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Silicon Bipolar VGA with integrated Square Law Detector
AD8367ARUZ
ACTIVE
The AD8367ARUZ is a variable gain amplifier designed for high-speed RF power measurement applications. Key features include:
Wide bandwidth (500 MHz) for accurate signal analysis.
Continuous analog gain control for log-linear amplification.
On-chip square law detector for automatic gain control (AGC).
Low input impedance (200 Ω), suitable for various RF systems.
The AD8367ARUZ is ideal for power amplifier control, radar and wireless communication applications where fast and accurate RF power measurements are essential.
The AD8367ARUZ features a wide bandwidth of 500 MHz, linear-in-dB continuous gain control, on-chip square law detector for AGC, high linearity output, low compression, single-ended input with low impedance, and a compact 14-pin TSSOP package. It is designed for RF power measurement and signal amplification applications.
The AD8367ARUZ has a small footprint, using a 14-lead TSSOP package.
The AD8367ARUZ has a pin count of 14, all packed in a TSSOP package. The functions include power input (VCC), ground (GND), AGC control (CTRL), and various signal and configuration pins. These pins enable the device's amplification, gain control, and detection functionalities.
The AD8367ARUZ is manufactured by Analog Devices, a global leader in semiconductor technology. Analog Devices is known for its innovation in electronics and provides solutions for various industries, including communication systems and automotive technology.
The AD8367ARUZ is a variable gain amplifier used in RF power measurement, specifically amplifying signals for applications like power amplifiers, radar systems, and wireless communications. Its small footprint and accurate power measurement make it suitable for these demanding industries.
Equivalent products to AD8367ARUZ by Analog Devices might include AD836X series amplifiers or similar variable gain RF amplifiers with compatible specifications.
Product Category | Special Purpose Amplifiers | Amplifier Type | Variable Gain Amplifiers |
---|---|---|---|
Number of Channels | 1 Channel | GBP - Gain Bandwidth Product | 500 MHz |
Ib - Input Bias Current | 27 uA | Supply Voltage - Max | 5.5 V |
Supply Voltage - Min | 2.7 V | Operating Supply Current | 26 mA |
Minimum Operating Temperature | - 40 C | Maximum Operating Temperature | + 85 C |
Mounting Style | SMD/SMT | Height | 1 mm |
Input Voltage Range - Max | 5.5 V | Length | 5 mm |
Maximum Input Resistance | 225 Ohms | Operating Supply Voltage | 2.7 V to 5.5 V |
Pd - Power Dissipation | 250 mW | Product Type | Special Purpose Amplifiers |
Factory Pack Quantity | 96 | Subcategory | Amplifier ICs |
Supply Type | Single | Voltage Gain dB | 45 dB |
Width | 4.4 mm | Unit Weight | 0.004949 oz |
Package/Case | TSSOP-14 |
1.Q: What are the recommended single-supply voltages for this VGA?
A: Recommended voltages are 3V or 5V, with a range of 2.7V to 5.5V.
2.Q: Does this amplifier meet automotive or PPAP standards?
A: No, it is not automotive-grade and does not support PPAP certification.
3.Q: What is the typical power dissipation of this amplifier?
A: Maximum power dissipation is 250 mW under normal operating conditions.
4.Q: What package does the Rochester Electronics LLC 500 MHz VGA use?
A: It comes in a 14-lead TSSOP package (4.4mm width, 5mm length) with gull-wing leads for surface mounting.
5.Q: What is the operating temperature range of this amplifier?
A: It operates from -40°C to +85°C, suitable for industrial environments.
6.Q: What is the absolute maximum supply voltage for this amplifier?
A: The absolute maximum supply voltage is 5.5V; exceeding this may damage the device.
7.Q: What is the typical application circuit for this Variable Gain Amplifier?
A: Typical applications include RF/IF signal chains, automatic gain control (AGC) systems, and communication equipment where linear-in-dB gain control is required.
8.Q: What are the key features of the Rochester Electronics LLC 500 MHz Variable Gain Amplifier?
A: Key features include a 35–50 dB gain range, 45 dB typical voltage gain, 500 MHz bandwidth, single-supply operation (2.7V–5.5V), and low input bias current (27 µA typ. @5V).
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