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LVC06JR470EV Equivalent & Substitute Parts
Part Overview
The LVC06JR470EV is a 470 mOhms ±5% 0.5W thick film chip resistor in 1206 package manufactured by Ohmite. This component is designed for current sense applications with moisture-resistant characteristics. The part is classified as obsolete, necessitating identification of active equivalent and substitute components that maintain functional compatibility within the specified electrical and mechanical parameters.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Resistance | 470 mOhms |
| Tolerance | ±5% |
| Power Rating | 0.5W (1/2W) |
| Package | 1206 (3216 Metric) |
| Composition | Thick Film |
| Temperature Coefficient | ±200ppm/°C |
| Operating Temperature Range | -40°C ~ 125°C |
| Features | Current Sense, Moisture Resistant |
| RoHS Status | ROHS3 Compliant |
| Moisture Sensitivity Level | 1 (Unlimited) |
Substitute Part Grouping Explanation
Substitution of the LVC06JR470EV is determined by the following critical parameters:
- Resistance Value: 470 mOhms (exact match required)
- Tolerance: ±5% minimum (tighter tolerances acceptable)
- Power Rating: 0.5W minimum (higher ratings acceptable)
- Package: 1206 (3216 Metric) form factor (physical compatibility)
- Composition: Thick film construction
- Temperature Coefficient: ±200ppm/°C or better
- Operating Temperature: Must support -40°C minimum and 125°C maximum
- RoHS Compliance: ROHS3 Compliant preferred for regulatory alignment
Substitute parts are categorized as direct equivalents (matching all primary specifications) or upgrades (enhanced tolerance or temperature performance while maintaining core functionality).
Parameter Comparison
| Part Number | Manufacturer | Resistance | Tolerance | Power (W) | Temp Coeff (ppm/°C) | Operating Temp (°C) | RoHS Status | Product Status |
|---|---|---|---|---|---|---|---|---|
| LVC06JR470EV | Ohmite | 470 mOhms | ±5% | 0.5 | ±200 | -40 ~ 125 | ROHS3 | Obsolete |
| 73L4R47J | CTS Resistor Products | 470 mOhms | ±5% | 0.25 | ±200 | -55 ~ 125 | ROHS3 | Active |
| RCWL1206R470JNEA | Vishay Dale | 470 mOhms | ±5% | 0.25 | ±200 | -55 ~ 155 | ROHS3 | Active |
| RL73K2BR47JTD | TE Connectivity Passive Product | 470 mOhms | ±5% | 0.25 | ±200 | -55 ~ 155 | RoHS non-compliant | Active |
| RLP73K2BR47FTDF | TE Connectivity Passive Product | 470 mOhms | ±1% | 0.5 | ±200 | -55 ~ 155 | ROHS3 | Active |
| RLP73K2BR47JTD | TE Connectivity Passive Product | 470 mOhms | ±5% | 0.5 | ±200 | -55 ~ 155 | ROHS3 | Active |
| CSR1206JKR470 | Stackpole Electronics Inc | 470 mOhms | ±5% | 0.5 | ±100 | -55 ~ 155 | ROHS3 | Active |
| RCWE1206R470FKEA | Vishay Dale | 470 mOhms | ±1% | 0.5 | ±100 | -55 ~ 155 | ROHS3 | Active |
| RL73H2BR47FTD | TE Connectivity Passive Product | 470 mOhms | ±1% | 0.25 | ±100 | -55 ~ 155 | ROHS3 | Active |
Engineering Selection Recommendations
Direct Equivalents (Matching Specifications)
RLP73K2BR47JTD from TE Connectivity Passive Product provides the closest functional match to the LVC06JR470EV. This part maintains 470 mOhms ±5% resistance, 0.5W power rating, and identical 1206 package geometry. It is ROHS3 compliant and active in production, with extended operating temperature range (-55°C ~ 155°C) and improved temperature stability. This part is recommended as the primary replacement.
Upgrade Options (Enhanced Performance)
CSR1206JKR470 (Stackpole Electronics Inc) and RCWE1206R470FKEA (Vishay Dale) offer improved temperature coefficient (±100ppm/°C versus ±200ppm/°C), providing superior stability in temperature-sensitive applications. Both maintain 0.5W power rating and ROHS3 compliance. RCWE1206R470FKEA additionally includes AEC-Q200 automotive qualification.
Lower Power Alternatives
73L4R47J, RCWL1206R470JNEA, and RL73H2BR47FTD are rated at 0.25W power dissipation. These parts are suitable only for applications where the original 0.5W specification is not required. RCWL1206R470JNEA includes AEC-Q200 automotive qualification and extended temperature range (-55°C ~ 155°C).
Compliance Considerations
RL73K2BR47JTD is RoHS non-compliant and should be avoided in applications requiring regulatory compliance with ROHS3 standards.
Frequently Asked Questions (FAQ)
Q: Can I use a 0.25W rated part as a substitute for the 0.5W LVC06JR470EV?
A: Substitution with lower power-rated parts (73L4R47J, RCWL1206R470JNEA, RL73H2BR47FTD) is only permissible if circuit analysis confirms that current sense dissipation does not exceed 0.25W. The original 0.5W specification must be maintained for applications with higher current requirements.
Q: What is the difference between ±5% and ±1% tolerance parts?
A: Tolerance defines the maximum deviation from the nominal 470 mOhms resistance value. ±5% tolerance allows ±24.6 mOhms deviation; ±1% tolerance allows ±4.7 mOhms deviation. Tighter tolerance parts (±1%) are suitable for precision current sensing applications requiring higher accuracy.
Q: Are all substitute parts physically compatible with the 1206 package footprint?
A: All listed substitute parts use the 1206 (3216 Metric) package. Physical dimensions vary slightly between manufacturers (length 0.120" to 0.126", height 0.024" to 0.028"), but all are compatible with standard 1206 PCB footprints.
Q: Which substitute part has the best temperature stability?
A: CSR1206JKR470 and RCWE1206R470FKEA both feature ±100ppm/°C temperature coefficient, compared to ±200ppm/°C for the original part. These provide superior stability across the operating temperature range.
Q: Is RoHS compliance required for my application?
A: ROHS3 compliance is mandatory for products sold in the European Union and many other regulated markets. All recommended direct equivalents and upgrades are ROHS3 compliant except RL73K2BR47JTD, which should be avoided for regulated applications.
Q: What is the difference between direct equivalents and upgrade parts?
A: Direct equivalents (RLP73K2BR47JTD) match all primary specifications of the original part. Upgrade parts (CSR1206JKR470, RCWE1206R470FKEA) offer enhanced performance characteristics such as tighter tolerance or improved temperature coefficient while maintaining core functionality and package compatibility.
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