Texas Instruments, TLC27L2CP, Through-Hole Precision Amplifier, 9.81 x 6.35 x 4.57mm, CMOS 68nV/√Hz Single

TLC27L2CP Texas Instruments, , Through-Hole Precision Amplifier, 9.81 x 6.35 x 4.57mm, CMOS 68nV/√Hz Single
TLC27L2CP
Texas Instruments

Product Information

The TLC27L2CP from Texas Instruments is a precision dual operational amplifier providing low offset voltage and low input bias current for precise signal amplification. Created with a wide range of operating voltage and temperature, it is best for precision applications such as instrumentation, medical devices, and audio equipment.

Typical Input Voltage Noise Density:
68nV/√Hz
Typical Gain Bandwidth Product:
85kHz
Dimensions:
9.81 x 6.35 x 4.57mm
Mounting Type:
Through Hole
Typical Slew Rate:
0.03V/µs
Power Supply Type:
Single
Number of Channels per Chip:
2
Rail to Rail:
No
Height:
4.57mm
Typical Single Supply Voltage:
5 → 15 V
Width:
6.35mm
Length:
9.81mm
Package Type:
PDIP
Minimum Operating Temperature:
0 °C
Amplifier Type:
Precision
Typical Voltage Gain:
117 dB
Maximum Operating Temperature:
+70 °C
Pin Count:
8
HTSUS:
8542.33.0001
RoHS Status:
ROHS3 Compliant
Current - Output / Channel:
30 mA
Operating Temperature:
0°C ~ 70°C
Package / Case:
8-DIP (0.300", 7.62mm)
Current - Input Bias:
0.6 pA
Voltage - Input Offset:
1.1 mV
Voltage - Supply Span (Max):
16 V
Voltage - Supply Span (Min):
3 V
REACH Status:
REACH Unaffected
Output Type:
-
edacadModel:
TLC27L2CP Models
Current - Supply:
20µA (x2 Channels)
edacadModelUrl:
/en/models/374926
Moisture Sensitivity Level (MSL):
Not Applicable
Slew Rate:
0.03V/µs
standardLeadTime:
6 Weeks
Number of Circuits:
2
Gain Bandwidth Product:
110 kHz
Mounting Type:
Through Hole
Series:
LinCMOS™
Supplier Device Package:
8-PDIP
Packaging:
Tube
Amplifier Type:
CMOS
Base Product Number:
TLC27L2
ECCN:
EAR99
RoHs Compliant
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The TLC27L2CP is a through-hole precision amplifier designed and manufactured by Texas Instruments (TI), a leading semiconductor company specialising in producing integrated circuits and analogue devices. The TLC27L2CP is a high-speed, low-noise amplifier widely used in various applications, including audio amplifiers, instrumentation amplifiers, and sensor signal conditioning circuits.

High-Speed Performance:

One of the most notable features of the TLC27L2CP is its high-speed performance. With a gain bandwidth product of 2.9 MHz and a slew rate of 1.3 V/μs, this precision amplifier can deliver fast and accurate signal amplification. The high-speed performance of the TLC27L2CP makes it an ideal choice for applications that require fast and precise amplification, such as data acquisition systems and precision instrumentation.

Precision Amplification:

The TLC27L2CP is a precision amplifier designed to amplify small signals accurately. With a maximum offset voltage of 500 μV and a maximum offset current of 0.1 nA, this amplifier can amplify small signals with minimal distortion or noise. Additionally, the TLC27L2CP has a high common-mode rejection ratio (CMRR) of 94 dB, which helps to eliminate common-mode noise and interference in the signal.

Low-Noise Performance:

The TLC27L2CP is also known for its low-noise performance. With a typical input noise voltage of 6 nV/√Hz and a typical input noise current of 0.01 pA/√Hz, this amplifier can provide clean and accurate amplification of low-level signals. The low-noise performance of the TLC27L2CP makes it an ideal choice for applications that require high signal-to-noise ratios, such as audio amplifiers and medical instrumentation.

Other Features:

  • In addition to its high-speed, precision, and low-noise performance, the TLC27L2CP also features a wide supply voltage range of 3 V to 16 V, making it compatible with a variety of power sources.
  • It also has a low quiescent current of 850 μA, which helps to minimise power consumption and extend battery life in portable applications.

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ESD Control Selection Guide V1(Technical Reference)
pdf icon
Copper Bond Wire Revision A 04/Dec/2013(PCN Design/Specification)
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Material Set 30/Mar/2017(PCN Design/Specification)

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FAQs

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