ERJP08F6802V Panasonic Resistor (Other) In Stock
Panasonic ERJP08F6802V is a thick film surface mount resistor in 1206 package with 68kΩ resistance, ±1% tolerance, 0.66W power rating, and ±100ppm/°C temperature coefficient. Optimized for feedback and biasing in power electronics circuits. Available from stock worldwide with fast shipping.
- Manufacturer
- Panasonic
- Package
- Other
- Pin Count
- 2
- Lifecycle
- ACTIVE
- Datasheet
- ERJP08F6802V Datasheet PDF
- Category
- Resistor
- Price
- From $0.0436(MOQ 50)
- Temp Range
- -55.0°C to 155.0°C
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
What are the key features of ERJP08F6802V?
- 68kΩ precision resistance with ±1% tolerance enabling accurate voltage divider and op-amp feedback networks
- 0.66W enhanced power rating surpasses standard 0.5W 1206 resistors for demanding thermal environments
- ±100ppm/°C low temperature coefficient sustains resistance stability from -55°C to +155°C
- Rectangular thick film construction in 1206 package (3.2mm × 1.6mm) for automated SMT assembly
- AEC-Q200 automotive qualified, RoHS compliant with e3 JESD-609 lead-free solder compatibility
What is ERJP08F6802V used for?
The ERJP08F6802V is frequently selected for feedback resistor networks in DC-DC converter control loops, output voltage-setting dividers in LDO regulators, and biasing resistors for precision operational amplifier circuits in test and measurement equipment. Its 68kΩ value and 0.66W rating suit gate voltage monitoring dividers in motor inverter designs and over-voltage protection threshold networks where moderate impedance and stable resistance accuracy at high ambient temperatures are required. Industrial power supplies, automotive body control modules, and railway control electronics use this resistor in circuits requiring reliable 68kΩ precision resistance over a long service life.
What are the specifications of ERJP08F6802V?
| Pbfree Code | Yes |
| Reach Compliance Code | Compliant |
| Factory Lead Time | 22Weeks |
| YTEOL | 12 |
| Construction | Rectangular |
| JESD-609 Code | e3 |
| Mounting Feature | SURFACE MOUNT |
| Package Height | 0.6mm |
| Package Length | 3.2mm |
| Package Shape | RECTANGULAR PACKAGE |
| Package Style | SMT |
| Package Width | 1.6mm |
| Packing Method | TR, PUNCHED, 7 INCH |
| Rated Power Dissipation (P) | 0.66W |
| Rated Temperature | 70°C |
| Reference Standard | AEC-Q200, IEC60115-8 |
| Resistance | 68000Ω |
| Resistor Type | FIXED RESISTOR |
| Size Code | 1206 |
| Surface Mount | YES |
| Technology | METAL GLAZE/THICK FILM |
| Temperature Coefficient | 100ppm/°C |
| Terminal Finish | MATTE TIN OVER NICKEL |
| Terminal Shape | WRAPAROUND |
| Tolerance | 1% |
| Working Voltage | 500V |
| Package | Other |
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
| ECCN | EAR99 |
| HTS Code | 8533.21.00.30 |
| Country of Origin | Japan |
Where can I find the ERJP08F6802V datasheet?
ERJP08F6802V Datasheet DownloadOfficial datasheet from Panasonic
What are equivalent replacements for ERJP08F6802V?
No known alternates. Submit an RFQ and our team can suggest alternatives.
Frequently Asked Questions
How does the 68kΩ ERJP08F6802V set the output voltage in a typical LDO regulator feedback divider from 12V to 3.3V?
In a feedback divider for a 12V-to-3.3V LDO with a 1.25V internal reference voltage, pairing the 68kΩ ERJP08F6802V as the upper resistor with a lower resistor R_low = 68kΩ × 1.25V / (3.3V - 1.25V) = 68kΩ × 0.61 ≈ 41.4kΩ (use standard 41.2kΩ) produces a 3.3V regulated output. At 3.3V output with 68kΩ + 41.2kΩ divider, quiescent divider current is 3.3V / 109.2kΩ ≈ 30µA, contributing minimal quiescent power loss of 99µW in a power-sensitive portable application.
For an automotive battery charger circuit at 85°C with 12V rails, how much power does ERJP08F6802V dissipate in a voltage sensing divider?
With 12V applied across the 68kΩ ERJP08F6802V in a voltage sensing divider, power dissipation is V²/R = 144 / 68000 ≈ 2.1mW. This is just 0.32% of the 0.66W maximum rating, providing enormous thermal margin at 85°C ambient. Even accounting for the need to derate the 0.66W rating above 70°C ambient (typically to 0.44W at 105°C), the 2.1mW dissipation is negligible. The ERJP08F6802V comfortably handles this duty in automotive ECU voltage monitoring across the full -40°C to 125°C AEC-Q200 automotive temperature range.
When is ERJP08F6802V preferred over ERJP14F6802U (1210 package) for the same 68kΩ resistance in a new PCB design?
The ERJP08F6802V in 1206 package (3.2mm × 1.6mm) occupies less board area than the ERJP14F6802U's 1210 package (3.2mm × 2.5mm), saving approximately 36% in pad footprint width. The 1206 ERJP08F6802V also carries a 0.66W rating versus the 1210's 0.5W, giving paradoxically higher power handling in a smaller package. Designers choose the ERJP08F6802V when PCB width is constrained along one axis but higher power dissipation than a standard 1206 (0.5W) is needed, making it the preferred choice for compact industrial power converter boards targeting up to 0.6W continuous dissipation.
How should the ERJP08F6802V be derated for a design targeting 10-year reliability at 105°C ambient temperature?
Panasonic specifies the ERJP08F6802V's 0.66W rating at 70°C ambient, with linear derating to 0W at 155°C. At 105°C, the derated power rating is 0.66W × (155°C - 105°C) / (155°C - 70°C) = 0.66W × 50/85 ≈ 0.388W. For 10-year reliability targets, applying a further 80% reliability derating reduces the practical limit to 0.31W at 105°C. In most 68kΩ sensing applications with dissipation below 10mW, this derating is irrelevant; it becomes critical only in applications driving milliamp-level currents through the resistor at sustained high ambient temperatures.
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About Panasonic
Panasonic is a leading electronic component manufacturer. FindMyChip sources Panasonic ICs directly from authorized China distributors, offering competitive pricing and reliable stock.
| Qty. | Unit Price | Ext. Price |
|---|---|---|
| 50+ | $0.0500 | $2.50 |
| 1000+ | $0.0480 | $48.00 |
| 2500+ | $0.0460 | $115.00 |
| 20000+ | $0.0436 | $872.00 |
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