Tuesday, 19 April 2016

Fish Stunner mk-2 (Prototyping stage)

Fish Stunner mk-2 (Prototyping stage)

Hello fellas, today I wanna show you the Fish Stunner mk-2 which is still under R&D process. As promised in last blog that I'll show the mk-2 version if functioning. Here it is...





It successfully turn on a 100W light bulb 

Components lists:
x4 2N3055 transistor
x2 TIP41C transistor
x2 220 resistor
x2 1k resistor
x2 3.25uF 250V AC Capacitor

You might wonder why on earth that capacitor doing there, In an AC circuit, capacitor reverses its charges as the current alternates and produces a lagging voltage (in other words, capacitor provides leading current in AC circuits and networks) so less power wasted in next cycle, more efficient and the inverter starts smoother.

That's all till now, will be updated when the casing is finished.


Very Short Brief About some consumer Intel(R) Processors-Part 1

Very Short Brief About some consumer Intel(R) Processors-Part 1


The world most famous microprocessors manufacturer. Since 1971,intel has been produce microprocessors for the world electronic needs. Here we will see their first microprocessor Intel® 4004 processor

Intel® 4004 processor

thanks to the men who are so innovative and take us to new leap into digital era,Robert Noyce (1927-1990) and Gordon Moore (1929 - now)


here are a little story of the father of intel microprocessors:


Let's get back to history,intel 4004 microprocessors which is work at 108 kHz-740 kHz. It only have 16 pin withh 4-bit instruction set.  It has 2300 transistors works under 108 KHz with 10micron manufacturing technology. It is mainly used as processors in calculator in that time. However,this processor has successor which we gonna see later. The successor,Intel® 8008 processor

Intel® 8008 processor


Intel 8008 which is operate at 800 kHz with 8-bit Data Bus. Intel claimed that this processor is about 4-6 times faster than Intel 4004.It has 3500 transistors. Next we gonna see Intel® 8080 processor



Intel® 8080 processor
These microprocessors works at 2MHz-3MHz with the 8-bit Data Bus and 64 KB Address Space.It has 4500 transistors in it under 6 micron architecture. It was released in March 1974. It was used in the Altair 8800,the first widely known personal computer. Next,we gonna see Intel® 8085 processor



Intel® 8085 processor
Intel 8085 operate at 6 MHz and still in 8-bit data bus. This chip consume power as low as 5V. It has 2900 transistors in it under 3 micron architecture Then We'll see Intel® 8086 processor




Intel® 8086 processor


The specs of this chip is more or less like Intel 8085,the differences are it has higher clock and has 16-bit data bus, works under 5MHz with 2900 transistor under 3 micron architecture. Next, we'll see a much advance microprocessors which it's die is not within the rectangular black coloured silicon casing or we call it traditional chip design. Introducing, Intel® 286 processor




Intel® 286 processor

Intel 286 or called as 80286. Operates up to 6 MHz with 16-bit bus width, with 134,000 transistors under 1.5 micron achitecture. Next, we'll see Intel486™ processor




Intel486™ processor

This processor was introduced on 1989,it has clock speed of 25MHz. Moreover, this processor has reach more than 1 million transistors count, it has 1.2million transistors under 1 micron architecture. At that time, the processors allowed users to go from a command level computer into point and click computing. Next, we'll see the most common name of intel processor. It is Intel® Pentium® processor



Intel® Pentium® processor
Intel® Pentium® processor which is firstly introduced on 1993 with clock speed 200 MHz. The main feature in it is the MMX intructions (Multimedia Extensions),which is mainly used in gaming purposes. It has 5.5 million transistors under 0.6 micron architecture. Next we'll see Intel® Pentium® II processor &
Intel® Pentium II Xeon® processor



Intel® Pentium® II processor &
Intel® Pentium II Xeon® processor



Intel® Pentium® II processor with clock speed 300 MHz, 7.5 million transistors under 0.25 micron architecture. The design of Intel® Pentium II Xeon® processor is or less the same except it is more powerful because it is used as workstation and servers processors. Next, we'll see Intel® Pentium® III processor




Intel® Pentium® III processor
Intel® Pentium® III processor, the processor that introduces 70 new instruction mainly internet streaming SIMD extensions which provide dramatically enhance the performance of imaging, 3D, streaming audio etc...
Intel® Pentium® III processor has clock speed of 500 MHz with 9.5million transistors under 0.18 micron Architecture. Next, we'll see Intel® Pentium® 4 processor





Intel® Pentium® 4 processor
Intel® Pentium® 4 processor which we commonly known processors among the others before it has 42 millions transistors under 0.18 micron architecture. Next is Intel® Pentium® M processor 


Intel® Pentium® M processor
Intel® Pentium® M processor is the time when mobile computer is starting famous among users. It consume low power and provide desktop quality performance. It has 1.7 GHz clock speed, 55 millions transistor under 90 nano-meter = 0.09 micron  architecture. Next we'll see Intel® Itanium® 2 processor
.

