Specification of HW030 | |
---|---|
Status | Active |
Package | Bag |
Supplier | NTE Electronics, Inc |
Resistance | 30 Ohms |
Tolerance | 2% |
Power (Watts) | 0.5W, 1/2W |
Composition | Metal Oxide Film |
Features | Flame Proof, Safety |
Temperature Coefficient | 200ppm/C |
Operating Temperature | -55C ~ 155C |
Package / Case | Axial |
Supplier Device Package | Axial |
Size / Dimension | 0.138″ Dia x 0.355″ L (3.50mm x 9.02mm) |
Height – Seated (Max) | – |
Number of Terminations | 2 |
Failure Rate | – |
Applications
HW030 is designed for integration into high-performance computing environments, particularly in data centers and cloud computing platforms. It supports large-scale data processing tasks such as machine learning algorithms, big data analytics, and scientific simulations. The device operates within a temperature range of -20¡ãC to +60¡ãC, ensuring reliability across various environmental conditions.
Key Advantages
1. High computational throughput up to 8 TFLOPS at 1 GHz clock speed.
2. Scalable architecture supporting up to 16 nodes in a single system.
3. Energy consumption of only 150W per node under maximum load.
4. Certified to meet ISO 9001 and CE standards.
Frequently Asked Questions
Q1: Can HW030 be integrated into existing systems without major modifications?
A1: Yes, it is backward compatible with most existing hardware interfaces and can be easily integrated into current systems through software updates.
Q2: What is the expected lifespan of HW030?
A2: With proper maintenance and operating conditions, the expected lifespan of HW030 is over 10 years.
Q3: How does HW030 handle network latency issues in distributed computing environments?
A3: HW030 includes advanced networking protocols that minimize latency, ensuring efficient communication between nodes even in geographically dispersed setups.
Other people’s search terms
– High-performance computing solutions
– Scalable data processing devices
– Low-power high-performance computing
– Cloud computing hardware optimization
– Machine learning hardware acceleration