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| Abstract: illustration of an application example is also given. The STEVAL-IFS007V1 STEVAL-IFS007V1 can be considered a system , placed to furnish a local alert when an object is close to a coil. At this end, the circuit parameters , parameter tuning and on the circuit and device functionality, please refer to the TDA0161 TDA0161 device datasheet. , . . . . . . . . . . . . . . . . . . . . 5 Proxy board application example . . . . . . . . . . . . , . . . . . . . 5 Application example using two STEVAL-IFS007V1 STEVAL-IFS007V1 boards and the related auxiliary ... | Original |
9 pages, |
TDA0161DP TDA0161 BC337-25 BC337 1N4007 Q1 BC337 BC337 circuit example UM0526 STEVAL-IFS007V1 STEVAL-IFS007VA UM0526 abstract |
| Abstract: with a single integrated circuit. Table 1 below lists some of the possible meter configurations , PM2007MSE PM2007MSE module The PM2007MSE PM2007MSE module is setup for use with the SA2007M SA2007M integrated circuit. Resistor , integrated circuit are the current sense resistors, the voltage sense resistors and the bias setting , connected to J8, the polarity of MOP and MON does not matter. A transistor driver circuit is used to drive , CT's with a ratio of 25 00:1 the resistor values are calculated as follows: CIRCUIT DESCRIPTION ... | Original |
10 pages, |
resistor 4.7 k SA2007H SA2007M transistor BC337 capacitor 470uf 16v ct kwh meter 3 phase 470uf, 25v electrolytic capacitor transformer 240v A 12V stepper motor termination diagram SA2007P resistor network transformers 240v to 12v diode sm4007 -MELF SA2007M abstract |
| Abstract: APPLICATION NOTE LPR30 LPR30 LINEAR CONTROLLER ABSTRACT This paper proposes an integrated circuit , and the operating mode of the IC, while the second suggests an application example based on an , discrete Power MOSFET, integrating all the control functions in a single monolithic circuit. The main functions that this integrated circuit has to carry out are the output voltage control and the output , difference exists at its inputs. 4. VOLTAGE REFERENCE BLOCK Uses a band - gap circuit in order to improve ... | Original |
14 pages, |
4.7kohm trimmer 80N03L-06 BC337 80N03L LPR30 schematic diagram ac power regulator HCF40106 N BUZ11 HCF40106 transistor bc337 buz11 application note buz11 r5 80n03 IC 40106 LPR30 abstract |
| Abstract: the system is stopped somehow. In this application note a design example of such a system, based on , due to a short circuit), converter's shutdown must occur within 10 ÷100 ms. A power peak lasting 0.5 , overcurrent limiting circuit must allow Poutpk to pass, hence its setpoint needs to be greater than the , demand from a normal load condition and detecting a short circuit as well as realizing the required , transformer and adding the slope compensation circuit, an attempt can be done using a larger C1. Assuming ... | Original |
7 pages, |
1N4148 AN1686 BYW29-200 BYW29-200 zener diode BZW06-154 DF04M PC917 STP7NB60 STTA106 l5991 philips 3C85 Philips Components, transformer core pwm lm393 controller T2A250V AN1686 abstract |
| Abstract: 2A SPP11N60S5 SPP11N60S5 600V/380m Q67040-S4198 Q67040-S4198 BC337-16 BC337-16 BD440 BD440 alt:BD140-10 BD140-10 BC337-16 BSP296 BSP296 (100V/0,8)/BUZ 72A Q67000-S067 Q67000-S067 BC337-16 BC337-16 BC337-16 BC337-16 BSS 129 (240V/20;Depletion , ] [A] [mT] Example 1 100 400 0,50 100 100 120 0,8 150,00 28 120 6,00 69,44 12,42 , PS TM 1 Test Results of TDA 16850 in Application Circuit with Standby Mode Rel.11 7/99 , PS TM 1 Test Results of TDA 16850 in Application Circuit with Standby Mode Rel.11 7/99 ... | Original |
