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RSN+315+H+42

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Abstract: L IS H E D . COPYRIGHT 19 RELEASED BY AMP FOR PUBLICATION INCORPO R ATED . A L , 24FEB04 RW -P- i-sn- rm rm i*h i i* i rsn rm nn ran rm nn h p nn rm nn n n ran rHi q rm rm , MARKING PER AM P INCORPORATED A P P R O X I M A T E L Y AS S H O W N . A TYP PLATING. SPECIFICATION 115-9009, LOCATED h 0.25 ® N R ® © 0 B SPACES © 2 A = DIM , 4.2 4.2 4.2 4.2 4.2 4.2 4.2 4.2 4.2 4.2 4.2 Z DETAIL 0 0 .7 2 5 -$ â  \ w -
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D5138 LCP000
Abstract: > 3 o o Q o 2 o m i~i 1 · i~ i n 32 Z £ m Q _ H < 31 m Q 30 29 28 27 26 , input impedance programming network. EO E1 HPA H PB RD RDC Input Input Capacitor Capacitor , . -7 0 V to +1 V 10 ms (f = 0.1 H z).-7 0 V to +5 V 1 ms (f = 0.1 H z).-8 0 V to +8 V 10 [is (t = 0.1 H z ) .-9 0 V t o +12 V Current from A(TIP , - 2 -1 * -2 -2 - 2 52 63 58 58 52 58 54 54 42 27 35 mArms dB 4 4 1 kHz to 3.4 kHz normal -
OCR Scan
RSN 315 H 42 RSN 315 H 42 c
Abstract: 300 H z -8 0 0 Hz all -1 40 42 Longitudinal C urrent Capability per Wire Active state , FVellm lnaiy H Advanced Micro Devices Am79M57/Am79M571 /Am79M574 Metering Subscriber Line , feed P ro g ra m m a b le loop d ete c t th res h o ld G ro un d k ey d ete c t Low s ta n d b y p o w e r P erfo rm s p o la rity reversal T es t relay d riv e r o p tio n al L in e-feed c h a , rin g (12 and 16 kH z) On c h ip s w itch ing re g u la to r fo r lo w p o w e r d is s ip atio n T w -
OCR Scan
79M574 RSN 312 H 24 ic RSN 315 H 42 RSN 312 RSN 312 H 42 bc 574 transistor rsn 313 79M57/A 79M571 64AMDTKOJ
Abstract: HIGH VOLTAGE POWER OPERATIONAL AMPLIFIERS PA41 · PA42 DESIGN IDEAS M I C R O T E C H N O L O G , V IN RI +350V RC CC PA41/42 R CL RB PA41/42 A1 R CL CL RSN CSN D.U.T. RSN CSN R C VOUT 660VPP CC PA41/42 A2 RC RF RFS +350V CF RIS +350V Rn Cn R R CL SINGLE SUPPLY BRIDGE RFC RF CF RIS CFS RI RF +15V RC CC VOUT 0 to 650V CC PA41/42 A2 RC CFC +15V RI +175V CF RFS +335V +15V RIC PA41/42 VIN OP07 RC Rn Cn ­15V V IN RCL CL RSN CSN ­15V ­175V CC ­175V D.U.T. PA41 Apex Microtechnology
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apex PA41 pa41 546-APEX PA41/42 PA41/42DIU
Abstract: -74 dBc -102 -78 -90 -27 -17 +5.20 +5.50 +5.80 +3.15 +3.30 +3.45 V +4.80 +5.00 +5.20 42 49 mA 19 27 42 48 52 MHz 1 VP-P 100 K -145 dBc/Hz 50 2.80 V 0.60 V 2.75 Mini-Circuits
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JG1228 TM 1618 1618MHz ADF4193 iso 9717 Mini-circuits marking code RSN-1618AF-119 ESN-2150P-12 TR-F99 PL-319 TB-554
Abstract: -98 -74 dBc -102 -78 -90 -27 -17 +5.20 +5.50 +5.80 +3.15 +3.30 +3.45 V +4.80 +5.00 +5.20 42 49 mA 19 27 42 48 52 MHz 1 VP-P 100 Kâ"¦ -145 dBc/Hz 50 â"¦ 2.80 V 0.60 V Mini-Circuits
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AF-119 ENV03T2
Abstract: 1. 2. / 2W 10 J T/B RSS / 2.1 RSNRSS() 2.2 (W)1/4W1/2W1W2W3W3WL4W5W6W 7W10W 2.3 KJIS-C64096(EIA RS-196A)(Series) 2.4 G±2%J±5% 2.5 / T/RT/BFMG RoHS 3. 70 70 1 of 6 3.1 4.1 4. 4.1 Unit: mm D±1 L±1 H±3 d±0.1 Resistance Range , . 0.22~9.1 are using alloy film. 4.2 4.2.1 4.2.2 4.2.3 (800) 2mm(RSS) 4.2.4 (1) (2): 2 , 1% 7.9 : 165 8. 8.1 MG Unit: mm RSS RSN L±1 P H h±1 A±0.02 B±0.05 C -
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33k250v 5530RSN 500V1000M
Abstract: Dimension: = H _l [ ) 4= ® ;= â  | , ,suggesting use RDN types. 4.2 Structure 4.2.1 Ceramic Rod: It is made of Forste imported from Japan , ] * ( H (T2 - T1) ] x 106 where R1: resistance value at reference temperature R2: resistance.value at -
OCR Scan
S-E07 JIS-C6409
Abstract: EN61000-4-2, 1999 with no device failure. TPS23750 TPS23770 www.ti.com SLVS590A ­ JULY 2005 ­ , MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum 0.46 0.5 0.54 V Fault current threshold MODE = VBIAS, VCOMP = 4.2 V , 70 105 140 2.5 4 8 VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V , falling, monitor IRTN 29.6 30.5 31.5 8.3 8.8 9.1 VDD rising, monitor IRTN 34.1 Texas Instruments
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TPS2375 RSN 314 H 41 RSN 315 H 41 RSN 314 UC3844 flyback application note MPS 1482 24v dc power supply with uc3844
Abstract: EN61000-4-2, 1999 with no device failure. TPS23750 TPS23770 www.ti.com SLVS590A ­ JULY 2005 ­ , MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum 0.46 0.5 0.54 V Fault current threshold MODE = VBIAS, VCOMP = 4.2 V , 70 105 140 2.5 4 8 VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V , falling, monitor IRTN 29.6 30.5 31.5 8.3 8.8 9.1 VDD rising, monitor IRTN 34.1 Texas Instruments
