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Part Manufacturer Description Datasheet BUY
SN6501QDBVRQ1 Texas Instruments Automotive Low-Noise 350 mA, 410 kHz Transformer Driver 5-SOT-23 -40 to 125 visit Texas Instruments Buy
SN6501DBVT Texas Instruments Low-Noise 350 mA, 410 kHz Transformer Driver for Isolated Power Supplies 5-SOT-23 -40 to 125 visit Texas Instruments Buy
SN6505BDBVR Texas Instruments Low-Noise 1-A , 420kHz Transformer Driver for Isolated Power Supplies 6-SOT-23 -55 to 125 visit Texas Instruments Buy
SN6501DBVR Texas Instruments Low-Noise 350 mA, 410 kHz Transformer Driver for Isolated Power Supplies 5-SOT-23 -40 to 125 visit Texas Instruments Buy
SN6505BDBVT Texas Instruments Low-Noise 1-A , 420kHz Transformer Driver for Isolated Power Supplies 6-SOT-23 -55 to 125 visit Texas Instruments
SN6505ADBVR Texas Instruments Low-Noise 1-A , 160kHz Transformer Driver for Isolated Power Supplies 6-SOT-23 -55 to 125 visit Texas Instruments Buy

transformer 23

Catalog Datasheet MFG & Type PDF Document Tags

data highway

Abstract: mil-std-1553b features DATA IN - B Receiver inverted incut from bus B 22 NO No connection test transformer 23 NO No , OUT-A Transmitter output to bus A transformer with open collector drive and resistor 36 BITE IN Low , pullup Safe Timeout nterva transformer 9 ADDR D Terminal address bit D (hard wired) 37 RX DATA , transformer 15 T6 Bit 6 of 16 bit tri state data highway T8 42 CMD STROBE Output pulse identifies command word is 67 RX DATA IN - A Receiver input from bus A transformer 16 Bit 8 of 16 bit tri state
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OCR Scan

7811a

Abstract: mosfet firing circuit overlap and eliminate current spikes in the transformer. 2.3 - CONTROLLER BLOCK DIAGRAM Fig 4 shows a , this method the transformer secondary is u to drive the gates through appropriate gate resistors. The , losses. Finite MOSFET switching times: This poses a problem during transformer transitions. Due to , in secondary side: This inductance associated with the MOSFET and the transformer poses a unique , driven topology, the gate drives levels are essentially, replications of the transformer output. In
International Rectifier
Original

hi-pot transformer

Abstract: HI-POT TRANSFORMER (2-3) 8 1.0 4 2µH MAX DCR PA3342NL 2.57 90µH ±10% Lk. Inductance , , 9) 94mΩ MAX Pri-Sec 1.0 5V / 2.7A FLYBACK TRANSFORMER 33V-57V 200kHz 3.43 8V / 20mA 0.71 1.0 12V / 1.13A FLYBACK TRANSFORMER 480µH ±10% (3-4) with (10, 8 , 674 8100 33V-57V 200kHz 1500Vrms K1 Factor PA1218NL FLYBACK TRANSFORMER 55mΩ MAX , FLYBACK TRANSFORMER Shanghai 86 21 62787060 China 86 755 33966678 Taiwan 886 3 4356768
Pulse Engineering
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hi-pot transformer HI-POT 9 pin pulse transformer HI-POT transformers 1500V PA1137NL PA1138NL D-71083

washing machine control

Abstract: BTA08 ST light dimmer schematics secondary of the transformer. 2.3 At start-up, the delay time between the first gate pulse and the , through a low voltage transformer. It includes soft start and protection against transformer saturation , 2.2 AN392 Operation with a transformer Low power halogen spots use low voltage lamps (12 V typ.) usually supplied through a low voltage transformer. For good application performance, the MCU program , voltage content is avoided across the transformer terminals. Saturation risk is then also reduced here
STMicroelectronics
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washing machine control BTA08 ST light dimmer schematics universal motor speed control bta16 triac diac applications circuit diagram soft light dimmer circuit diagram schematic diagram washing machines

