In this comprehensive guide, we'll dive deep into the Analog Devices ADG849YKSZ-REEL7, a cutting-edge Analog Switch Single SPDT, housed in a compact 6-Pin SC-70 package. Let's delve into its overview, key features, application, specification and more.
The ADG849YKSZ-REEL7 stands out as an active Analog Switch, specifically designed for electronic systems, offering seamless signal routing capabilities. In its Single Pole, Double Throw (SPDT) configuration, this switch boasts a single channel with two outputs and incorporates Chip Enable Signals for enhanced control. Its non-inverting polarity ensures precise signal handling, making it a versatile component for various applications in electronic systems.
· The ADG849YKSZ-REEL7 demonstrates remarkable precision with a maximum turn-on time of 22 ns and turn-off time of 18 ns at 3.6V, coupled with a maximum frequency of 38 MHz at 5.5V for efficient signal handling.
· Featuring voltage versatility, this analog switch operates seamlessly across a range from a minimum single supply voltage of 1.8V to a maximum of 5.5V, with typical supply voltages of 3V and 5V.
· With power efficiency in focus, the ADG849YKSZ-REEL7 showcases an incredibly low typical supply current of 0.000001 mA at 5.5V, ensuring minimal power consumption, and a maximum supply current of 0.001 mA at 5.5V, even in the challenging temperature range from -40°C to 125°C.
· The robust performance of this component is evident in its ability to handle a maximum high level output current of 400 mA, a maximum on resistance of 1.1 Ohm at 3.6V, and an on resistance range spanning from 1 to 5 Ohm, ensuring reliability in diverse operating conditions.
Type | Parameter |
Type | Analog Switch |
Configuration | Single SPDT |
Switch Architecture | SPDT |
Number of Channels per Chip | 1 |
Number of Inputs per Chip | 1 |
Number of Outputs per Chip | 2 |
Chip Enable Signals | Yes |
Polarity | Non-Inverting |
Maximum Turn-On Time (ns) | 22@3.6V |
Maximum Turn-Off Time (ns) | 18@3.6V |
Maximum Frequency (25°C) @ Vcc (MHz) | 38(Typ)@5.5V |
Input Signal Type | Single |
Output Signal Type | Single |
Minimum Single Supply Voltage (V) | 1.8 |
Typical Single Supply Voltage (V) | 3|5 |
Maximum Single Supply Voltage (V) | 5.5 |
Typical Supply Current (mA) | 0.000001@5.5V |
Maximum Supply Current (mA) | 0.001@5.5V@-40C to 125C |
Maximum High Level Output Current (mA) | 400 |
Maximum On Resistance (Ohm) | 1.1@3.6V |
Maximum On Resistance Range (Ohm) | 1 to 5 |
Power Supply Type | Single |
Minimum Operating Temperature (°C) | -40 |
Maximum Operating Temperature (°C) | 125 |
Supplier Temperature Grade | Automotive |
Packaging | Tape and Reel |
Mounting | Surface Mount |
Package Height | 0.9 |
Package Width | 1.25 |
Package Length | 2 |
PCB changed | 6 |
Standard Package Name | SOT |
Supplier Package | SC-70 |
Pin Count | 6 |
Lead Shape | Gull-wing |
The ADG849YKSZ-REEL7 finds its prowess in various applications, including but not limited to:
· Signal Routing in Communication Systems: the ADG849YKSZ-REEL7 excels at precise signal routing, ensuring optimal transmission and reception for seamless communication.
· Precision Instrumentation: this analog switch proves invaluable, providing accurate and controlled signal handling for applications demanding high precision.
· Automotive Electronics: the ADG849YKSZ-REEL7 contributes to the efficiency and reliability of electronic systems in vehicles, meeting the stringent demands of the automotive industry.
· Robotic Control Systems: this component offers a dependable solution for managing signals, enhancing the overall performance and precision in robotic applications.
Analog Devices, Inc. (ADI) stands as a global leader in analog and mixed-signal technology, pioneering transformative solutions since 1965. Renowned for innovation, ADI's diverse portfolio of high-performance integrated circuits spans precision amplifiers, data converters, sensors, and digital signal processing.
In conclusion, the Analog Devices ADG849YKSZ-REEL7 is not just a component; it's a precision tool that elevates the performance of electronic systems.