MAX4886
MAX4886 is High-Speed Analog Switch Designed manufactured by Maxim Integrated.
Description
The MAX4886 high-speed analog switch is ideal for HDMI/DVI switching applications, permitting 2:1 or 1:2 switching. The MAX4886 contains four differential pairs of 1:2 or 2:1 switches for RGB and clocking signals. The MAX4886 connects either one monitor to one of two digital video signals, or one HDMI/DVI source to one of two loads (sink). The MAX4886 set of differential switches is based on an n FET architecture with internal charge pump for gate overdrive. This advanced architecture results in an extremely low capacitance and on-resistance needed for the excellent return loss requirements for digital switching. An efficient internal charge-pump design offers very low quiescent current for power-sensitive notebook designs. The MAX4886 features
8Ω (typ) on-resistance and 2.5p F on-capacitance switches for routing RGB and CLK video signals. The MAX4886 is a high-frequency panion device to the MAX4929. These two devices bined perform the full 2:1 HDMI/DVI switching function. The MAX4886 is available in a space-saving, 42-pin, 3.5mm x 9.0mm TQFN package and operates over the .. extended -40°C to +85°C temperature range.
- Single +3.0V to +3.6V Power Supply
- Low On-Resistance (RON): 8Ω (typ)
- Low On-Capacitance (CON): 2.5p F (typ)
- Low Skew: 20ps (typ)
- 700µA Low Supply Current
- 2.6GHz (typ) Ultra-High Bandwidth
- 0.6d B (typ) Ultra-Low Insertion Loss
- High-Frequency panion Device to MAX4929
- Use MAX4886 and MAX4929 to Form a plete HDMI/DVI 2:1 Switch
- 42-Pin, 3.5mm x 9.0mm, Space-Saving TQFN
Features
Ordering Information
PART TEMP RANGE PINPACKAGE PKG CODE
MAX4886ETO+ -40°C to +85°C 42 TQFN-EP- T42359OM-1
Applications
HDTV Monitors/Receivers Video Projectors Notebook puters Digital HDTV Switch Boxes/Tuners Multimedia Audio/Video Switchers Servers/Routers with DVI Interfaces Digital Video Recorders LVDS Switching 1000 Base-BX, Switching
+Denotes a lead-free package.
- EP = Exposed paddle.
Eye Diagram
EYE DIAGRAM (VDD = 3.3V, f = 2.6GHz...