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Abstract: GKFIL RSN O ff-H ook Detector Power Feed Controller Signal Transm ission BXO(RiNGX) ; -o R0 , C V BAT C Q BAT H I ZJ HPB HPA q bat ^ 2 HPB ^ 2 HPA 3 «TX V EE RSN 7 8 V TX c chs m 9 10 n i ^ V EE RSN AGNRDGND RDC CHS c CHCLK c RESERVED c CHCLK d , V tx v 21 1 3 V TX m 20 Z l V EE 19 Z l RSN 18 d ] AGND/DGND 17 16 15 R dc CHCLK C l 10 E, C Eo C DET c2 m 11 12 13 14 Ee RSN AGND C, c3 El C O Am79M571 O -
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79M574 RSN 312 H 24 RSN 315 H 42 ic RSN 315 H 42 RSN 312 RSN 312 H 42 bc 574 transistor 79M57/A 79M571 64AMDTKOJ
Abstract: 154.08 JRA28S 18-36 28 536 15 84 660 40 075 0.50 0.25 154.08 JRA485 18-36 48 313 15 84 660 50 075 0.50 , 36-60 48 313 15 84 370 50 0.50 0.50 0.25 179.76 JRB100S 36-60 100 158 15 84 370 75 0.50 0.50 0.25 224.70 , 0.50 0.50 192.60 JRC48S 18-60 48 313 15 84 460 50 0.50 0.50 0.50 192.60 JRC100S 18-60 100 150 15 84 460 , Operating frequency: 40 Khtz, typ. PEI -r-sn â  nini . Derating Requ- SERIES JR - DUAL PICO PART , 78 710 40 0.50 1.00 0.50 180.83 JRA24D 18-36 24 313 7.5 83 670 40 0.50 1.00 0.25 180.83 JRA28D 18-36 -
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JRC15D JRA24S 36-60VDC 18-60VDC JRA12S JRA15S R812D JR615D
Abstract: . 13 3.13 LED Indicator , RTX1 RTX JUMPER RSN AGND RTX2 RTX1 RRX CX RRX RTX2 CX RSN VRX RRX VRX Diagram 1 Diagram 2 VTX RA1 CA1 RTX2 RTX1 CA1 RTX1 RSN RA1 VTX RTX1 RTX2 JUMPER VRX RA1 CA1 RTX2 RTX1 RRX CX AGND CA1 RTX2 CX RSN VRX RRX , the board. CC1 RSN RD (R1) RRT2 (R26) RDC1 CRT (C23) AGND RRT1 (R25) RDCR1 (R2 Advanced Micro Devices
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LED pspice datasheet crt monitor circuit diagram relay 5v 100 ohm 3.5 DC Jack 1N4002 diode download datasheet TCM1060 79R79 CPD/P-148
Abstract: .4 3.1 3.2 3.2.1 3.3 3.4 3.5 3.6 3.7 3.8 3.9 3.10 3.11 3.12 3.13 3.14 3.15 3.16 , Summing Node (RSN) of the SLIC device. The default position is open. 3.6 JR6 Jumper JR6 can be , Impedance Matching Network Configuration Diagrams VTX VTX RTX RRX RTX1 RTX JUMPER RSN RRX VRX AGND RRX RTX2 RTX1 CX RTX2 CX VRX RSN RRX Diagram 1 Diagram 2 VTX VTX RA1 CA1 RTX2 RTX1 RTX1 RTX1 CA1 RSN RA1 RTX2 JUMPER VRX RA1 CA1 RRX Advanced Micro Devices
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2N3906 555 timer SPICE model AM79R79 100U 74C04 GR-1089-CORE 79R79/R100/R101 1N4003 7979PLCC
Abstract: . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 3.13 LED Indicators . . . . . . . . . . , ) JR5 Jumper JR5 allows the user to inject a metering signal into the Receive Summing Node (RSN) of , VTX VTX RTX RRX RTX1 RTX JUMPER RSN AGND RRX RTX2 RTX1 CX RRX VRX RTX2 CX RSN VRX RRX Diagram 1 Diagram 2 VTX VTX RTX1 RA1 CA1 RTX2 RTX1 CA1 RTX1 RA1 CA1 RRX RTX2 RTX1 CX RSN RA1 RTX2 JUMPER AGND CA1 RTX2 CX VRX Zarlink Semiconductor
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2.2K resistor TISP61089AD RLink schematic panasonic 614 battery metal detector using 555 timer LED pspice 71HE0040J CC3-R101 ERO-S2PHF2493 ERO-S2PHF1243 C315C680K1G5CA ERO-S2PHF2211
Abstract: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 3.13 LED Indicators . . . . , metering signal into the Receive Summing Node (RSN) of the SLIC device. The default position is open , VTX VTX RTX RRX RTX1 RTX JUMPER RSN AGND RRX RTX2 RTX1 CX RRX VRX RTX2 CX RSN VRX RRX Diagram 1 Diagram 2 VTX VTX RTX1 RA1 CA1 RTX2 RTX1 CA1 RTX1 RA1 CA1 RRX RTX2 RTX1 CX RSN RA1 RTX2 JUMPER AGND CA1 RTX2 CX RSN Zarlink Semiconductor
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Legerity SLAC 555 timer 38 khz square wave generator MMC kemet PSPICE thyristor LE79R79 LE79R101 ERO-S2PHF1821 C322C104K5R5CA ERO-S2PHF6652 ERO-S2PHF7153 ERO-S2PHF4222 ERO-S2PHF4992