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forward converter uc3844 uc3844 reference smps 600 v input smps by uc3844 with tl431 uc3844 smps power supply UC3844 buck TSSOP-20
Abstract: -45 of Figure 40 between pins of RJ-45, and between pins and output voltage rails per EN61000-4-2, 1999 , threshold MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until no gate pulses occur VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V. Measure 50% of VGATE , 30.5 8.8 35.1 30.5 4.5 40.4 31.5 9.1 36.0 31.4 4.8 V V IRTN falling from IINR, IRTN/IINR 0.85 1.00 Texas Instruments
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Abstract: applied to RJ-45 of Figure 40 between pins of RJ-45, and between pins and output voltage rails per EN61000-4-2 , threshold MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches , 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until no gate pulses occur 0.70 0.765 0.83 V , , VCOMP = 4.2 V, VTMR = 2.5 V. Measure 50% of VGATEâ' to 50% VGATEâ" tBLNK Current limit delay , IRTN 29.6 30.5 31.5 8.3 8.8 9.1 VDD rising, monitor IRTN 34.1 35.1 36.0 Texas Instruments
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Abstract: -45 of Figure 40 between pins of RJ-45, and between pins and output voltage rails per EN61000-4-2, 1999 , threshold MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until no gate pulses occur VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V. Measure 50% of VGATE , 30.5 8.8 35.1 30.5 4.5 40.4 31.5 9.1 36.0 31.4 4.8 V V IRTN falling from IINR, IRTN/IINR 0.85 1.00 Texas Instruments
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IPC-2221A PS23750 TL431-based SLUP076 precision rectifier
Abstract: Supply Voltage VCC +3.3 V nominal +5 V nominal 3.15 4.75 3.45 5.25 V V Battery Voltage , AGND VAB B (RING) RRX RSN VRX Gain 4-2 = 20 log (V AB / V RX) Gain 4-4 = 20 log (VTX Integrated Device Technology
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IDT821611 500R IDT821621
Abstract: -45 of Figure 40 between pins of RJ-45, and between pins and output voltage rails per EN61000-4-2, 1999 , threshold MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until no gate pulses occur VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V. Measure 50% of VGATE , 30.5 8.8 35.1 30.5 4.5 40.4 31.5 9.1 36.0 31.4 4.8 V V IRTN falling from IINR, IRTN/IINR 0.85 1.00 Texas Instruments
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RSN 351
Abstract: EN61000-4-2, 1999 with no device failure. TPS23750 TPS23770 www.ti.com SLVS590A ­ JULY 2005 ­ , MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum 0.46 0.5 0.54 V Fault current threshold MODE = VBIAS, VCOMP = 4.2 V , 70 105 140 2.5 4 8 VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V , falling, monitor IRTN 29.6 30.5 31.5 8.3 8.8 9.1 VDD rising, monitor IRTN 34.1 Texas Instruments
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pcb design on uc3844 audio optocoupler optoisolator TPS23750PWP 555 TIMER IC pwm controller flyback TPS23770PWP TLV431
Abstract: -45 of Figure 40 between pins of RJ-45, and between pins and output voltage rails per EN61000-4-2, 1999 , threshold MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until no gate pulses occur VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V. Measure 50% of VGATE , 30.5 8.8 35.1 30.5 4.5 40.4 31.5 9.1 36.0 31.4 4.8 V V IRTN falling from IINR, IRTN/IINR 0.85 1.00 Texas Instruments
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Abstract: -45 of Figure 40 between pins of RJ-45, and between pins and output voltage rails per EN61000-4-2, 1999 , threshold MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until the duty cycle switches from 50% to the minimum MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V, Increase VRSP-RSN until no gate pulses occur VRSP ­ RSN = 0.6 V, VAUX = 12 V, MODE = VBIAS, VCOMP = 4.2 V, VTMR = 2.5 V. Measure 50% of VGATE , 30.5 8.8 35.1 30.5 4.5 40.4 31.5 9.1 36.0 31.4 4.8 V V IRTN falling from IINR, IRTN/IINR 0.85 1.00 Texas Instruments
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Abstract: nominal 3.15 4.75 3.45 5.25 V V Battery Voltage VBAT -58 -19 V DC Electrical , (RING) RRX RSN VRX Gain 4-2 = 20 log (VAB / VRX) Gain 4-4 = 20 log (VTX / VRX) Figure 11 Integrated Device Technology
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POWER TECH INC
Abstract: nominal 3.15 4.75 3.45 5.25 V V Battery Voltage VBAT -58 -19 V DC Electrical , (RING) RRX RSN VRX Gain 4-2 = 20 log (VAB / VRX) Gain 4-4 = 20 log (VTX / VRX) Figure 11 Integrated Device Technology
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transistor LT 6225
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