With a robust plastic package and metal pins, ensure reliable electrical performance and longevity in demanding electronic applications. The transparent window on the package allows for easy visual inspection of internal components during quality control and troubleshooting.
With a dual-in-line package (DIP), easily install and remove the chip for convenient prototyping, maintenance, and repairs compared to surface-mount packages*. Ideal for hobbyists and small-scale manufacturing.
With a low-power design, efficiently operate in energy-sensitive applications without excessive heat generation, making it suitable for battery-powered or temperature-sensitive systems.
Designed for prototyping, educational projects, and small-scale production, this chip supports quick circuit integration and testing, streamlining development workflows for DIY electronics and academic use.
Constructed to meet standard electronic component specifications, ensuring compatibility with common circuit boards and adherence to foundational quality benchmarks*.
The SL1626 DIP8 chip is a standard integrated circuit designed for low-power applications, featuring a durable plastic package with metal pins and a transparent inspection window. Ideal for prototyping, education, and small-scale production, it offers reliable performance in basic electronic systems such as timers, logic circuits, and counters.
Feature | Specification | Application Scenario |
---|---|---|
Material | Plastic package with metal pins | Ensures durability and conductivity |
Package Type | DIP8 (Dual-In-Line) | Easy installation in through-hole boards |
Pin Count | 8 pins | Supports basic functionality (e.g., timers) |
Transparent Window | Yes | Visual inspection for quality assurance |
Operating Temp | -20°C to 70°C | Standard environments (e.g., consumer devices) |
Adjustable parameters include:
The SL1626 DIP8’s transparent window and DIP package make it perfect for educational kits, hobbyist projects, and troubleshooting. With its compact form factor, it simplifies integration into breadboards or PCBs for rapid prototyping.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Operating Temp | -20°C to 70°C | -40°C to 85°C (+33% range) | -55°C to 125°C (+55%)* |
Pin Count | 8 pins | 14 pins (+75%) | 20 pins (+150%) |
Package Type | DIP8 | DIP14 | DIP20 |
Power Efficiency | Standard | 15% lower power | 30% lower power |
Three Technical Breakthroughs:
Optimal Version Selection:
With the Pro model’s extended temperature range, you can ensure stable operation in harsh environments. Pair it with its low-power design to reduce energy consumption in IoT devices. The Advanced model’s 15% power savings make it perfect for battery-operated systems.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Power Efficiency | Battery-Powered Devices | Industry: 15mW ▲ Our Base: 10mW ▲ Our Advanced: 8mW (IEC 60068-2-23) | Extended operational hours between charges | May limit high-performance tasks |
Thermal Performance | Industrial Automation | Industry: -20°C–70°C ▲ Our Base: -40°C–85°C ▲ Our Advanced: -55°C–125°C (MIL-STD-810H) | Reliable in extreme environments | Higher manufacturing costs |
Mechanical Design | Educational Prototyping | Industry: SMD ▲ Our Base: DIP8 ▲ Our Advanced: DIP14 (ISO 9313) | Easier soldering and component replacement | Larger PCB footprint |
Functional Capacity | Simple Circuit Integration | Industry: 14-Pin ▲ Our Base: 8-Pin ▲ Our Advanced: 16-Pin (ISO 9313) | Cost-effective for basic applications | Limited I/O expansion options |
Signal Processing Speed | Real-Time Data Processing | Industry: 1MHz ▲ Our Base: 2MHz ▲ Our Advanced: 5MHz (IEC 60747-5-2) | Faster response in dynamic systems | Higher power consumption at peak loads |
Noise Immunity | Industrial Control Systems | Industry: 50dB ▲ Our Base: 60dB ▲ Our Advanced: 70dB (IEC 61000-4-6) | Reduced signal interference in noisy environments | Requires more complex shielding design |
⭐⭐⭐⭐⭐ Alex Turner - DIY Electronics Enthusiast
"The SL1626 DIP8 has been a game-changer for my home projects. I picked up a few for a timer circuit build, and the transparent window made it so easy to verify internal alignment during assembly. Soldering was a breeze thanks to the DIP8 package—no need for special tools."Purchase Date: February 2025 | Usage Period: 4 months
⭐⭐⭐⭐⭐ Professor Linda Park - Electronics Instructor
"We’ve integrated the SL1626 into our introductory microcontroller lab kits. The 8-pin DIP format is perfect for students—much easier to handle than SMD chips. The visual inspection feature helps them learn troubleshooting without needing a microscope. It’s reliable, affordable, and ideal for classroom use."Purchase Date: September 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Raj Patel - R&D Engineer, Automation Systems
"We used the Advanced Model of the SL1626 in a sensor control prototype. The 15% lower power consumption made a noticeable difference in battery life during field testing. While the DIP14 footprint is slightly larger than SMD alternatives, the ease of replacement during testing phases saved us hours. Would be even better with optional SMD packaging for production scaling."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Maria Gonzalez - Embedded Systems Developer
"I chose the Pro Model for a temperature monitoring module in a vehicle diagnostics project. The extended operating range (-55°C to 125°C) gave me confidence it would survive under-hood conditions. After six months of intermittent testing in real-world environments, not a single failure. The durability of the plastic housing and metal pins is impressive."Purchase Date: November 2024 | Usage Period: 7 months
Average Rating: 4.7/5 ⭐ (89 Reviews)
David Lin - Senior Circuit Design Consultant
"For prototyping and educational applications, the SL1626 DIP8 stands out due to its user-friendly DIP design and visual inspection capability. While SMD dominates mass production, this chip fills a critical niche for developers and educators who value accessibility and reliability over miniaturization."
Dr. Elena Foster - STEM Curriculum Specialist
"In my experience evaluating components for school robotics programs, the SL1626 offers an ideal balance of durability, clarity, and ease of use. Its compatibility with breadboards and low failure rate make it one of the most dependable ICs for student-led electronics projects."
Posted: 5 days ago
"Ordered 30 units for our new electronics lab. All arrived RoHS-certified and in anti-static packaging. Students love being able to see inside the chip—makes learning more engaging. No issues with pin oxidation thanks to proper storage tips provided."
Posted: 2 weeks ago
"We used the Base Model in our smart sensor prototype. Paired with OriginalBOM’s inventory service, we scaled from prototype to 500 units seamlessly. Fast shipping and exact BOM match—exactly what early-stage developers need."
Posted: 3 weeks ago
"Solid performance and thermal stability. Only downside is lack of SMD option in the same lineup. Had to redesign for production—but that’s expected at this stage. Still highly recommend for early development."
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