When digital signals move between sensors, processors, and interface circuits, they must follow defined logic rules. If signal conditioning and logic decision blocks are not properly handled, systems can show incorrect switching behavior, timing mismatches, or unstable state transitions. In many designs, raw signals cannot directly connect to processors or control devices. Logic ICs help solve this by providing predictable digital logic operations that keep signal behavior consistent across the system.
| Image | Part Number / Manufacturer | Description / Specs | MOQ | Datasheet | RFQ | |
|---|---|---|---|---|---|---|
| VL18-54-M/40A/118/128 Manufacturer: Pepperl+Fuchs, Inc. Category: Reflective Logic Output | RETROREFLECTIVE SEN W/PLR FIL 3. | 1 | ||||
| RL61-55-Z/92/136 Manufacturer: Pepperl+Fuchs, Inc. Category: Reflective Logic Output | RETROREFLECTIVE SEN W/PLR FIL 18 | 1 | ||||
| GP2A231LRSAF Manufacturer: SHARP/Socle Technology Category: Reflective Logic Output | SENSOR OPT REFL 3MM-7MM MODULE | 1 | ||||
| M-DW1 Manufacturer: Panasonic Industrial Automation Sales Category: Reflective Logic Output | SENSOR OPT REFLECTVE 30MM MODULE | 1 | ||||
| EE-SY413 Manufacturer: Omron Electronics Inc-EMC Div Category: Reflective Logic Output | SENSOR OPT REFLECTIVE 5MM 6DIP | 1 | ||||
| EE-SY313 Manufacturer: Omron Electronics Inc-EMC Div Category: Reflective Logic Output | SENSOR OPT REFLECTIVE 4.4MM 6DIP | 1 | ||||
| SI1102-A-GM Manufacturer: Silicon Labs Category: Reflective Logic Output | SENSOR OPT REFLECTIVE 50CM 8WDFN | 1 | ||||
| EE-SPY415 Manufacturer: Omron Electronics Inc-EMC Div Category: Reflective Logic Output | SENSOR OPT REFLECTVE 11MM MODULE | 1 | ||||
| HOA2006-001 Manufacturer: Honeywell Sensing and Productivity Solutions Category: Reflective Logic Output | SENSOR OPT REFLECTVE 12MM MODULE | 1 | ||||
| AEDR-8400-142 Manufacturer: Broadcom Limited Category: Reflective Logic Output | SENSOR OPT REFLECTVE 0.43MM 6SMD | 1 | ||||
| AEDR-8400-140 Manufacturer: Broadcom Limited Category: Reflective Logic Output | SENSOR OPT REFLECTVE 0.43MM 6SMD | 1 | ||||
| SFH 7743-Z Manufacturer: ams-OSRAM USA INC. Category: Reflective Logic Output | SENSOR OPT REFLECTIVE 40MM 6SMD | 1 | ||||
| SFH 7740-Z Manufacturer: ams-OSRAM USA INC. Category: Reflective Logic Output | SENSOR OPT REFL 0.5MM-4MM 6SMD | 1 | ||||
| SFH 7741-Z Manufacturer: ams-OSRAM USA INC. Category: Reflective Logic Output | SENSOR OPT REFLECTIVE 30MM 6SMD | 1 | ||||
| EY3A-112 Manufacturer: Omron Electronics Inc-EMC Div Category: Reflective Logic Output | SENSOR OPT REFLECTV 125MM MODULE | 1 | ||||
| OPB762T Manufacturer: TT Electronics/Optek Technology Category: Reflective Logic Output | SENSOR REFLCTV 5.58MM TOTEM POLE | 1 | ||||
| EE-SPZ401-A Manufacturer: Omron Automation and Safety Category: Reflective Logic Output | SENSOR OPT REFL 200MM | 1 | ||||
| EE-SPZ301-A Manufacturer: Omron Automation and Safety Category: Reflective Logic Output | SENSOR OPT REFL 200MM | 1 | ||||
| EE-SY671 Manufacturer: Omron Automation and Safety Category: Reflective Logic Output | SENSOR OPT REFL 1MM-5MM MODULE | 1 | ||||
| SFH 9240-Z Manufacturer: ams-OSRAM USA INC. Category: Reflective Logic Output | SENSOR OPT REFLECTIVE 6SMD | 1 |
Logic ICs are usually selected during early digital design stages and matched to system voltage levels, timing requirements, and interface standards. When these ICs reach end-of-life, replacing them can be difficult. Differences in propagation delay, switching thresholds, or output drive characteristics can cause timing failures or signal integrity problems.
This is common in industrial, telecom, and long-life embedded systems where designs remain unchanged for many years. Maintenance teams often require the same logic IC to avoid redesign or revalidation. Delays in sourcing compatible logic ICs can lead to production delays and higher maintenance costs.
Maketronics supports global engineering and procurement teams with reliable sourcing of both active and obsolete Logic ICs.
A logic IC is an integrated circuit that performs digital logic functions such as AND, OR, NOT, NAND, NOR, XOR, and signal buffering.
They ensure predictable signal processing, maintain timing accuracy, and control digital decision logic between system components.
TTL logic offers fast switching speeds but higher power consumption, while CMOS logic provides lower power consumption and higher noise immunity.
Differences in propagation delay, switching thresholds, and drive capability can affect timing and signal integrity, requiring validation before replacement.