12 pages, |
b81121cb1 mkt epcos 100V BZX83 E42/21/20 E42 CORE FOR 20KHZ TRANSFORMER diode BYW 66 DIODE t42 82 B41822-A5107-M B81121-C-B 100v mkt B81121-c -b129 b43822 1nf 100v mkt B250C5000/3300 F/250V B250C5000/3300 abstract |
| Abstract: Example Design - Circuit , illustrates a typical RDFC application circuit. Using this guide, the user can quickly select component values , fully worked RDFC design example (which was created using this guide) is described in section 5 (page 24). Figure 1: Typical RDFC Application Circuit Page 1 © Cambridge Semiconductor Ltd 2009 , .22 Short Circuit Load - Foldback ... | Original |
36 pages, |
362 SOT23-6 AN-2276 NTC 4,7 varistor BC337 circuit example forward converter E19 CORE TRANSFORMER C2473PX1 Core Bobbin E19 E16 10 pin bobbin transformers E16 CORE TRANSFORMER 6 pin MJE130 rht-2 DS-1423 C2472PX2 C2473PX1 C2472PX2 abstract |
| Abstract: (s) t BC337 4.7 nF VFB ro P e RL 22 k RE 2 k Figure 19. LEB circuit for , Start-up circuit and Internal Supply When power is first applied to the circuit the voltage on the bulk , is powered by the energy stored in the VCC capacitor until the self-supply circuit (typically an , , during the ON-state of the power FET, has a voltage below VCC. The residual consumption of this circuit , conditions, compared to a standard start-up circuit made with an external dropping resistor. (s) ct du ... | Original |
28 pages, |
AWG23 schematic diagram tv sharp SMD optocoupler IC PC817 tl431 and pc817 TV flyback transformer pinout high voltage CRT transformer generators winding circuit diagrams N67 ferrite E16/8/5 transformer 4 pin size optocoupler IC PC817 pin details cxb 100 transformer BC337 circuit example AN1261 L6590 AN1261 abstract |
| Abstract: Vcc RH 3 M L6590 L6590 L6590D L6590D BC337 4.7 nF VFB RL 22 k RE 2 k Figure 19. LEB circuit , important internal functions will be described in details. Start-up circuit and Internal Supply When power is first applied to the circuit the voltage on the bulk capacitor builds up and, as it reaches , stored in the VCC capacitor until the self-supply circuit (typically an auxiliary winding of the , consumption of this circuit is just the one on the 15M resistor (10 mW at 400Vdc), typically 50-70 times ... | Original |
28 pages, |
schematic diagram tv sharp RK 94 SMD pc817 application notes 48 VOLT 10 AMP smps Self Oscillating Flyback Converters 3L60S offline switcher Isolated Feedback Generator an 1N4148 SMD PACKAGE SMD optocoupler IC PC817 L6590D ntc 100-9 AN1261 L6590 AN1261 abstract |
| Abstract: BC337 4.7 nF VFB RL 22 k RE 2 k Figure 19. LEB circuit for leakage inductance spikes , important internal functions will be described in details. Start-up circuit and Internal Supply When power is first applied to the circuit the voltage on the bulk capacitor builds up and, as it reaches , stored in the VCC capacitor until the self-supply circuit (typically an auxiliary winding of the , consumption of this circuit is just the one on the 15M resistor (10 mW at 400Vdc), typically 50-70 times ... | Original |
28 pages, |
1N4148 1N4148 SMD PACKAGE AN1261 AWG23 BC327 BC337 ferrite n67 L6590 L6590A L6590D optocoupler IC PC817 SO16W offline switcher TSM103 AN1261 abstract |
| Abstract: L6590 L6590 L6590D L6590D BC337 4.7 nF VFB RL 22 k RE 2 k Figure 19. LEB circuit for leakage , circuit and Internal Supply When power is first applied to the circuit the voltage on the bulk capacitor , powered by the energy stored in the VCC capacitor until the self-supply circuit (typically an auxiliary , voltage below VCC. The residual consumption of this circuit is just the one on the 15M resistor (10 mW at 400Vdc), typically 50-70 times lower, under the same conditions, compared to a standard start-up circuit ... | Original |
