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RC2012F1072CS Equivalent & Substitute Parts Reference
Part Overview
The RC2012F1072CS is a 10.7 kOhms ±1% 0.125W thick film chip resistor in 0805 (2012 Metric) package manufactured by Samsung Electro-Mechanics. This component is classified as Active product status with moisture-resistant characteristics and ROHS3 compliance. Equivalent and substitute parts are identified when design requirements necessitate alternative sourcing due to inventory constraints, supply chain considerations, or specific application certifications such as automotive AEC-Q200 qualification.
Substiute Parts
Key Parameters
| Parameter | Value | Unit |
|---|---|---|
| Resistance | 10.7 | kOhms |
| Tolerance | ±1 | % |
| Power Rating | 0.125 | W (1/8W) |
| Package / Case | 0805 (2012 Metric) | - |
| Composition | Thick Film | - |
| Temperature Coefficient | ±100 | ppm/°C |
| Operating Temperature Range | -55 to 155 | °C |
| Moisture Sensitivity Level | 1 (Unlimited) | - |
| RoHS Status | ROHS3 Compliant | - |
Substitute Part Grouping Explanation
Substitution eligibility for the RC2012F1072CS is determined by strict equivalence across the following parameters: resistance value (10.7 kOhms), tolerance (±1%), package type (0805 / 2012 Metric), composition (thick film), temperature coefficient (±100ppm/°C), operating temperature range (-55°C to 155°C), and compliance certifications (ROHS3, REACH Unaffected, EAR99).
Direct Substitutes maintain all electrical and mechanical parameters identical to the main part:
- ERJ-6ENF1072V (Panasonic Electronic Components)
- KTR10EZPF1072 (Rohm Semiconductor)
- RC0805FR-0710K7L (YAGEO)
- RMCF0805FT10K7 (Stackpole Electronics Inc)
Similar Substitutes share core electrical parameters but include additional certifications or differ in physical dimensions within acceptable tolerances:
- CRCW080510K7FKEA (Vishay Dale) — automotive AEC-Q200 rated
- CRGH0805F10K7 (TE Connectivity Passive Product) — higher power rating (0.333W / 1/3W)
Parameter Comparison
| Manufacturer Part Number | Manufacturer | Resistance (kOhms) | Tolerance (%) | Power (W) | Package | Temp Coeff (ppm/°C) | Op Temp (°C) | Features | RoHS Status |
|---|---|---|---|---|---|---|---|---|---|
| RC2012F1072CS | Samsung Electro-Mechanics | 10.7 | ±1 | 0.125 | 0805 | ±100 | -55 to 155 | Moisture Resistant | ROHS3 |
| ERJ-6ENF1072V | Panasonic Electronic Components | 10.7 | ±1 | 0.125 | 0805 | ±100 | -55 to 155 | Automotive AEC-Q200 | ROHS3 |
| KTR10EZPF1072 | Rohm Semiconductor | 10.7 | ±1 | 0.125 | 0805 | ±100 | -55 to 155 | Automotive AEC-Q200, High Voltage | ROHS3 |
| RC0805FR-0710K7L | YAGEO | 10.7 | ±1 | 0.125 | 0805 | ±100 | -55 to 155 | Moisture Resistant | ROHS3 |
| RMCF0805FT10K7 | Stackpole Electronics Inc | 10.7 | ±1 | 0.125 | 0805 | ±100 | -55 to 155 | Automotive AEC-Q200 | ROHS3 |
| CRCW080510K7FKEA | Vishay Dale | 10.7 | ±1 | 0.125 | 0805 | ±100 | -55 to 155 | Automotive AEC-Q200 | ROHS3 |
| CRGH0805F10K7 | TE Connectivity Passive Product | 10.7 | ±1 | 0.333 | 0805 | ±100 | -55 to 155 | Thick Film | ROHS3 |
Engineering Selection Recommendations
All listed substitute parts maintain Active product status and ROHS3 compliance. Selection between direct and similar substitutes depends on application requirements:
For general industrial applications without automotive qualification requirements, RC0805FR-0710K7L (YAGEO) and RC2012F1072CS (Samsung Electro-Mechanics) are functionally equivalent with moisture-resistant characteristics.
For automotive applications requiring AEC-Q200 certification, ERJ-6ENF1072V (Panasonic), KTR10EZPF1072 (Rohm), RMCF0805FT10K7 (Stackpole), and CRCW080510K7FKEA (Vishay Dale) are qualified alternatives.
For applications requiring higher power dissipation within the 0805 package footprint, CRGH0805F10K7 (TE Connectivity) provides 0.333W rating while maintaining all other electrical parameters. This part differs in physical dimensions (0.083" L x 0.051" W versus 0.079" L x 0.049" W) and should be evaluated for PCB layout compatibility.
All parts share identical resistance, tolerance, temperature coefficient, operating temperature range, and moisture sensitivity level (MSL 1 - Unlimited), ensuring direct functional substitution within the specified electrical parameters.
Frequently Asked Questions (FAQ)
Q: Can CRGH0805F10K7 be used as a direct replacement for RC2012F1072CS?
A: CRGH0805F10K7 is functionally compatible for the 10.7 kOhms ±1% resistance specification and operating temperature range. However, it features a higher power rating (0.333W versus 0.125W) and slightly larger physical dimensions (0.083" L x 0.051" W versus 0.079" L x 0.049" W). PCB layout verification is required to confirm footprint compatibility before substitution.
Q: What is the difference between direct substitutes and similar substitutes?
A: Direct substitutes (ERJ-6ENF1072V, KTR10EZPF1072, RC0805FR-0710K7L, RMCF0805FT10K7) maintain identical electrical specifications and package dimensions. Similar substitutes (CRCW080510K7FKEA, CRGH0805F10K7) share core electrical parameters but include additional certifications or differ in power rating and physical dimensions.
Q: Are all substitute parts ROHS3 compliant?
A: Yes. All listed substitute parts, including the main part RC2012F1072CS, are ROHS3 compliant and REACH Unaffected with EAR99 classification.
Q: Which substitute parts are suitable for automotive applications?
A: ERJ-6ENF1072V, KTR10EZPF1072, RMCF0805FT10K7, and CRCW080510K7FKEA are all rated for automotive applications with AEC-Q200 certification. KTR10EZPF1072 additionally features high voltage capability.
Q: What is the moisture sensitivity level for all parts?
A: All parts, including RC2012F1072CS and all substitutes, have Moisture Sensitivity Level (MSL) 1, indicating unlimited shelf life without moisture control requirements.
Q: Can these parts be used interchangeably on the same PCB?
A: All direct substitutes share identical 0805 (2012 Metric) package specifications and can be used interchangeably. CRGH0805F10K7 has slightly different physical dimensions and should be evaluated for layout compatibility. All parts maintain the same 2-termination configuration and can be soldered using standard SMD assembly processes.
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