Showing posts with label battery. Show all posts
Showing posts with label battery. Show all posts

Friday, December 12, 2014

Battery Charger for NiCad Batt

charger

This battery charger circuit is designed for recharging NiCad batteries based on an AC-powered current source method.It can crank out as much as 1 amp and can be modified to go even higher by choosing different devices for Q1. Since this circuit uses AC line voltages and currents, please exercise extreme caution during assembly, turn-on, and test. 
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Saturday, November 8, 2014

Making a Solar Energy with iPhone Battery Charger

For faster charging, a larger solar cell can be attached to the bag. Enough power can be generated to fully charge an iPhone in about 5.5 hours and an iPod Touch in 4 hours using a slightly larger solar cell with 6V at 250mAh. The charger will automatically switch to trickle charging when the cell reaches full charge. The charging current is limited to 100mA when charging using the mini USB port and the charging is limited to 280mA when charging using the barrel plug jack
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Thursday, October 30, 2014

12V Battery Checker Circuit

This is a 12V battery checker circuit that uses 3 LEDs that light up at their respective voltages. The red LED lights up when the battery voltage is between 8 to 10V, the orange one at voltages between 10.5V to 12V and the green one when the battery voltage is above 12.5V.

This is a tried and tested battery checker circuit using one NPN and one PNP transistor. A PCB is given along with the schematic.

12V

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Thursday, September 18, 2014

Fuse Box Ford 1994 1998 Mustang Battery Junction Diagram

Fuse Box Ford 1994-1998 Mustang Battery Junction Diagram - Here are new post for Fuse Box Ford 1994-1998 Mustang Battery Junction Diagram.

Fuse Box Ford 1994-1998 Mustang Battery Junction Diagram



Fuse
Fuse

Fuse Panel Layout Diagram Parts: constant control relay, main light switch, multifunction switch, starter motor relay, instrument cluster, ABS module, instrument panel, reversing lamp, speed control, daytime running light, ABS module, auxiliary power point, main light switch, rear window defrost, power door lock, CD player, horn, power seat switch, generator, constant control relay, intake manifold relay module.
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Tuesday, September 9, 2014

Solar Powered SLA Battery Maintenance

This schema was designed to ‘baby-sit’ SLA (sealed lead-acid or ‘gel’) batteries using freely available solar power. SLA batteries suffer from relatively high internal energy loss which is not normally a problem until you go on holidays and disconnect them from their trickle current charger. In some cases, the absence of trickle charging current may cause SLA batteries to go completely flat within a few weeks. The schema shown here is intended to prevent this from happening. Two 3-volt solar panels, each shunted by a diode to bypass them when no electricity is generated, power a MAX762 step-up voltage converter IC. 


Solar
Solar Powered SLA Battery Maintenance Circuit Diagram

The ‘762 is the 15-volt-out version of the perhaps more familiar MAX761 (12 V out) and is used here to boost 6 V to 15 V.C1 and C2 are decoupling capacitors that suppress high and low frequency spurious components produced by the switch-mode regulator IC. Using Schottky diode D3, energy is stored in inductor L1 in the form of a magnetic field. When pin 7 of IC1 is open-schemaed by the internal switching signal, the stored energy is diverted to the 15-volt output of the schema. The V+ (sense) input of the MAX762, pin 8, is used to maintain the output voltage at 15 V. C4 and C5 serve to keep the ripple on the output voltage as small as possible. R1, LED D4 and pushbutton S1 allow you to check the presence of the 15-V output voltage.

D5 and D6 reduce the 15-volts to about 13.6 V which is a frequently quoted nominal standby trickle charging voltage for SLA batteries. This corresponds well with the IC’s maximum, internally limited, output current of about 120 mA. The value of inductor L1 is not critical — 22 µH or 47 µH will also work fine. The coil has to be rated at 1 A though in view of the peak current through it. The switching frequency is about 300 kHz. A suggestion for a practical coil is type M from the WEPD series supplied by Würth (www.we-online.com). Remarkably, Würth supply one-off inductors to individual customers. At the time of writing, it was possible, under certain conditions, to obtain samples, or order small quantities, of the MAX762 IC through the Maxim website at www.maxim-ic.com.
Author : Myo Min
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Wednesday, August 27, 2014

Battery Powered High voltage Generator Wiring diagram Schematic

This is the battery powered high-voltage generator schema diagram. Output voltage great enough to jump a l-inch gap can be obtained from a 12-V power source. A 555 timer IC is connected as an stable multi vibrator that produces a narrow negative pulse at pin 3. The pulse turns Ql on for the duration of the time period. The collector of Ql is direct-coupled to tbe base of tbe power transistor Q2, turning it on during the same time period. 

The emitter of Q2 is direct -coupled through current limiting resistor R5 to the base of the power transistor. Q3 switches on, producing a minimum resistance between the collector and emitter. The high-current pulse going through tbe primary of high-voltage transformer Tl generates a very high pulse voltage at its secondary output terminal (labeled X). The pulse frequency is determined by tbe values of Rl, R2, and C2. The values given in the parts list were chosen to give the best possible performance when an auto-ignition coil is used for Tl. 

Battery Powered High-voltage Generator Circuit Diagram

Battery
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Thursday, August 21, 2014

NiCad Battery Charger

NiCad

This simple and low cost battery charger uses a single transistor as a constant current source. The voltage across the pair of 1N4148 diodes biases the base of the BD140 medium power transistor. The base-emitter voltage of the transistor and the forward voltage drop across the diodes are relatively stable. The charging current is approximately 15mA or 45mA with the switch closed. This suits most 1.5V and 9V rechargeable batteries.

The transformer should have a secondary rating of 12V ac at 0.5amp
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Wednesday, August 20, 2014

5v Powered Charge Pump Battery Charger

The schema below will trickle charge a four cell pack of AA or AAA NiMH batteries.  The schema draws current from the +5v available a USB connection and pumps about 70ma of current into the battery. This should be enough current to fully charge a pack of 2500ma-hour cells in about 36 hours.  The schema uses a single 74HC14 hex Schmitt trigger inverter in conjunction with a voltage doubler charge pump schema.

Circuit
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Monday, August 11, 2014

Battery charger with LM317 Wiring diagram Schematic

Battery charger with LM317 Circuit Diagram. An LM317 voltage regulator is configured as a constant-current source. It is used to supply the 50 mA charging current to S01-S06, an array of AA-cell battery holders. Each of the battery holders is wired in series with an LED and its associated shunt resistor. When the battery holder contains a battery, the LED glows during charging. Each battery holder/LED combination is paralleled by a 5.1-volt Zener diode. If the battery holder is empty, the Zener conducts the current around the holder. 

A timing schema prevents overcharging. When power is applied to the schema, timing is initiated by IC2, a CD4541 oscillator/programmable timer. The output of IC2 is fed to Ql. When that output is high, the transistor is on, and the charging schema is completed. When the output is low, the transistor is off, and the path to ground is interrupted. 

 Battery charger with LM317 Circuit Diagram


Battery charger with LM317 Circuit Diagram
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