Memory Connectors - Inline Module Sockets

Image Part Number Description / PDF Quantity Rfq
2308107-5

2308107-5

TE Connectivity AMP Connectors

DDR4 DIMM 288 PIN TH TYPE

8725

0783150011

0783150011

Woodhead - Molex

CONN SKT DIMM 240POS PCB

251

10005639-11087LF

10005639-11087LF

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

0785565001

0785565001

Woodhead - Molex

CONN SKT DIMM 240POS PCB

559

10005639-13207LF

10005639-13207LF

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

0877830001

0877830001

Woodhead - Molex

CONN SKT MINIDIMM 244POS SMD

49

1-1932000-1

1-1932000-1

TE Connectivity AMP Connectors

CONN SKT DIMM 240POS PCB

9214

7-5382486-2

7-5382486-2

TE Connectivity AMP Connectors

CONN SKT SIMM 72POS R/A PCB

0

10116658-052FSLF

10116658-052FSLF

Storage & Server IO (Amphenol ICC)

CONN SKT SODIMM 200POS SMD

0

10037402-11109LF

10037402-11109LF

Storage & Server IO (Amphenol ICC)

CONN SKT FB-DIMM 240POS PCB

0

1-1735251-2

1-1735251-2

TE Connectivity AMP Connectors

CONN SKT SODIMM 144POS R/A SMD

0

0877469001

0877469001

Woodhead - Molex

CONN SKT DIMM 240POS PCB

259

10005639-11184

10005639-11184

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

0876232001

0876232001

Woodhead - Molex

CONN SKT DIMM 184POS PCB

1685

2-2013287-1

2-2013287-1

TE Connectivity AMP Connectors

CONN SKT SODIMM 204POS SMD REV

0

390112-1

390112-1

TE Connectivity AMP Connectors

CONN SKT SODIMM 144POS R/A SMD

1204

10005639-11149LF

10005639-11149LF

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

10005639-11114

10005639-11114

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

10005639-12227LF

10005639-12227LF

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

10005639-11202

10005639-11202

Storage & Server IO (Amphenol ICC)

CONN SKT DIMM 240POS PCB

0

Memory Connectors - Inline Module Sockets

1. Overview

Inline Module Sockets are electro-mechanical interfaces designed to connect memory modules (e.g., DRAM, SRAM) to printed circuit boards (PCBs). These connectors ensure reliable electrical conductivity, mechanical stability, and signal integrity in high-speed data transmission environments. They play a critical role in computing systems, telecommunications infrastructure, and industrial equipment by enabling modular memory upgrades and maintenance.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
DIMM Socket64-bit data path, 240/288 pins, ZIF technologyDesktop/server RAM modules
SO-DIMM SocketSmaller form factor, 200/260 pins, low insertion forceLaptops, embedded systems
UDIMM SocketUnbuffered design, direct memory controller connectionConsumer PCs, workstations
RDIMM SocketRegistered buffering for improved signal stabilityEnterprise servers, data centers

3. Structure and Composition

Typical components include:

  • Contact points: Phosphor bronze or beryllium copper with gold plating
  • Insulation housing: High-temperature resistant thermoplastics (LCP, PBT)
  • Actuator mechanism: Z-axis compression system for secure module retention
  • PCB termination: Through-hole or surface-mount solder tails

Advanced designs incorporate impedance-matched contacts and anti-vibration locking features.

4. Key Technical Parameters

ParameterTypical ValueImportance
Contact Resistance 10m Ensures minimal signal loss
Current Rating1-3A per pinDetermines power delivery capability
Operating Temperature-55 C to +125 CGuarantees performance in extreme conditions
Insertion Life1000+ cyclesAffects product longevity

5. Application Fields

  • Computer hardware: Motherboards, GPU memory interfaces
  • Telecommunications: 5G base stations, network switches
  • Industrial automation: PLC controllers, vision systems
  • Medical equipment: Imaging devices, patient monitors

6. Leading Manufacturers and Products

ManufacturerProduct SeriesSpecial Features
TE ConnectivityMAX Density DIMM36% higher pin density
Amphenol ICCVerge X112Gbps data rate support
MolexDDR5 UDIMMIntegrated error detection

7. Selection Recommendations

Key considerations:

  • Memory standard compatibility (DDR4/DDR5, RDIMM/UDIMM)
  • Vibration resistance for industrial applications
  • Thermal management requirements
  • Compliance with JEDEC standards

Case study: Data centers prioritizing RDIMM sockets with ECC support for mission-critical servers.

8. Industry Trends

Emerging developments include:

  • Migration to DDR5 interfaces with 6400MT/s+ speeds
  • Miniaturization for mobile device integration
  • Smart sockets with integrated diagnostic capabilities
  • Eco-friendly materials meeting RoHS/REACH regulations

Market forecasts predict 8.2% CAGR through 2030 driven by AI and 5G infrastructure demands.

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