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| Catalog Datasheet Results | Type | Document Tags |
| Abstract: I YOKE=10 A 140 mA Functional Block Diagram Allowable Power Dissipation vs Ambient Temperature , loop makes yoke current independent of yoke resistance changes caused by operating temperature variations. The flyback generator develops the high voltage required by the yoke for short flyback time and , Iyoke=10a - 51 - V Flyback Time - 3 lYOKE = 1-0 A - 0.6 0.8 ms Yoke Current - 3 - - 1.6 App Regulator , , Ice. 140 mA Flyback Time. 0.75 ms Yoke Current, lYOKE. 1.2 App ... | OCR Scan |
4 pages, |
ECG1289 flyback flyback feedback flyback screen circuit flyback tv generator 1 hz TV flyback philips flyback flyback driver circuit flyback current feedback yoke input diagram Philips ECG flyback yoke diagram Q00S14S ECG1289 Q00S14S abstract |
| Abstract: Internal connection diagram (BOTTOM VIEW) Yoke Permanent magnet Stationary contact Movable contact , are largely classified into those with permanent magnets on the yoke side of the driving coil and , recovery using an E-shaped yoke, JSL relays adopt Photo 1 External View Original Structure Bridge-type , yoke. Further miniaturization has been addressed for all types of latching relays by adopting a bridge magnetic circuit that requires no yoke to stabilize the magnetic circuit at recovery outside the ... | Original |
3 pages, |
electromagnetic lock yoke coil diagram datasheet abstract |
| Abstract: an output current up to 1.5 APP to drive the yoke. The internal flyback generator avoids the need , is amplified and applied as a current to the deflection yoke. This current is measured by means of a , the yoke current with the reference input signal. The overvoltage necessary for a fast retrace is , IN - VREF 15 100nF * Deflection yoke characteristics: R = 9, L = 12mH fVERT = 50 Hz , 56 1uF 0.9 Deflection Yoke* OPTIMWATTTM STV9382 STV9382 Functional Description Figure 1 ... | Original |
10 pages, |
yoke diagram STV9382 DIP20 class d amplifier schematic diagram china tv schematic diagram function of tv deflection section flyback data pin diagram deflection yoke STV9382 abstract |
| Abstract: before soldering. 2. Tolerance of P.C.B. layout: ±0.1 mm. 3 yoke terminal rHZI -npsrip- â-¡ T â-¡ -nnnnp- â-¡ T â-¡ -w- â-¡ o 2 yoke terminal -T5TÃŒP- to -nnnnp- t-n -OOTTP- -â-¡ O 1 c 1b 1a Wiring Diagram , number-Special requirement Yoke Terminal Arrangement: Nil-3 yoke terminal, 1 -2 yoke terminal , : SARB Outline Dimensions, Wiring Diagram, P.C. Board Layout (unit: mm) Sealed type 21 TOnUlT 25.5 Open ... | OCR Scan |
3 pages, |
rele 5 volt yoke coil diagram datasheet abstract |
| Abstract: drive the yoke. The internal flyback generator avoids the need for an extra power supply. 20 , is amplified and applied as a current to the deflection yoke. This current is measured by means of a , the yoke current with the reference input signal. The overvoltage necessary for a fast retrace is , 10k 1k Deflect. Yoke* 200 Pins 1, 2, 3, 18, 19 and 20 9 11 SGND 10 FEEDCAP 560pF 17 FREQ -VCC -VCC power 470pF 4.7nF 10k 100nF * Deflection yoke ... | Original |
10 pages, |
DIP20 STV9383 12 pin flyback monitor STV9383 abstract |
| Abstract: to drive the yoke. The internal flyback generator avoids the need for an extra power supply. 20 , is amplified and applied as a current to the deflection yoke. This current is measured by means of a , the yoke current with the reference input signal. The overvoltage necessary for a fast retrace is , 10k 1k Deflect. Yoke* 200 Pins 1, 2, 3, 18, 19 and 20 9 11 SGND 10 FEEDCAP 560pF 17 FREQ -VCC -VCC power 470pF 4.7nF 10k 100nF * Deflection yoke ... | Original |
10 pages, |
STV9380A DIP20 STV9380A abstract |
| Abstract: TDA1170 TDA1170 CONNECTION AND BLOCK DIAGRAMS SCHEMATIC DIAGRAM TDA 1170 THERMAL DATA Rth ¡-tab Thermal , lY Peak to peak yoke current (pin 4) 1.6 A V4 Flyback voltage lY = 1A 51 V V8 Peak sync, input , / / / 20 «0 60 80 100 Tub(-C) 500 TDA 1170 APPLICATION INFORMATION The thermistor in series to the yoke is not required because the current feedback enables the yoke current to be independent of yoke , generator applies a voltage, about twice the supply voltage,to the yoke. This produces short flyback time ... | OCR Scan |
11 pages, |
yoke input diagram O-1602 TDA1170 flyback tv tda 1170 TDA1170 abstract |
