Yes. I’ll assign each pin to exactly one broad functional group, keep Section equal to Pin Group, and use consistent orientation/order: Power, Ground, LED Input, Output, Control, and No Connect.
Completed the full audit and grouped all eight pins exclusively by function: Power, Ground, LED Input, Output, Control, and No Connect. Pin numbering, descriptions, electrical types, and footprint-pad mappings all match the Lite-On datasheet.
Footprint pitch and body dimensions match. However, the footprint name indicates a 4.60 mm package height, while the datasheet specifies 3.50 ± 0.50 mm.
The STEP model height could not be numerically verified.
Key specs: 15 MBd, open-collector output, 5 kVrms isolation, 10 kV/µs minimum CMTI, 2.7–3.6 V or 4.5–5.5 V supply, −40°C to +85°C.
Suggested next steps
Replace the stale Datasheet URL with the official Lite-On URL.
Correct the footprint package-height naming/metadata.
Visually verify the STEP model against the footprint and datasheet outline.
Documents are markdown text files which describe project goals, capture details, or even simulation outputs.
Assets
6N137S-TA1
6N137S-TA1.stp3D Model
6N137S-TA1
SOP254P1016X460-8N.kicad_modFootprint
6N137S-TA1-thumb.png
6N137S-TA1-thumbThumbnail
6N137S-TA1
6N137S-TA1 Symbol.svgDefault
6N137S-TA1
High-Speed Logic Output Optocoupler – Single-channel high-speed optocoupler designed for digital signal isolation, industrial automation, PLCs, motor drives, switching power supplies, data communication, microcontroller interfaces, and embedded control systems. Features an open-collector TTL-compatible output with a 15 MBd data rate, 5 kVrms isolation voltage, and 10 kV/µs minimum common-mode transient immunity (CMTI) for reliable operation in noisy electrical environments. Provides 75 ns maximum propagation delay, 22 ns typical rise time, 6.9 ns typical fall time, and supports up to 50 mA output current. The input consists of a GaAs infrared LED with a 1.38 V typical forward voltage and 20 mA maximum forward current. Operates from a 4.5 V to 5.5 V output-side supply, over a −40°C to +85°C temperature range, and is housed in a compact 8-pin SOIC (SMD) package for space-efficient PCB designs.