of the NE5210 transimpedance amplifier?

The NE5210 has a -3dB bandwidth of 280MHz typical, with a minimum of 200MHz at 5V and 25°C.

What supply voltage does the NE5210 require?

The recommended supply voltage is 4.5 to 5.5V, with typical operation at 5V.

What is the maximum operating ambient temperature for the NE5210?

The NE5210 has an operating ambient temperature range of 0 to +70°C.

What is the differential transresistance of the NE5210?

The differential transresistance is 7kΩ typical, with a range of 4.9kΩ to 10kΩ at 5V.