SLVSI23A September 2025 – December 2025 DRV81646
PRODUCTION DATA
Table 7-3 and Table 7-4 below show an estimation of the continuous current ability of each channel with different numbers of channels on for different ambient temperatures. Row 1 Channel on illustrates the continuous current ability if 1 OUT is on, and the other 3 outputs are off. Row 2 Channels on illustrates if 2 channels are on with an equal load and the other two outputs are off. Row 4 Channels on illustrates if all 4 channels are on simultaneously with an equal load on each one. For example, with 4 Channels on each channel can output 2.7A (PWP package) for a total of 10.8A running through the device.
This data is from bench tests on a large PCB with layout optimized for power dissipation, the continuous current capability is different for every system and PCB design.
| Setup | 25°C | 55°C | 85°C | 125°C |
|---|---|---|---|---|
| 1 Channel on | 3.7A | 3.4A | 3.2A | 2.5A |
| 2 Channels on | 3.5A | 3.0A | 2.7A | 2.1A |
| 4 Channels on | 2.7A | 2.4A | 2.0A | 1.5A |
| Setup | 25°C | 55°C | 85°C | 125°C |
|---|---|---|---|---|
| 1 Channel on | 3.4A | 3.1A | 2.9A | 2.4A |
| 2 Channels on | 3.1A | 2.7A | 2.4A | 1.8A |
| 4 Channels on | 2.5A | 2.2A | 1.7A | 1.3A |
Note that this only applies for loads that are continuous ON, not PWM. Switching the outputs with PWM introduces switching losses which further heat the device and results in significantly less average current capability.