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XTR104AU Texas Instruments 4-20mA Current Transmitter with Bridge Excitation And Linearization 16-SOIC visit Texas Instruments
XTR104BU-TR Texas Instruments INSTRUMENTATION AMPLIFIER, 2500uV OFFSET-MAX, PDSO16, SOL-16 visit Texas Instruments
XTR104AU-TR Texas Instruments INSTRUMENTATION AMPLIFIER, 2500uV OFFSET-MAX, PDSO16 visit Texas Instruments
DS99R104TVSX/NOPB Texas Instruments 3-40MHz DC- Balanced 24-Bit LVDS Deserializer 48-TQFP -40 to 85 visit Texas Instruments
DS99R104TSQX/NOPB Texas Instruments 3-40MHz DC- Balanced 24-Bit LVDS Deserializer 48-WQFN -40 to 85 visit Texas Instruments Buy
XTR104BU Texas Instruments 4-20mA Current Transmitter with Bridge Excitation And Linearization 16-SOIC visit Texas Instruments

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R104

Catalog Datasheet MFG & Type PDF Document Tags

R104 Diode

Abstract: R104 by putting a resistor in parallel with R101 and R104. This needs to be done for each channel of the , the bridge. R101 and R104 set the adjustable output range of the emulated bridge. For the , R101 and R104 can expand this range. On the Sensor-Emulator-EVM, 11 channels like this one are selectable using a rotary switch. 3 R104 := 10 10 R102 := 200 3 R101 := 10 10 Vexc := 5 , 2.5V R103 10 ohm R9 10k R104 10k Vdif = 26mV 2.5V Positive full scale of the
Burr-Brown
Original
SBOA102A PGA309EVM R104 Diode R104 R103 scale sensor sensor systems potentiometer

DB3 C105

Abstract: R104 clock for circuit T103 and R104. In asynchronous mode S114/115 generates 48 kHz which is half of the , out from R104. 1109 is 1-bit earlier as defined in CCITT X.30. CA is a signalling channel to the , 0 or logic 1, or, to indicate the received data bits on output R104. The settings for R104 are given , the condition of signal R104. If the received data bits are at logic 0, R104 will be ¡¡j set to , 2t\ r104 2tj"| 1109 25] ale dbo pcb2320 24 23] db1 db2 22 21 db3 ~2o] db4 "üt| db5 db6 18
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PCB2320 DB3 C105 T103 C105 Q106 S9109 S0T117

B050150

Abstract: R104 Diode clock for circuit T103 and R104. In asynchronous mode S114/115 generates 48 kHz which is half of the , clocked out from R104. 1109 is 1-bit earlier as defined in CCITT X.30. CA is a signalling channel to the , clamp output R104 (pin 27) to logic 0 or logic 1, or, to indicate the received data bits on output R104. , R104 indicates the condition of signal R104. If the received data bits are at logic 0,R104 w ill be set , R104 Q 106 * RECEIVER GND · M ICR OC ON TRO LLER INTERFACE 2 4 .1 7 16 25 RDCEN ALE
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B050150 DIODE D16 HIGHWAY 08 IC PIN DIAGRAM

TRIPATH TA2020

Abstract: TRIPATH : R101/R104 Resistor Value Selection *The filter board comes stuffed with 49.9K for R101/R104. 2 , resistance seen by the inputs when the relay is closed (R101 on IN+, R104 on IN-). The value of VR2 , ended amplifier configuration (i.e. TA010XA designs). See Table 1 for R101/R104 resistor value , 4.99k 7 R103 R105 49.9k R104 49.9k R101 / R104 Resistor Value Selection Table Amplifier , R108 R110 49.9k R100 R101 R102 R103 R104 R105 698 R26 R28 7.15k R23 931 R30 R32 BANANA 5V
Tripath Technology
Original
TA1101B TA2020-020 TRIPATH TA2020 TRIPATH OF potentiometer R101 TRIPATH TECHNOLOGY tripath audio amp circuit 1N4148 2N7000 20KHZ 30KHZ

