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RG1005P-362-C-T10 Equivalent & Substitute Parts
Part Overview
The RG1005P-362-C-T10 is a 3.6 kOhms ±0.25% thin film chip resistor in 0402 (1005 Metric) package rated for 0.063W (1/16W) power dissipation. Manufactured by Susumu with anti-sulfur coating and automotive AEC-Q200 qualification, this component is designed for high-reliability applications requiring precision resistance values across extended temperature ranges from -55°C to 155°C.
The RG1005P-362-C-T10 is currently listed as obsolete. Equivalent and substitute parts are available from multiple manufacturers with improved specifications or enhanced availability, making substitution necessary for ongoing production and procurement requirements.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Resistance | 3.6 kOhms |
| Tolerance | ±0.25% |
| Power Rating | 0.063W (1/16W) |
| Package | 0402 (1005 Metric) |
| Composition | Thin Film |
| Temperature Coefficient | ±25ppm/°C |
| Operating Temperature Range | -55°C to 155°C |
| Automotive Rating | AEC-Q200 |
| RoHS Status | ROHS3 Compliant |
| Moisture Sensitivity Level | MSL 1 (Unlimited) |
Substitute Part Grouping Explanation
Substitution of the RG1005P-362-C-T10 is determined by strict equivalence in the following parameters:
Critical Parameters (Must Match):
- Resistance value: 3.6 kOhms
- Package type: 0402 (1005 Metric)
- Power rating: 0.063W (1/16W)
- Composition: Thin Film
- Operating temperature range: -55°C to 155°C minimum
- RoHS3 compliance
Allowable Variations:
- Tolerance: May be tighter (±0.1%, ±0.05%) than the original ±0.25%
- Temperature coefficient: May be lower (±10ppm/°C) than the original ±25ppm/°C
- Automotive rating: AEC-Q200 certification is optional but preferred for automotive applications
- Anti-sulfur coating: Optional enhancement
- Product status: Active parts are preferred over obsolete parts
Substitute parts are grouped into two categories: direct equivalents matching all specifications, and upgrades offering improved tolerance or temperature coefficient performance while maintaining full electrical and mechanical compatibility.
Parameter Comparison
| Manufacturer Part Number | Manufacturer | Resistance | Tolerance | Power (W) | Temp Coeff (ppm/°C) | Operating Temp (°C) | AEC-Q200 | Product Status | Inventory (Pcs) |
|---|---|---|---|---|---|---|---|---|---|
| RG1005P-362-C-T10 | Susumu | 3.6 kΩ | ±0.25% | 0.063 | ±25 | -55 to 155 | Yes | Obsolete | 885 |
| RG1005P-362-B-T5 | Susumu | 3.6 kΩ | ±0.1% | 0.063 | ±25 | -55 to 155 | Yes | Active | 25539 |
| RG1005N-362-B-T5 | Susumu | 3.6 kΩ | ±0.1% | 0.063 | ±10 | -55 to 155 | Yes | Active | 1084 |
| RG1005N-362-W-T1 | Susumu | 3.6 kΩ | ±0.05% | 0.063 | ±10 | -55 to 155 | Yes | Active | 771 |
| RG1005P-362-W-T5 | Susumu | 3.6 kΩ | ±0.05% | 0.063 | ±25 | -55 to 155 | Yes | Active | 766 |
| RT0402CRD073K6L | YAGEO | 3.6 kΩ | ±0.25% | 0.063 | ±25 | -55 to 155 | No | Active | 884 |
| RT0402BRD073K6L | YAGEO | 3.6 kΩ | ±0.1% | 0.063 | ±25 | -55 to 155 | No | Active | 11501 |
| CPF0402B3K6E1 | TE Connectivity | 3.6 kΩ | ±0.1% | 0.063 | ±25 | -55 to 155 | No | Active | 19090 |
| ERA-2AEB362X | Panasonic | 3.6 kΩ | ±0.1% | 0.063 | ±25 | -55 to 155 | Yes | Active | 18302 |
| MCS04020D3601BE100 | Vishay Beyschlag | 3.6 kΩ | ±0.1% | 0.063 | ±25 | -55 to 125 | No | Active | 1165 |
Engineering Selection Recommendations
Primary Recommendation: RG1005P-362-B-T5 (Susumu)
The RG1005P-362-B-T5 is the direct upgrade path from the obsolete RG1005P-362-C-T10. Both parts are manufactured by Susumu, share identical mechanical and thermal specifications, and maintain AEC-Q200 automotive qualification. The RG1005P-362-B-T5 offers improved tolerance (±0.1% versus ±0.25%) while maintaining the same temperature coefficient and operating range. Inventory availability is substantial at 25,539 pieces.
