TE Connectivity Potter & Brumfield Relay 1416200-2 Equivalent & Substitute Parts

Part Overview

The TE Connectivity Potter & Brumfield Relay 1416200-2 is a general purpose SPDT (Single Pole Double Throw) relay with a 5VDC coil, rated for 8A switching current at 400VAC maximum. This through-hole mounted relay features a non-latching coil type with sealed, fully protected contacts and is designed for PC pin termination in industrial and commercial applications.

The 1416200-2 is classified as obsolete product status. Identifying equivalent and substitute parts is necessary to maintain design continuity, ensure supply chain availability, and support ongoing production and maintenance requirements for systems utilizing this relay configuration.

Substiute Parts

1416200-2
TE Connectivity Potter & Brumfield RelaysIn Stock: 11021416200-2 Datasheet
1416200-2
Current Part
6-1416200-3
TE Connectivity Potter & Brumfield RelaysIn Stock: 11756-1416200-3 Datasheet
6-1416200-3
Similar
V23061B1002A301
TE Connectivity Potter & Brumfield RelaysIn Stock: 2381V23061B1002A301 Datasheet
V23061B1002A301
Similar

Key Parameters

Parameter Value
Coil Voltage 5VDC
Contact Form SPDT (1 Form C)
Contact Rating (Current) 8 A
Switching Voltage (Maximum) 400VAC
Coil Current 42.4 mA
Coil Resistance 118 Ohms
Mounting Type Through Hole
Termination Style PC Pin
Coil Type Non Latching
Operating Temperature Range -40°C ~ 85°C
Must Operate Voltage 3.4 VDC
Must Release Voltage 0.5 VDC
Operate Time 10 ms
Release Time 5 ms
Seal Rating Sealed - Fully
Coil Insulation Class A
Relay Type General Purpose
Series MSR, SCHRACK

Substitute Part Grouping Explanation

Substitute parts for the 1416200-2 are identified based on electrical and mechanical parameter equivalence within the MSR and SCHRACK relay series. The substitution logic is based on the following critical parameters:

Electrical Equivalence Criteria:

  • Coil voltage: 5VDC
  • Contact form: SPDT (1 Form C)
  • Coil current: 42.4 mA
  • Coil resistance: 118 Ohms
  • Must operate voltage: 3.4 VDC
  • Must release voltage: 0.5 VDC
  • Operating temperature range: -40°C ~ 85°C

Mechanical Equivalence Criteria:

  • Mounting type: Through Hole
  • Termination style: PC Pin
  • Coil type: Non Latching
  • Series designation: MSR, SCHRACK

Switching Performance Criteria:

  • Contact rating: 8 A
  • Switching voltage: 400VAC maximum
  • Operate time: 10 ms
  • Release time: 5 ms

Parts meeting all electrical, mechanical, and switching performance parameters are classified as direct substitutes. Variations in packaging, product status, seal rating, and contact material do not affect functional substitutability in equivalent circuit applications.

Parameter Comparison

Parameter 1416200-2 (Main Part) 6-1416200-3 (Substitute) V23061B1002A301 (Substitute)
Manufacturer TE Connectivity Potter & Brumfield Relays TE Connectivity Potter & Brumfield Relays TE Connectivity Potter & Brumfield Relays
Coil Voltage 5VDC 5VDC 5VDC
Contact Form SPDT (1 Form C) SPDT (1 Form C) SPDT (1 Form C)
Contact Rating (Current) 8 A Not specified 8 A
Switching Voltage (Maximum) 400VAC 400VAC 400VAC
Coil Current 42.4 mA Not specified 42.4 mA
Coil Resistance 118 Ohms 118 Ohms 118 Ohms
Mounting Type Through Hole Through Hole Through Hole
Termination Style PC Pin PC Pin PC Pin
Coil Type Non Latching Non Latching Non Latching
Must Operate Voltage 3.4 VDC 3.4 VDC 3.4 VDC
Must Release Voltage 0.5 VDC 0.5 VDC 0.5 VDC
Operate Time 10 ms 10 ms 10 ms
Release Time 5 ms 5 ms 5 ms
Operating Temperature Range -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C
Seal Rating Sealed - Fully Sealed - Flux Protection Sealed - Fully
Coil Insulation Class A Not specified Class A
Relay Type General Purpose General Purpose General Purpose
Series MSR, SCHRACK MSR, SCHRACK MSR, SCHRACK
Product Status Obsolete Active Active
Packaging Not specified Bulk Tube
RoHS Status Not specified ROHS3 Compliant ROHS3 Compliant
REACH Status Not specified REACH Unaffected REACH Unaffected

