NBB-500

Features: • Reliable, Low-Cost HBT Design• 19.0dB Gain, +12.3dBm P1dB@2GHz• High P1dB of +14.0dBm@6.0GHz• Single Power Supply Operation• 50 I/O Matched for High Freq. UseApplication• Narrow and Broadband Commercial and Military Radio Designs• Linear and Sa...

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SeekIC No. : 004432731 Detail

NBB-500: Features: • Reliable, Low-Cost HBT Design• 19.0dB Gain, +12.3dBm P1dB@2GHz• High P1dB of +14.0dBm@6.0GHz• Single Power Supply Operation• 50 I/O Matched for High Freq. U...

floor Price/Ceiling Price

Part Number:
NBB-500
Supply Ability:
5000

Price Break

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

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268 Transactions

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Upload time: 2024/4/23

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Product Details

Description



Features:

• Reliable, Low-Cost HBT Design
• 19.0dB Gain, +12.3dBm P1dB@2GHz
• High P1dB of +14.0dBm@6.0GHz
• Single Power Supply Operation
• 50 I/O Matched for High Freq. Use





Application

• Narrow and Broadband Commercial and Military Radio Designs
• Linear and Saturated Amplifiers
• Gain Stage or Driver Amplifiers for MWRadio/Optical Designs (PTP/PMP/ LMDS/UNII/VSAT/WLAN/Cellular/DWDM)





Specifications

Parameter
Rating
Unit
RF Input Power
+20
dBm
Power Dissipation
300
mW
Device Current
70
mA
Channel Temperature
200
Operating Temperature
-45 to +85
Storage Temperature
-65 to +150

Exceeding any one or a combination of these limits may cause permanent damage.




Description

The NBB-500 cascadable broadband InGaP/GaAs MMIC amplifier is a low-cost, high-performance solution for general purpose RF and microwave amplification needs. This 50 gain block is based on a reliable HBT proprietary MMIC design, providing unsurpassed performance for small-signal applications. Designed with an external bias resistor,it provides flexibility and stability. The NBB-500 is packaged in a low-cost, surface-mount ceramic package, providing ease of assembly for highvolume tape-and-reel requirements. It is available in either packaged or chip (NBB-500-D) form, where its gold metallization is ideal for hybrid circuit designs.






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