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RT0805CRE07510RL Equivalent & Substitute Parts
Part Overview
The RT0805CRE07510RL is a 510 Ohms ±0.25% thin film chip resistor in 0805 (2012 Metric) package rated at 0.125W (1/8W). This YAGEO component operates across -55°C to 155°C with a temperature coefficient of ±50ppm/°C and is ROHS3 compliant with MSL 1 rating. The part is currently active in production with 1034 units in stock. Equivalent and substitute parts are identified based on matching resistance value, package format, power rating, and operating temperature range while allowing for improvements in tolerance and temperature coefficient specifications.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Resistance | 510 Ohms |
| Tolerance | ±0.25% |
| Power Rating | 0.125W (1/8W) |
| Package / Case | 0805 (2012 Metric) |
| Composition | Thin Film |
| Operating Temperature | -55°C ~ 155°C |
| Temperature Coefficient | ±50ppm/°C |
| RoHS Status | ROHS3 Compliant |
| MSL Rating | 1 (Unlimited) |
Substitute Part Grouping Explanation
Substitute parts for the RT0805CRE07510RL are qualified based on the following criteria:
Core Matching Parameters (Non-Negotiable):
- Resistance value: 510 Ohms
- Package format: 0805 (2012 Metric)
- Power rating: 0.125W (1/8W)
- Operating temperature range: -55°C ~ 155°C
- Composition: Thin Film
- RoHS3 compliance
- MSL 1 rating
Allowable Variations (Upgrades):
- Tolerance may improve from ±0.25% to ±0.1%
- Temperature coefficient may improve (lower absolute value)
- Additional certifications (AEC-Q200, Anti-Sulfur) are acceptable enhancements
All identified substitutes maintain identical electrical performance at the specified resistance value while meeting or exceeding the original part's environmental and compliance specifications.
Parameter Comparison
| Part Number | Manufacturer | Resistance | Tolerance | Power (W) | Temp Coeff (ppm/°C) | Operating Temp (°C) | Package | Height Max (mm) | RoHS Status | Inventory (Pcs) |
|---|---|---|---|---|---|---|---|---|---|---|
| RT0805CRE07510RL | YAGEO | 510 Ω | ±0.25% | 0.125 | ±50 | -55 ~ 155 | 0805 | 0.60 | ROHS3 | 1034 |
| RT0805BRD07510RL | YAGEO | 510 Ω | ±0.1% | 0.125 | ±25 | -55 ~ 155 | 0805 | 0.60 | ROHS3 | 1559 |
| RT0805BRE07510RL | YAGEO | 510 Ω | ±0.1% | 0.125 | ±50 | -55 ~ 155 | 0805 | 0.60 | ROHS3 | 1618 |
| ERA-6AEB511V | Panasonic Electronic Components | 510 Ω | ±0.1% | 0.125 | ±25 | -55 ~ 155 | 0805 | 0.60 | ROHS3 | 23257 |
| ERA-6APB511V | Panasonic Electronic Components | 510 Ω | ±0.1% | 0.125 | ±15 | -55 ~ 155 | 0805 | 0.60 | ROHS3 | 7290 |
| RG2012P-511-B-T5 | Susumu | 510 Ω | ±0.1% | 0.125 | ±25 | -55 ~ 155 | 0805 | 0.50 | ROHS3 | 6007 |
Engineering Selection Recommendations
YAGEO RT Series (RT0805BRD07510RL, RT0805BRE07510RL): Both parts offer improved tolerance (±0.1%) over the original RT0805CRE07510RL while maintaining YAGEO series consistency. RT0805BRD07510RL provides superior temperature coefficient performance (±25ppm/°C) and is recommended for applications requiring tighter thermal stability. RT0805BRE07510RL maintains the original ±50ppm/°C specification while offering tolerance improvement. Both are active products with strong inventory availability.
Panasonic ERA-6A Series (ERA-6AEB511V, ERA-6APB511V): Both parts include AEC-Q200 automotive qualification and ±0.1% tolerance. ERA-6AEB511V offers ±25ppm/°C temperature coefficient. ERA-6APB511V provides the lowest temperature coefficient (±15ppm/°C) among all substitutes, suitable for precision applications requiring maximum thermal stability. Panasonic inventory levels exceed 7000 units across both variants.
Susumu RG2012P-511-B-T5: This part combines AEC-Q200 automotive qualification with anti-sulfur protection and ±0.1% tolerance. The reduced maximum height (0.50mm vs. 0.60mm) may provide space advantages in compact designs. Temperature coefficient matches YAGEO BRD specification at ±25ppm/°C.
All substitutes maintain full compatibility with the original part's electrical performance and environmental operating range.
Frequently Asked Questions (FAQ)
Q: Can RT0805BRD07510RL and RT0805BRE07510RL be used interchangeably with RT0805CRE07510RL?
A: Both YAGEO RT series parts are direct substitutes. They maintain identical resistance (510 Ohms), power rating (0.125W), package (0805), and operating temperature range (-55°C to 155°C). The primary differences are tolerance improvement (±0.1% vs. ±0.25%) and temperature coefficient variations. RT0805BRD07510RL offers superior thermal stability (±25ppm/°C), while RT0805BRE07510RL maintains the original ±50ppm/°C specification.
Q: What is the significance of AEC-Q200 certification on Panasonic and Susumu parts?
A: AEC-Q200 certification indicates automotive-grade qualification meeting stringent reliability and performance standards for automotive applications. This certification does not affect substitution compatibility for non-automotive applications but provides additional assurance of component reliability and consistency.
Q: How does tolerance affect part selection?
A: The original RT0805CRE07510RL specifies ±0.25% tolerance, meaning the actual resistance value can vary between 509.7 Ohms and 510.3 Ohms. All substitute parts offer ±0.1% tolerance, reducing this variation to 509.9 Ohms to 510.1 Ohms. Tighter tolerance is beneficial for precision circuits but not required for general applications where the original tolerance is acceptable.
Q: Does the reduced height of RG2012P-511-B-T5 (0.50mm vs. 0.60mm) affect compatibility?
A: The reduced height is a physical advantage for space-constrained PCB designs and does not negatively impact electrical performance. Verify PCB footprint and assembly clearances to confirm compatibility with your specific design.
Q: Are all substitute parts ROHS3 compliant?
A: All identified substitutes are ROHS3 compliant with MSL 1 (Unlimited) moisture sensitivity rating, matching the original part's environmental compliance specifications.
Q: Which substitute offers the best temperature stability?
A: ERA-6APB511V provides the lowest temperature coefficient at ±15ppm/°C, followed by RT0805BRD07510RL and RG2012P-511-B-T5 at ±25ppm/°C. Selection depends on application requirements for thermal drift performance.
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