DIP-6
- Picture & Models
- Description
- Unite Price
- Quantity
- Operation
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1 Form A (SPST-NO) 1.2V 60V 100mΩ 2.5A AC,DC DIP-6 Solid State Relays - MOS Output (PhotoMOS) ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 7443
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1 Form A (SPST-NO) 1.2V 60V 50mΩ 3A AC,DC DIP-6 Solid State Relays - MOS Output (PhotoMOS) ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 7905
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50mA 600V 1.2V Two-way thyristor DIP-6 Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 7042
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50mA 600V 1.2V Two-way thyristor DIP-6 Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 2298
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50mA 400V 1.2V Two-way thyristor DIP-6 Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 5125
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SPDT (1 Form C) 3A 12V 3A DIP-6 Signal Relays ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 6798
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24V 20A 16A Normal Open:1A(SPST-Normal Open) DIP-6 Power Relays ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 6844
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250V 12V 8A 8A@250VAC Two groups are normally open DIP-6 Power Relays ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 3605
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12V 16A 16A Normal Open:1A(SPST-Normal Open) DIP-6 Power Relays ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 2618
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12V 8A 8A Normal Open:2A(DPST-Normal Open) DIP-6 Power Relays ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 7198
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100mA 60mA 600V 1.5V Two-way thyristor DIP-6 Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 4653
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SPDT (1 Form C) 3A 24V 3A DIP-6 Signal Relays ROHS
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1 + 10 + 25 + 50 + >=100 -
Minimum : 1 In-stock : 6171
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Q:What defines the physical structure of DIP-6?
A:Key features include:
- Through-hole mounting: Traditional dual-in-line design for PCB insertion.
- 6-pin layout: Symmetrical 3+3 pin arrangement with 0.1" (2.54 mm) spacing.
- Robust housing: Molded plastic body with standard 7.62 mm row spacing.
- Lead length: Extended leads (3–5 mm) for manual or wave soldering. -
Q:Why choose DIP-6 over alternatives?
A:Critical advantages:
- Ease of prototyping: Hand-solderable and breadboard-compatible.
- Cost-effective: Lower tooling costs vs. SMD packages.
- Mechanical stability: Secure PCB mounting for high-vibration environments.
- Legacy compatibility: Direct replacement for vintage DIP designs. -
Q:What are common technical specs?
A:Standard configurations (consult datasheets):
- Body Size: 9.0 × 6.5 mm (excluding leads).
- Height: 3.3 mm (typical).
- Pin Pitch: 2.54 mm (0.1") between pins.
- Material: Plastic body with tin-plated copper leads.
- Temp Range: -40°C to +85°C (industrial grade). -
Q:Where is DIP-6 typically applied?
A:Dominant use cases:
- Legacy electronics: Audio amplifiers (e.g., LM386 modules).
- Educational kits: Arduino/Raspberry Pi interfacing circuits.
- Industrial controls: Relay drivers and optocouplers (e.g., PC817). -
Q:What are critical assembly guidelines?
A:Key recommendations:
- PCB Design: 1.0 mm minimum hole diameter for leads.
- Soldering: Wave soldering at 260°C max (5 sec exposure).
- Inspection: Visual checks for lead alignment and solder fillets.
- Handling: Avoid excessive lead bending to prevent cracks.



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