GRF6403

Guerrilla RF
459-GRF6403
GRF6403

製造商:

說明:
衰減器 31.75 dB RANGE / 0.25dB STEP DSA; 0.05 - 6 GHz; Bi-directional, 31.75 dB range digital step attenuator featuring Rapid Fire selection pin

ECAD模型:
下載免費的庫載入器,為ECAD工具轉換此文件。瞭解更多關於 ECAD 型號的資訊。

庫存量: 4,963

庫存:
4,963 可立即送貨
最少: 1   多個: 1
單價:
HK$-.--
總價:
HK$-.--
估計關稅:
包裝:
完整捲(訂購多個1500)

Pricing (HKD)

數量 單價
總價
零卷 / MouseReel™
HK$62.14 HK$62.14
HK$47.68 HK$476.80
HK$44.39 HK$1,109.75
HK$39.05 HK$3,905.00
HK$37.07 HK$9,267.50
HK$33.29 HK$16,645.00
HK$28.03 HK$28,030.00
完整捲(訂購多個1500)
HK$26.72 HK$40,080.00
† HK$55.00 MouseReel™費用將加入您的購物車內並自動計算。所有MouseReel™訂單均不能取消和不能退換。

商品屬性 屬性值 選擇屬性
Guerrilla RF
產品類型: 衰減器
QFN-24
31.75 dB
6 GHz
50 Ohms
7 bit
2 Channel
0.25 dB
品牌: Guerrilla RF
插入損耗: 2.5 dB
最高工作溫度: + 115 C
最低頻率: 50 MHz
最低工作溫度: - 40 C
安裝風格: SMD/SMT
工作電源電壓: 3.3 V, 5 V
封裝: Reel
封裝: Cut Tape
封裝: MouseReel
產品類型: Attenuators
系列: GRF6403
原廠包裝數量: 1500
子類別: Wireless & RF Integrated Circuits
技術: Si
類型: Digital Step
典型衰減: 31.75 dB
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CNHTS:
8542399000
USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99

GRF5611 High Linearity Power Amplifier

Guerrilla RF GRF5611 High Linearity Power Amplifier is a high-gain, two-stage InGaP HBT power amplifier designed to deliver excellent P1dB, ACLR, and IM3 performance over the 902MHz to 960MHz band. Exceptional native linearity makes the amplifier ideal for transmitter applications that typically do not employ digital pre-distortion correction schemes. The 3mm x 3mm QFN packaged GRF5611 features a rugged design and operates within a -40°C to +85°C temperature range.

GRF640x Digital Step Attenuators

Guerrilla RF GRF640x Digital Step Attenuators (DSAs) feature a RAPID FIRE® hybrid control mechanism that combines the speed of parallel programming with the simplicity and convenience of a single control line. The GRF640x DSA family utilizes two dedicated registers to store separate attenuation states. Toggling the RFA bit allows the DSA to switch between the primary and secondary states quickly. This fast switching circumvents the delays commonly associated with serial programming. Depending on the SPI clock rate, these delays can be as long as 1600ns. To match the RFA switching speeds, traditional DSAs must utilize parallel programming modes with seven dedicated control lines. This additional I/O not only requires larger packaging but also complicates signal routing.