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LT1528CQ#TR Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices Buy
LT1528CQ Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices Buy
LT1528CQ#PBF Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices Buy
LT1528CT#PBF Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: TO-220; Pins: 5; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices Buy
LT1528CT Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: TO-220; Pins: 5; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices Buy
LT1528CQ#TRPBF Linear Technology LT1528 - 3A Low Dropout Regulator for Microprocessor Applications; Package: DD PAK; Pins: 5; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices Buy

Application Note AN-780A

Catalog Datasheet MFG & Type PDF Document Tags

an-780A

Abstract: motorola AN-780A . Additional information on the use of optically coupled triac drivers i: available in Application Note AN-780A , Blocking Current, Either Direction (Rated Vdrm, Note 1) IDRM â'" 10 100 nA Peak On-State Voltage, Either , , Note 2) dv/dt - 10 - VlflS COUPLED LED Trigger Current, Current Required to Latch Output 'ft mA (Main Terminal Voltage = 3 V, Note 3) MOC3020 â'" 15 30 MOC3021 â'" 8 15 MOC3022 â'" â'" 10 , depending upon the particular triac and load used. Figure 8. Typical Application Circuit OUTLINE
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motorola AN-780A application note an-780a MQC3020 AN 780a Motorola Application Note AN-780A Opto-isolator MOC3021 E54915 MOC3011 IEC380/VDE0806 IEC435/VDE0805 IEC65/VDE0860 IEC204/

triac driver opto moc3021

Abstract: Motorola Application Note AN-780A information on the use of optically coupled trlac drivers is available In Application Note AN-780A. In this , 100 mA Peak) Critical Rate of Rise of Off-State Voltage (Figure 7, Note 2) COUPLED LED Trigger Current , upon the particu lar triac and load used. Figure 8. Typical Application Circuit 5-66 Motorola
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MOC3Q21 MOC3Q22 triac driver opto moc3021 AN-780A MOC3021 C3023 triac driver f opto moc3021 opto triac moc3021 MOC3023

Motorola Application Note AN-780A

Abstract: an-780A Application Note AN-780A. Figure 8. Inductive Load with Sensitive Qate Triac (Iq T « 15 mA) Figure 9 , 0884 la a test option. STANDARD THRU HOLE CASE 730A-04 Recommended for 115 Vac(rms) Application , Off-State Voltage (Figure 7, Note 2) COUPLED LED Trigger Current, Current Required to Latch Output (Main , Circuit Motorola Optoelectronics Device Data 5-61 MOC3010 MOC3011 MOC3012 TYPICAL APPLICATION CIRCUITS NOTE: This optoisolator should not be used to drive a load directly. It is intended to be a
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MOC3Q12 Application Note Motorola 780a an780a MQC3011 motorola an780a m003010 AN-780A MOC3011 M003010 OC3011 OC3012 MOC3Q11 M003010/3011/3012

application note an-780a

Abstract: motorola AN-780A the use of the M003009/3010/3011/3012 is available in Application Note AN-780A. 120 V 60 Hz Figure 8 , MOC3009, MOC3010, MOC3011, MOC3012 TYPICAL APPLICATION CIRCUITS Note: This optoisolator should not be , Current, Either Direction (Rated Vdrm, Note 1) IDRM â'" 10 100 nA Peak On-State Voltage, Either Direction dTM = 100 mA Peak) VTM â'" 1.8 3 Volts Critical Rate of Rise of Off-State Voltage (Figure 7, Note 2 , (Main Terminal Voltage = 3 V, Note 3) MOC3009 â'" 15 30 MOC3010 â'" 8 15 MOC3011 â'" 5 10
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VDE0113 Note AN-780A MOC30* inductive triac MOC3011 Motorola MOC3011 motorola triac driver VDE0860 VDE110 VDE0160 VDE0832 VDE0833 VDE0883/

application note an-780a

Abstract: an-780A information on the use of the MOC3010/3011/3012 is available in Application Note AN­780A. ZL RL VCC , t MOC3010, MOC3011, MOC3012 TYPICAL APPLICATION CIRCUITS NOTE: This optoisolator should not , 1.8 3 Volts Critical Rate of Rise of Off­State Voltage (Figure 7, Note 2) dv/dt - , DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR
Fairchild Semiconductor
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triac MOC3010

an-780A

Abstract: MOC3021 application the use of optically coupled triac drivers is available in Application Note AN­780A. GROUND In , Volts Critical Rate of Rise of Off­State Voltage (Figure 7, Note 2) dv/dt - 10 - V , upon the particular triac and load used. Figure 8. Typical Application Circuit MOC3021, MOC3022 , , FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY
Fairchild Semiconductor
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MOC3021 application MOC3021 and applications moc3021 dimmer moc3023 dimmer moc 3021 data sheet MOC3020 Q