Engineering Selection Recommendations

Primary Substitute: V23061B1002A301

The V23061B1002A301 is the recommended substitute for the obsolete 1416200-2. This part maintains complete electrical and mechanical equivalence across all critical parameters, including coil voltage, contact form, current rating, switching voltage, timing characteristics, and operating temperature range. The V23061B1002A301 carries active product status with ROHS3 compliance and REACH unaffected certification, ensuring long-term availability and regulatory alignment. Packaging in tube format supports standard component handling and inventory management.

Secondary Substitute: 6-1416200-3

The 6-1416200-3 provides functional substitutability with equivalent coil voltage, contact form, coil resistance, timing parameters, and operating temperature range. This part carries active product status with ROHS3 compliance and REACH unaffected certification. The 6-1416200-3 features sealed flux protection rating compared to the fully sealed rating of the main part. Bulk packaging format is suitable for high-volume applications. Contact current rating is not specified for this variant; applications requiring confirmed 8A switching capacity should prioritize the V23061B1002A301.

Both substitute parts are manufactured by TE Connectivity Potter & Brumfield Relays within the MSR and SCHRACK series, ensuring design continuity and compatibility with existing PCB layouts and circuit designs.

Frequently Asked Questions (FAQ)

Q: Can the 6-1416200-3 be used in place of the 1416200-2 in all applications?

A: The 6-1416200-3 meets all critical electrical and mechanical parameters for functional substitution. However, the contact current rating is not specified for this part. Applications requiring confirmed 8A switching capacity should use the V23061B1002A301 instead.

Q: What is the difference between "Sealed - Fully" and "Sealed - Flux Protection" ratings?

A: Both seal ratings provide environmental protection for the relay contacts. Sealed - Fully provides complete sealing against external contaminants. Sealed - Flux Protection provides sealing optimized for flux residue protection during manufacturing processes. Both ratings are suitable for general purpose relay applications.

Q: Are the substitute parts compatible with the same PCB footprint as the 1416200-2?

A: Yes. Both substitute parts use through-hole mounting with PC pin termination, matching the mechanical interface of the 1416200-2. PCB layout compatibility is maintained across all three parts.

Q: What is the significance of the ROHS3 compliance on the substitute parts?

A: ROHS3 compliance indicates that the substitute parts meet Restriction of Hazardous Substances Directive requirements, restricting the use of specific hazardous materials. This certification supports regulatory compliance in applications subject to environmental and safety standards.

Q: Can the 1416200-2 be repaired or refurbished?

A: The 1416200-2 is classified as obsolete. Direct substitution with active product status parts (6-1416200-3 or V23061B1002A301) is the appropriate approach for new designs and ongoing production support.

Q: What is the difference in packaging between the substitute parts?

A: The 6-1416200-3 is supplied in bulk packaging, suitable for high-volume pick-and-place operations. The V23061B1002A301 is supplied in tube packaging, suitable for standard component handling and lower-volume applications. Both packaging formats are compatible with standard component storage and assembly processes.

Q: Are there any differences in coil insulation between the substitute parts?

A: The V23061B1002A301 specifies Class A coil insulation, matching the main part. The 6-1416200-3 does not specify coil insulation class in the provided data. For applications with specific insulation requirements, the V23061B1002A301 is the confirmed equivalent.

Q: Do the substitute parts have the same electrical performance characteristics?

A: Yes. Both substitute parts maintain identical coil voltage (5VDC), coil current (42.4 mA for V23061B1002A301), coil resistance (118 Ohms), must operate voltage (3.4 VDC), must release voltage (0.5 VDC), operate time (10 ms), and release time (5 ms). These parameters ensure equivalent electrical performance in circuit applications.

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