產品詳細資料

Type Active Balun Frequency (min) (MHz) 3300 Frequency (max) (MHz) 4200 Gain (typ) (dB) 17.5 Noise figure (typ) (dB) 3 OIP3 (typ) (dBm) 34.5 P1dB (typ) (dBm) 18 Frequency of harmonic distortion measurement (GHz) 3.5 Supply voltage (V) 3.3 Current consumption (mA) 80 Number of channels 1 Operating temperature range (°C) -40 to 105 Rating Catalog Output enable Yes
Type Active Balun Frequency (min) (MHz) 3300 Frequency (max) (MHz) 4200 Gain (typ) (dB) 17.5 Noise figure (typ) (dB) 3 OIP3 (typ) (dBm) 34.5 P1dB (typ) (dBm) 18 Frequency of harmonic distortion measurement (GHz) 3.5 Supply voltage (V) 3.3 Current consumption (mA) 80 Number of channels 1 Operating temperature range (°C) -40 to 105 Rating Catalog Output enable Yes
WQFN (RRL) 12 4 mm² 2 x 2
  • Single-channel, single-ended input to differential output RF gain block amplifier
  • Supports 3.3 GHz – 3.8 GHz band directly or 3.7 GHz – 4.2 GHz band with external matching components
  • 17.5 dB typical gain across the band
  • Less than 3 dB noise figure
  • 34.5 dBm OIP3
  • 18 dBm output P1 dB
  • 270 mW power consumption on 3.3 V single supply
  • Up to 105°C TC operating temperature
  • Single-channel, single-ended input to differential output RF gain block amplifier
  • Supports 3.3 GHz – 3.8 GHz band directly or 3.7 GHz – 4.2 GHz band with external matching components
  • 17.5 dB typical gain across the band
  • Less than 3 dB noise figure
  • 34.5 dBm OIP3
  • 18 dBm output P1 dB
  • 270 mW power consumption on 3.3 V single supply
  • Up to 105°C TC operating temperature

The LMH9235 device is a high-performance, single-channel, single-ended input to differential output receive RF gain block amplifier supporting 3.6 GHz center frequency band. The device is well suited to support requirements for the next generation 5G AAS or small cell applications where LNA gain is not sufficient to drive full-scale of an analog front-end (AFE). The RF amplifier provides 17 dB typical gain with good linearity performance of 34 dBm Output IP3, while maintaining about 3 dB noise figure across the whole 1 dB bandwidth. The device is internally matched for 50 Ω impedance at both the single-ended input as well as the differential output providing easy interface with an RF-sampling or Zero-IF analog front-end (AFE).

Operating on a single 3.3 V supply, the device consumes about 270 mW of active power making it suitable for high-density 5G massive MIMO applications. Also, the device is available in a space saving 2 mm x 2 mm, 12-pin QFN package. The device is rated for an operating temperature of up to 105°C to provide a robust system design. There is a 1.8 V JEDEC compliant power down pin available for fast power down and power up of the device suitable for time division duplex (TDD) systems.

The LMH9235 device is a high-performance, single-channel, single-ended input to differential output receive RF gain block amplifier supporting 3.6 GHz center frequency band. The device is well suited to support requirements for the next generation 5G AAS or small cell applications where LNA gain is not sufficient to drive full-scale of an analog front-end (AFE). The RF amplifier provides 17 dB typical gain with good linearity performance of 34 dBm Output IP3, while maintaining about 3 dB noise figure across the whole 1 dB bandwidth. The device is internally matched for 50 Ω impedance at both the single-ended input as well as the differential output providing easy interface with an RF-sampling or Zero-IF analog front-end (AFE).

Operating on a single 3.3 V supply, the device consumes about 270 mW of active power making it suitable for high-density 5G massive MIMO applications. Also, the device is available in a space saving 2 mm x 2 mm, 12-pin QFN package. The device is rated for an operating temperature of up to 105°C to provide a robust system design. There is a 1.8 V JEDEC compliant power down pin available for fast power down and power up of the device suitable for time division duplex (TDD) systems.

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類型 標題 日期
* Data sheet LMH9235 3.3 GHz – 4.2 GHz Single-Ended to Differential Amplifier with Integrated Balun datasheet (Rev. C) PDF | HTML 2021年 5月 6日
EVM User's guide LMH9235 Evaluation Module User's Guide 2020年 5月 5日
Certificate LMH9235RRLEVM EU Declaration of Conformity (DoC) 2020年 4月 14日

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開發板

AFE79-LMH9-EVM — 具主動式平衡不平衡轉換器 LMH9126、LMH9226、LMH9135 和 LMH9235 的 AFE7920 參考設計評估板

AFE79-LMH9-EVM 評估模組 (EVM) 是用於評估與主動式平衡不平衡轉換器 LMH9xxx 系列介接的整合式 RF 取樣收發器 AFE79xx 系列之性能的電路板。此 AFE79-LMH9-EVM 展示了 AFE7920、LMH9126、LMH9226、LMH9135 和 LMH9235。此裝置非常適合支援新一代 5G 大規模 MIMO 主動天線系統的需求,同時介接收發器輸出和驅動功率放大器 (PA) 輸入。預設情況下,電路板設定為 100 Ω 差動輸入配對及 50 Ω 單端輸出配對,可輕鬆介接 50 Ω 測試設備。EVM 隨時皆可透過使用板載連接器,連接 +3.3-V (...)
使用指南: PDF
模擬型號

LMH9235 S-Parameter Models

SBOMB72.ZIP (5 KB) - S-Parameter Model
封裝 針腳 CAD 符號、佔位空間與 3D 模型
WQFN (RRL) 12 Ultra Librarian

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