AND8076

Abstract: SPH6156 transformer. (23) The power dissipated by Rclamp can also be expressed by: PRclamp + 1 @ Lleak @ Ip2 @ , supply. http://onsemi.com 3 AND8076/D Transformer Calculation Transformer calculation can be done in several manners: a) you evaluate ALL the transformer parameters, electrical but also physical , rest of the process to a transformer manufacturer. We will adhere to the latest option by providing you with a list of potential transformer manufacturers you can use for prototyping and manufacturing
ON Semiconductor
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AND8076 SPH6156 2n2907 smd NCP1200P60 MBR30100 xfmr spice NCP120 NCP1200

philips 4c65

Abstract: RG58 CABLE 50 OHM .3 2.3 Oscilloscope , .20 7.3 Transformer Matching .22 7.4 Matching Transformer , .21 Figure 20. Transformer Matching .22 Figure 21. Toroid Matching Transformer
Texas Instruments
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philips 4c65 RG58 CABLE 50 OHM HF RFID loop antenna design antenna matching 13,56 mhz calculation matching RFID loop antenna 13.56 Ferrite core 13.56 MHz RFID tag inductor antennas URM70 MFJ-259B

LXT331PE

Abstract: dfm circuit receive line interface. This input pair should be connected to the line through a 1:1 transformer. 23 , resistors and a 1:2.3 transformer is recommended for maximum transmit return loss in DSX-1 applications , NMRK0 PMRK0 RRING0 21 22 23 24 25 26 27 28 18 19 20 44 43 42 41 40 39 38 37 36 35 34 , TVCC1 TRING0 11 23 TRING1 LXT331QE LXT331QH 44-Pin QFP ALOOP1/SDI MTIP1 MRING1 , . 28 22 MTIP0 29 23 TRING1 AO Transmit Ring, Port 1. Refer to TRING0 pin. 30
Level One Communications
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LXT331 LXT331PE dfm circuit LXT331PH PDS-T331-R1

LXT331PE

Abstract: 10BQ060 interface. This input pair should be connected to the line through a 1:1 transformer. 23 17 DFM0 , and a 1:2.3 transformer is recommended for maximum transmit return loss in DSX-1 applications. The , .10 2.1 2.2 2.3 2.4 2.5 3.0 Receiver , . 22 Typical LXT331 T1 Application (Host Control Mode, Bipolar I/O) . 23 , . 18 Recommended Transmit Transformer Values .
Intel
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10BQ060

PE-65778

Abstract: PE-68786 PE-68887 applicable. Frequency Return Loss XMIT REC 50-100 KHz 100 KHz-2 MHz Transformer 2-3 MHz 9 , 16 Weight . . . . . . . . . 2.3 grams Tube . . . . . . . . . . . . .25/tube .300 7,62 .385 , /ISDN-PRI TRANSFORMERS Transformer Selection Guide IC Manufacturer IC Part Number Comments Dual SMT , available. Use of the proper transformer allows the interface circuit to comply with ITU-T G.703 and other , (pages 1 through 6): A. B. IC RCVE IC XMiT 11 dB 12 dB Transformer Part Turns
Pulse Engineering
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PE-68841 PE-68822 PE-65778 PE-68786 PE-68887 PEB2256 equivalent T5683 PE-68825 F-39270

mcw-2

Abstract: HDB3 coaxial link connect this input to the output of the line driving transformer. 23 TxG Transmit Ground: Common , 16 17 18 19 20 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 , with an external pulse transformer to generate the transmit bipolar line signal. 26 TxMF , suitable for use with an external pulse transformer to generate the transmit bipolar line signal. No , 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 5 5 6 6
Zarlink Semiconductor
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MH89790B MH89790 MH89790BN MH89790BS mcw-2 HDB3 coaxial link 2N2369 30/CRC-4

2N2369

Abstract: MH89790 output of the line driving transformer. 23 TxG Transmit Ground: Common point of the T-type PAD , 14 15 16 17 18 19 20 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 , transformer to generate the transmit bipolar line signal. 26 TxMF Transmit Multiframe Boundary , an external pulse transformer to generate the transmit bipolar line signal. No Connection. Data , 15 15 CCS 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24
Mitel Semiconductor
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MH89790

Abstract: MH89790B typical application connect this input to the output of the line driving transformer. 23 TxG , 28 27 26 25 24 23 22 21 NC NC LOS NC NC NC NC VSS NC DSTo NC OUTB NC RxMF , is suitable for use with an external pulse transformer to generate the transmit bipolar line signal , transmitter. It is suitable for use with an external pulse transformer to generate the transmit bipolar line , 15 15 CCS 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24
Mitel Semiconductor
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2N2369

