Equivalent & Substitute Parts for NDXD1212C

Part Overview

The Murata Power Solutions Inc. NDXD1212C is a DC-DC converter module providing isolated, dual output voltages of +12V and -12V at up to 312mA per channel, with a total output power of 7W. This Isolated Module is designed for commercial ITE applications, features through-hole mounting, and is housed in a 6-DIP Module package. The NDXD1212C is classified as obsolete, which makes it necessary to identify alternative models for continued design support and replacement in legacy applications.

Substiute Parts

NDXD1212C
Murata Power Solutions Inc.In Stock: 795NDXD1212C Datasheet
NDXD1212C
Current Part
NCS6D1212C
Murata Power Solutions Inc.In Stock: 12272NCS6D1212C Datasheet
NCS6D1212C
MFR Recommended

Key Parameters

Manufacturer Part Number Output Power Output Voltages Max Output Current (per channel) Input Voltage Range Isolation Voltage Number of Outputs Mounting Type Operating Temperature Range Package / Case Size / Dimension (mm) Product Status Applications MSL
NDXD1212C 7 W 12V, -12V 312mA, 312mA 9V - 18V 1 kV 2 Through Hole -40°C ~ 85°C 6-DIP Module 32.0 x 24.9 x 9.9 Obsolete ITE (Commercial) 1 (Unlimited)

Substitute Part Grouping Explanation

The substitute part identification is based strictly on matching the following key parameters: number of outputs, output voltage values (+12V and -12V), mounting type, operating temperature range, application suitability (ITE commercial), and isolation requirements. Only parts meeting these parameters and listed as substitutes by the manufacturer or explicitly in the input are considered. Substitute parts may differ in output power, maximum current, input voltage range, and package dimensions, as allowed within the scope of explicitly provided data.

Key parameters for substitution:

  • Output Voltages: 12V, -12V
  • Number of Outputs: 2
  • Mounting Type: Through Hole
  • Operating Temperature Range: -40°C ~ 85°C
  • Application: ITE (Commercial)
  • Isolation Voltage (≥1 kV)
  • Product Status and MSL

Parameter Comparison

Manufacturer Part Number Output Power Output Voltages Max Output Current (per channel) Input Voltage Range Isolation Voltage Number of Outputs Mounting Type Operating Temperature Range Package / Case Size / Dimension (mm) Product Status Applications MSL
NDXD1212C 7 W 12V, -12V 312mA, 312mA 9V - 18V 1 kV 2 Through Hole -40°C ~ 85°C 6-DIP Module 32.0 x 24.9 x 9.9 Obsolete ITE (Commercial) 1 (Unlimited)
NCS6D1212C 6 W 12V, -12V 250mA, 250mA 9V - 36V 1.5 kV 2 Through Hole -40°C ~ 85°C 24-DIP Module (600 mil, 8 Leads) 32.0 x 20.0 x 10.0 Active ITE (Commercial) Not Applicable

Engineering Selection Recommendations

The main part, NDXD1212C, has a product status of obsolete. The provided substitute, NCS6D1212C, is listed as active. When selecting substitute components, ensure all relevant regulatory status, such as RoHS and REACH, matches application requirements. Review the Moisture Sensitivity Level (MSL) and product compliance status as provided.

Frequently Asked Questions (FAQ)

Q: What are the required parameters for substituting NDXD1212C in a design?
A: The substitute must provide dual outputs of +12V and -12V, be rated for through-hole mounting, operate within -40°C to 85°C, support commercial ITE applications, and meet the specified isolation voltage and number of outputs.

Q: Are package and pinout differences relevant in substitution?
A: Substitute package types are provided for dimensional comparison. Both NDXD1212C and NCS6D1212C are through-hole modules, but their package form factors and pin counts may differ as specified.

Q: What compliance or status factors should be checked when selecting a replacement?
A: Review product status (active vs. obsolete), MSL, RoHS, and REACH information as listed. Only use data explicitly provided.

Q: Do substitute parts in the DC DC converter category require matching operating temperature ranges?
A: Yes, the substitute part must match the -40°C to 85°C range if required by application specifications.

Q: Is matching the input voltage range necessary?
A: The substitute’s input voltage range must encompass the application’s requirements as given in the input; refer to listed parameters for exact ranges.

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