| Abstract: operates with supplies up to ±18 V and provides an output current up to 1.5 APP to drive the yoke. The , applied as a current to the deflection yoke. This current is measured by means of a low value resistor. The resulting voltage is used as a feedback signal to guarantee the conformity of the yoke current , FEEDCAP EA out 12 13 +VCC 100nF so Ob te le * Deflection yoke characteristics: R = , 0.9 Deflection Yoke* OPTIMWATTTM STV9382 STV9382 Functional Description Figure 1: Test and ... | Original |
10 pages, |
STV9382 function of tv deflection section DIP20 STV9382 abstract |
| Abstract: PACKAGE BLOCK DIAGRAM NT4118-A NT4118-A 1/16 THOMSON-EFCIS Salts headquarters 45, av. de l'Europe - 78140 , PLASTIC PACKAGE THOMSON-EFCIS Integrated Circuits 3/16 145 TEA 2015 A SCHEMATIC DIAGRAM a 4)16 146 , UNITS YOKE FEATURES PIL S4 Resistance Rd Inductance Ld Peak to peak yoke current Iqq 15 30 0,9 n mH , WITH SERIES COILS f PARAMETERS SYMBOLS TEST CONDITIONS MIN. TYP. MAX. A UNITS YOKE FEATURES SERIES COILS Resistance Rd Inductance Ld Peak to peak yoke current 14 28 0,6 n mH A Supply voltage ... | OCR Scan |
16 pages, |
tv Integrated circuits flyback transformer pin configuration tv flyback flyback transformer pin connections TEA Series NT4118-A yoke diagram color tv schematic diagram flyback transformer tv block diagram of black and white t.v flyback tv configuration synchro amplifier schematic TEA2015 TEA2015 abstract |
| Abstract: applications such as DC servos, capstan drivers, deflection yoke drivers, and programmable power supplies. , , diddle yoke driver for alpha-numeric CRT displays, cable drivers, and programmable power supplies for , and LH0041 LH0041 Care guaranteed frpm - 25°Cto +85°C. CONNECTION DIAGRAM O - NON INV. ® IP v- 1 NC , dimensions. CONNECTION DIAGRAM See outline drawing No. 95 for dimensions. ABSOLUTE MAXIMUM RATINGS ... | OCR Scan |
1 pages, |
LH0041CG LH0041C10 LH0041C LH0041 LH0021CK LH0021C LH0021 LH0041CJ yoke diagram 29589X 34501G 34380D LH0021C abstract |
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| Format Devices description The L6380 L6380 L6380 L6380 and L6381 L6381 L6381 L6381 (internal block diagrams in figg.1a and 1b) are , synchronously driven with the low side gate driver. The L6384 L6384 L6384 L6384 (Internal diagram in fig.2) is a half bridge used in motor controls, resonant conver ters and lighting applications. In fig.3 the schematic diagram DEAD TIME V CC Idt Vthi BOOTSTRAP DRIVER C BOOT 4 3 5 6 7 8 1 2 Figure 2. L6384 L6384 L6384 L6384 Internal Block Diagram R7 R6 R4 R5 C6 W1 W2 C5 CN1 CN3 CN2 D1 Figure 3. L6384 L6384 L6384 L6384 Schematic diagram of the evaluation circuit www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5641-v2.htm |
STMicroelectronics | 14/06/1999 | 8.61 Kb | HTM | 5641-v2.htm |
| Format Devices description The L6380 L6380 L6380 L6380 and L6381 L6381 L6381 L6381 (internal block diagrams in figg.1a and 1b) are , synchronously driven with the low side gate driver. The L6384 L6384 L6384 L6384 (Internal diagram in fig.2) is a half bridge used in motor controls, resonant conver ters and lighting applications. In fig.3 the schematic diagram DEAD TIME V CC Idt Vthi BOOTSTRAP DRIVER C BOOT 4 3 5 6 7 8 1 2 Figure 2. L6384 L6384 L6384 L6384 Internal Block Diagram R7 R6 R4 R5 C6 W1 W2 C5 CN1 CN3 CN2 D1 Figure 3. L6384 L6384 L6384 L6384 Schematic diagram of the evaluation circuit www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5641-v1.htm |
STMicroelectronics | 02/04/1999 | 8.65 Kb | HTM | 5641-v1.htm |
| Time-delay relays Vacuum relays Wear Weibull diagrams Wiping relays Yoke 10° rule www.datasheetarchive.com/files/matsushita/online/english/relaytec/fachb/fachb.htm |
Matsushita | 26/10/1998 | 5.58 Kb | HTM | fachb.htm |
| . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 1/23 AN373-01 AN373-01 AN373-01 AN373-01.EPS Figure 1 : Block Diagram of a General Deflection Stage 1 suitable to drive the vertical deflection yoke. In Figure 1 is represented the more general possi- ble block diagram of a device performing the verti- cal deflection. Such a device will be called on the yoke. If both of them are present a blanking pulse is generated able to blank the CRT circuit of the yoke, the absence of the flyback pulse puts the circuit in such a condition that a www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1654-v3.htm |