Abstract: - . ¡ < 4 â'" 23 ] HPB 22 ] HPA 21 ] V t x 20 ] V ee 19 ] RSN 13 18 ] AGND 17 , ] LA CHCLK ,4 RSN . - ? AGND , inpu t (RSN) c o n tro llin g AC conditions, and from the Line Feed Regulator and DC Control blocks , pins of the SLIC (Vrx and RSN), together with associated grounds, provide the 4 wire interface to an ALAP or COMBO device. Both the transm it (V jx ) and receive (RSN) signals are unbalanced and have -
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DS2098-1 SL373 PCX328
Abstract: metering. The pulse metering may be injected into RSN via a resistor. A low-pass filter is needed at the , 31.3 mA for the Le5712 device. With typical battery supply voltage of -48 to -52 V and operating in Zarlink Semiconductor
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Le5711 TR-57
Abstract: talk battery. RSN Receive Summing Node (Input) The metallic current (both AC and DC) between AD , RSN. An external noise filter capacitor should be connected between this pin and VREF. VBAT , control loop. ASLIC/ASLAC Products 3-13 AMD* ASLAC Device AGND Analog (Quiet) Ground VREF is , . 1 2 3 4 5 6 7 8 Item RSN input impedance Vjx output impedance Gain, BAL1 to VTX Gain, BAL2 to VTX , connected between VTX and RSN: RT1 18.75 K VTX RT2 18.75 K RSN sAA/S -I-s/W 1 CT 430 pF 3-26 -
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79212 fusible Am 79212/A 79C202 LCP150S
Abstract: metering. The pulse metering may be injected into RSN via a resistor. A low-pass filter is needed at the , , and 31.3 mA for the Le5712 device. With typical battery supply voltage of -48 to -52 V and operating Zarlink Semiconductor
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Abstract: Battery, to Line CHCLK [ 10 19 ] RSN C4 [ 11 18 ] AGND E1 [ 12 17 ] Rdc 13 , porl, pins LA and LB. These pins are fed from the 4 w ire input (RSN) controlling AC conditions, and , interface to an A LA P or COMBO device. Both the transm it (VTX) and receive (RSN) signals are unbalanced and have fixed gain settings. The VTX pin has a low output impedance, whilst the RSN pin is a low , , into LA and out of LB is 1000 tim es the current w hich flows into RSN and through the device to AGND -
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SL377
Abstract: . . . . . . . . . . . . . . . 3.1.3 DSLIC Device to Tip and Ring . . . . . . . . . . . . . . . . . , whereas audio into the DSLIC (RSN) is a current. DSLIC pin RSN is a current summing node. Resistor RT , 78.7 k. With ZT = 82.5 k and ZL = 600 , G42 is 1.58. 3.1.3 DSLIC Device to Tip and Ring Each , RLDC 600 29 AXBX VTX CVTX 4 VTX 0.1u CX 1.1n 0 CHP RSN CHP 0.1u VBAT , 1.1n RLDC 600 0 CHP RSN CHP 0.1u VBAT 6 0 IREF RRX 1 Notes: 1. Do NOT Zarlink Semiconductor
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rsn 3305 TQ2-5V 1N4148WCT-ND PTC MZ2 Le57D11TC MZ2L-50R 51HR0010 58QL021VC 57D11TC
Abstract: Device to DSLIC Device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3.1.3 , (VTx) is a voltage whereas audio into the DSLIC (RSN) is a current. DSLIC pin RSN is a current summing , 78.7 k. With ZT = 82.5 k and ZL = 600 , G42 is 1.58. 3.1.3 DSLIC Device to Tip and Ring Each , RLDC 600 29 AXBX VTX CVTX 4 VTX 0.1u CX 1.1n 0 CHP RSN CHP 0.1u VBAT , 1.1n RLDC 600 0 CHP RSN CHP 0.1u VBAT 6 0 IREF RRX 1 Notes: 1. Do NOT Zarlink Semiconductor
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1N4148 TISP61089 DS2433 CPC7581 1N4148WSCT-ND Le58QL021VC 1N4148 SOD323 le57d11 TISP61089AS SSQ-113-01-S-D SMS-110-01-S-D EXB-V8V103JV TISPL758LF3D
Abstract: for many cost-sensitive SMPS. Np Rsn VDC Dreset Vsn + Ns L Vo = V DC , , Rsn is the snubber resistor, n is Np/Ns1 and Coss is 6 Ipk MOSFET current 2 V sn 2nVo1 V , (n)rms IO KL(n) KRF Lm Losssn Npmin Np Nr Ns1 Po Pin Rc Rsn RL Vlinemin Vlinemax , -70.4 # -60.6 # -49.4 # 100000 -37.8 # -29.6 # -25.5 # -26.2 # -31.3 # -40.8 # -52.3 # 100000 Fairchild Semiconductor
