TLC2652C8D Texas Instruments Integrated Circuit (Small Outline Packages) In Stock
TLC2652C8D is a single general-purpose auto-zero op-amp from Texas Instruments operating on up to ±8 V (16 V total) supply in an 8-pin SOIC package. It delivers chopper-stabilized precision with near-zero input offset voltage drift for accurate DC measurements. In stock with worldwide shipping.
- Manufacturer
- Texas Instruments
- Package
- Small Outline Packages
- Pin Count
- 8
- Lifecycle
- ACTIVE
- Datasheet
- TLC2652C8D Datasheet PDF
- Category
- Integrated Circuit
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
What are the key features of TLC2652C8D?
- Auto-zeroing chopper-stabilized architecture achieving sub-1 µV typical input offset voltage for high-precision DC and low-frequency measurement
- Wide supply range of ±2 V to ±8 V (4 V to 16 V single supply) supporting both split-supply instrumentation and single-supply sensor circuits
- 8-pin SOIC package enabling easy PCB integration and compatibility with standard DIP-8 footprint adapters for laboratory and production instrumentation
What is TLC2652C8D used for?
TLC2652C8D is designed for precision instrumentation amplifiers, thermocouple signal conditioners, and strain gauge bridges where offset voltage below 1 µV and near-zero drift over temperature are critical to measurement accuracy. Its chopper-stabilized auto-zeroing technique eliminates the need for manual offset trimming in weigh scale and process control transmitter designs operating over -40°C to +85°C. The ±8 V supply range suits dual-supply industrial front-ends that interface with ±5 V or ±10 V analog signal ranges common in PLC input modules.
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
Where can I find the TLC2652C8D datasheet?
TLC2652C8D Datasheet DownloadOfficial datasheet from Texas Instruments
What are equivalent replacements for TLC2652C8D?
Compatible alternatives and drop-in replacements for TLC2652C8D:
Frequently Asked Questions
How does the auto-zeroing architecture of TLC2652C8D achieve sub-1 µV input offset voltage?
TLC2652C8D uses a chopper-stabilization technique that periodically samples and corrects its own input offset, driving the effective DC offset below 1 µV typical at 25°C. This eliminates the need for external offset trimming potentiometers in precision weigh-scale or 24-bit ADC front-end circuits, where even 10 µV of offset error corresponds to multiple LSBs of measurement error.
What dual supply voltage range does TLC2652C8D support and how does that fit industrial signal chains?
TLC2652C8D operates from ±2 V to ±8 V dual supply (4 V to 16 V total supply), covering standard ±5 V and ±15 V industrial analog supply rails. This makes it compatible with PLC analog input modules, 4-20 mA transmitters, and precision data acquisition systems without additional supply conditioning, maintaining sub-1 µV offset across the full ±8 V range.
For a thermocouple measurement circuit, why is TLC2652C8D preferred over a standard op-amp?
Thermocouple output voltages span 10 µV to 60 µV per degree Celsius, so a standard op-amp with 500 µV typical offset would introduce 8°C to 50°C of measurement error. TLC2652C8D's sub-1 µV auto-zeroed offset reduces this error to under 0.1°C, enabling accurate cold-junction-compensated thermocouple measurements across -40°C to +85°C without trimming.
Is TLC2652C8D in an 8-pin SOIC package compatible with standard prototyping sockets?
Yes. The 8-pin SOIC package with 1.27 mm pitch is compatible with SOIC-to-DIP-8 adapter boards commonly used in laboratory prototyping, and the tube packaging allows manual handling for low-volume assembly. The SOIC-8 footprint is also one of the most widely supported SMT package styles, enabling straightforward PCB layout in precision instrumentation and test equipment designs.
Related Guides
CSD87313DMS Synchronous Buck Power Stage Design Guide
Design a compact CSD87313DMS synchronous buck stage with practical guidance for loss, gate drive, PCB layout, EMI, thermal validation, and sourcing.
Aug 6, 2026
STEF05SGR eFuse Selection Guide for 5 V Overcurrent Protection
Choose STEF05SGR for 5 V overcurrent protection by checking current-limit margin, inrush, thermal loss, fault response, and sourcing.
Aug 6, 2026
C0402C103K3RACTU Selection Guide: Choosing a 10 nF 0402 MLCC
Select C0402C103K3RACTU by voltage margin, X7R behavior, tolerance, 0402 assembly risk, and qualified alternatives.
Aug 4, 2026
STM32H753VIT6 MCU Selection Guide: Memory, Package, Connectivity, and Security
Choose STM32H753VIT6 by evaluating memory architecture, LQFP-100 pin fit, connectivity, security, power, and sourcing tradeoffs.
Aug 4, 2026
Why Buy from FindMyChip
About Texas Instruments
Texas Instruments (TI) is a global semiconductor company headquartered in Dallas, Texas. TI designs and manufactures analog and embedded processing chips used in industrial, automotive, consumer, communications, and enterprise systems.
More from Texas Instruments
In Stock · 24h Response · Worldwide Shipping
Response within 24 hours · Worldwide shipping
“Response time is incredible — usually under 4 hours. They understand that production lines can't wait.”
You May Also Like
ACS770ECB-200U-PFF-T
Allegro Microsystems
Integrated Circuit
ACS770KCB-150U-PFF-T
Allegro Microsystems
Integrated Circuit
MC33901WEF
NXP
Integrated Circuit
MC7808BDTRKG
ON Semiconductor
Integrated Circuit
PA94EC
Apex Microtechnology
Integrated Circuit
AP7315-28SR-7
Diodes Inc.
Integrated Circuit
74HCT245D
Nexperia
Integrated Circuit
CY62256VNLL-70ZXCT
Cypress Semiconductor
Integrated Circuit
EPM7032AETC44-4N
Intel
Integrated Circuit
EPM3512AQC208-10N
Intel
Integrated Circuit
EPM3256ATC144-7N
Intel
Integrated Circuit
EPM3256AQC208-7N
Intel
Integrated Circuit
EPM3256AQC208-10N
Intel
Integrated Circuit
EPM3128ATC100-7N
Intel
Integrated Circuit
EPM1270F256C4N
Intel
Integrated Circuit
EPF8282ATC100-4N
Intel
Integrated Circuit
EPF6016QC208-2N
Intel
Integrated Circuit
EPF6016ATC144-3N
Intel
Integrated Circuit
EPF10K30ATC144-3N
Intel
Integrated Circuit
EPC2TI32N
Intel
Integrated Circuit
EPC2LC20
Intel
Integrated Circuit
EP3SL150F1152C4N
Intel
Integrated Circuit
EP2SGX60DF780C5N
Intel
Integrated Circuit
EP2SGX60CF780C5N
Intel
Integrated Circuit