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The pricing environment for Texas Instruments (TI) components has become increasingly important for electronics manufacturers and procurement teams in 2026.
Multiple market reports have indicated that TI has implemented several pricing adjustments during 2026, including a further adjustment taking effect around July 1, 2026. Market sources have highlighted power management, isolation and other core analog products as areas requiring close procurement attention.
For companies with large TI exposure in their BOMs, the key question is no longer simply “Will TI prices increase?” but rather:
Which TI components are most exposed to pricing and supply changes, and how can procurement teams reduce the impact?
TI Market Conditions in 2026
Texas Instruments reported $5.46 billion in revenue for Q2 2026, representing 23% year-over-year growth. According to TI, growth was broad-based and led by industrial, data center and automotive markets.
These markets are important consumers of analog semiconductors, power-management ICs, isolation products, current-sensing devices and embedded processors.
As demand improves, procurement teams should pay closer attention to components that are:
Used in high-volume industrial applications Designed into power-management systems Required for automotive qualification Difficult to second-source Based on mature manufacturing processes Already experiencing extended lead times Critical to production continuity 1. TPS and TI Power Management Components
The TPS family is one of the most important TI product groups for procurement teams.
Typical applications include:
DC/DC converters Buck regulators Boost converters Power switches Battery management Industrial power supplies Data-center power systems Automotive power architectures
TI currently lists more than 5,000 power-management products, demonstrating the size and importance of this product category.
Representative parts worth reviewing
Procurement teams can review commonly used models such as:
TPS54202 TPS54360 TPS62130 TPS7A4701 TPSM series LMR series
These models should be considered procurement review examples rather than an official TI price-increase list. Actual pricing depends on customer, quantity, package, delivery requirements and commercial terms.
2. LM Series
The LM family remains another major area for TI sourcing.
Typical applications include:
Voltage regulation Power conversion Industrial equipment Motor control Factory automation Embedded systems
Representative parts that procurement teams may want to review include:
LM2596 LM317 LM358 LM324 LM2904 LM series power-management devices
For high-volume production, even a relatively small unit-price change can have a significant effect on total BOM cost.
For example:
1 million pieces × $0.10 increase = $100,000 additional component cost.
This is why procurement teams should evaluate price changes at the BOM level, rather than looking only at individual component prices.
3. ISO and Digital Isolation Products
Isolation products are another important TI category.
TI's current isolation portfolio includes:
Digital isolators Isolated gate drivers Isolated interface ICs Isolated ADCs Isolated amplifiers Isolated power modules
Examples include:
ISO7741 ISO7742 ISO7841 ISO7021 ISO7041 ISOW series
TI describes its digital-isolator portfolio as supporting reinforced isolation, high data rates, low power and various industrial and automotive requirements.
For customers using isolation devices in industrial automation, motor drives, EV systems, solar inverters and power supplies, it is worth checking both price and availability before placing the next production order.
4. INA Current-Sense and Power-Monitoring Products
The INA family is widely used for current measurement, protection, feedback control and power monitoring.
Representative products include:
INA180 INA219 INA226 INA240-Q1 INA241A INA281 INA290 series
TI currently offers a broad range of current-sense amplifiers supporting applications such as motor control, solar systems, DC/DC converters, EV charging and industrial equipment.
These components can become particularly important when they are embedded in safety-critical or production-qualified designs where changing to another manufacturer requires engineering validation.
5. TMS320 C2000 Industrial MCUs
TI's C2000 family deserves attention from customers involved in industrial control and digital power.
One example is:
TMS320F28335
TI currently lists the TMS320F28335 as an active product with a 150-MIPS C28x CPU, 512 KB flash and 12-bit ADC. It is designed for applications including industrial motor drives, solar inverters, digital power and real-time control.
Market reports have also highlighted TMS320F28335 and other DSP products as examples of TI components experiencing significant price movement during the current market cycle.
For customers with legacy industrial designs, this type of component deserves special attention because changing the MCU may involve software redevelopment, PCB modification and product requalification.
What Procurement Teams Should Do
A TI price increase does not necessarily mean every TI part will increase by the same percentage.
In fact, TI's official pricing terms state that product prices may change due to factors including quantity, shipment arrangements, requested delivery dates, currency exchange rates, economic conditions and other changes in conditions.
Therefore, buyers should avoid assuming a universal percentage increase.
Instead, we recommend a five-step approach:
Step 1 — Identify TI exposure
Export your BOM and identify every:
TPS LM ISO INA UCC TMS320 Automotive Q1 Power-management component Step 2 — Check current stock
Compare:
Factory stock → Authorized distribution → Independent distribution → Broker/spot stock
The lowest price is not always the best option if the supplier cannot provide reliable traceability.
Step 3 — Prioritize single-source components
Focus first on components where:
No approved second source exists Lead time is long Production cannot stop Engineering replacement is difficult Step 4 — Review total BOM impact
Do not only compare unit prices.
Calculate:
Annual Quantity × Price Difference = Annual Cost Impact
This makes it easier to determine which components deserve immediate action.
Step 5 — Secure critical inventory
For production-critical components, purchasing a reasonable buffer before further market changes can reduce both:
price risk + supply risk.
How SJ Chip Can Help
SJ Chip provides global sourcing support for Texas Instruments components, semiconductor shortages, hard-to-find parts and BOM cost optimization.
We can support customers with:
TI component sourcing Current stock verification Competitive quotation Hard-to-find TI parts Excess and shortage sourcing BOM cost analysis Alternative sourcing Global logistics Production quantity sourcing
If your company has a TI BOM that has recently become more expensive, send us the part numbers, quantities and required delivery dates.
Our team can review the BOM and identify potential opportunities to reduce procurement cost or secure supply.
Request a TI component quotation: SJ Chip – Global Electronic Component Sourcing
Final Note
The 2026 TI pricing environment is a reminder that semiconductor procurement should not rely solely on historical quotations.
For high-volume production, price, inventory, lead time, traceability and second-source availability should be evaluated together.
If your BOM contains significant exposure to TPS, LM, ISO, INA or TMS320 products, now is a good time to review your sourcing strategy and confirm current market pricing.
This article is for procurement and market-monitoring purposes. Specific TI pricing is subject to customer, quantity, delivery, commercial terms and market conditions. Buyers should confirm the latest quotation for each individual part number before making purchasing decisions.