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Aries Electronics 68-536-11 PLCC ZIF Socket Equivalent & Substitute Parts
Part Overview
The Aries Electronics 68-536-11 is a 68-position PLCC Zero Insertion Force (ZIF) socket with gold-plated contacts designed for through-hole mounting applications. This component serves as an interface for 68-pin PLCC integrated circuits in development, testing, and production environments. The socket features a 4 x 17 pin configuration with gold plating to ensure reliable electrical contact and extended service life. Finding equivalent or substitute parts may be necessary due to inventory constraints, lead time requirements, or specific application needs within compatible electrical and mechanical parameters.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer Part Number | 68-536-11 |
| Manufacturer | Aries Electronics |
| Category | Sockets for ICs, Transistors |
| Socket Type | PLCC ZIF (Zero Insertion Force) |
| Position Count | 68 |
| Pin Configuration | 4 x 17 |
| Contact Material | Gold |
| Mounting Type | Through Hole |
| Series | 536 |
| Current Stock Status | 1013 Pcs New Original In Stock |
Substitute Part Grouping Explanation
Substitution eligibility for the 68-536-11 is determined by the following critical parameters: socket type (PLCC ZIF), position count, pin configuration, contact material (gold plating), and mounting technology. The substitute part 84-537-21 shares the same manufacturer (Aries Electronics), socket type (PLCC ZIF), and contact material (gold). However, this part differs in position count (84 vs. 68) and pin configuration (4 x 21 vs. 4 x 17), and uses surface mount technology rather than through-hole mounting. These differences define the substitution relationship and establish the boundaries of compatibility.
Parameter Comparison
| Parameter | 68-536-11 (Main Part) | 84-537-21 (Substitute) |
|---|---|---|
| Manufacturer | Aries Electronics | Aries Electronics |
| Category | Sockets for ICs, Transistors | Sockets for ICs, Transistors |
| Socket Type | PLCC ZIF | PLCC ZIF |
| Position Count | 68 | 84 |
| Pin Configuration | 4 x 17 | 4 x 21 |
| Contact Material | Gold | Gold |
| Mounting Type | Through Hole | Surface Mount |
| Series | 536 | 537 |
| Stock Status | 1013 Pcs New Original In Stock | 1026 Pcs New Original In Stock |
Engineering Selection Recommendations
Selection between the 68-536-11 and 84-537-21 must be based on application-specific requirements. The 68-536-11 is suitable for through-hole PCB designs requiring a 68-position PLCC socket. The 84-537-21 is designed for surface mount applications and accommodates 84-position PLCC devices. These parts are not interchangeable due to differences in position count, pin configuration, and mounting technology. Component selection must align with the target IC package type, PCB layout requirements, and assembly process specifications.
Frequently Asked Questions (FAQ)
Q: Can the 84-537-21 be used as a direct replacement for the 68-536-11?
A: No. The 84-537-21 has a different position count (84 vs. 68), different pin configuration (4 x 21 vs. 4 x 17), and uses surface mount technology instead of through-hole mounting. These differences make it incompatible for direct substitution.
Q: What determines if a PLCC socket can substitute for the 68-536-11?
A: A substitute must match the following parameters: 68-position count, 4 x 17 pin configuration, PLCC ZIF socket type, gold contact material, and through-hole mounting technology.
Q: Are both parts manufactured by the same company?
A: Yes, both the 68-536-11 and 84-537-21 are manufactured by Aries Electronics, though they belong to different product series (536 and 537 respectively).
Q: What is the significance of the ZIF (Zero Insertion Force) feature?
A: ZIF sockets allow integrated circuits to be inserted and removed without applying excessive force, reducing the risk of pin damage and facilitating rapid component changes during development and testing phases.
Q: Does contact material affect substitution eligibility?
A: Yes. Both parts feature gold-plated contacts, which provide superior electrical conductivity and corrosion resistance. Contact material is a critical parameter in determining substitution compatibility.
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