
STMicroelectronics
A pin-compatible CMOS alternative with very low input current, but limited to 16V operation and with a lower slew rate.
The STMicroelectronics TL062CDT is a popular low-power dual JFET operational amplifier in an SO-8 package. When searching for a replacement, it is critical to match the dual-channel configuration, high-impedance JFET inputs, and 36V supply voltage capability.
Many candidates have lower voltage ratings or incompatible input types (bipolar vs JFET).
All candidates reviewed are in the same SO-8 package.
Not applicable for this analog component.
No direct drop-in replacement for the TL062CDT was identified. The closest candidate, TS912IDT, has a significantly lower maximum supply voltage (16V vs 36V), making it unsuitable for many applications.
For low-voltage (<16V) circuits, TS912IDT is a possible substitute if the lower slew rate is acceptable. For applications requiring >16V, a new search for high-voltage JFET or CMOS dual op-amps is necessary.
The primary risk is electrical damage or malfunction due to candidates having a much lower maximum supply voltage or an incompatible input type (Bipolar vs. JFET).

STMicroelectronics
A pin-compatible CMOS alternative with very low input current, but limited to 16V operation and with a lower slew rate.
| Feature / factor | TL062CDT | TS912IDT | Alt 2 | Alt 3 | Compatibility / risk |
|---|---|---|---|---|---|
| Package | SO-8 | SO-8 | SO-8 — Package matches. | ||
| Pinout | Standard Dual Op-Amp | Standard Dual Op-Amp | Standard Dual Op-Amp — Pinout is compatible. | ||
| Voltage | 6V to 36V | 2.7V to 16V | 2.7V to 16V — Significantly lower max supply voltage. | ||
| Current | 30 pA | 1 pA | 1 pA — Input bias current is much lower (better). CMOS input is a good match for JFET. | ||
| Slew Rate | 3.5 V/µs | 0.4 V/µs | 0.4 V/µs — Slew rate is significantly lower. | ||
| Temperature | 0°C to +70°C | -40°C to +125°C | -40°C to +125°C — Wider operating temperature range. |
For applications operating below 16V, the TS912IDT is a potential alternative, offering a similar high-impedance input. However, its lower slew rate and voltage limit require careful circuit review. No suitable alternative for high-voltage applications was found.