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TLC372MDREP Datasheet(PDF) 7 Page - Texas Instruments |
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TLC372MDREP Datasheet(HTML) 7 Page - Texas Instruments |
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7 / 18 page ![]() www.ti.com PRINCIPLES OF OPERATION LinCMOS™ Process Electrostatic Discharge (ESD) D3 R2 Q2 To Protected Circuit VDD D2 D1 Q1 R1 Input VSS Input Protection Circuit Operation TLC372-EP LinCMOS™ DUAL DIFFERENTIAL COMPARATORS SGLS385 – MARCH 2007 The LinCMOS process is a linear polysilicon-gate complementary-MOS process. Primarily designed for single-supply applications, LinCMOS products facilitate the design of a wide range of high-performance analog functions, from operational amplifiers to complex mixed-mode converters. This short guide is intended to answer the most frequently asked questions related to the quality and reliability of LinCMOS products. Further questions should be directed to the nearest TI field sales office. CMOS circuits are prone to gate oxide breakdown when exposed to high voltages even if the exposure is only for very short periods of time. ESD is one of the most common causes of damage to CMOS devices. It can occur when a device is handled without proper consideration for environmental electrostatic charges, e.g. during board assembly. If a circuit in which one amplifier from a dual operational amplifier is being used and the unused pins are left open, high voltages tends to develop. If there is no provision for ESD protection, these voltages may eventually punch through the gate oxide and cause the device to fail. To prevent voltage buildup, each pin is protected by internal circuitry. Standard ESD-protection circuits safely shunt the ESD current by providing a mechanism whereby one or more transistors break down at voltages higher than the normal operating voltages but lower than the breakdown voltage of the input gate. This type of protection scheme is limited by leakage currents which flow through the shunting transistors during normal operation after an ESD voltage has occurred. Although these currents are small, on the order of tens of nanoamps, CMOS amplifiers are often specified to draw input currents as low as tens of picoamps. To overcome this limitation, TI design engineers developed the patented ESD-protection circuit shown in Figure 4. This circuit can withstand several successive 1-kV ESD pulses, while reducing or eliminating leakage currents that may be drawn through the input pins. A more detailed discussion of the operation of TI's ESD- protection circuit is presented in Circuit Design Consideration. Figure 4. LinCMOS™ ESD-Protection Schematic Texas Instruments patented protection circuitry allows for both positive-and negative-going ESD transients. These transients are characterized by extremely fast rise times and usually low energies, and can occur both when the device has all pins open and when it is installed in a circuit. 7 Submit Documentation Feedback |
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