mip2f2

Abstract: MIP2F2 IC 600V 0.5A IC1 R104 620k D VCC S CL FB VDD F101 250VAC 4A LINE C105 0.1u C106 , C203 0.1u R206 47 1 FB 6 S VDD R104 15k C104 0.1uF [] IC301 IC R202 , 10V R206 47 FB IC201 S VDD R104 15k IC301 C104 0.1uF R203 10k F , R206 47 1 FB 6 S VDD R104 15k C104 0.1uF [] IC301 IC R202 33k F 5 , /0.7A R206 47 FB IC201 S VDD [] R104 15k IC301 C104 0.1uF R203 10k F
Panasonic
Original
MIP022X MIP41X MIP28X MIP2EXDMIP022X mip2f2 MIP2F2 IC mip2f MIP2C2 MIP2F2 MIP2C2 MIP025X AC100V MIP025XMIP28X

DB3 C105

Abstract: '" â'" â'" â'" â'" BSE BSI T103 C105 R104 DCE106 DTE106 S114 MI2 Mil VDD 1109 V107 , element clock for circuit R104 (pin 40 (36) . 27 (24) S113 Transmitter element timing input , output. Output which indicates the state of the remote subscribers DTE106 circuit. 40 (36) R104 Received data output. R104 provides circuit 104 for V- and R for X-series of interfaces. Circuit R104 will , Data. T (X-series), Transmit. *R104 :Circuit 104 (V-series), Received R (X-series), Receive
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110/X ECMA-102

CL-501R

Abstract: R104 619 100 R102 1SFA 619 100 R104 1SFA 619 100 R105 1SFA 619 100 R107 0.018 0.022 0.018 0.022 , 619 101 R104 1SFA 619 101 R105 1SFA 619 101 R107 0.018 0.022 0.018 0.022 0.022 Pushbutton , -10-01 2 NC CP3-10-02 1 NO +1 NC CP3-10-11 1SFA 619 102 R101 1SFA 619 102 R102 1SFA 619 102 R104 , -10-01 CP4-10-02 CP4-10-11 1SFA 619 103 R101 1SFA 619 103 R102 1SFA 619 103 R104 1SFA 619 103 R105 , included: 1 NC CP33-10B-01 1SFA 619 132 R1046 0.018 NO NC 1) For bezel in metal replace '1'
ABB Automation
Original
1SFC151002C0201 CP1-10-11 CP11-10W-10 CL-501R IEC 947-5-1 pilot lamp C2SS2-10-11 CL-523G C3SS1-10-11 CL-502R 1SFC261009- CP1-10-10 CP1-10-20 CP1-10-01 CP1-10-02

FCL101

Abstract: R104 operation) R^ ^ = 10S2 R10_4=2oon Fan-out capability to FC gates (Tamb = 25 C) 10 150 3 mV mV Power , 1.2 V Input voltage decreasing 0.45 V Output Voltage for 'High' output state (R8_4=4300S2, R10_4 = 10 to 200S2) 2.5 - - V Voltage for 'Low' output state - - 0.4 V Current capability , levels (Rg 4=4300S2, R10_4 = 10£2) Min. Typ. Max. Input voltage increasing - - 1.2 V Input voltage , 1 M II II II R10_4-10n Rs 4=4300a
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FCL101 LEVEL DETECTOR

R104

Abstract: C107 GND C103 ­IN 1 C101 C104 R103 2 R107 C111 C112 +V C105 R102 R104 , CR101 R110 R204 C102 R104 C109 C105 CR102 R202 R203 R201 C204 ­IN2 , CR101 R109 R102 R210 C207 +IN2 C211 R204 R104 C203 C103 R103 R102 C104
Apex Microtechnology
Original
PA60EU CR201 CR202 C107 C103 C102 M transistor c111 transistor c102 CR103 CR203 EK26U