28 pages, |
TSM103 AN1261 AWG23 BC327 BC337 bc337 equivalent SMD ferrite n67 L6590 L6590A L6590D N67 TRANSFORMER SMD optocoupler IC PC817 SO16W 1N4148 AN1261 abstract |
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| MULT COMP INV GND ZCD CS GD R sense 10 k W DISABLE BC337 L o TO THE couple of examples are shown in fig. 5. The operation of the circuit of fig. 4 will be now de proper operation. In figure 3, a real example of a mag amp regulator for a 3.3V power rail is shown nt limiting circuit, which includes also the overcurrent comparator with open collector output. The ensure a safe operation also under short circuit conditions with maximum input voltage, the mag amp www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5657-v3.htm |
STMicroelectronics | 25/05/2000 | 16.44 Kb | HTM | 5657-v3.htm |
| design that must be accounted for in order to ensure a proper operation. In figure 3, a real example of sense resistor Rsense is part of the curre nt limiting circuit, which includes also the overcurrent summariz ed. To ensure a safe operation also under short circuit conditions with maximum input voltage T1 6 1 2 3 8 5 4 7 Vsupply MULT COMP INV GND ZCD CS GD R sense 10 k W DISABLE BC337 L o TO THE OUTPUT STAGE OF THE 5V POWER RAIL 10 mF MAIN TRANSFORMER Figure 4. L6561-based www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5657.htm |
STMicroelectronics | 20/10/2000 | 16.8 Kb | HTM | 5657.htm |
| DISABLE BC337 L o TO THE OUTPUT STAGE OF THE 5V POWER RAIL 10 mF MAIN TRANSFORMER Figure 4. L6561-based accounted for in order to ensure a proper operation. In figure 3, a real example of a mag amp regulator for is part of the curre nt limiting circuit, which includes also the overcurrent comparator with open short circuit conditions with maximum input voltage, the mag amp core must be overdesigned (typically by gate-drive voltage on the duty cycle. The control circuit is based on the L6561 L6561 L6561 L6561, a 8-pin Transition www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5657-v1.htm |
STMicroelectronics | 02/04/1999 | 14.67 Kb | HTM | 5657-v1.htm |
| DISABLE BC337 L o TO THE OUTPUT STAGE OF THE 5V POWER RAIL 10 mF MAIN TRANSFORMER Figure 4. L6561-based accounted for in order to ensure a proper operation. In figure 3, a real example of a mag amp regulator for is part of the curre nt limiting circuit, which includes also the overcurrent comparator with open short circuit conditions with maximum input voltage, the mag amp core must be overdesigned (typically by gate-drive voltage on the duty cycle. The control circuit is based on the L6561 L6561 L6561 L6561, a 8-pin Transition www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5657-v2.htm |
STMicroelectronics | 14/06/1999 | 14.63 Kb | HTM | 5657-v2.htm |
| 19. Simple secondary feedback COMP 33 k W 10 mF BC337 1 k W BC327 BC327 BC327 BC327 L6590 L6590 L6590 L6590 L6590D L6590D L6590D L6590D L . Figure 23. Remote ON/OFF control L6590 L6590 L6590 L6590 L6590D L6590D L6590D L6590D COMP ON OFF 10 k W 10 k W BC337 L6590D L6590D L6590D L6590D L6590A L6590A L6590A L6590A Vcc ON OFF 10 k W 10 k W BC337 BOK 15 k W Figure 19 shows a very simple series of example circuits aimed at covering the most common applications that the L6590 L6590 L6590 L6590 family can W R11 11.8 k W R8 560 W R12 1 k W 7 6 5 Q1 BC337 3 (4) 1 4 (7) 5 www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/7309-v1.htm |
