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ESR10EZPJ682 Equivalent & Substitute Parts
Part Overview
The ESR10EZPJ682 is a 6.8 kOhms ±5% 0.4W thick film chip resistor in 0805 (2012 Metric) package manufactured by Rohm Semiconductor. This component is rated for automotive applications under AEC-Q200 standard with pulse withstanding capability. The part is currently active in production with 942 units in stock. Substitute parts are necessary when the original manufacturer part becomes unavailable, when design requirements demand tighter tolerance specifications, or when higher power ratings are required for circuit optimization.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Resistance | 6.8 kOhms |
| Tolerance | ±5% |
| Power Rating | 0.4W (2/5W) |
| Package | 0805 (2012 Metric) |
| Composition | Thick Film |
| Temperature Coefficient | ±200ppm/°C |
| Operating Temperature Range | -55°C to 155°C |
| Automotive Rating | AEC-Q200 |
| RoHS Status | ROHS3 Compliant |
| Moisture Sensitivity Level | 1 (Unlimited) |
Substitute Part Grouping Explanation
Substitution eligibility for the ESR10EZPJ682 is determined by the following critical parameters:
Mandatory Compatibility Parameters:
- Resistance value: 6.8 kOhms (exact match required)
- Package type: 0805 (2012 Metric) (exact match required)
- Composition: Thick Film (exact match required)
- Operating temperature range: -55°C to 155°C minimum (exact match or better required)
- Automotive rating: AEC-Q200 (exact match required)
- RoHS compliance: ROHS3 (exact match or better required)
Allowable Variation Parameters:
- Tolerance: ±5% or tighter (±1% is acceptable as upgrade)
- Power rating: 0.4W or higher (0.5W is acceptable as upgrade)
- Temperature coefficient: ±200ppm/°C or better (±100ppm/°C is acceptable as upgrade)
- Manufacturer: Different manufacturers acceptable if all mandatory parameters match
The substitute parts listed below meet all mandatory compatibility requirements while offering variations in tolerance and power rating specifications.
Parameter Comparison
| Part Number | Manufacturer | Resistance | Tolerance | Power Rating | Temp Coeff | Package | Product Status | Height (Max) |
|---|---|---|---|---|---|---|---|---|
| ESR10EZPJ682 | Rohm Semiconductor | 6.8 kOhms | ±5% | 0.4W | ±200ppm/°C | 0805 | Active | 0.65mm |
| ESR10EZPF6801 | Rohm Semiconductor | 6.8 kOhms | ±1% | 0.4W | ±100ppm/°C | 0805 | Active | 0.65mm |
| ERJ-P06J682V | Panasonic Electronic Components | 6.8 kOhms | ±5% | 0.5W | ±200ppm/°C | 0805 | Active | 0.70mm |
| ERJ-P6WF6801V | Panasonic Electronic Components | 6.8 kOhms | ±1% | 0.5W | ±200ppm/°C | 0805 | Not For New Designs | 0.75mm |
| ERJ-P6WJ682V | Panasonic Electronic Components | 6.8 kOhms | ±5% | 0.5W | ±200ppm/°C | 0805 | Not For New Designs | 0.75mm |
| ERJ-UP6J682V | Panasonic Electronic Components | 6.8 kOhms | ±5% | 0.5W | ±200ppm/°C | 0805 | Active | 0.70mm |
Engineering Selection Recommendations
For New Designs: Select ESR10EZPJ682 (Rohm Semiconductor) or ESR10EZPF6801 (Rohm Semiconductor) as primary choices. Both parts are active in production status. ESR10EZPF6801 offers improved tolerance specification (±1% versus ±5%) and lower temperature coefficient (±100ppm/°C versus ±200ppm/°C) while maintaining identical power rating and package dimensions.
ERJ-P06J682V (Panasonic Electronic Components) is an active alternative offering increased power rating (0.5W versus 0.4W) in the same package footprint, suitable for applications requiring thermal margin.
ERJ-UP6J682V (Panasonic Electronic Components) is an active alternative with anti-sulfur feature addition and increased power rating (0.5W), providing enhanced environmental protection for automotive applications.
For Existing Designs or Obsolescence Mitigation: ERJ-P6WF6801V and ERJ-P6WJ682V are marked "Not For New Designs" and should be used only for legacy design support or when existing inventory must be consumed. These parts carry higher seated height specifications (0.75mm versus 0.65mm) which may impact PCB layout compatibility.
All substitute parts maintain AEC-Q200 automotive rating, ROHS3 compliance, and MSL 1 moisture sensitivity level, ensuring compatibility with automotive supply chain requirements.
Frequently Asked Questions (FAQ)
Q: Can ESR10EZPF6801 directly replace ESR10EZPJ682 in existing designs?
A: Yes. ESR10EZPF6801 is a direct substitute with identical package dimensions (0805), resistance value (6.8 kOhms), power rating (0.4W), and operating temperature range (-55°C to 155°C). The tighter tolerance (±1% versus ±5%) and improved temperature coefficient (±100ppm/°C versus ±200ppm/°C) represent performance enhancements with no compatibility concerns.
Q: What is the impact of using ERJ-P06J682V instead of ESR10EZPJ682?
A: ERJ-P06J682V maintains identical resistance (6.8 kOhms), tolerance (±5%), package (0805), and operating temperature range. The primary differences are increased power rating (0.5W versus 0.4W) and slightly increased seated height (0.70mm versus 0.65mm). The higher power rating provides thermal margin. Verify PCB layout clearance for the 0.05mm height increase.
Q: Why are ERJ-P6WF6801V and ERJ-P6WJ682V marked "Not For New Designs"?
A: These parts are legacy products from Panasonic Electronic Components. While they meet all electrical and mechanical compatibility requirements, they are no longer recommended for new design implementations. Use these parts only for sustaining existing designs or consuming existing inventory.
Q: Are all substitute parts AEC-Q200 rated?
A: Yes. All substitute parts listed carry AEC-Q200 automotive qualification, ensuring compliance with automotive supply chain and reliability standards equivalent to the original ESR10EZPJ682.
Q: What is the significance of the anti-sulfur feature in ERJ-UP6J682V?
A: The anti-sulfur feature in ERJ-UP6J682V provides enhanced resistance to sulfur-containing environments common in automotive applications. This is an additional protective characteristic; the part remains fully compatible with designs not requiring this feature.
Q: Can parts with different temperature coefficients be used interchangeably?
A: Temperature coefficient differences (±200ppm/°C versus ±100ppm/°C) affect long-term stability and drift characteristics across the operating temperature range. Parts with lower temperature coefficients (±100ppm/°C) provide improved stability. Interchangeability depends on circuit tolerance requirements; verify that the substitute part's temperature coefficient meets your design specifications.
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