Overview
The ADG1406BCPZ-REEL7 is a monolithic iCMOS® analog multiplexer produced by Analog Devices Inc. This device is part of the ADG1406 series, which comprises 16 single channels. It is designed to switch one of 16 inputs to a common output, controlled by 4-bit binary address lines (A0, A1, A2, and A3). The ADG1406 is built using the iCMOS (industrial CMOS) process, combining high voltage CMOS and bipolar technologies to achieve high performance, low power consumption, and reduced package size.
Key Specifications
Parameter | Typical Value | Unit | Test Conditions/Comments |
---|---|---|---|
Number of Channels | 16 single channels | - | - |
On Resistance (RON) | 9.5 Ω | Ω | - |
-3 dB Bandwidth | 60 MHz | MHz | RL = 50 Ω, CL = 5 pF |
Insertion Loss | 0.6 dB | dB | RL = 50 Ω, CL = 5 pF, f = 1 MHz |
Capacitance (CS Off) | 12 pF | pF | f = 1 MHz |
Capacitance (CD Off) | 145 pF | pF | f = 1 MHz |
Capacitance (CS On) | 166 pF | pF | f = 1 MHz |
Supply Voltage | ±15 V, +12 V, ±5 V | V | - |
Power Consumption (IDD) | 0.002 μA (typ), 1 μA (max) | μA | Digital inputs = 0 V or VDD |
Package Type | 32-Lead LFCSP (5mm x 5mm w/ EP) | - | - |
Key Features
- Low On Resistance and Flatness: The ADG1406 features an ultralow on resistance of 9.5 Ω, making it ideal for applications requiring low distortion.
- High Voltage Operation: The device can operate with supply voltages up to ±15 V, +12 V, and ±5 V, making it versatile for various applications.
- Low Power Consumption: The iCMOS construction ensures ultralow power dissipation, making the part suitable for portable and battery-powered instruments.
- Break-Before-Make Switching: This feature ensures that the switch turns off before turning on, preventing channel overlap and reducing switching noise.
- Compact Package: Available in a 32-Lead LFCSP (5mm x 5mm w/ EP) package, which is compact and suitable for space-constrained designs..
Applications
- Medical Equipment: Suitable for medical devices due to its high performance and reliability.
- Audio and Video Routing: Ideal for routing audio and video signals with minimal distortion.
- Automatic Test Equipment: Used in test equipment for its precision and reliability.
- Data Acquisition Systems: Perfect for data acquisition systems where low distortion and high accuracy are critical.
- Battery-Powered Systems: Suitable for battery-powered systems due to its low power consumption.
- Communication Systems: Used in communication systems for its high bandwidth and low insertion loss..
Q & A
- What is the ADG1406BCPZ-REEL7 used for?
The ADG1406BCPZ-REEL7 is used as an analog multiplexer to switch one of 16 inputs to a common output, controlled by 4-bit binary address lines.
- What is the typical on resistance of the ADG1406?
The typical on resistance (RON) of the ADG1406 is 9.5 Ω.
- What are the supply voltage options for the ADG1406?
The ADG1406 can operate with supply voltages of ±15 V, +12 V, and ±5 V.
- What is the package type of the ADG1406BCPZ-REEL7?
The ADG1406BCPZ-REEL7 is available in a 32-Lead LFCSP (5mm x 5mm w/ EP) package.
- What are some key applications of the ADG1406?
The ADG1406 is used in medical equipment, audio and video routing, automatic test equipment, data acquisition systems, battery-powered systems, and communication systems.
- What is the -3 dB bandwidth of the ADG1406?
The -3 dB bandwidth of the ADG1406 is 60 MHz.
- What is the insertion loss of the ADG1406?
The insertion loss of the ADG1406 is typically 0.6 dB at RL = 50 Ω, CL = 5 pF, and f = 1 MHz.
- How does the ADG1406 handle power consumption?
The ADG1406 features ultralow power dissipation, with a typical IDD of 0.002 μA and a maximum of 1 μA when digital inputs are at 0 V or VDD.
- What is the switching action of the ADG1406?
The ADG1406 has a break-before-make switching action, ensuring that the switch turns off before turning on to prevent channel overlap and reduce switching noise.
- Why is the iCMOS process significant for the ADG1406?
The iCMOS process combines high voltage CMOS and bipolar technologies, enabling high performance, low power consumption, and reduced package size.