Intel® Itanium® 2 processor

This CPU is only for hi-ends PC like servers and workstations. Because this CPU can perform much bigger task,that why we cannot see this CPU for ordinary PC.. Introduced on 2002 with initial clock at 1 GHz and has 0.2 billions of transistors under 0.13 micron architecture. At the same year Intel® Xeon®
processor also introduced

Intel® Xeon®
processor
This CPU also for hi-ends PC like servers and workstations. Initial clock 1.7 GHz build with 42 million transistors under 0.18 micron architecture. Next we'll seeIntel® Pentium® D processor.


Intel® Pentium® D processor

The first desktop CPU with dual core cpu. We'll unable to find mobile version for this CPU because intel only build it for desktop. Work with maximum clock up to 3.2 GHz build with 291 millions transistors under 65 nanometer (0.065 micron) which intel just entering nano-scale CPU architecture.The Intel® Pentium® D processor features the first desktop duel-core design with two complete processor cores, that each run at
the same speed, in one physical package not in hyper-threading mode which we'll see later in next intel core series CPU. Next we'll see Intel® Core™2 Duo processor the company is stepping forward with nano scale architecture and dual core features.



Intel® Core™2 Duo
processor
Intel® Core™2 Duo processor optimizes mobile micro-architecture of the Intel® Pentium® M processor and enhanced it with many micro-architecture innovations. Works with initial speed of 2.66 GHz, build with 291 million transistors under 65 nanometer architecture. There also mobile versions for this which the clock speed is 1.66 GHz only. Next, we'll see Intel® Atom™ processor



Intel® Atom™
processor


 Now Intel has release the super economy power usage with a little reduction of performance CPU. Intel® Atom™ processor which mainly used by small mobile PC like netbooks, smartphones and even tablets. It work with minimum clock speed at 1.28 GHz and some up to 1.8 GHz. Build with 47 millions transistor under 45 nanometer architecture. Next, we'll see the most latest series CPU and the most famous CPU which are Intel® Core™ processor Family. It is called family because Intel release 3 types of CORE-series CPU namely Core i3, Core i5 and Core i7.



Intel®
Core™  i3,Core™  i5 and Core™  i7 processors


First Generation Die
(Graphic Die and Processor Die)


Second Generation Die


(Processors and Graphic Die Combine Together)



Third Generation Die


(Processors and Graphic Die Combine Together)

And of course these CPU is much better than their predecessor in lots of aspects like performance,power consumption,clocks etc...Here some of the table of features.


That's all until now, actually there is more lineup of Intel Core series CPU, until today they made up until 6th generation which got special features that very interesting which the call inverse HyperThreading.

Will be continue part 2....coming soon 

Sunday, 17 April 2016

Fish Stunner mk-1

Hello fellas!! Today I'm gonna show you on of my free time projects. It is called "The Inverter Projects". Some of people may not know what is inverter that I'm talking about, an inverter is a device that changing DC (Direct Current) to AC (Alternating Current). There are lots of application of inverter eg. power supply, fish stunner, solar power converter etc...

But today we gonna see it's application as Fish Stunner. Which is cheap and reliable, if  we google fish stunner circuits, it seems like the results are specific to ordinary DC to AC power supply which you can try but I can't guarantee it's reliability.


The circuits above are found online and not yet tested. But i'm gonna make on of my own version which the parts can be bought or salvage from any electronics junkyard. Moreover, my version has been tested and able to stun fishes, mostly scale-less fish like catfish.

Here is the first version... 


 Fish Stunner mk-1

Here is the circuit...
The Circuits.
2x MJ2955
2x TIP32C
2x 1k resistor
2x 220 resistor
1x Center-taped transformer

Then it is placed is a plastic case...




Here is another prototype of Fish Stunner mk-1 in metal case, since plastic case is ugly...

Front view


Side view

That's all then, on next post I'll post pictures of my dad using the fish stunner (since he really love fishing activities) and me who caught the fish. By the way, now I'm doing the Fish Stunner mk-2 which it has additional power and more efficient and better switching. I'll make post about mk-2 after it finish.

Speaking about fish stunner, on the upcoming(after I'm back from hometown) post I'll show you my inspiration interest device about fish stunner which is the first inverter I've met and learn from it since 12 years old. Interesting fact about it is, it is non semiconductor component inverter or people called  is analog inverter (guess how it invert DC to AC).  I'm sure some of old people like 60's and 70's ever seen it until it is replaced by semicondutor based inverter.