Showing posts with label usb. Show all posts
Showing posts with label usb. Show all posts
Thursday, October 23, 2014
Schematic diagram of a USB player
Usb series player is an electronic device or electronic circuit that functions as an MP3 player that is stored on a storage device such as USB flash.In this usb circuit using an IC as a modifier of digital voice data into analog so that it can be applied to a headphone, or again through the power amlplifier strengthened so that it can be heard through the speakers. IC used in this circuit using IC PCM2902 as a modifier of a digital data into analog data storage.
Below is a schematic diagram of a USB player.
| Schematic usb player |
Thursday, August 28, 2014
Green USB switch
Green USB switch Circuit Diagram. According to the Energy Saving Trust, if you add up all the current drawn in standby mode by items such as stereos, TVs, VCRs and DVDs over a year in the UK alone, it amounts to 3.1 million tonnes of CO2 released into the atmosphere.This is without factoring in the current drawn by all the PCs,laptops and their associated peripherals left in standby mode.
Circuit diagram :
Green USB switch Circuit Diagram
It is not necessary to spend a great deal of money or time to make a difference on a personal level. The schema described here is designed for use by laptop or notebook computers. It will automatically switch off all mains powered peripheral equipment including monitor, printer, scanner, TV tuner and USB hub etc when it detects that the notebook is switched off. The schema is quite straightforward; in addition to an optocoupler it requires a 12 V double-pole relay with mains rated contacts and a small power supply for the optocoupler. When the laptop is switched on 5 V appears at the USB socket, activating the relay and switching through the mains supply on K3 and K4. The notebook’s USB socket is still available to be used as normal but it’s worth remembering that the optocoupler takes a few milliamps from the USB supply and this may cause a problem if a high-current device is plugged into the USB socket. In the case where the laptop has more than enough USB sockets it may be worthwhile us-ing one of them solely for this schema, the extension USB connector K2 would then not be required.
The schema is mounted into a mains plug enclosure which provides a socket where the mains extension strip will be plugged into. With any luck there will be sufficient space to fit the entire schema into the mains extension strip enclosure and save the need for a separate enclosure. The slow-blow 6.3-A fuse (F1) protects the equipment plugged into the strip.
In addition to the optocoupler and relay the schema also has a ‘freewheel’ diode D1 and a relay driver formed by T1 and its base bias voltage divider network R2/ R4. The two ‘snubber’ networks C1/R3 and C2/R5 reduce the possibility of arcing which can occur when the relay contacts open (especially with inductive loads). Capacitors C1 and C2 must be class X2 types which can handle mains voltage plus any spikes. The power supply consists of a small mains trans-former (12 V, 50 mA), bridge rectifier and smoothing capacitor C3.
The laptop’s mains adaptor itself can also be switched by this schema when the laptop is fitted with its rechargeable battery which allows the computer to boot up without a mains supply. The en-tire USB switch schema draws cur-rent even when it is off but this value is tiny compared to the combined standby current of all the peripherals.
Note that parts of this schema are connected to the (potentially lethal) mains supply voltage; it is essential to provide protection to ensure that nothing can accidentally make contact with these parts of the schema. It is also important to observe correct separation between parts of the schema carrying low voltage and those carrying the high volt-age. Please observe the electrical Electrical Safety guide-lines which are reprinted in Elektor Electronics several times a year.
The schema is less suitable for use with desktop PCs be-cause the majority of these machines supply 5 V over the USB socket even though they have been shut down via soft-ware. The only way to turn off in this case is to reach around the back of the machine and switch off at the main switch.
Author : Wolfram Winfera - Copyright : Elektor
Tuesday, August 26, 2014
USB powered battery charger circuit
At this time I will share about the series used in the usb to charge battery. Issued voltage 4.7 Volt to 5 Volt DC suitable for battery charge the phone, as well as other batteries.
Below is a circuit where the voltage is removed the usb on the computer will be strengthened by several components so that the voltage used to charge batteries more powerful and filtered, and will make it more durable and long lasting.
