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MAX14550E
USB Host Charger Identification Analog Switch

Enables USB Charging and Hi-Speed USB Switching


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Status
Active: In Production.

Description
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The MAX14550E is a USB Hi-Speed analog switch with a USB host charger (dedicated charger) identification circuit. The MAX14550E supports both the USB Battery Charging Specification Revision 1.0 and a set resistor bias for Apple®-compliant devices.

The MAX14550E features a high-performance Hi-Speed USB switch with low 4pF (typ) on-capacitance and low 4Ω (typ) on-resistance. In addition, the MAX14550E features two digital inputs (CB0 and CB1) to switch between pass-through and charger modes. The USB host charger identification circuit allows a host USB port to support USB chargers with shorted D+/D- detection and to provide support for Apple-compliant devices using a resistor bias. When an Apple-compliant device is attached to the port, the MAX14550E provides the voltage from the external divider. If a USB Revision 1.0-compliant device is attached, the MAX14550E connects a short across DP and DM to allow correct charger detection. The MAX14550E autodetection circuit can be disabled and either a DP/DM short or resistor network is chosen as the default.

The MAX14550E has enhanced high electrostatic discharge (ESD) protection on the DP and DM inputs up to ±15kV Human Body Model (HBM).

The MAX14550E is available in a 10-pin (3mm x 3mm), TDFN package and is specified over the -40°C to +85°C extended temperature range.

An evaluation kit is available:  MAX14550EEVKIT  

Key Features   Applications/Uses
  • USB 2.0 Hi-Speed Switching
  • Low 4.0pF On-Capacitance
  • Low 4.0Ω On-Resistance
  • Ultra-Low 0.1Ω On-Resistance Flatness
  • +2.8V to +5.5V Supply Range
  • Ultra-Low 7µA Supply Current
  • Automatic USB Charger Identification Circuit
  • Optional External Resistor-Divider with Auto Selection
  • ±15kV High ESD HBM Protection on DP/DM
  • 3mm x 3mm, 10-Pin, TDFN Package

 

Diagram
MAX14550E

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    Document Ref.: 19-4745; Rev 0; 2009-08-24
    This page last modified: 2009-09-21


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