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MAX13054ESA+ is a  isolated CAN transceiver manufactured by Maxim Integrated

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Analog Devices ADI
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MAX13054ESA+ data sheet.pdf
Specifications
MFR:
ADI
Product Number:
MAX13054ESA+
Description:
1/1 Transceiver Full CANbus 8-SOIC
Highlight:

Analog Devices ADRF5730BCCZN digital step attenuator

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monolithic digital step attenuator with warranty

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ADRF5730BCCZN DSA for signal control

Introduction
ADRF5730BCCZN Digital Step Attenuator (DSA)
The ADRF5730BCCZN is a high-performance, monolithic digital step attenuator (DSA) manufactured by Analog Devices. Designed for RF and microwave applications, it provides precise, digitally controlled attenuation of radio frequency signals with excellent linearity and low insertion loss, making it suitable for wireless communication systems, test equipment, and radar systems.
MAX13054ESA+ is a  isolated CAN transceiver manufactured by Maxim Integrated 0
Core Features
Attenuation Performance
  • Attenuation Range: 0 dB to 31.5 dB, covering a wide range of signal strength adjustment needs.
  • Step Size: 0.5 dB, enabling fine-grained control over signal levels for precise calibration and optimization.
  • Attenuation Accuracy: ±0.5 dB (typical) across the entire range, ensuring reliable and consistent signal attenuation.
  • Frequency Range: 100 MHz to 6000 MHz (100 MHz to 6 GHz), supporting a broad spectrum of RF and microwave applications including cellular (5G/4G), Wi-Fi, and satellite communications.
RF Performance
  • Insertion Loss: Typically 1.8 dB at 2 GHz and 2.8 dB at 6 GHz, minimizing signal degradation when the attenuator is in the minimum attenuation state (0 dB).
  • Return Loss: Better than 15 dB (typical) across the frequency range, ensuring good impedance matching to 50 Ω systems and reducing signal reflections.
  • Linearity: Excellent linearity with IP3 (Third-Order Intercept Point) of +48 dBm (typical), making it suitable for high-power signal environments without significant distortion.
  • Power Handling: Up to +27 dBm (500 mW) average power, allowing operation in high-power RF systems.
Control Interface and Operation
  • Digital Control: Serial Peripheral Interface (SPI) with 16-bit command structure, enabling easy integration with microcontrollers (MCUs) and digital signal processors (DSPs).
  • Control Pins: Features chip select (CS), serial clock (SCLK), and serial data (SDATA) pins for straightforward digital control.
  • Power-Up State: Configurable power-up state (last state retention or default to 0 dB attenuation), providing flexibility in system initialization.
  • Fast Switching Speed: Typical switching time of 100 ns, allowing rapid adjustment of attenuation levels for dynamic signal environments.
Power Supply and Packaging
  • Power Supply Voltage: 3.0 V to 5.5 V, compatible with standard digital logic levels and RF system power supplies.
  • Power Consumption: Low current consumption of 3 mA (typical) during operation, and 10 µA (typical) in shutdown mode, making it suitable for power-constrained applications.
  • Package: 16-lead LFCSP (Lead Frame Chip Scale Package) with exposed pad, measuring 3 mm * 3 mm. This compact package offers excellent thermal performance and is suitable for space-constrained RF designs.
  • Operating Temperature Range: -40°C to +85°C, ensuring reliable operation in industrial and harsh environmental conditions.
Typical Applications
Application Field Specific Use Cases
Wireless Communication
  • 5G/4G base stations and small cells, for adjusting transmit/receive signal levels to optimize coverage and reduce interference.
  • Wi-Fi 6/6E access points, for dynamic power control and signal leveling.
  • Satellite communication systems, for compensating signal path losses and adjusting link budgets.
Test and Measurement
  • RF signal generators and analyzers, for precise attenuation of test signals.
  • Network analyzers and spectrum analyzers, for calibrating measurement ranges.
  • Automated test equipment (ATE), for dynamic signal level adjustment during testing.
Radar and Sensing
  • Weather radar and automotive radar systems, for controlling receiver signal levels to handle varying target distances.
  • Industrial sensing systems, for optimizing signal levels in RF-based proximity and level sensors.
Broadband Systems
  • Cable TV and broadband networks, for balancing signal levels across different channels.
  • Microwave point-to-point links, for adjusting signal strength to maintain optimal link quality.
Military and Aerospace
  • Communication jamming systems, for precise control of jamming signal strength.
  • Electronic warfare equipment, for dynamic signal level adjustment in complex RF environments.
Key Advantages
  • Wide Frequency Coverage: 100 MHz to 6 GHz operation supports a diverse range of current and emerging wireless standards.
  • Fine Attenuation Steps: 0.5 dB step size enables precise signal level adjustment, critical for calibration and optimization in high-performance systems.
  • Excellent RF Performance: Low insertion loss, high return loss, and superior linearity minimize signal degradation and distortion.
  • Fast Switching: 100 ns switching time allows rapid response to changing signal conditions, essential for dynamic communication systems.
  • Compact Package: 3 mm * 3 mm LFCSP package saves board space, making it suitable for miniaturized RF designs.
  • Flexible Integration: SPI interface simplifies digital control, enabling easy integration with modern embedded systems.
The ADRF5730BCCZN is a versatile digital step attenuator that provides high performance across a broad frequency range, making it a valuable component in various RF and microwave systems requiring precise signal level control.
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