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TLC27M4CDR

發布時間:2022/6/14 11:35:00 訪問次數:102

TLC27M4CDRThe device inputs and outputs are designed to withstand −100-mA surge currents without sustaining latch-up. The TLC27M4 and TLC27M9 incorporate internal ESD-protection circuits that prevent functional failures at voltages up to 2000 V as tested under MIL-STD-883C, Method 3015; however, care should be exercised in handling these devices, as exposure to ESD may result in the degradation of the device parametric performance. The C-suffix devices are characterized for operation from 0°C to 70°C. The I-suffix devices are characterized for operation from –40°C to 85°C. The M-suffix devices are characterized for operation over the full military temperature range of –55°C to 125°C.

In general, many features associated with bipolar technology are available on LinCMOS™ operational amplifiers, without the power penalties of bipolar technology. General applications such as transducer interfacing, analog calculations, amplifier blocks, active filters, and signal buffering are easily designed with the TLC27M4 and TLC27M9. The devices also exhibit low voltage single-supply operation, and low power consumption, making them ideally suited for remote and inaccessible battery-powered applications. The common-mode input voltage range includes the negative rail. A wide range of packaging options is available, including small-outline and chip-carrier versions for high-density system applications.

Four offset voltage grades are available (C-suffix and I-suffix types), ranging from the low-cost TLC27M4 (10 mV) to the high-precision TLC27M9 (900 μV). These advantages, in combination with good common-mode rejection and supply voltage rejection, make these devices a good choice for new state-of-the-art designs as well as for upgrading existing designs.

DESCRIPTION The TLC27M4 and TLC27M9 quad operational amplifiers combine a wide range of input offset voltage grades with low offset voltage drift, high input impedance, low noise, and speeds comparable to that of general-purpose bipolar devices. These devices use Texas Instruments silicon-gate LinCMOS™ technology, which provides offset voltage stability far exceeding the stability available with conventional metal-gate processes. The extremely high input impedance, low bias currents, make these cost-effective devices ideal for applications that have previously been reserved for general-purpose bipolar products, but with only a fraction of the power consumption.

Low Noise . . . Typically 32 nV/√Hz at f = 1 kHz • Low Power . . . Typically 2.1 mW at TA = 25°C, VDD = 5 V • Output Voltage Range Includes Negative Rail • High Input Impedance . . . 1012 Ω Typ • ESD-Protection Circuitry • Small-Outline Package Option Also Available in Tape and Reel • Designed-In Latch-Up Immunity

Trimmed Offset Voltage – TLC27M9 . . . 900 μV Max at TA = 25°C, VDD = 5 V • Input Offset Voltage Drift . . . Typically 0.1 μV/Month, Including the First 30 Days • Wide Range of Supply Voltages Over Specified Temperature Range: – 0°C to 70°C . . . 3 V to 16 V – –40°C to 85°C . . . 4 V to 16 V – –55°C to 125°C . . . 4 V to 16 V • Single-Supply Operation • Common-Mode Input Voltage Range Extends Below the Negative Rail (C-Suffix, I-Suffix Types)

LinCMOS™ PRECISION QUAD OPERATIONAL AMPLIFIERS Check for Samples: TLC27M4, TLC27M4A, TLC27M4B, TLC27M4Y, TLC27M9

Quad, 16-V, 525-kHz, In to V- operational amplifier 14-SOIC 0 to 70

TLC27M4CDR

XC6SLX75-2CSG484I XILINX BGA
XC6SLX75-2FGG484C XILINX BGA
XC6SLX75-2FGG676I XILINX BGA
XC6SLX75-3FGG676C XILINX BGA
XC6SLX75T-2CSG484I XILINX BGA
XC6SLX75T-2FGG484C XILINX BGA
XC6SLX75T-2FGG484I XILINX BGA
XC6SLX75T-3FGG484I XILINX BGA
XC6SLX9-2CPG196C XILINX BGA
XC6SLX9-2CSG225C XILINX BGA
XC6SLX9-2CSG324C XILINX BGA
XC6SLX9-2CSG324I XILINX BGA
XC6SLX9-2TQG144I XILINX BGA
XC6VLX130T-1FFG1156C XILINX BGA
XC6VLX130T-1FFG1156I XILINX BGA
XC6VLX130T-1FFG784I XILINX BGA
XC6VLX130T-2FFG1156C XILINX BGA
XC6VLX130T-2FFG1156I XILINX BGA
XC6VLX130T-2FFG784I XILINX BGA
XC6VLX195T-1FFG1156C XILINX BGA
XC6VLX195T-1FFG1156I XILINX BGA
XC6VLX240T-1FFG1156I XILINX BGA
XC6VLX240T-2FFG1156I XILINX BGA
XC6VLX240T-2FFG1759I XILINX BGA
XC6VLX365T-1FFG1156I XILINX BGA
XC6VLX365T-2FFG1759I XILINX BGA
XC6VLX550T-1FFG1759I XILINX BGA
XC6VLX75T-2FFG784I XILINX BGA
XC6VSX315T-2FFG1156I XILINX BGA
XC6VSX315T-2FFG1759I XILINX BGA
XC7A100T-1FGG676C XILINX BGA
XC7A100T-1FGG676I XILINX BGA
XC7A100T-2CSG324C XILINX BGA
XC7A100T-2CSG324I XILINX BGA
XC7A100T-2FGG484I XILINX BGA
XC7A15T-1CSG324C XILINX BGA
XC7A15T-1CSG324I XILINX BGA
XC7A15T-3FTG256E XILINX BGA
XC7A200T-1FBG484I XILINX BGA
XC7A200T-1FFG1156I XILINX BGA
XC7A200T-2FBG676I XILINX BGA
XC7A200T-2FFG1156C XILINX BGA
XC7A200T-2FFG1156I XILINX BGA
XC7A200T-2SBG484I XILINX BGA
XC7A200T-3FFG1156E XILINX BGA
XC7A200T-L1SBG484I XILINX BGA
XC7A25T-2CSG325C XILINX BGA
XC7A35T-1CSG325C XILINX bga
XC7A35T-1FGG484I XILINX BGA
XC7A35T-1FTG256C XILINX BGA
XC7A35T-2CSG325I XILINX BGA
XC7A35T-2FGG484C XILINX BGA
XC7A35T-2FTG256I XILINX BGA
XC7A50T-1CSG324I XILINX BGA
XC7A50T-1CSG325I XILINX BGA
XC7A50T-1FTG256C XILINX BGA
XC7A50T-1FTG256I XILINX BGA
XC7A50T-2CPG236I XILINX BGA
XC7A50T-2CSG324C XILINX BGA
XC7A50T-2CSG325I XILINX BGA
XC7A50T-2FGG484I XILINX BGA
XC7A50T-2FTG256C XILINX BGA
XC7A50T-2FTG256I XILINX BGA
XC7A75T-1FGG484I XILINX BGA
XC7A75T-2FGG484C XILINX BGA
XC7A75T-2FGG676C Xilinx BGA
XC7A75T-2FGG676I XILINX BGA
XC7A75T-3FGG676E XILINX BGA
XC7K160T-1FBG676C XILINX BGA
TLC27M4CDR

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