5/01/2013

Measuring and Test Circuit 2N7002


                                    2N7002

Constant off-time switching regulators offer several advantages over constant-frequency designs The only potential problem is that the switching frequency Increases with nsmg input voltage In designs that have large ratios of the high line to low-line supply voltage,this frequency shift can get quite large As a result,the switching losses can become excesslve at high input voltages To offset this problem,the simple circuit shown detects the high input voltage condition and lowers the switching frequency to keep switching losses under control The frequency-shift circuit consists of D3,R8,Q1,and C12 When Vin exceeds the zener voltage plus the FET threshold,Q1 turns on and adds an extra timing capacitor(C12) in parallel with the timing capacitor (C10) This increases the off-time,lowering the frequency.

4/27/2013

LM393N integrated Circuits (ICs)

A TMOS power FET, Q1, and an LM393N comparator provide a high-efficiency rectifter circuit. When VA exceeds VB, U1's output becomes high and Q1 conducts. Conversely, when VB exceeds VA, the comparator output becomes low and Q1 does not conduct.

The forward drop is determined by Q1's on resistance and current I. The MTH40N05 has an on resistance of 0.028 Ω; for I = 10 A, the forward drop is less than 0.3 V. Typically, the best Schottky diodes do not even begin conducting below a few hundred mV.

4/26/2013

pulse signal interfaces EPC1PC8



The pulse signal examined is a driving signal of the power, used in the propulsion power to support, the drive current is usually several mA to several numerous mA, adopt the open-collector gate OC The form is exported, it is usually 12 – 30 V signal. For compatible many kinds of signal levels, and can isolate power type signal and ordinary base band level signal, realize better electromagnetic compatibility, this system adopts the photoelectric coupler as signal isolation and interface device of level switch.

TLP121 is the photoelectric coupler that Toshiba produced, isolates impedance as M grade, its drive current of forward direction IF Maximum 20 mA, rear end switch open and make time ‘s s grade, can respond to the request that the error in emasurement of this system pair is not greater than 1 ms. The input interface resistance is set as the adjustable resistance, can adapt to different input voltages.

The pulse signal interface circuit is shown as in Fig Straight line and loop of pulse signal are connected to the forward end 1, 3 pins of TLP121 in Fig of the photosensitive resister ,Rear end 4, 6 pins of TLP121 in Fig Adopt 5V power in the board to pull upward, sends and deals with FPGA to the interface after having a facelift through the Schmidt circuit 74HC14. When the pulse signal is effective, photosensitive resister forward end have electric current flow through, interface circuit export the intersection of high level and ” the 1 ” ; When pulse signal invalid, interface circuit export the intersection of low level and ” the 0 ” .

interface treatment FPGA

Because need to gauge pulse signals of No. 80, it is unable to meet concurrent processing’s demands to adopt the one-chip computer, so choose FPGA and finish the impulse sampling function. Interface deal with FPGA adopt the intersection of Altera and FLEX10K50 of Company, working primary frequency is 6 MHz, the storage chip adopts EPC1PC8.
Its main function has three parts: Frequency demultiplication timer, sampled data buffer, peripheral control logic. FPGA carries on the frequency demultiplication to the main clock, forms cycle as the clock signal of 1 ms. FPGA every ms finishes running side by side and gathers the pulse signals of No. 80 once, leaves the data in the register, send out the interrupt signal to the one-chip computer at the same time, notify the one-chip computer and initiate the data to move, and the time counter within the one-chip computer increases by oneself. The sampled data buffers the module and is used for latching the pulse signals of No. 80 to the internal register at the same time, the one-chip computers every ms all read once. Peripheral control logic is used in the decipher of every control signal of periphery of the one-chip computer, including control register, every chip control the signal interpretation, and the realization of other auxiliary functions.

4/25/2013

INA128, Adding -9V offset with reference pin BAV99


There is a bipolar (-10V/+10V) ADC on my circuit. And want to measure 0V to 5V signal with high empedance circuitry. To not loose ADC resolution I want to add a negative offset in INA128 circuit without using second amplifier. (0V to 5V  input;  -9V to 8.5V output) Theroticaly and experimentaly (using TINA-TI)  applying -9V to INA128 reference input solve my problem. Input and output voltage seems to be within specified limits but what about internal node voltages.

According to my calculation; when input is 5V and output is 8.5V,  A2 output node should be 11.25V.  But it seems difficult the reach this level with 12V supply. (Is it RRO)

Could you please clearify and make me sure for these ?

1.) Reference input is just intended for applying small offset nulling voltages or can I use it to apply higher offset ?

2. ) Using -9V offset is adequate for INA128 ? If yes how does it effect the CMRR ?