HA1452W

Abstract: ha1452 ., C104' Rios = 318jusec, and C104. Cios. R104» 3r characteristic of the equli the standard RIAA freqie be: C104* R104 = 3180/^se Ci os'Rios = 75/xsec. Capacitors for use as phase compensation. Determine , deter- G_ R104 + Rios v- Ri low frequency) 02 fL is the frequency wherei Gv decreases 3dB. 1 , R103 = 0.7 x R10i x-= W02 (10) R104, Rios : Determine R104 from Gv at low frequency through the value
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HA1452W DP-14 ha1452 riaa ha1452w 452W riaa low noise RIC0H A1452W

c107

Abstract: R104 C101 C103 C104 C105 ­IN 1 R103 R104 R107 C107 R102 1 R110 C108 C109 GND R201 C201 C203 C204 CR201 ­IN 2 , prodlit@apexmicrotech.com 261 EK26 7" 1 CR201 R210 C211 R204 C102 C109 CR101 R110 C111 R104 C207 C107 EVALUATION , R109 GND C112 C212 R211 R111 R110 CR101 C107 CR201 R210 +IN1 C111 R104
Apex Microtechnology
Original
C101 r-102 R102 apex pa26 R101 PA26 546-APEX C2107

HA12002

Abstract: R104 Diode ) R104, Rios and Ru0 external resistor values can be defined to meet ±Vth=1.8V, (a) From eq. 1 and ±Vth=1.8V, 1.8= 2 + r ,x 0.57 Therefore R104/R110 is defined as (V) '104 1.158 R110 (b)From eq. 2 and , Ri 10 = 63.3 Therefore, for Vth=1.8V, Rio4 = Rios=75 (kS7) R110 = 62 (kft) Minimum values of R104 and R10s can be defined by the maximum ratings of pin-3 and 4 (±3mA). ±Vcc
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HA12002 RI04 HA1200 DIODE CL04 12 C102 R107
Abstract: 7550T 520 TOP PANEL KIT 0 3.26 6.84 6.54 13.93 .062 R104.64 5.07 5.02 4.65 10.18 1.57 R90.54 0 1 .14 14 plc's R.87 4 plc's NOTES: 1) PVC film this side. 2) Panel Kit includes: 1 pc of pn 7151 120top aluminum panel. 14 pcs of pn 6005 screws (#4 X 3/8"). 8/14/08 ALL DIMENSIONS ARE ± .010" 619 Commercial Ave. Covina, CA 91723 Ph. (626) 331-0517 Fx. (626) 331-8584 serpac.com 7550B 520 BOTTOM PANEL KIT 14.17 R104.75 .062 5.06 5.03 4.67 10.63 Serpac Electronic Enclosures
Original

QT301-IS

Abstract: R104 Diode OPTIONS SOIC QT301-IS QT301-D - Copyright © 2003 QRG Ltd QT301 R1.04 21/09/03 1 - Overview , < 166%10 3 Cx where Cx is expressed in pF. Tbd Tbs LQ 2 QT301 R1.04 21/09/03 2.2 CS / CX , Burst LQ 3 QT301 R1.04 21/09/03 Figure 2-6 Line Sync and PWM Output Filter +3 to 5.5V , again LQ YES 4 QT301 Cal done? YES QT301 floats CAL_UP pin again QT301 R1.04 21/09 , of LQ 5 QT301 R1.04 21/09/03 6 Electrical specifications 6.1 ABSOLUTE MAXIMUM
Quantum Research Group
Original
CAL Controls 8000 CAL Controls 6000 78L05 850C IN4148 QT301-I

transistor c111

Abstract: capacitors 22nf R104 1k 22nF 7 C105 1nF R107 100 2 STV5712 3 C11 R3 1.5k VR2 500 22nF R4 , VR 1 500 1 2 3 C23 22nF SW H C112 1nF R104 1k 22nF 1 R103 750 10 , C111 22nF FM OUT C112 1nF R104 1k R105 1k SW H R106 1k C104 22nF SW REC , C112 1nF R104 1k R105 1k 7 C105 1nF R107 100 STV5712 1 TEA5705 C19 22nF , C13 R11 R16 Q2 R2 R106 R19 C31 R104 R1 JP3 L1 R8 R9 R10 Q3 R7 R3
STMicroelectronics
Original
capacitors 22nf bc237 pin lay-out transistor c104 C107D1 C102 transistor SGS-THOMSON OU C101 STV5715 STV5712/STV5715 STV5712/TEA5705 AN629/0693 AN629-06 VR101

