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TI TLC27L2IDRRoHS

Manufacturer
MPN
TLC27L2IDR
LCSC Part #
C132745
Packaging
SOIC-8
Customer #
Key Attributes
LinCMOS Precision Dual Operational Amplifiers
Datasheetpdf iconTI TLC27L2IDR
In-Stock: 2,062
2,062 In stock, ships now
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QtyUnit PriceTotal Amount
1+$ 0.9293$ 0.93
10+$ 0.7679$ 7.68
30+$ 0.688$ 20.64
100+$ 0.6081$ 60.81
500+$ 0.5446$ 272.30
1,000+$ 0.5201$ 520.10
Standard Packaging2500/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Linear/Amplifiers/Instrumentation, Op Amps, Buffer Amps
ManufacturerTI
PackagingSOIC-8
Number of Channels2
Vos - Input Offset Voltage10mV
Slew Rate30V/ms
Input Offset Current(Ios)60pA
Input offset current drift(Ios TC)-
FeaturesESD protection
Operating Temperature-40℃~+85℃
Common Mode Rejection Ratio(CMRR)65dB
Ib - Input Bias Current0.6pA
Output Current-
Maximum Power Supply Range (Vdd-Vss)16V
Input Offset Voltage Drift(Vos TC)1.1uV/℃
Gain Bandwidth Product85kHz
Quiescent Current20uA
Input Voltage Noise Density68nV/√Hz@1kHz
Dual Supply-4V~16V
Rail to Rail-
Single Supply4V~16V

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging2500
Sales UnitPiece

Introduction

AI Translation

The TLC27L2 and TLC27L7 dual operational amplifiers combine a wide range of input offset voltage grades with low offset voltage drift, high input impedance, extremely low power, and high gain. These devices use 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, and low power consumption make these cost-effective devices ideal for high gain, low frequency, low power applications. Four offset voltage grades are available (C-suffix and I-suffix types), ranging from the low-cost TLC27L2 (±10 mV) to the high-precision TLC27L7 (500 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. In general, many features associated with bipolar technology are available in 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 TLC27L2 and TLC27L7. The devices also exhibit low voltage single-supply operation and ultra-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. The device inputs and outputs are designed to withstand -100-mA surge currents without sustaining latch-up. The TLC27L2 and TLC27L7 incorporate internal ESD-protection circuits that prevent functional failures at voltages up to 2000 V as tested under MIL-STD-883C, Method 3015.2; however, care should be exercised in handling these devices as exposure to ESD may result in the degradation of the device parametric performance.

Features

AI Translation
  • Trimmed Offset Voltage: TLC27L7... 500 μV Max at 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)
  • Ultra-Low Power... Typically 95 μW at 25°C, VDD = 5 V
  • Output Voltage Range Includes Negative Rail
  • High Input Impedance... 10^12 Ω Typ
  • ESD-Protection Circuitry
  • Small-Outline Package Option Also Available in Tape and Reel
  • Designed-In Latch-Up immunity

Applications

AI Translation
  • transducer interfacing
  • analog calculations
  • amplifier blocks
  • active filters
  • signal buffering
  • remote and inaccessible battery-powered applications
  • high-density system applications