Motorola Application Note AN-780A

Abstract: MOC3Q12 available in Application Note AN-780A. yCC Rin MOC3009 - vw- 18C ''CC Rin MOC3009 , APPLICATION CIRCUITS Note: T h is optoisolator should not be used to drive a load directly. It is intended to
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MQC3010 parallel triac IEC204/V MOC3009/3010/3011/3012 C30I2

Motorola Application Note AN-780A

Abstract: motorola AN-780A available in Application Note AN -780A . Figure 7. Resistive Load Figure 8. Inductive Load with , TYPICAL APPLICATION CIRCUITS NOTE: This optoisolator should not be used to drive a load directly. It is , ) Critical Rate of Rise of O ff-S tate Voltage (Figure 7, Note 2) C O UPLED LED Trigger Current, Current , e any liability arising out o f the application o r use of any product o r circuit, and specifically , , including "Typicals" m ust be validated fo r each custo m e r application by cu sto m e r's technical
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OC3010 transistor c3012 MQC3009 OC3010/D MOC3010/D

Motorola Application Note AN-780A

Abstract: MOC3009/3010/3011/3012 Motorola Optoelectronics Device Data 3 M O C3010 MOC3011 MOC3012 TYPICAL APPLICATION CIRCUITS NOTE , only. Additional inform ation on the use of the M OC3010/3011/3012 is available in Application Note AN -780A . Figure 7. Resistive Load Figure 8. Inductive Load with Sensitive Gate Triac (Iq t  , Voltage (Figure 7, Note 2) dv/dt â'" 10 â'" V/^s â'" â'" 8 5 3 15 10 5 â , liability arising out o f the application o r use of any product o r circuit, and specifically d isclaim s
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MOC3009/D QC3010/D

motorola AN-780A

Abstract: an-780A triac drivers is available in Application Note AN­780A. GROUND In this circuit the "hot" side of , Off­State Voltage (Figure 7, Note 2) dv/dt - 10 - V/µs - - - 8 - - 15 10 , load used. Figure 8. Typical Application Circuit 4 Motorola Optoelectronics Device Data , liability arising out of the application or use of any product or circuit, and specifically disclaims any , validated for each customer application by customer's technical experts. Motorola does not convey any
Motorola
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thyristor driving circuit by using opto moc3022 moc3020 OPTO opto triac moc3020 relay opto moc3021 moc opto triac moc3020 application notes MOC3020/D

motorola AN-780A

Abstract: Motorola Application Note AN-780A . Additional information on the use of the MOC3010/3011/3012 is available in Application Note AN­780A. ZL , Optoelectronics Device Data 3 MOC3010 MOC3011 MOC3012 TYPICAL APPLICATION CIRCUITS NOTE: This , - 1.8 3 Volts Critical Rate of Rise of Off­State Voltage (Figure 7, Note 2) dv/dt , Motorola assume any liability arising out of the application or use of any product or circuit, and , "Typicals" must be validated for each customer application by customer's technical experts. Motorola does
Motorola
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opto triac moc3010 TRIAC 8315 MOC3011 motorola Optoisolator Triac Driver 780a triac Motorola DATA BOOK

Note AN-780A

Abstract: application note an-780a method) and Tracking servo (Three beam method) Application Outline Dimensions - Optical pickups , = 5V, Vs=2.5V, RL=10Kâ"¦, λ=780ãš, Ta= 25â"ƒ] Symbol Condition Current Consumption Icc Output Offset Voltage Voff (Note 3) Offset voltage with Respect to Vref (Note3) (A + B) - (C + , '©NCC â'¨VF â'§GND â'¦VC â'¥VCC Î" Voff Min. Typ. Max. Unit Application - 6.0 , Output Voltage (A ~ D) Vo Po = 10ã¼, λ = 780㚠250 330 410 ã· Output Voltage (E
Kodenshi
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KOD-1017 KOD-1051

RS780

Abstract: Receiver Unit RS-750,RS-780,RS-790 Series â  ç"¨é'"/ Application RS-750 TV, VCR, audio , -750ã'·ãƒªãƒ¼ã'ºã¯ã' ä½é›»å§ã'¿ã'¤ãƒ—の受å‰ãƒ¦ ãƒ'ッãƒã§ã™ã'' ● RS-780ã'·ãƒªãƒ¼ã'ºã¯ã' レンã'ºä»˜ãã§å—å‰è·é , sensing distance characteristics. ● The application of the RS-790 series is suitable for thicker products compared with the application of the RS-770 series. ●å部結線図/Internal circuit , å°é"距離 2 Reaching distance å‰è»¸ã«ãã"て(注1)(注2) At optical axis(Note 1)(Note 2
Citizen Electronics
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RS780 RS-751 RS-752