STMicroelectronics | 03/10/2000 | 46.24 Kb | HTM | 7309-v1.htm |
| improve primary regulation. Figure 19. Simple secondary feedback COMP 33 k W 10 mF BC337 1 k W BC /OFF control L6590 L6590 L6590 L6590 L6590D L6590D L6590D L6590D COMP ON OFF 10 k W 10 k W BC337 L6590D L6590D L6590D L6590D L6590A L6590A L6590A L6590A Vcc ON OFF 10 k W 10 k W BC337 BOK 15 k W Figure 19 shows a very simple type of secondary feed- back that can be used Here follows a series of example circuits aimed at covering the most common applications that the L6590 L6590 L6590 L6590 .8 k W R8 560 W R12 1 k W 7 6 5 Q1 BC337 3 (4) 1 4 (7) 5 (8) 6, 7, 8 (9 to 16) L6590 L6590 L6590 L6590 www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/7309.htm |
STMicroelectronics | 20/10/2000 | 48.06 Kb | HTM | 7309.htm |
| R7 100 R1 6.8K R16 1K D2 1N4148 1N4148 1N4148 1N4148 C6 1nF T1 BC337 T2 2N2222A 2N2222A 2N2222A 2N2222A D1 1N4148 1N4148 1N4148 1N4148 R5 22K R6 47 analogue circuits of a conventional motor control. Performances and practical results are given for a 300 . Traditionally, the control of this motor is implemented using analogue circuits, with an associated control directly a chopper driven DC motor in addition to these interface functions. In this example controlled by a chopper circuit. This adjustable speed drive controls the load in only one direction of www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/3714.htm |
STMicroelectronics | 20/10/2000 | 19.2 Kb | HTM | 3714.htm |
| R1 6.8K R16 1K D2 1N4148 1N4148 1N4148 1N4148 C6 1nF T1 BC337 T2 2N2222A 2N2222A 2N2222A 2N2222A D1 1N4148 1N4148 1N4148 1N4148 R5 22K functions of the application, replacing the analogue circuits of a conventional motor control analogue circuits, with an associated microcontroller performing only an interface function. This to these interface functions. In this example the adjustable speed drive is made with a 300W MAGNET DC MOTOR AND ITS CONVERTER The brush DC motor can be controlled by a chopper circuit. This www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/3714-v1.htm |
STMicroelectronics | 25/05/2000 | 18.43 Kb | HTM | 3714-v1.htm |
| R7 100 R1 6.8K R16 1K D2 1N4148 1N4148 1N4148 1N4148 C6 1nF T1 BC337 T2 2N2222A 2N2222A 2N2222A 2N2222A D1 1N4148 1N4148 1N4148 1N4148 products. For example, new MCUs can operate directly from the mains and drive power loads with only few sensor interface or drive of a 50/60Hz transformer are required [3]. Figure 1: Light dimmer circuit .0$ Grand total 13.5$ Table 4: Typical cost of option examples Block Components Cost LCD display protection on the I/O pins, a hardware watchdog circuit to restart the MCU if the program flow is lost and www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2526-v3.htm |
STMicroelectronics | 25/05/2000 | 21.42 Kb | HTM | 2526-v3.htm |
| 4148 C6 1nF T1 BC337 T2 2N2222A 2N2222A 2N2222A 2N2222A D1 1N4148 1N4148 1N4148 1N4148 R5 22K R6 47K R4 4.7K R15 8.2K R3 220 C5 strategic advantage for the design of cheap, attractive and environmentally safe products. For example, new ]. Figure 1: Light dimmer circuit PB2 PB3 12 13 0V 8MHz 22p 22p 0V 3 4 PIEZO 0V 0V NEUTRAL .0$ Grand total 13.5$ Table 4: Typical cost of option examples Block Components Cost LCD display Display . These MCUs include protection on the I/O pins, a hardware watchdog circuit to restart the MCU if the www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2526-v1.htm |
STMicroelectronics | 20/10/2000 | 22.26 Kb | HTM | 2526-v1.htm |