LM78L05acza

Abstract: QPROX QT60040 / R1.04 / 0303 ©Quantum Research Group Ltd. 1 - OVERVIEW 1.2 CIRCUIT MODEL The , Film Water film QT60040 / R1.04 / 0303 ©Quantum Research Group Ltd. Figure 1-4 QT60040 , are implemented as discrete lQ -3- PARALLEL LINES SERPENTINE SPIRAL QT60040 / R1.04 , QT60040 / R1.04 / 0303 ©Quantum Research Group Ltd. case the keys will continue to be functional , recalibration lQ -5- QT60040 / R1.04 / 0303 ©Quantum Research Group Ltd. Figure 3-1 E604 PCB
Quantum Research Group
Original
LM78L05acza QPROX pin function of ic 7493 pin diagram of ic 7493 78L05 cy 2N4401

TP-107-02

Abstract: KDS 16.000MHz Section 5 Section 8 Revision Added revision history table Added Note about R104 placement Updated BOM and schematic to include R104 MC1320x RF Daughter Card, Rev. 1.1 Freescale Semiconductor 3 , . NOTE Ensure that zero ohm resistor R104 is in place on the MC1320x Daughter Card. As of this release, previous versions of the MC1320x Daughter Card may not have R104 inserted. NOTE J101 Pin 1 of the , PTD5/CESI of GB60 TTN when R104 is installed. Connect directly to Pin 15 of J102. 35 MOSI
Freescale Semiconductor
Original
HCS08 M52235 TP-107-02 KDS 16.000MHz TP-107-02-5-T QG60 J102 MC1320 RFD-A00 M68EVB908GB60

mos 6500 mpu

Abstract: HA13614FH R104=1.6M, Rs Rin - 60 ±30% k C108=120pF Tpwm 50 - - ns , 11 6 8 R104 C108 RL 7 9 OTSD Vss (+5V) 12VGOOD (Open Drain) R110 Vss (+5V , R104 C108 RL VCMN 8 45 DACOUT Vdd (+3.3V) Rs 9 44 VREF LVI1 47 R107 2 OP1IN(- , R101 - R102 R103 - 5.6 k R104 - VCM 5 R105 - VCMP 6 R106 , ) Vvcmin : VCMIN (10 ) [V] Gvcm : VCM [dB]() 5. C108 R104 VCM BW1 BW1 10kHz 12 BW1
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Original
HA13614FH ADJ-207-258C FP-48T mos 6500 mpu RS04 c10501 C116

HA13605

Abstract: R104 Diode electrical characteristics table. However, note that R103 m ust be equal to R104. Gfg = Rfgf R103 3. The , 1/3 326 HA13605 External Components Part No. R1, R2 R101, R102 R103, R104 R105, R106 R107 , using the following formula as a rough estimate. C 10b~ (R 103 + R104) fFG (F) n Consult with the , 1 Vpp - m V pp R1 = 5.6 ki2 Gfg = 32 dB, R103, R104 = 580 Î2 Gfg = 32 dB, R103, R104 =
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HA13605---------T

c103 TRANSISTOR equivalent

Abstract: TRANSISTOR c105 . TYPE RATINGS R102 Metal film resistor 30 ohms 3W R103 Winding resistor 15 ohms 2W R104 Metal film , |74 7} MK1210 if 5 _J «T C105 Voul C102 R104 C103 R105 -o â'" PART No. TYPE RATINGS R102 Metal film resistor 30 ohms 3W R103 Winding resistor 15 ohms 2W R104 Metal film resistors 10OK ohms 2W , ohms 3W R103 Winding resistor 15 ohms 2W R104 Metal film resistors 100K ohms 2W R105 H 100K ohms 2W , ohms 3W R103 Winding resistor 15 ohms 2W R104 Metal film resistors 100K ohms 2W R105 II 100K ohms 2W
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c103 TRANSISTOR equivalent TRANSISTOR c105 c105 TRANSISTOR transistor c107 m c103 m TRANSISTOR C102 M transistor 00D43AA 200VAC 2606C