3.) Using 15V positive supply for INA128 allows me to apply -9V offset to reference pin if 12V supply is not enough?
a

( Diodes are BAV199 but not found in TINA-TI library so I used BAV99 instead. )

4/24/2013

MAX202CSE TRANSMITTER/RECEIVER

   


 MAX202CSE IL00 RS-232 TRANSMITTER/RECEIVER —TOP VIEW— 1 2 C1+ V+ C1+ 1 VCC 16 3 C1_ 4 6 C2+ V_ V+ 2 15 GND 5 C2_ C1_ 3 14 T1 OUT 11 14 T1 T1 10 7 T2 T2 C2+ 4 13 R1 IN 13 12 R1 R1 C2_ 5 12 R1 OUT 8 9 R2 R2 V_ 6 11 T1 IN R1, 2 : RECEIVER 1, 2 T1, 2 : TRANSMITTER 1, 2 T2 OUT 7 10 T2 IN R2 IN 8 9 R2 OUT +5 V 0.1 µF 0.1 µF INPUT 6.3 V + + 16 1 + 2 +10 V +5V to +10V 0.1 µF VOLTAGE DOUBLER 3 + 4 _10 V +10V to _10V 0.1 µF VOLTAGE INVERTER 6 0.1 µF 5 +16 V +5 V 400 K 11 14 T1 +5 V TTL/CMOS RS-232 INPUTS OUTPUTS 400 K 10 7 T2 12 13 R1 5 K TTL/CMOS RS-232 OUTPUTS INPUTS 9 8 R2 5 K 15

4/23/2013

Schematics LM358 Op Amp



In this schematic, a piezo is the sensor. Piezos generate voltage when physically bent or deformed, the the foltage is in the millivolt range. The direction that the piezo is deformed determines the polarity: bend it one way, get a positive voltage. Bend it the other way, get a negative voltage.


In this circuit, the piezo is put through a full-wave rectifier bridge (the four diodes) to make its voltage always positive. The output of the bridge is sent into one of the LM358's amplifiers that's configured as a voltage summing amp. The output of that amp is then fed into the other amp on the LM358 that's configured as a DC voltage gain amp. The output from the second amp is approximately 0.2 - 3.0 V DC.

4/22/2013

Epson Lx300 Printer Repair service-No Energy And Cannot Print -Max232ic Defective MAX232CWE



Cleansing with the thinner answer and utilized new solder solved the intermittent no strength issue. In this report, I would like you to know that not all strength difficulties should be brought on by main elements burnt. A free connections, dry joints, resistor wide open circuit, substantial esr ohms in electrolytic capacitor could result in intermittent no energy or no energy at all.

Troubleshooting with the appropriate tactics and using a excellent procedure would typically solve digital faults very easily. Yet another factor that I want to discuss with you is that the electrical power board is making use of a dual image coupler (optoisolator) NEC PS2561-two ic. There are two separate optoisolator ic built into one solitary bundle. If you have the ECG Philips master replacement guide e-book, you could discover out the interior diagram of this type of ic. After you identify the pinouts, you really could check it with your analog multimeter.

Often there are far more than handful of troubles that you want to fix. In the previously mentioned case, right after energy up the printer, it cannot print at all. It seems like there was no sign coming into the CPU IC. The printer self test operates completely ok. For your data, if this sort of problems transpires in other model of printer, the troubleshooting strategy is the same. I will very first seem at the conversation chip or buffer chip. In this printer, the primary suspect was the Maxim Max232cwe multi channel RS232 Transceivers ic.

Solder the ic out was not a dilemma in this smd kind ic. Right after the substitution with a new ic the printer functions wonderfully. Keep in mind, regardless of whether you are troubleshooting the Epson lx 300 printer or any other product, very first verify the printer cable and then the communication or buffer ic.

As you may possibly currently know, a rigid borescope is the finest option for you if you are searching for an affordable device that can look at inside of tight enclosed locations that could be achieved through a straight line. However, are you acquainted with the diverse parts and products which these devices use in order Epson Lx300 Printer Restore-No Electrical power And Can’t Print -Max232ic Faulty to give you with these high quality images? This article will search for to describe these diverse components to you in quick so you can far better recognize how these remarkable machines operate.

Initial of all, it makes use of an optical lens in purchase to transmit their pictures from one particular conclude of the insertion tube to the other, from the region you are inspecting straight to your eye. Even so, the object should initial be lit up ample so you are able to see it. The check is for viewing your results, the light-weight supply allows you to see in darkish locations, and the video clip digital camera will report your findings so you can Epson Lx300 Printer Repair-No Power And Can’t Print -Max232ic Defective view them afterwards. This also helps make it considerably How a Standard Rigid Borescope is Made less difficult to look at your findings with other individuals at the identical time.