Secondary Recommendations for Automotive Applications:
ERA-2AEB362X (Panasonic) provides an alternative with AEC-Q200 certification, ±0.1% tolerance, and high inventory (18,302 pieces). This part maintains full compatibility with the original specification while offering active product status and broad availability.
RG1005N-362-B-T5 (Susumu) offers improved temperature coefficient performance (±10ppm/°C versus ±25ppm/°C) with AEC-Q200 certification for applications requiring enhanced thermal stability.
Alternative Recommendations for Non-Automotive Applications:
RT0402BRD073K6L (YAGEO) and CPF0402B3K6E1 (TE Connectivity) provide functionally equivalent substitutes with ±0.1% tolerance and active product status. These parts lack automotive certification but maintain full electrical and mechanical compatibility. YAGEO RT0402BRD073K6L offers the highest inventory availability at 11,501 pieces.
For Enhanced Precision Requirements:
RG1005N-362-W-T1 (Susumu) and RG1005P-362-W-T5 (Susumu) both provide ±0.05% tolerance for applications requiring tighter resistance control. Both maintain AEC-Q200 certification and full thermal compatibility.
Operating Temperature Consideration:
MCS04020D3601BE100 (Vishay Beyschlag) operates to 125°C maximum, which is below the original specification of 155°C. This part is suitable only for applications where the upper temperature limit does not exceed 125°C.
Frequently Asked Questions (FAQ)
Q: Can I use RT0402CRD073K6L as a direct replacement for RG1005P-362-C-T10?
A: Yes. RT0402CRD073K6L matches all critical electrical parameters: 3.6 kOhms resistance, ±0.25% tolerance, 0.063W power rating, 0402 package, and -55°C to 155°C operating range. The part is manufactured by YAGEO and is currently active. However, it lacks AEC-Q200 automotive certification. For automotive applications, RG1005P-362-B-T5 or ERA-2AEB362X are preferred.
Q: What is the difference between RG1005P and RG1005N series?
A: Both series are manufactured by Susumu and share identical package, power rating, and operating temperature range. The primary difference is temperature coefficient: RG1005P series has ±25ppm/°C, while RG1005N series has ±10ppm/°C. The RG1005N series provides superior thermal stability for applications sensitive to temperature-induced resistance drift.
Q: Is the anti-sulfur coating essential for my application?
A: Anti-sulfur coating is specified for the original RG1005P-362-C-T10 and is retained in most Susumu and Panasonic alternatives. This coating protects against sulfur-induced corrosion in harsh environments. If your application does not involve sulfur exposure, parts without this coating (such as YAGEO RT series or TE Connectivity CPF series) are functionally equivalent.
Q: Can I substitute MCS04020D3601BE100 in all applications?
A: MCS04020D3601BE100 is suitable only for applications where the maximum operating temperature does not exceed 125°C. The original RG1005P-362-C-T10 and most alternatives operate to 155°C. Verify your application's upper temperature requirement before selecting this part.
Q: Why should I choose a tighter tolerance part like RG1005N-362-W-T1?
A: Tighter tolerance parts (±0.05% or ±0.1%) reduce resistance variation across production batches and temperature ranges. Select tighter tolerance parts only if your circuit design requires it. For general-purpose applications, the original ±0.25% tolerance is adequate, and lower-cost alternatives may be suitable.
Q: Are all substitute parts RoHS3 compliant?
A: Yes. All parts listed in this reference are RoHS3 compliant. All parts are also MSL 1 (Unlimited moisture sensitivity level) and REACH unaffected.
Q: What is the inventory status for each substitute?
A: Inventory levels vary significantly. RG1005P-362-B-T5 (Susumu) offers the highest availability at 25,539 pieces. CPF0402B3K6E1 (TE Connectivity) and ERA-2AEB362X (Panasonic) both exceed 18,000 pieces. Smaller quantities are available for specialized variants like RG1005N-362-W-T1 (771 pieces) and RG1005N-362-B-T5 (1,084 pieces).
Q: Can I mix different manufacturers in the same production run?
A: All substitute parts maintain identical electrical specifications and 0402 package dimensions. Physical dimensions and height specifications are equivalent across manufacturers. Mixing manufacturers is permissible from an electrical and mechanical standpoint, though procurement and quality control procedures should account for manufacturer-specific certifications and performance characteristics.
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