YCL Electronics

Abstract: adsl splitter circuit diagram resistance seen by the inputs when the relay is closed (R101 on IN+, R104 on IN-). The value of VR2 , ended amplifier configuration (i.e. TA010XA designs). See Table 1 for R101/R104 resistor value , : R101/R104 Resistor Value Selection *The filter board comes stuffed with 49.9K for R101/R104. 2 , 4.99k 7 R103 R105 49.9k R104 49.9k R101 / R104 Resistor Value Selection Table Amplifier , R108 R110 49.9k R100 R101 R102 R103 R104 R105 698 R26 R28 7.15k R23 931 R30 R32 BANANA 5V
YCL Electronics
Original
CPF105G YCL Electronics adsl splitter circuit diagram ADSL Modem circuit diagram schematic diagram modem adsl Modem data splitter RDPS-POTS281 MIL-STD-202 5-500H

COLPDS001-4 R10

Abstract: CA850 619 100 R102 1SFA 619 100 R104 1SFA 619 100 R105 1SFA 619 100 R107 0.018 0.022 0.018 0.022 , 619 101 R104 1SFA 619 101 R105 1SFA 619 101 R107 0.018 0.022 0.018 0.022 0.022 Pushbutton , -10-01 2 NC CP3-10-02 1 NO +1 NC CP3-10-11 1SFA 619 102 R101 1SFA 619 102 R102 1SFA 619 102 R104 , -10-01 CP4-10-02 CP4-10-11 1SFA 619 103 R101 1SFA 619 103 R102 1SFA 619 103 R104 1SFA 619 103 R105 , -10-02 C2SS1-10-11 1SFA 619 200 R101 1SFA 619 200 R102 1SFA 619 200 R104 1SFA 619 200 R105 1SFA 619 200
NEC
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CA850 COLPDS001-4 R10 V853 V850TM U16076JJ1V0AN001 U16076JJ1V0AN V850V853 V850/SA1

U16053E

Abstract: st 9318 11 6 8 R104 C108 RL 7 9 OTSD Vss (+5V) 12VGOOD (Open Drain) R110 Vss (+5V , R104 C108 RL VCMN 8 45 DACOUT Vdd (+3.3V) Rs 9 44 VREF LVI1 47 R107 2 OP1IN(- , R101 - R102 R103 - 5.6 k R104 - VCM 5 R105 - VCMP 6 R106 , ) Vvcmin : VCMIN (10 ) [V] Gvcm : VCM [dB]() 5. C108 R104 VCM BW1 BW1 10kHz 12 BW1 Lvcm R104 = [k] RS C108 = Lvcm 1 RS + RL R104 RL Lvcm (11) [F] (12) : VCM
Renesas Electronics
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U16053E st 9318 V850 assembly programming

SM16LC05C-LF-T7

Abstract: SM16LC03 QT114 R1.04/1106 The QT114 is a digital burst mode charge-transfer (QT) sensor designed , Internal Switching and Timing LQ 2 QT114 R1.04/1106 As Figure 2-1 shows, a vertical strip , . 3 QT114 R1.04/1106 Figure 2-4 Single Level Internal Planar Probe Figure 2-5 Single Level , be inserted between the probe and the QT114 to block DC current flows. 4 QT114 R1.04/1106 , can be ignored. 5 QT114 R1.04/1106 The trip point ideally occurs at the centerline of the
Protek Devices
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SM16LC03 SM16LC36C SM16LC05C-LF-T7 SM16LC03C SM16LC05 RS-422 RS-432 RS-485 EN61000-4
Abstract: QT110-DG - ©1999-2004 Quantum Research Group QT110 R1.04/0405 1 - OVERVIEW Figure 1-1 Standard , circuits, it applies equally to capacitive QT110 R1.04/0405 Figure 1-3 Internal Switching & Timing , Tie Pin 5 to: Leave open Pin 6 Pin 7 Su rro und ing e nv iro nm en t 3 CX 3 QT110 R1.04 , Compensation Signal H ysteresis Threshold R eference Output 4 QT110 R1.04/0405 Figure 2-2 , above 5pF LQ 5 QT110 R1.04/0405 Figure 2-4 Figure 2-5 Getting HB pulses with a Protek Devices
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EIA-481 8-4-T13
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