STMicroelectronics | 25/05/2000 | 44.22 Kb | HTM | 1654-v3.htm |
| . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 1/23 AN373-01 AN373-01 AN373-01 AN373-01.EPS Figure 1 : Block Diagram of a General Deflection Stage 1 - INTRODUCTION drive the vertical deflection yoke. In Figure 1 is represented the more general possi- ble block diagram of a device performing the verti- cal deflection. Such a device will be called "complete presence of the clock pulse coming from the oscillator stage and the flyback pulse on the yoke. If both vertical deflection would fail, for instance for a short circuit or an open circuit of the yoke, the www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1654.htm |
STMicroelectronics | 20/10/2000 | 47.27 Kb | HTM | 1654.htm |
| vertical deflection yoke. In Figure 1 is represented the more general possi- ble block diagram of a device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 1/23 AN373-01 AN373-01 AN373-01 AN373-01.EPS Figure 1 : Block Diagram of a General Deflection Stage 1 - INTRODUCTION In a presence of the clock pulse coming from the oscillator stage and the flyback pulse on the yoke. If both of deflection would fail, for instance for a short circuit or an open circuit of the yoke, the absence of the is realized with a differential circuit; a schematic diagram is represented in Figure 5. The open www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1654-v2.htm |
STMicroelectronics | 14/06/1999 | 42.28 Kb | HTM | 1654-v2.htm |
| vertical deflection yoke. In Figure 1 is represented the more general possi- ble block diagram of a device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 1/23 AN373-01 AN373-01 AN373-01 AN373-01.EPS Figure 1 : Block Diagram of a General Deflection Stage 1 - INTRODUCTION In a presence of the clock pulse coming from the oscillator stage and the flyback pulse on the yoke. If both of deflection would fail, for instance for a short circuit or an open circuit of the yoke, the absence of the is realized with a differential circuit; a schematic diagram is represented in Figure 5. The open www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1654-v1.htm |
STMicroelectronics | 02/04/1999 | 42.32 Kb | HTM | 1654-v1.htm |
| . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 II.1.1 Block Diagram generator for direct drive of the vertical deflection yoke. The TEA2037A TEA2037A TEA2037A TEA2037A is particularly well-suited for yoke current to be boosted to 2A peak- to-peak. II - FUNCTIONAL DESCRIPTION OF TEA2037A TEA2037A TEA2037A TEA2037A II.1 direct drive of the frame yoke. The following functional blocks are implemented on-chip : - Line deflection yoke and also enable appropriate use of the flyback generator, the frame amplifier is powered www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1618-v2.htm |
STMicroelectronics | 25/05/2000 | 36.69 Kb | HTM | 1618-v2.htm |
| . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 II.1.1 Block Diagram drive of the vertical deflection yoke. The TEA2037A TEA2037A TEA2037A TEA2037A is particularly well-suited for low- cost monitors mounted on TEA2037A TEA2037A TEA2037A TEA2037A will enable the vertical deflection yoke current to be boosted to 2A peak- to-peak. II darlington transistor and direct drive of the frame yoke. The following functional blocks are implemented on implemented by the on-chip shunt regulator. In order to optimize the drive to frame deflection yoke and also www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1618-v1.htm |
STMicroelectronics | 02/04/1999 | 34.87 Kb | HTM | 1618-v1.htm |
| . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 II.1.1 Block Diagram for direct drive of the vertical deflection yoke. The TEA2037A TEA2037A TEA2037A TEA2037A is particularly well-suited for low , addition of a heatsink mounted on TEA2037A TEA2037A TEA2037A TEA2037A will enable the vertical deflection yoke current to be boosted signals required for the line scanning darlington transistor and direct drive of the frame yoke. The . In order to optimize the drive to frame deflection yoke and also enable appropriate use of the www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1618.htm |
STMicroelectronics | 20/10/2000 | 38.65 Kb | HTM | 1618.htm |