Abstract: MH89790 connect this input to the output of the line driving transformer. 23 TxG Transmit Ground: Common , 16 17 18 19 20 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 , with an external pulse transformer to generate the transmit bipolar line signal. 26 TxMF , suitable for use with an external pulse transformer to generate the transmit bipolar line signal. No , 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 5 5 6 6
Zarlink Semiconductor
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West Coast Magnetics Custom Design

Abstract: 2N2369 typical application connect this input to the output of the line driving transformer. 23 TxG , 26 25 24 23 22 21 NC NC LOS NC NC NC NC VSS NC DSTo NC OUTB NC RxMF TxMF OUTA , is suitable for use with an external pulse transformer to generate the transmit bipolar line signal , transmitter. It is suitable for use with an external pulse transformer to generate the transmit bipolar line , 15 15 CCS 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24
Zarlink Semiconductor
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West Coast Magnetics Custom Design

MH89790B

Abstract: square root extractor connect this input to the output of the line driving transformer. 23 TxG Transmit Ground: Common , 16 17 18 19 20 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 , with an external pulse transformer to generate the transmit bipolar line signal. 26 TxMF , suitable for use with an external pulse transformer to generate the transmit bipolar line signal. No , 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 5 5 6 6
Zarlink Semiconductor
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square root extractor

ADC12L066

Abstract: ADC12L066CIVY 20032815 FIGURE 6. Driving the Signal Inputs with a Transformer 23 www.national.com ADC12L066 , . 2.3 PD The PD pin, when high, holds the ADC12L066 in a powerdown mode to conserve power when the
National Semiconductor
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ADC12L066CIVY ADC12L066CIVYX ADC12L066EVAL LM4051CIM3-ADJ

HT 8870

Abstract: MH89790 application connect this input to the output of the line driving transformer. 23 TxG Transmit Ground: Common , C2i c 18 23 â¡ TxG E2o c 19 22 â¡ PADi FOi c 20 21 H VSS Ordering Information , transformer. 8 RxB Receive B (Output): The bipolar CEPT signal received by the device at the RxR and RxT , transformer to generate the transmit bipolar line signal. 26 TxMF Transmit Multiframe Boundary (Input): This , Collector Output): Output of the CEPT transmitter. It is suitable for use with an external pulse transformer
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OCR Scan
HT 8870 MB601 AMI siemens MT8952 MT8979 siemens N30 916T-002-080-NA

sxe capacitor NCC

Abstract: .45 Figure 23. T7250C to T7234 Direct-Connect Scheme with External S/T-lnterface , . 21 Table 6. Line-Side Resistor class="hl">23 , AUTOACTC 30 â¡ VRN G NDdC 29 â¡ VRP NCC 18 19 20 21 22 23 24 25 26 27 28 U TTTT à U U , â'" V ddo â'" X1 X2 0 I 21 22, 33, 39,42 23 24 Id â'" V dda TNR , . Connect to transformer through a 121 Q ± 1% resistor. Transmit Positive Rail for S/T-lnterface. Positive
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OCR Scan
sxe capacitor NCC 05DD2 F-06561 800-521-CORE

RTL8305SB

Abstract: RTL8305 . 23 6.2.1. Register16: EEPROM Byte0 and 1 Register . 23 6.2.2. Register17: EEPROM Byte2 and 3 Register . 23 6.2.3. Register18~20: EEPROM EthernetID Register , . 25 6.3.1. Register16~23: EEPROM (Byte 14~29) Register , 18. TABLE 19. TABLE 20. TABLE 21. TABLE 22. TABLE 23. TABLE 24. TABLE 25. TABLE 26. TABLE 27
Realtek Semiconductor
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RTL8305SB JATR-1076-21 RTL8305 realtek rtl8305 RTL8305S 24lc0241 8305SB 10/100MBPS 10/100M

RTL8305

Abstract: .7 5.1. 5.2. 5.3. 5.4. 5.5. 5.6. 5.7. 5.8. 5.9. 5.10. 6. REGISTER class="hl">23 , .30 Register16~23: EEPROM (Byte 14~29) Register , 18. TABLE 19. TABLE 20. TABLE 21. TABLE 22. TABLE 23. TABLE 24. TABLE 25. TABLE 26. TABLE 27 , .23 REGISTER0: CONTROL REGISTER , .29 REGISTER16~23: EEPROM (BYTE 14~29) REGISTER
Realtek Semiconductor
Original
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