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SCAN90CP02SPX Texas Instruments 2-CHANNEL, CROSS POINT SWITCH, PQCC28, PLASTIC, LLP-28
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SCAN90CP02VY/NOPB Texas Instruments 1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 32-LQFP -40 to 85
SCAN90004TVS/NOPB Texas Instruments 4-Channel LVDS Buffer/Repeater with Pre-Emphasis 48-TQFP -40 to 85
SCAN90CP02SP/NOPB Texas Instruments 1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 28-UQFN -40 to 85
SCAN90CP02VYX/NOPB Texas Instruments 1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 32-LQFP -40 to 85

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AN90-1 datasheet (15)

Part Manufacturer Description Type PDF
AN-901 National Semiconductor Interfacing the DP8441 and the 68040 Original PDF
AN901 STMicroelectronics MCUS - EMC GUIDE-LINES FOR MICROCONTROLLER - BASED APPLICATIONS Original PDF
AN-9010 Fairchild Semiconductor AN-9010 MOSFET Basics Original PDF
AN-9011 Fairchild Semiconductor AN-9011 High Input Voltage, Off-line Flyback Switching Power Supply using FSC IGBT (SGL5N150UF) Original PDF
AN-9012 Fairchild Semiconductor AN-9012 Induction Heating System Topology Review Original PDF
AN-9013 Fairchild Semiconductor AN-9013 Reducing Switching Losses with QFET in a Step-up Convert Original PDF
AN-9014 Fairchild Semiconductor AN-9014 Fairchild QFET for Synchronous Rectification DC to DC Converters Original PDF
AN-9015 Fairchild Semiconductor AN-9015 A180W, 100KHz Forward Converter Using QFET Original PDF
AN-9016 Fairchild Semiconductor AN-9016 IGBT Basics 1 Original PDF
AN-9017 Fairchild Semiconductor AN-9017 Manufacturing Technology of a Small Capacity Inverter Using a Fairchild IGBT Original PDF
AN-9018 Fairchild Semiconductor AN-9018 Smart Power Module Users Guide Original PDF
AN-9018-1 Fairchild Semiconductor AN-9018-1 (Part 1 of 3) Smart Power Module Users Guide Original PDF
AN-9018-2 Fairchild Semiconductor AN-9018-2 (Part 2 of 3) Smart Power Module Users Guide Original PDF
AN-9018-3 Fairchild Semiconductor AN-9018-3 (Part 3 of 3) Smart Power Module Users Guide Original PDF
AN-9019 Fairchild Semiconductor AN-9019 Motor Drive System Using SPM Inverter Original PDF

AN90-1 Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2004 - microchip AN857

Abstract:
Text: DS00901A_CN 1 AN901 BLDC 120° 1 1 Back EMF BEMF 1 HALL R BLDC 60o HALL Y HALL B Q3,Q5Q1,Q5Q1,Q6Q2,Q6Q2,Q4Q3,Q4Q3,Q5Q1,Q5Q1,Q6 5 4 6 2 3 1 5 4 6 RYB BEMF BEMF BEMF DS00901A_CN 2 1 MMF = - , SECTOR 5 0 1 2 3 4 5 0 1 = BEMF 2 BEMF BEMF BEMF , Q1 Q3 B R VDC z z Q4 z Q6 Y R B Q6 Q1 2 1 DC ½ VDC


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PDF AN901 dsPIC30F dsPIC30F2010 AN857 DS00901A microchip AN857 motor control dsPIC 30f c30 AN901 AN857 microchip AN901 PID control Microchip AN857 microchip 3 phase mcpwm dspic 30f AN12 dspic30f lcd
2005 - AN992

Abstract:
Text: AN901 dsPIC30F2010 dsPIC30F BLDC 1 AN901 AN901BLDC · PICDEMTM MCLV 1 · Hurst DMB0224C10002 CL B 6403 24 V BLDC · 24 V Microchip Microchip , . DS00992A_CN 1 AN992 2 PICDEMTM MCLV dsPIC30F2010 BLDC PWM3H PWM3L PWM2H PWM2L PWM1H , PICDEMTM MCLV Development Board User's Guide 10V 40V IGBT PICDEM MCLV PICDEM MCLV 1 2 DS00992A_CN 2 1 PICDEMTM MCLV J7, J11, J13 2-3 J15 J8,J12,J14 J10


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PDF AN992 dsPIC30F2010 dsPIC30F AN901 dsPIC30F6010 AN992 AN901 PI control PIC bldc motor speed control picdem mclv AN-992 DMB0224C10002 microchip AN901 dsPIC30F PIC bldc motor speed control AN992 dsPIC30F2010 BLDC
2002 - ltc1506

Abstract:
Text: of Linear Technology Corporation. AN90-1 Application Note 90 Efficiency Heat build up in , issue is treated in greater detail below. Figure 1 shows a conceptual laser current source. Inputs , F01 Figure 1 . Conceptual Laser Current Source is Deceptively Simple. Practical System Issues and , caution. 1 The following circuit examples (hopefully) maintain this outlook while simultaneously , Note 1 . "For Fools Rush in Where Angels Fear to Tread." An essay on criticism, A. Pope. 1711. AN90


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PDF AN90-23 AN90-24 an90f ltc1506 CTX02-13834 HP-461A a1 lt1006 jim williams ccfl AN-9016 SCR 2N5060 applications "scr manual" DT1608C-333B AN-9012
2006 - microchip application notes PID

Abstract:
Text: BLDC 1 2 BLDC AN857 BLDC 3 DS00901A_JP page 1 AN901 BLDC 3 120° 1 1 6 3 1 3 BEMF 1 : R BLDC 60o Y B Q3,Q5Q1,Q5Q1,Q6Q2,Q6Q2,Q4Q3,Q4Q3,Q5Q1,Q5Q1,Q6 5 4 6 2 3 1 5 4 6 RYB