circuit diagram of full subtractor circuit

Abstract: circuit diagram of full adder 2 bit over operating temperature range (unless otherwise noted) Supply Voltage Vcc (See Note 4 , tpdl BC 3 CL= 15 pF, Rl =780« 18 25 ns tpdO 4 CL= 15 pF, Rl = 780îî 38 55 ns tpdl AC £ 5 CL= 15 , the varying input sequence which they control. NOTE: Functions noted as Nt ore open. FIGURE A - N-BIT BINARY ADDER NOTE: Functions noted as NC are open. FIGURE B - N-BIT BINARY SUBTRACTOR 9-257 CIRCUIT TYPES , ) This application-, fully utilizes the flexibility of the input gating available within the SN7480. Two
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SN5480 1N3064 circuit diagram of full subtractor circuit circuit diagram of full adder 2 bit ttl sn7480 types of binary adder 780N
Abstract: processing. Refer to Application Note AN-1142 for additional details. Ordering Information HLMP-X X X X â , °C Soldering Temperature Note: 1. Derate linearly as shown in Figure 2. 2 260°C for 5 , RθJ-A = 780°C/W 20 0 WAVELENGTH â'" nm Figure 1. Relative intensity vs. wavelength. 20 , Mechanical Option Code Definition 00 Bulk Packaging, minimum increment 500 pcs/bag Note: All Agilent Technologies
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HLMP-KA45-E00 5988-8621EN 5988-9571EN
Abstract: Termination Application Note. Figure 5 shows an example of ICS843004-125 application schematic. In this , pair. LVPECL interface levels. NOTE: Pulldown refers to internal input resistors. See Table 2, Pin , ABSOLUTE MAXIMUM RATINGS Supply Voltage, VCC NOTE: Stresses beyond those listed under Absolute Maximum , Test Conditions Minimum Typical Maximum Units VOH Output High Voltage; NOTE 1 VCCO - 1.4 VCCO - 0.9 V VOL Output Low Voltage; NOTE 1 VCCO - 2.0 VCCO - 1.7 V Integrated Device Technology
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125MH 560MH 680MH 875MH 625MH

TC600PW

Abstract: Mornsun 780â"ƒ E -80~+700â"ƒ 500â"ƒ mV -60~+60mV 10mV Output signal: Output type , ~5V / 2~10V ( programmable) Note:1. Customers need to choose the type of the input signal, output , by MORNSUN TCxxxPW 2013.06.07-A/1 Page 2 of 4 APPLICATION CIRCUIT DIAGRAM & PIN , Note: When use bottom power supply, anyone group or both is OK. TC100PW TC140PW Field Area , Note: 1. All specifications are measured at Ta=25°C, humidity
MORNSUN
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TC600PW Mornsun TCxxxPW mornsun-power 50PPM/ TC200PW TC240PW TC640PW DIN35
Abstract: /LVTTL interface levels. NOTE: Pulldown refers to internal input resistors. See Table 2, Pin , SYNTHESIZER Absolute Maximum Ratings NOTE: Stresses beyond those listed under Absolute Maximum Ratings may , NOTE: Characterized using an 18pF parallel resonant crystal. ICS844004BGI-01 REVISION A MARCH 8 , Maximum 156.25 Units MHz tsk(o) tjit(Ø) 125 MHz 62.5 MHz Output Skew; NOTE 1, 2 RMS Phase Jitter (Random); NOTE 3 F_SEL[1:0] = 01 F_SEL[1:0] = 10 fOUT Output Frequency Integrated Device Technology
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ICS844004I-01

vishay m-line rosin solvent

Abstract: 361A-20R -2: 220Vac. WRS-A Replacement Electrodes: Package of 6. References: Application Note TT-606, â'Soldering Techniques for Lead Attachment to Strain Gages with Solder Dots.â' Application Note TT-602, â'Silver Soldering Technique for Attachment of Leads to Strain Gages.â' Application Note TT , Packaging Solder Type See Note 1 Order No. Unit Size 361A-20R 361A-20R-25 25ft [7.6m , . 1240-FPA 1oz [28g] 1220°/1435°F [660°/780°C] Excellent Excellent High Good
Vishay Micro-Measurements
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vishay m-line rosin solvent 361A-20R vishay m-flux AR 570-28R M5S3 rosin solvent rsk-2 361-40R-15 361-40R 450-20R 450-20S 430-20S-25 430-20S
Abstract: transparent touch screens are engineered to complement the application of choice while offering superior , diverse needs of our customers at the forefront. Whether an application requires the fouror five-wire , ' x 9.79â' (324.8mm x 248.7mm) .083â' (2.1mm) Length 3.15â' (80.0mm) Note: See web site , ' (246.0mm x 184.5mm) 9.84â' x 7.42â' (250.0mm x 188.5mm) 10.28â' x 7.80â' (261.0mm x 198.0mm , ) Note: Input methods are finger or stylus. Panel Thickness .055â' (1.4mm) .083â' (2.1mm NKK Switches
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RS232C AT713 FTCS04B FTCS05B FTCS04A FTCS04A2
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