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EER2834 RCD snubber forward converter KA5M0380R application note offline forward converter KA5L0380R. Application NOTE KA5L0380R. Application AN4134 KA431
Abstract: (max) 10.8 V Vin 13.2 V, ILOAD ILOAD (max) 3.3-V output 3.13 3.3 Output current 20 , VCSMAX = 0.55 Iprimary PEAK Choose RCS 0 = 0.56 , 0.25W 2.7.3 (21) Snubber, RSN , CSN, DSN , ´ (C WDG + COSS_M1 ) = 6nF (22) Choose RSN so that the snubber time constant is much larger (say , Selection RSN » www.ti.com 200 = 80 k freq ´ CSN (23) Alternatively, an RC snubber from the Texas Instruments
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SLVA305 TPS23753EVM-002 SLVU246 mps 2107 KMPS SLVS853 TPS23753
Abstract: , ILOAD ILOAD (max) 10.8 V Vin 13.2 V, ILOAD ILOAD (max) 3.3-V output 3.13 3.3 Output , Iprimary PEAK Choose RCS 0 = 0.56 , 0.25W 2.7.3 (21) Snubber, RSN , CSN, DSN Without a snubber , ) Choose RSN so that the snubber time constant is much larger (say 200x) than the switching period. Choose , TPS23753 Powered-Device and Power Supply Controller 9 Design Example and Component Selection RSN Texas Instruments
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SLVA305A mathcad flyback design mathcad flyback mathcad flyback bulk capacitor voltage mathcad rectifier Flyback Transformer Design EXCEL
Abstract: kn x ina 3/2( A ISA - IoA) tn UTA ita + kn x ina 3/2( alta-IoA) rst rs rsn Ura - Usa Ira - isa alrsa , 130=311 ^ 101:16a -30=312 w 101=17a 130:313 130:11aa h- h-h-Y" c 1s2m6ab c 152:1638 a 'â'¢52:1628 d , 152:367 152:368 152062A 152-163A Fig. 7 RANZA connection guide 130:311 130312 130:313 130 314 107:116 -
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APP-20 long range locators diagram RXTUG 2H type of microprocessor in printer APP20 printer high voltage transformer 021-AA 104-BA RGKE070
Abstract: equal to the current Into the Receive Summing Node (RSN), which is the terminating point for the , programmed by means of an external impedance that is connected between RSN and Vtx (see Figures 2a and 2b). , , times smaller. Note that any external stray capacitance between V tx and RSN must be included in ZTwhen , loop current is equal to K, times the current into the Receive Summing Node (RSN), which is equal to , , metering signals are injected by adding an additional current into summing point RSN through an external -
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rsn 3404 texas instruments data guide manual cf -mh 22 e 103 m-c Transistor AND DIODE Equivalent list til 815 display TIL Display CD022 CD3022 PD022 CD024 PD024 CD028
Abstract: application. DR2 VO2 - LEDs PFC Csn Rsn Np NS2 CO2 Dsn Drain AC IN Rsen Rsen2 , is obtained as: Psn = 2 Vsn 1 Vsn peak = f s LlK ( I ds ) 2 Rsn 2 Vsn - VRF (37 , input voltage and full load condition is obtained as: Vsn _ high = VRF + peak (VRF )2 + 2 Rsn , Rsn Np NS2 CO2 Dsn Drain AC IN Rsen ILED Rsen2 Q1 Vsle Rcs Ccs Ra , plus a low frequency zero that compensates the pole of the control to output gain. 3.13 Transfer MARVELL
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88EM8081 MXL 603 EE55 bobbin LTV-817C Led driver 30v 50W schematic top EER25.5 ferrite core bobbin Led driver 50W schematic top 88EM8080/88EM8081 88EM8080/ TL431 H11A817A MV-S301735-00
Abstract: then Read Back the Address Register 23 wr rd X f Nâ'"⺠27 y rs0, rsn 11912-014a , .(617) 273-3970 class="hl">313) 347-1522 , ) MICHIGAN Birmingham - MIKE RAICK ASSOCIATES .(313) Holland- COM-TEK SALES, INC.(616) Novi-COM TEK SALES, INC.(313) MISSOURI LORENZ SALES -
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IMSG176 TLX2 ims g171 AM81C176-50 INMOS G171 RS170 RS-170a 81C176 RS-170A WCP-12 5M-5/89-0
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