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MAX19791ETX+T

更新时间: 2024-09-25 12:59:23
品牌 Logo 应用领域
美信 - MAXIM 衰减器
页数 文件大小 规格书
24页 4198K
描述
Analog Circuit, 1 Func, BICMOS, 6 X 6 MM, 0.80 MM HEIGHT, ROHS COMPLIANT, TQFN-36

MAX19791ETX+T 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Active包装说明:HVQCCN,
Reach Compliance Code:compliantHTS代码:8542.39.00.01
Factory Lead Time:12 weeks风险等级:5.59
模拟集成电路 - 其他类型:ANALOG CIRCUITJESD-30 代码:S-XQCC-N36
长度:6 mm湿度敏感等级:1
功能数量:1端子数量:36
最高工作温度:100 °C最低工作温度:-40 °C
封装主体材料:UNSPECIFIED封装代码:HVQCCN
封装形状:SQUARE封装形式:CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE
峰值回流温度(摄氏度):NOT SPECIFIED座面最大高度:0.8 mm
最大供电电压 (Vsup):3.45 V最小供电电压 (Vsup):3.15 V
标称供电电压 (Vsup):3.3 V表面贴装:YES
技术:BICMOS温度等级:INDUSTRIAL
端子形式:NO LEAD端子节距:0.5 mm
端子位置:QUAD处于峰值回流温度下的最长时间:NOT SPECIFIED
宽度:6 mmBase Number Matches:1

MAX19791ETX+T 数据手册

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EVALUATION KIT AVAILABLE  
MAX19791  
50MHz to 4000MHz Dual Analog Voltage Variable  
Attenuator with On-Chip 10-Bit SPI-Controlled DAC  
General Description  
Features  
The MAX19791 dual general-purpose analog voltage  
variable attenuator (VVA) is designed to interface with  
50I systems operating in the 50MHz to 4000MHz  
frequency range. The device includes a patented con-  
trol circuit that provides 23dB of attenuation range (per  
attenuator) with a typical linear control slope of 8dB/V.  
S Wideband Coverage  
50MHz to 4000MHz RF Frequency Range  
S High Linearity  
Greater Than +37.4dBm IIP3 Over the Full  
Attenuation Range  
+22.6dBm Input P  
1dB  
Both attenuators share a common analog control and  
can be cascaded together to yield 46dB of total attenua-  
tion range with a typical combined linear control slope of  
16dB/V (5V operation).  
S Integrates Two Analog Attenuators in One  
Monolithic Device  
S Two Convenient Control Options  
Single Analog Voltage  
Alternatively, the on-chip 4-wire SPI-controlled 10-bit  
DAC can be used to control both attenuators. In addi-  
tion, a step-up/down feature allows user-programmable  
attenuator stepping through command pulses without  
reprogramming the SPI interface.  
On-Chip SPI-Controlled 10-Bit DAC  
S Step-Up/Down Pulse Command Inputs  
S Flexible Attenuation Control Ranges  
23dB (Per Attenuator)  
46dB (Both Attenuators Cascaded)  
The MAX19791 is a monolithic device designed using  
one of Maxim’s proprietary SiGe BiCMOS processes. The  
part operates from a single +5V supply or alternatively  
from a single +3.3V supply. It is available in a compact  
36-pin TQFN package (6mm x 6mm x 0.8mm) with an  
exposed pad. Electrical performance is guaranteed over  
the -40NC to +100NC extended temperature range.  
S Linear dB/V Analog Control Response Curve  
Simplifies Automatic Leveling Control and  
Gain-Trim Algorithms  
S Excellent Attenuation Flatness Over Wide  
Frequency Ranges and Attenuation Settings  
S On-Chip Comparator (for Successive  
Approximation Measurement of Attenuator  
Control Voltage)  
Applications  
Broadband System Applications, Including  
Wireless Infrastructure Digital and  
Spread-Spectrum Communication Systems  
S Low 13mA Supply Current  
S Single 5V or 3.3V Supply Voltage  
S Pin-Compatible with the MAX19792 and MAX19793  
WCDMA/LTE, TD-SCDMA/TD-LTE, WiMAX®,  
M
S Pin-Compatible with the MAX19794 with Addition  
cdma2000 , GSM/EDGE, and  
of Two Shunt Capacitors  
MMDS Base Stations  
S PCB-Compatible with the MAX19790  
S Lead(Pb)-Free Package  
VSAT/Satellite Modems  
Military Systems  
Microwave Point-to-Point Systems  
Lineup Gain Trim  
Ordering Information appears at end of data sheet.  
For related parts and recommended products to use with this part,  
Temperature-Compensation Circuits  
Automatic Level Control (ALC)  
Transmitter Gain Control  
Receiver Gain Control  
refer to www.maximintegrated.com/MAX19791.related.  
General Test Equipment  
WiMAX® is a registered certification mark and registered service mark of WiMAX Forum.  
cdma2000 is a registered trademark of Telecommunications Industry Association.  
For pricing, delivery, and ordering information, please contact Maxim Direct  
at 1-888-629-4642, or visit Maxim’s website at www.maximintegrated.com.  
19-6454; Rev 1; 10/12  

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