米6体育平台手机版_好二三四详情

Current consumption (mA) 114 Frequency (min) (MHz) 2300 Frequency (max) (MHz) 2900 Gain (typ) (dB) 18 Noise figure (typ) (dB) 3.5 OIP3 (typ) (dBm) 35 P1dB (typ) (dBm) 18 Number of channels 1 Operating temperature range (°C) -40 to 105 Type Active Balun Rating Catalog
Current consumption (mA) 114 Frequency (min) (MHz) 2300 Frequency (max) (MHz) 2900 Gain (typ) (dB) 18 Noise figure (typ) (dB) 3.5 OIP3 (typ) (dBm) 35 P1dB (typ) (dBm) 18 Number of channels 1 Operating temperature range (°C) -40 to 105 Type Active Balun Rating Catalog
WQFN (RRL) 12 4 mm² 2 x 2
  • Single-Channel, Differential Input to Single-Ended Output RF Gain Block Amplifier
  • 18-dB Typical Gain Across the Band
  • 3.5-dB Noise Figure
  • 35-dBm OIP3
  • 18-dBm Output P1dB
  • 375-mW Power Consumption on 3.3-V Single Supply
  • Up to 105°C TC Operating Temperature
  • Single-Channel, Differential Input to Single-Ended Output RF Gain Block Amplifier
  • 18-dB Typical Gain Across the Band
  • 3.5-dB Noise Figure
  • 35-dBm OIP3
  • 18-dBm Output P1dB
  • 375-mW Power Consumption on 3.3-V Single Supply
  • Up to 105°C TC Operating Temperature

The LMH9126 is high-performance, single-channel, differential input to single-ended output transmit RF gain block amplifier supporting 2.6-GHz center frequency band. The device is well suited to support requirements for the next generation 5G AAS or small cell applications while driving the input of a power amplifier (PA). The RF amplifier provides 18-dB typical gain with good linearity performance of 35-dBm output IP3, while maintaining less than 4-dB noise figure across the whole 1-dB bandwidth. The device is internally matched for 100-Ω differential input impedance providing easy interface with an RF-sampling or Zero-IF analog front-end (AFE) at the input. Also, the device is internally matched for 50-Ω single-ended output impedance required for easy interface with a post-amplifier, SAW filter, or PA.

Operating on a single 3.3-V supply, the device consumes only 375 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 × 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 LMH9126 is high-performance, single-channel, differential input to single-ended output transmit RF gain block amplifier supporting 2.6-GHz center frequency band. The device is well suited to support requirements for the next generation 5G AAS or small cell applications while driving the input of a power amplifier (PA). The RF amplifier provides 18-dB typical gain with good linearity performance of 35-dBm output IP3, while maintaining less than 4-dB noise figure across the whole 1-dB bandwidth. The device is internally matched for 100-Ω differential input impedance providing easy interface with an RF-sampling or Zero-IF analog front-end (AFE) at the input. Also, the device is internally matched for 50-Ω single-ended output impedance required for easy interface with a post-amplifier, SAW filter, or PA.

Operating on a single 3.3-V supply, the device consumes only 375 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 × 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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类型 标题 下载最新的英语版本 日期
* 数据表 LMH9126 2.3–2.9-GHz Differential to Single-Ended Amplifier With Integrated Balun 数据表 PDF | HTML 2020年 6月 23日
证书 LMH9126RRLEVM EU Declaration of Conformity (DoC) 2020年 4月 28日
EVM 用户指南 LMH9126 Evaluation Module User's Guide 2020年 2月 27日

设计和开发

如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。

评估板

AFE79-LMH9-EVM — 带有源平衡-非平衡变压器 LMH9126、LMH9226、LMH9135 和 LMH9235 的 AFE7920 参考设计评估板

AFE79-LMH9-EVM 评估模块 (EVM) 是一款用于评估 AFE79xx 系列集成射频采样收发器性能的电路板,该收发器可与 LMH9xxx 系列有源平衡-非平衡变压器进行连接。AFE79-LMH9-EVM 展示了 AFE7920、LMH9126、LMH9226、LMH9135 和 LMH9235。该器件完全符合下一代 5G 大规模 MIMO 有源天线系统的要求,同时可与收发器输出端相连,并驱动功率放大器 (PA) 输入端。为了轻松连接 50Ω 测试设备,默认情况下,该电路板设置为 100Ω 差分输入和 50Ω 单端输出。此 EVM 可随时通过板载连接器与 +3.3V (...)
用户指南: PDF
英语版: PDF
评估板

LMH9126-EVM — Single-Ended to Differential 2.3-GHz to 2.9-GHz RF Amplifier With Balun Tx Evaluation Module

LMH9126 评估模块 (EVM) 用于评估采用 2x2mm2 12 引脚 RRL 封装的 LMH9126 器件,即差分输入至单端输出 18dB 增益块放大器。该器件完全符合下一代 5G m-MIMO 有源天线系统的要求,同时可与收发器输出端相连,并驱动功率放大器 (PA) 输入端。此 EVM 旨在快速演示在 2.6GHz 传输应用中,当 1dB BW 为 600MHz 时 LMH9126 的功能和性能。为了轻松连接 50Ω 测试设备,默认情况下,该电路板设置为 100Ω 差分输入和 50Ω 单端输出。此 EVM 可随时通过板载连接器与 +3.3V 电源、信号源和测试仪表相连。
用户指南: PDF
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仿真模型

LMH9126 Unencrypted S-parameter Model Package (Rev. A)

SNLM237A.ZIP (9 KB) - S-Parameter Model
封装 引脚 CAD 符号、封装和 3D 模型
WQFN (RRL) 12 Ultra Librarian

订购和质量

包含信息:
  • RoHS
  • REACH
  • 器件标识
  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
  • MTBF/时基故障估算
  • 材料成分
  • 鉴定摘要
  • 持续可靠性监测
包含信息:
  • 制造厂地点
  • 封装厂地点

支持和培训

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