The THS3001CD: For a BOM that already uses this part, the supply channel is standard — quoted to order through franchised or independent distribution; availability confirmed at RFQ time.
6500V/µs slew rate — what it means for signal fidelity
The 6500V/µs slew rate is the large-signal limit: it determines the maximum output voltage swing the amplifier can produce without slewing-induced distortion. For a 5 V peak-to-peak output, the full-power bandwidth is roughly 6500 / (π × 5) ≈ 414 MHz — meaning the part can swing rail-to-rail at frequencies up to its -3dB bandwidth without waveform rounding. This is a current-feedback architecture, so the -3dB bandwidth of 420 MHz remains largely flat across gain settings — unlike a voltage-feedback op-amp where gain-bandwidth product forces a trade-off. At a gain of +10, the closed-loop bandwidth still sits well above 100 MHz. Supply current is 6.6 mA typical — low enough that a single 9V battery or a 12V rail can power it without thermal concerns in the 8-SOIC package. The 120 mA output current per channel lets it drive 50-ohm loads directly, which is useful for RF buffer or cable-driver stages.
Supply range and temperature grade — where this part fits
The supply span runs from 9V minimum to 33V maximum, covering single-supply rails (9V, 12V, 15V, 24V) and dual-supply configurations (±5V, ±12V, ±15V). The 1 mV typical input offset voltage and 2 µA input bias current are moderate — fine for AC-coupled or high-speed signal paths, but not the first choice for precision DC measurement. That limits deployment to indoor equipment, benchtop instrumentation, telecom central offices, and similar controlled environments. For automotive or industrial extended-temp applications, a different grade would be needed.
Package and compliance — board-fit and regulatory
The footprint is industry-standard SOIC-8 — no special layout requirements, and multiple second-source options exist if needed.