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Phoenix Contact 2907196 Circuit Breaker - Equivalent & Substitute Parts
Part Overview
The Phoenix Contact 2907196 is a magnetic-hydraulic delay circuit breaker rated for 10A at 120V AC / 50V DC with toggle actuation and DIN rail mounting. This 4-pole breaker is designed for industrial control and distribution applications requiring thermal-magnetic protection with hydraulic time delay characteristics. The part is currently active in production with 945 units in stock. Identifying equivalent substitute parts is necessary to ensure supply chain continuity, optimize inventory management, and maintain operational flexibility in component sourcing.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer Part Number | 2907196 |
| Manufacturer | Phoenix Contact |
| Series | HMC |
| Breaker Type | Magnetic (Hydraulic Delay) |
| Current Rating | 10A |
| Voltage Rating - AC | 120V |
| Voltage Rating - DC | 50V |
| Number of Poles | 4 |
| Actuator Type | Toggle |
| Mounting Type | DIN Rail |
| Product Status | Active |
Substitute Part Grouping Explanation
Substitute parts for the Phoenix Contact 2907196 are identified based on strict parametric equivalence across the following critical specifications:
- Breaker Type: Magnetic (Hydraulic Delay)
- Current Rating: 10A
- Voltage Rating: 120V AC / 50V DC
- Number of Poles: 4
- Actuator Type: Toggle
- Mounting Type: DIN Rail
- Series: HMC
The substitute part 2907205 maintains identical electrical and mechanical characteristics across all these parameters, ensuring functional interchangeability within the same application context. Differences in compliance certifications (RoHS status) and inventory levels do not affect electrical or mechanical compatibility.
Parameter Comparison
| Parameter | 2907196 (Main Part) | 2907205 (Substitute) |
|---|---|---|
| Manufacturer | Phoenix Contact | Phoenix Contact |
| Series | HMC | HMC |
| Breaker Type | Magnetic (Hydraulic Delay) | Magnetic (Hydraulic Delay) |
| Current Rating (Amps) | 10A | 10A |
| Voltage Rating - AC | 120V | 120V |
| Voltage Rating - DC | 50V | 50V |
| Number of Poles | 4 | 4 |
| Actuator Type | Toggle | Toggle |
| Mounting Type | DIN Rail | DIN Rail |
| Product Status | Active | Active |
| RoHS Status | RoHS non-compliant | ROHS3 Compliant |
| Inventory (Pcs) | 945 | 959 |
Engineering Selection Recommendations
Both the 2907196 and 2907205 are active production parts from Phoenix Contact's HMC series. The primary distinction between these parts is RoHS compliance status: the 2907196 is RoHS non-compliant, while the 2907205 meets ROHS3 compliance requirements.
For applications subject to RoHS3 regulatory requirements or environmental compliance mandates, the 2907205 is the appropriate selection. For legacy systems or applications without RoHS compliance constraints, either part is electrically and mechanically equivalent. Both parts carry identical REACH and ECCN classifications, confirming regulatory parity in these aspects.
Frequently Asked Questions (FAQ)
Q: Are the 2907196 and 2907205 electrically interchangeable?
A: Yes. Both parts are rated for 10A at 120V AC / 50V DC with identical magnetic-hydraulic delay characteristics, toggle actuation, 4-pole configuration, and DIN rail mounting. They are functionally equivalent for circuit protection applications.
Q: What is the primary difference between these two parts?
A: The 2907205 is ROHS3 compliant, while the 2907196 is RoHS non-compliant. All electrical and mechanical specifications are identical.
Q: Can I use the 2907205 as a direct replacement for the 2907196 in existing installations?
A: Yes, the 2907205 provides direct functional replacement. Verify that your application or regulatory environment does not specifically require the non-compliant variant before substitution.
Q: Do these parts have different DIN rail mounting requirements?
A: No. Both parts use identical DIN rail mounting specifications and will occupy the same physical space on standard DIN rail installations.
Q: Are there any performance differences in the hydraulic delay mechanism?
A: No. Both parts employ identical magnetic-hydraulic delay technology and will exhibit the same thermal-magnetic protection characteristics and response times.
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