Home > Products > Arrays, Edge Type, Mezzanine (Board to Board) >Arrays, Edge Type, Mezzanine (Board to Board) > Vertical Connector 3M MP2-H240-54S1-S-KR with Beige High Temp LCP Insulation and Nickel Underplating

Vertical Connector 3M MP2-H240-54S1-S-KR with Beige High Temp LCP Insulation and Nickel Underplating

Manufacturer:
3M
Description:
Arrays, Edge Type, Mezzanine (Board to Board) RoHS
Category:
Arrays, Edge Type, Mezzanine (Board to Board)/Arrays, Edge Type, Mezzanine (Board to Board)
Specifications
Mfr. Part #:
MP2-H240-54S1-S-KR
Model Number:
MP2-H240-54S1-S-KR
Introduction

Product Overview

The 3M MetPak 2-FB Header MP2 Series is a 2 mm pitch, vertical connector designed for high-density interconnect applications. It features a shouldered pin for robust mating and is available in both solder tail and press-fit termination styles. Key advantages include end-to-end stackability, select load capability, and monoblockable construction. The press-fit version offers early mate late break (EMLB) functionality for hot-swapping, with EMLB adjusted by application tooling. This header supports universal tooling and is RoHS compliant. It is suitable for midplane applications with an optional feed-through tail for rear plug-up.

Product Attributes

  • Brand: 3M
  • Product Line: MetPak 2-FB Header MP2 Series
  • Pitch: 2 mm
  • Orientation: Vertical
  • Pin Type: Shouldered Pin
  • Termination Styles: Solder Tail, Press-Fit
  • Material (Insulation): High Temp LCP
  • Flammability: UL 94V-0
  • Color (Insulation): Beige
  • Material (Contact): Phosphor Bronze
  • Plating (Nickel Underplating): 50 " [1.27 m]
  • Environmental Rating: -55C to +125C
  • Process Temperature Rating: 260C (per J-STD-020C)
  • Moisture Sensitivity Level: 1 (per J-STD-020C)
  • Certifications: UL File No. E68080
  • Compliance: RoHS Compliant (RIA E1 & C1 apply)
  • Standards: Refer to IEC 61076-4-104 Futurebus+ global standard

Technical Specifications

Specification Details
Rows 4 or 5
Current Rating (Signal) 1.5 A All contacts simultaneously
Insulation Resistance 103 M
Withstanding Voltage 1,000 VAC
Plating Options (Contact Area) KR: 0.76 m [30 "] Min. Au
LR: 0.08 m [3 "] Min. Au, 0.67 m [27 "] Min. PdNi
KV (Rear Plug-up): 0.76 m [30 "] Min. Au Primary, 0.10 m [4 "] Min. Au Needle Eye, 0.10 m [4 "] Min. Au Secondary
Plating Options (Tail Area) KR/LR: 2.54 m [100 "] Min. Matt Whisker Mitigating Sn
KV: 1.27 m [50 ] Min. Ni all over
Plating Options (All Over) KR/LR/KV: 1.27 m [50 ] Min. Ni
Tail Length Options (Solder) Suffix 1: 4.60 [0.181] mm [inch]
Suffix 3: 2.72 [0.107] mm [inch]
Tail Length Options (Press-Fit*) Suffix 1: 4.60 [0.181] mm [inch]
Suffix 3: 2.72 [0.107] mm [inch]
Pin Count & Dimensions (4 Rows) 024: 11.95 [0.471] A, 10.00 [0.394] C
048: 23.95 [0.943] A, 22.00 [0.866] C
072: 35.95 [1.415] A, 34.00 [1.339] C
096: 47.95 [1.889] A, 46.00 [1.811] C
120: 59.95 [2.36] A, 58.00 [2.283] C
144: 71.95 [2.833] A, 70.00 [2.756] C
168: 83.95 [3.305] A, 82.00 [3.228] C
192: 95.95 [3.778] A, 94.00 [3.701] C
Pin Count & Dimensions (5 Rows) 030: 11.95 [0.471] A, 10.00 [0.394] C
060: 23.95 [0.943] A, 22.00 [0.866] C
090: 35.95 [1.415] A, 34.00 [1.339] C
120: 47.95 [1.888] A, 46.00 [1.811] C
150: 59.95 [2.361] A, 58.00 [2.283] C
180: 71.95 [2.833] A, 70.00 [2.756] C
210: 83.95 [3.305] A, 82.00 [3.228] C
240: 95.95 [3.778] A, 94.00 [3.701] C
Loading Pattern & Mate Lengths Refer to Table 2 for specific loading patterns and mate lengths per row (A, B, C, D, E).
PCB Hole Mounting Pattern Refer to diagrams for 4 and 5 row solder tail and press-fit configurations.
Hole Plating Finishes Immersion Matte Sn (0.025-0.045 m), Electrolytic Au (0.1 - 0.5 m), OSP ENTEK (0.2 - 0.5 m)
Drilled Hole Diameter (D) 0.700-0.800 [.0276-.0315] mm [in]
Finished Hole Diameter (for OSP) 0.830-0.860 [.0330-.0340] or 0.85 mm [#66] TWIST DRILL

*Press Fit describes a contact tail having a compliant section designed to make a reliable electrical connection with a plated through-hole (PTH) in a printed circuit board, typically a back plane.


2410301808_3M-MP2-H240-54S1-S-KR_C3649528.pdf

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