Showing posts with label the. Show all posts
Showing posts with label the. Show all posts

Monday, September 8, 2014

The Nexus 8 could be presented at Google I O 2014 with this design

The
After possibly Google would have revealed his new cell Nexus 6, why not look at another device that could be presented at Google I / O 2014. Though these images not officially arrive for a Google Account, are a representation of the new tablet could present company by the name of Nexus 8.
Show a tablet with a Super LCD 3 8-inch Lcd that has been manufactured by HTC. The new tablet also includes a chamber 8 ultrapixeles, which would provide approximately twice the resolution of the camera that has the HTC One M8, which we believe will not really happen.

However, the design of the Nexus 8 could show much the design that could be the new Google tablet could have if it is manufactured by HTC. It has a very similar to the HTC One M8 to have a metal frame, BoomSound speakers in the front and edges with a slight curvature that would enable it feels good in the hand design.

As for its specifications, the concept does not show many details, other than that its speakers would Harman / Kardon, as the version of HTC especificial One M8 came out in the United States exclusively for Sprint, but expect Snapdragon processor 801 2.5GHz, 3GB of RAM and the latest version of Android.
Read More..

Saturday, September 6, 2014

The flashing Heart Wiring diagram Schematic

Buying a gift for someone special or a loved one can sometimes be difficult or expensive. The flashing heart is the answer. It is easy to build and even the inexperienced hobbyist should be able to build it. The estimated cost for the schema is $25 if all the parts are purchased new. With The Flashing Heart, you can get your message across in bright lights.

Circuit Description
The Circuit Diagram is shown in Figure 1. It consists of a 4047 low-power monostable/astable multivibrator, IC1, used in the astable mode to provide the timing pulses to control the flash rate of the LEDs. To accomplish the astable mode, pins 4, 5, 6, and 14 are connected to +12VDC and pins 7, 8, 9, and 12 are connected to ground. Pins 1 and 3 are connected to C2 and pins 2 and 3 are connected to potentiometer R9. A fixed value resistor can be used in place of the potentiometer R9, if the flash rate does not need to be adjusted. These three pins make up the R-C timing schema. The output pulses from the 4047 are taken from pins 10, 11, and 13. Pin 10 is the Q output and pin 11 is the Q-not output. These two pins are onnected to R6 and R7 respectively.

Figure
Click On Image To Enlarge
The collectors of Q2 and Q3 are connected to R4 and R5 respectively, which are connected to the cathodes of the Yellow LEDs. Pin 13 is the oscillator output and is connected to R8, which is connected to the base of Q1. The collector of Q1 is connected to R3, which is connected to the cathodes of the Red LEDs. The emitters of the three transistors are connected to ground. The Green LEDs are connected to R1 and R2, which are connected to +12VDC. Resistors R1-R8 are current limiting resistors and the correct wattage for these resistors should be used to prevent excessive heat. The resistive values may be changed to vary the brightness of the LEDs. The schema is powered by PS1, a wall transformer, which is connected to a filter capacitor C1. It must be between 10 to 15 VDC and at least 500mA.

Construction
Probably the most difficult part of this project is making the printed schema board, Figure 2. The board used in the prototype took several hours to make using dry transfers. Using a different technique, such as photo resist, may be faster for the experienced hobbyist. Once the board is etched and drilled, the jumper wires should be placed on the board and soldered, as shown on Figure 3. Next the 84 Yellow LEDs should be placed around the border of the board, followed by the 42 Red LEDs that make up the heart and then the 16 Green LEDs that make up the letters I and U. Resistors R1-R9 and capacitors C1and C2 should be placed on the board next and then the power supply, PS1. Sockets were used in the prototype for the I.C. and transistors. A socket for the I.C. is required, but the sockets for the transistors are not. Special care should be taken when handling the CMOS I.C., as a static discharge will destroy it. When you are finished soldering, check the board over for mistakes. If everything looks okay, apply power.
Figure   Figure
Click On Images To Enlarge

Operation
Once power has been applied to the schema, the Red LEDs should all be flashing on and off together. The Yellow LEDs should be flashing on and off, but only every other Yellow LED should be on at one time. The Green LEDs will stay on at all times. The flash rate can be adjusted by turning R9. Connections for a fixed value resistor for R9 are provided on the board layout if preferred.To dress up the project, a favorite photograph can be placed in the heart, and a frame can be made to fit the schema board.

