產品詳細資料

Protocols VGA Configuration Crosspoint/exchange Number of channels 5 Bandwidth (MHz) 380 Supply voltage (max) (V) 5.5 Supply voltage (min) (V) 4 Ron (typ) (mΩ) 3000 Input/output voltage (min) (V) 0 Input/output voltage (max) (V) 5.5 ESD HBM (typ) (kV) 2 Operating temperature range (°C) -40 to 85 Crosstalk (dB) Yes ESD CDM (kV) 1 Input/output continuous current (max) (mA) 128 COFF (typ) (pF) 8.5 CON (typ) (pF) 16.5 Off isolation (typ) (dB) -44 OFF-state leakage current (max) (µA) 10 Propagation delay time (µs) 0.0066 Ron (max) (mΩ) 7000 Turnoff time (disable) (max) (ns) 6 Turnon time (enable) (max) (ns) 6.6 VIH (min) (V) 2 VIL (max) (V) 0.8
Protocols VGA Configuration Crosspoint/exchange Number of channels 5 Bandwidth (MHz) 380 Supply voltage (max) (V) 5.5 Supply voltage (min) (V) 4 Ron (typ) (mΩ) 3000 Input/output voltage (min) (V) 0 Input/output voltage (max) (V) 5.5 ESD HBM (typ) (kV) 2 Operating temperature range (°C) -40 to 85 Crosstalk (dB) Yes ESD CDM (kV) 1 Input/output continuous current (max) (mA) 128 COFF (typ) (pF) 8.5 CON (typ) (pF) 16.5 Off isolation (typ) (dB) -44 OFF-state leakage current (max) (µA) 10 Propagation delay time (µs) 0.0066 Ron (max) (mΩ) 7000 Turnoff time (disable) (max) (ns) 6 Turnon time (enable) (max) (ns) 6.6 VIH (min) (V) 2 VIL (max) (V) 0.8
SSOP (DBQ) 24 51.9 mm² 8.65 x 6 TSSOP (PW) 24 49.92 mm² 7.8 x 6.4
  • Bidirectional Data Flow, With Near-Zero Propagation Delay
  • High Bandwidth, 380MHZ (typ) RGB Switching
  • Low ON-State Resistance (ron) Characteristics (ron =3 Ω Typical)
  • Low Input/Output Capacitance Minimizes Loading and Signal Distortion
    (CIO(OFF) = 8pF Typical)
  • Undershoot Clamp Diodes on Data and Control Inputs.
  • Low Power Consumption (Icc = 3µA Max.)
  • Vcc Operation Range from 4V to 5.5V
  • Data I/Os Support 0 to 5-V Signaling Levels
    (0.8V, 1.2V, 1.5V, 1.8V, 2.5V, 3.3V, 4V)
  • Allow to pull up resistor up to 5V on the I/O
  • Ioff Supports Live Insertion, Partial Power Down Mode,
    and Back Drive Protection
  • Latch-Up Performance Exceeds 100Ma Per JESD 78, Class II.
  • ESD Performance Tested Per JESD 22
    • 2000-V Human-Body Model
      (A114-B, Class II)
    • 200-V Machine Model (A115-A)
    • 1000-V Charged-Device Model (C101)
  • APPLICATIONS
    • Digital and Analog Signal Interface
    • Audio and Video Signal Interface
    • High Speed Signal Bus Exchange
    • Bus Isolation, Interleaving
    • Notebook Computer Graphics Control

  • Bidirectional Data Flow, With Near-Zero Propagation Delay
  • High Bandwidth, 380MHZ (typ) RGB Switching
  • Low ON-State Resistance (ron) Characteristics (ron =3 Ω Typical)
  • Low Input/Output Capacitance Minimizes Loading and Signal Distortion
    (CIO(OFF) = 8pF Typical)
  • Undershoot Clamp Diodes on Data and Control Inputs.
  • Low Power Consumption (Icc = 3µA Max.)
  • Vcc Operation Range from 4V to 5.5V
  • Data I/Os Support 0 to 5-V Signaling Levels
    (0.8V, 1.2V, 1.5V, 1.8V, 2.5V, 3.3V, 4V)
  • Allow to pull up resistor up to 5V on the I/O
  • Ioff Supports Live Insertion, Partial Power Down Mode,
    and Back Drive Protection
  • Latch-Up Performance Exceeds 100Ma Per JESD 78, Class II.
  • ESD Performance Tested Per JESD 22
    • 2000-V Human-Body Model
      (A114-B, Class II)
    • 200-V Machine Model (A115-A)
    • 1000-V Charged-Device Model (C101)
  • APPLICATIONS
    • Digital and Analog Signal Interface
    • Audio and Video Signal Interface
    • High Speed Signal Bus Exchange
    • Bus Isolation, Interleaving
    • Notebook Computer Graphics Control

The TS5V522C is high bandwidth analog switches offering a 2:2 dual-graphics crossover solution for VGA signal switching. The device is designed for switching between 2 VGA sources to either of the two destinations within a laptop computer. The TS5V522C integrates 5 very high-frequency 380Mhz (typ) SPDT switches for RGB signals, 2 pairs of level-translating buffer for the HSYNC and VSYNC lines, and integrated ESD protection. The 5 crossover switches can be controlled by either 5V or 3.3V TTL control signals.

The TS5V522C would bypass the VGA analog signal to destination with less distortions. DDC Channel (SCA, SCL) may require to +5Vopen drain level at the VGA connector and it may require a pull up resistor on the destination side. Active undershoot-protection circuitry on the data ports of the TS5V522C provide protection for undershoots up to -2V by sensing an undershoot event and ensuring that the switch remains in the proper off state.

To ensure the high-impedance state during power up or power down, OE should be tied to VCC through a pull up resistor; the minimum value of the resistor is determined by the current-sinking capability of the driver.

The TS5V522C is high bandwidth analog switches offering a 2:2 dual-graphics crossover solution for VGA signal switching. The device is designed for switching between 2 VGA sources to either of the two destinations within a laptop computer. The TS5V522C integrates 5 very high-frequency 380Mhz (typ) SPDT switches for RGB signals, 2 pairs of level-translating buffer for the HSYNC and VSYNC lines, and integrated ESD protection. The 5 crossover switches can be controlled by either 5V or 3.3V TTL control signals.

The TS5V522C would bypass the VGA analog signal to destination with less distortions. DDC Channel (SCA, SCL) may require to +5Vopen drain level at the VGA connector and it may require a pull up resistor on the destination side. Active undershoot-protection circuitry on the data ports of the TS5V522C provide protection for undershoots up to -2V by sensing an undershoot event and ensuring that the switch remains in the proper off state.

To ensure the high-impedance state during power up or power down, OE should be tied to VCC through a pull up resistor; the minimum value of the resistor is determined by the current-sinking capability of the driver.

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類型 標題 日期
* Data sheet 5V, 5-BITS VIDEO EXCHANGE SWITCH FOR DUAL VGA SOURCE TO SINK, TS5V522C datasheet 2011年 3月 29日
Application note Preventing Excess Power Consumption on Analog Switches 2008年 7月 3日
Application note Semiconductor Packing Material Electrostatic Discharge (ESD) Protection 2004年 7月 8日

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