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ADV3220

ADV3220 Series

800 MHz, 2:1 Analog Multiplexer, Gain = +2

Manufacturer: Analog Devices

Catalog

800 MHz, 2:1 Analog Multiplexer, Gain = +2

Key Features

• Excellent ac performance−3 dB bandwidth800 MHz (200 mV p-p)730 MHz (2 V p-p)Slew rate: 2800 V/μs
• −3 dB bandwidth800 MHz (200 mV p-p)730 MHz (2 V p-p)
• Slew rate: 2800 V/μs
• Low power: 75 mW, VS = ±5 V
• Excellent video performance>100 MHz, 0.1 dB gain flatness0.02% differential gain/0.02° differential phase error (RL = 150 Ω)
• >100 MHz, 0.1 dB gain flatness
• 0.02% differential gain/0.02° differential phase error (RL = 150 Ω)
• Gain = +2
• Low crosstalk of −82 dB at 5 MHz and −60 dB at 100 MHz
• High impedance output disable allows connection of multiple devices without loading the output bus
• 8-lead LFCSP

Description

AI
TheADV3219and ADV3220 are high speed, high slew rate, buffered, 2:1 analog multiplexers. They offer a −3 dB signal bandwidth greater than 800 MHz and channel switch times of less than 20 ns with 1% settling. With −82 dB of crosstalk and −88 dB isolation (at 5 MHz), the ADV3219 and ADV3220 are useful in many high speed applications. The differential gain of less than 0.02% and the differential phase of less than 0.02°, together with 0.1 dB flatness beyond 100 MHz while driving a 75 Ω back terminated load, make the ADV3219 and ADV3220 ideal for all types of signal switching.The ADV3219/ADV3220 include an output buffer that can be placed into a high impedance state to allow multiple outputs to be connected together for cascading stages without the off channels loading the output bus. The ADV3219 has a gain of +1, and the ADV3220 has a gain of +2; they both operate on ±5 V supplies while consuming less than 7.5 mA of idle current.The ADV3219/ADV3220 are available in the 8-lead LFCSP package over the extended industrial temperature range of −40°C to +85°C.ApplicationsRouting of high speed signals including– Video (NTSC, PAL, S, SECAM, YUV, and RGB)– Compressed video (MPEG, wavelet)– 3-level digital video (HDB3)Data communicationsTelecommunications