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TMUX7411F Fiches technique(PDF) 23 Page - Texas Instruments

No de pièce TMUX7411F
Description  TMUX741xF 짹60 V Fault-protected, 1:1 (SPST), 4-Channel Switches with 1.8-V Logic
PDF  30 Pages
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Fabricant  TI [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI - Texas Instruments

TMUX7411F Fiches technique(HTML) 23 Page - Texas Instruments

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9.3.2.2 Powered-Off Protection
When the supplies of TMUX7411F, TMUX7412F, and TMUX7413F are removed (VDD/ VSS = 0 V or floating), the
source (Sx) pins of the device remain in high impedance (Hi-Z) state, and the device performance remains within
the leakage performance. Powered-off protection minimizes system complexity by removing the need to control
power supply sequencing of the system. The feature prevents errant voltages on the input source pins from
reaching the rest of the system and maintains isolation when the system is powering up. Without powered-off
protection, signal on the input source pins can back-power the supply rails through internal ESD diodes and
cause potential damage to the system.
The switch remains OFF regardless of whether the VDD and VSS supplies are 0 V or floating. A GND reference
must always be present to ensure proper operation. Source and drain voltage levels of up to ±60 V are blocked
in the powered-off condition.
9.3.2.3 Fail-Safe Logic
Fail-safe logic circuitry allows voltages on the digital control pins to be applied before the supply pins, protecting
the device from potential damage. The switch is specified to be in the OFF state, regardless of the state of the
digital logic signals. The digital inputs are protected against positive faults of up to +44 V in powered-off
condition, but do not offer protection against negative overvoltage condition.
9.3.2.4 Overvoltage Protection and Detection
The TMUX7411F, TMUX7412F, and TMUX7413F detect overvoltage inputs by comparing the voltage on a
source pin (Sx) with the supplies (VDD and VSS). A signal is considered overvoltage if it exceeds the supply
voltages by the threshold voltage (VT).
The switch automatically turns OFF regardless of the logic controls when an overvoltage is detected. The source
pin becomes high impedance and ensures only small leakage current flows through the switch. The drain pin
(Dx) is pulled to the supply that was exceeded when the fault channel is selected by the logic control. For
example, if the source voltage exceeds VDD, the drain output is pulled to VDD. If the source voltage exceeds VSS,
the drain output is pulled to VSS. The pull-up impedance is approximately 40 kΩ, and as a result, the drain
current is limited to roughly 1 mA during a shorted load (to GND) condition.
9.3.2.5 Latch-up Immunity
Latch-up is a condition where a low impedance path is created between a supply pin and ground. This condition
is caused by a trigger (current injection or overvoltage), but once activated, the low impedance path remains
even after the trigger is no longer present. This low impedance path may cause system upset or catastrophic
damage due to excessive current levels. The Latch-up condition typically requires a power cycle to eliminate the
low impedance path.
In the TMUX7411F, TMUX7412F, and TMUX7413F devices, an insulating oxide layer is placed on top of the
silicon substrate to prevent any parasitic junctions from forming. As a result, the devices are latch-up immune
under all circumstances by device construction.
9.3.3 Overvoltage Fault Flags
The voltages on the source input pins of the TMUX7411F, TMUX7412F, and TMUX7413F are continuously
monitored, and the status of whether an overvoltage condition occurs is indicated by an active low general fault
flag (FF). The voltage on the FF pin indicates if any of the source input pins are experiencing an overvoltage
condition. If any source pin voltage exceeds the fault supply voltages by a VT, the FF output is pulled-down to
below VOL.
The FF pin is an open-drain output and an external pull-up resistor of 1 kΩ is recommended. The pull-up voltage
can be in the range of 1.8 V to 5.5 V, depending on the controller voltage the device interfaces with.
www.ti.com
TMUX7411F, TMUX7412F, TMUX7413F
SCDS404 – MARCH 2021
Copyright © 2021 Texas Instruments Incorporated
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Product Folder Links: TMUX7411F TMUX7412F TMUX7413F



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