TB6612FNG(O,EL) Toshiba Integrated Circuit (Small Outline Packages) In Stock
Toshiba TB6612FNG(O,EL) is a dual-channel motor driver IC supporting a motor supply voltage of 2.5 V to 13.5 V and up to 1 A output current per channel in a 24-pin SSOP package, ideal for compact brushed DC motor control designs. Available from stock with worldwide shipping.
- Manufacturer
- Toshiba
- Package
- Small Outline Packages
- Pin Count
- 24
- Lifecycle
- ACTIVE
- Datasheet
- TB6612FNG(O,EL) Datasheet PDF
- Category
- Integrated Circuit
- Temp Range
- -20.0°C to 85.0°C
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
What are the key features of TB6612FNG(O,EL)?
- Dual H-bridge motor driver with 1 A continuous output current per channel and 3 A peak, supporting two independent brushed DC motors simultaneously
- Wide motor supply voltage range of 2.5 V to 13.5 V enables use across battery-powered robotics and 12 V industrial drive applications
- Compact 24-pin SSOP package with integrated protection features including thermal shutdown, over-current protection, and under-voltage lockout
What is TB6612FNG(O,EL) used for?
The TB6612FNG(O,EL) is widely used in hobby robotics, drone platforms, and small automated guided vehicles where dual brushed DC motors need independent direction and PWM speed control from a single IC. Its 2.5 V to 13.5 V motor supply range and 1 A continuous current make it suitable for driving small gear motors, conveyor drives, and camera pan-tilt actuators in embedded control systems.
What are the specifications of TB6612FNG(O,EL)?
| YTEOL | 7.5 |
| Additional Feature | MOTOR SUPPLY VOLTAGE IS 2.5 TO 13.5V |
| Analog IC - Other Type | 3-PHASE BRUSHLESS DC MOTOR CONTROLLER |
| JESD-30 Code | R-PDSO-G24 |
| Number of Functions | 2 |
| Output Current-Max | 1A |
| Package Body Material | PLASTIC/EPOXY |
| Package Equivalence Code | SSOP24,.3 |
| Package Shape | RECTANGULAR |
| Package Style | SMALL OUTLINE, LOW PROFILE, SHRINK PITCH |
| Supply Current-Max (Isup) | 2.2mA |
| Supply Voltage-Max (Vsup) | 5.5V |
| Supply Voltage-Min (Vsup) | 2.7V |
| Supply Voltage-Nom (Vsup) | 3V |
| Surface Mount | YES |
| Technology | BCDMOS |
| Temperature Grade | OTHER |
| Terminal Form | GULL WING |
| Terminal Pitch | 0.65mm |
| Terminal Position | DUAL |
| Package | Small Outline Packages |
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
| ECCN | EAR99 |
| HTS Code | 8542.39.00.60 |
Where can I find the TB6612FNG(O,EL) datasheet?
TB6612FNG(O,EL) Datasheet DownloadOfficial datasheet from Toshiba
What are equivalent replacements for TB6612FNG(O,EL)?
Compatible alternatives and drop-in replacements for TB6612FNG(O,EL):
suggested
Frequently Asked Questions
How much current can the TB6612FNG(O,EL) supply to each motor channel continuously and at peak?
The TB6612FNG(O,EL) provides up to 1 A continuous output current per channel and can handle short-duration peak currents of approximately 3 A per channel. This makes it suitable for driving small brushed DC gear motors commonly rated at 0.5 A to 1 A running current, as long as peak stall currents do not persistently exceed the 3 A limit.
What motor supply voltage range does the TB6612FNG(O,EL) support, and which battery chemistries are compatible?
The TB6612FNG(O,EL) accepts a motor supply voltage from 2.5 V to 13.5 V, making it compatible with single-cell LiPo batteries at 3.7 V, 2-cell LiPo packs at 7.4 V, and 12 V lead-acid or NiMH battery packs commonly used in small robotic platforms and RC vehicles.
For a dual-motor robotics project, how does the TB6612FNG(O,EL) compare to the L298N in terms of package size and efficiency?
Compared to the through-hole L298N module (TO-220 or Multiwatt-15 package), the TB6612FNG(O,EL) in a 24-pin SSOP package occupies significantly less PCB area. The TB6612FNG also uses MOSFET output stages rather than bipolar transistors, resulting in lower voltage drop and higher efficiency at 1 A load, typically achieving 95% efficiency versus the L298N's 70%-80% at similar currents, reducing heat dissipation needs.
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