Parts List



Resistors
R1, R2 - 470 ohm, 1/2-watt
R3-R5 - 100 ohm, 3-watt
R6-R8 - 1000 ohm, 1.4-watt
R9 - 5000 ohm potentiometer



Capacitors
C1, C2 - 100uF, 16 volts, electrolytic radial



Semiconductors
IC1 - 4047, low power monostable/astable multivibrator
Q1-Q3 - 2n3643 NPN transistor or equivalent



Diodes

LED1-LED84 - yellow light-emitting diode
LED85-LED126 - red light-emitting diode
LED127-LED142 - green light-emitting diode



Other components
PS1 - 12VDC @ 500mA wall transformer



Miscellaneous: Jumper wire, solder, printed schema board,
drill and bits,14 pin I.C. socket, and a frame or case.sourced by : link
Read More..

Thursday, August 28, 2014

The pair of transistors power amplifier

Already Know about the transistor above? transistor above is one of the transistors that are applied at the amplifier end audio amplifiers. Because the power output and good quality of this transistor is very popular with high-power amplifier makers.
Transistors on no other than is 2SC2922 and 2SA1216, transistor pair is already very well known as a reliable amplifier. With a price not too expensive and not too large transistor large is also very suitable. And this transistor has its own code for its quality, its code is like 5DY, 57P, 85Y, 92P, etc.. to see datsheet transistor can be seen below.

Maximum Voltage  180V
maximum collector current  17A
Total power output  200W
To more clearly and accurately datasheet can be found here.
Read More..

Saturday, August 23, 2014

Extend Timer Range For The 555

Anyone who has designed diagram using the 555 timer chip will, at some time have wished that it could be programmed for longer timing periods. Timing periods greater than a few minutes are difficult to achieve because component leakage currents in large timing capacitors become significant. There is however no reason to opt for a purely digital solution just yet. The schema shown here uses a 555 timer in the design but nevertheless achieves a timing interval of up to an hour! The trick here is to feed the timing capacitor not with a constant voltage but with a pulsed dc voltage. The pulses are derived from the un smoothed low voltage output of the power supply bridge rectifier.


The power supply output is not referenced to earth potential and the pulsing full wave rectified signal is fed to the base of T1 via resistor R1. A 100-Hz square wave signal is produced on the collector of T1 as the transistor switches. The positive half of this waveform charges up the timing capacitor C1 via D2 and P1. Diode D2 prevents the charge on C1 from discharging through T1 when the square wave signal goes low. Push-button S1 is used to start the timing period. This method of charging uses relatively low component values for P1 (2.2 MΩ) and C1 (100 to 200 µF) but achieves timing periods of up to an hour which is much longer than a standard 555 schema configuration.

Read More..

Friday, August 22, 2014

The parts of the Speaker

Basket (frame)
Made of a metal plate that will support all parts of the speaker where the speaker of the other speakers can be attached to the intact 

Magnet
Here is used to generate a magnetic field of permanent magnets to be used to drive the voice coil, so as to produce sound.

speaker
Parts of speaker
Voice Coil
Voice Coil is an important part of a speaker. Voice coil consists of Robbin (where rolled coil) and coil (the coil BWR - Brass Wire Rope), Coil is going to move in accordance with the signal diterirna.

Spieder or Damper
Spider or suspension dampers are used to speakers that serve to dampen the vibrations of the voice coil, so the voice coil can move freely.

Cone Paper
Paper Cone is part of the suspension of the speaker who serves simultaneously as an amplifier of vibration caused by the voice coil so it can form a clear voice signal received from the speakers.

Dust Cap
Dust Cap serves to channel sound vibration with paper cone and protect the inside of the speaker (where the air gap voice coil moves) from the dust and dirt.
see also : Subwoofer Amplifier
Read More..