Part List :
R1 = 1 K
R2 = 330 R
R3 = 4K7
R4 = 300 R
R5 = 27R
D1 = 4.7 volt zener /1W
C1 = 100uF/16V
Q1 = BC548
Q2 = BC558A
R3 = 4K7
R4 = 300 R
R5 = 27R
D1 = 4.7 volt zener /1W
C1 = 100uF/16V
Q1 = BC548
Q2 = BC558A
Saturday, August 23, 2014
USB cable signals
USB cable consists of 4 wires plus a conductor wire wrapping, such as the protectors are usually found in the audio cable. Cable number 1 is used to channel resources to the voltage of 5 volts, if necessary USB devices may draw power from this line and should not exceed 100 mA. Computer equipped with USB capability, is required to provide power at 100 mA for this purpose. USB devices that require more power than the aforementioned provisions, must provide their own resources for the purposes work equipment.
| The USB cable signals |
Number 4 is the ground cable as a back channel source voltage of 5 volts. Cable number 2 and number 3 is used for signal transmission. No. 2 cable and cable called D-3 numbers called D, the voltage on the two channels is changed between 0 Volt and 3.3 Volt. Digital signal is sent through the two channels are said to be difference signal, which means that the signal digital 0 or 1 is not declared to the magnitude of the voltage on the channel to the ground, as well as digital signals used in the IC TTL (transistor Transitor Logic) or the RS232 channel.
Digital signal is expressed by the voltage difference between the two cables. If the voltage on the D channel is higher than the voltage at D-channel, then the information transmitted digital signal is 1 , otherwise the digital signal 0 is expressed by the voltage at D <voltage at D-. To distinguish the speed of data transmission, the channel USB devices attached to the 3.3 Volt prisoners in different ways, as shown in Fig.
At low speed USB devices, the D-channel to 3.3 Volt dipasangan custody, or in the absence of information transmission, the channel is in state 0 . For full speed USB device, such resistance is connected to the D channel, so that in the absence of data transmission channels are in state 1 .
Sunday, August 17, 2014
Simple Programmer AVR Your USB Wiring diagram Schematic
This Simple Programmer AVR Your USB Circuit Diagram is a design of a programmer Atmel AVR microcontrollers that uses a driver firmware that makes the programmer is attractive to many amateurs. Another advantage of this programmer and becomes popular is because it is officially included and supported in WinAVR.
AVR programmer via USB
You can download PCB and various schema configurations directly from the website http://www.fischl.de/usbasp/.
Scheme
PC connection -> USBasp -> Target Board
AVR programmer via USB
You can download PCB and various schema configurations directly from the website http://www.fischl.de/usbasp/.
Scheme
PC connection -> USBasp -> Target Board

Programmer AVR Your USB Circuit Diagram
USB Power Injector
Create USB PowerInjector for GSM Modem Maximizing and stabilization USB voltage .
Sometimes we need also to extend the USB cable connection. Usually cable so the store is no more or less than one meter. If the cable is good quality automatic reduction of voltage and current remain so flash media or a modem to function remained normal.
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Friday, August 15, 2014
USB sound card with PCM 2702


Designing and building a USB sound card longer a head ache got the PCM 2702 integrated circuit from Texas Instruments. The PCM2702 is an integrated bit digital to analog converter that has digital to analog output channels. The integrated interface controller of PCM2702 is compliant to the USB .0 standards. The IC handle sampling rates of KHz, 44.1 KHz and KHz. The IC of helpful like on-chip clock generator, digital attenuator, play back flag, suspend flag, zero flag, mute etc. is that this circuit is plug & play and doesn’t any driver software for Windows XP and Windows Vista operating systems.
The circuit gets and audio from the USB through the D+ and D- pins of the PCM2702 all transferring is at full speed. The decoded audio signals at the VOUTL and VOUTR pins of the IC. The 12MHz crystal is connected between the XT0 and XT1 pins of the IC. The VBUS (USB bus power) pin and DGND (digital ground) pins of the IC are connected to the +5V and ground pins of the USB respectively. The circuit +5V DC and +3.3V DC for operation and voltages derived from the USB port using LDO (low drop out) voltage regulators (not shown in circuit).
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