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PDF AN901 dsPIC30F dsPIC30F2010 DS00901A microchip application notes PID PID control dsPIC PI control PIC bldc motor speed control pic pid control AN901 PID CONTROL pwm led PID control dsPIC dc motor speed control PID control dsPIC DC motor dsPIC30F pwm PID control dc motor speed control
2004 - microchip AN857

Abstract:
Text: DS00901A_CN 1 AN901 BLDC 120° 1 1 Back EMF BEMF 1 HALL R BLDC 60o HALL Y HALL B Q3,Q5Q1,Q5Q1,Q6Q2,Q6Q2,Q4Q3,Q4Q3,Q5Q1,Q5Q1,Q6 5 4 6 2 3 1 5 4 6 RYB BEMF BEMF BEMF DS00901A_CN 2 1 MMF = - , SECTOR 5 0 1 2 3 4 5 0 1 = BEMF 2 BEMF BEMF BEMF , Q1 Q3 B R VDC z z Q4 z Q6 Y R B Q6 Q1 2 1 DC ½ VDC


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PDF AN901 dsPIC30F dsPIC30F2010 AN857 DS00901A microchip AN857 AN857 PWM control dsPIC 30f in C motor control dsPIC 30f c30 timer pwm dsPIC 30f 3 phase mcpwm dspic 30f microchip AN901 PWM control dsPIC 30f AN901 PID control dsPIC DC motor
1997 - PT4068

Abstract:
Text: Copyright © Crystal Semiconductor Corporation 1997 (All Rights Reserved) JAN `97 AN90REV1 1 AN90 , .16 LIST OF FIGURES Figure 1 . Port 0 Figure 2. Port 1 Schematic , .6 Figure 6. Header Schematic ( 1 of 2 , .14 LIST OF TABLES Table 1 . Table 2. Table 3. Table 4. EEB8904 Bill of Materials


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PDF CS8904 10Base-T AN90REV1 CS8904 PT4068 PE65746 pe-65994 VOLTREX valor st7010 pe-65746 st7010 TD43-2006K TG43-1406N M-tron 1 mhz crystal oscillator
2005 - sensorless bldc c source code PIC

Abstract:
Text: device. You will want to thoroughly FIGURE 1 : review AN901 for details on BLDC sensorless design , implement the described motor control application: · PICDEMTM MCLV Development Board (Figure 1 ) · Hurst , . DS00992A-page 1 AN992 FIGURE 2: PICDEMTM MCLV BOARD FUNCTIONALITY dsPIC30F2010 BLDC PWM3H PWM3L , , use the jumper settings shown in Table 1 and the motor connections shown in Table 2. DS00992A-page 2 TABLE 1 : JUMPER SETTINGS FOR PICDEMTM MCLV BOARD Jumper Sensorless Control J7, J11


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PDF AN992 dsPIC30F2010 dsPIC30F AN901) dsPIC30F2010 AN901, dsPIC30F6010 80-pin dsPIC30F6010 sensorless bldc c source code PIC programmer schematic ICD2 dspic30f motor control example codes DMB0224C10002 sensorless bldc c source code dspic30f AN901 sensorless bldc c source code dspic microchip AN901 pic with 3 phase motor drive diagram DMB0224
2004 - star delta wiring diagram motor start y

Abstract:
Text: . DS00901A-page 1 AN901 Sensorless Techniques for BLDC Motor Commutation The methods discussed here are , information is not required, just detection of the required commutation instances. Figure 1 shows the three sensor outputs along with the corresponding Back EMF (BEMF) voltage waveform for each phase. FIGURE 1 , ,Q5Q1,Q5Q1,Q6 HALL STATE 5 4 6 2 3 1 5 4 6 RYB To detect rotor position by monitoring a , as given by Equation 1 : EQUATION 1 : MAGNETIC OHM'S LAW MMF = - In this


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PDF AN901 dsPIC30F DK-2750 D-85737 NL-5152 star delta wiring diagram motor start y current sensing inverter delta 4570 star delta diagram motor motor control dsPIC 30f c30 star delta wiring diagram with timer star delta wiring diagram with magnetic and timer star delta wiring diagram Star Delta Control circuit for 3 phase motor PWM control dsPIC 30f schematic diagram motor control using pwm module
1995 - N-Channel Depletion-Mode MOSFET

Abstract:
Text: nchannel devices. Figure 1 . Classification of FETs (06/21/94) 1 AN901 Siliconix Gate n , by studying the transfer characteristics (biasing), (Figure 1 ). This mode of operation results in , ! 2 VGS = -0.5 V ID VGS = - 1 V VGS = -1.5 V VP VDS Figure 4. Output Characteristics , approximated by I 1 I V GS + V GS(off) D DSS 12 Figure 5. Basic , 40 0 -1.2 V -1.4 V -1.6 V - 1 V 0 4 8 12 16 VDS - DraintoSource Voltage (V) 20


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PDF AN901 ND2012 ND2406 2N692) N-Channel Depletion-Mode MOSFET normal scr operation depletion-mode depletion mode current limiter mosfet modern applications Depletion-Mode MOSFET depletion mode mosfet n channel depletion MOSFET AN901 mosfet vs SCR
2006 - CH7308

Abstract:
Text: Coefficient Programming Guide 1 . Introduction This application note focuses on the basic guidelines on how , linearly: PO = ( 1 -dy)*[( 1 -dx)*P + dx*PH] + dy*[( 1 -dx)*PV + dx*PHV] PO is the output pixel. P, PH, PV , PV to PHV are normalized to 1 . dx, dy are normalized distances, shown in Figure 1 . P dx 1 -dx PH dy PO 1 -dy PV PHV Figure 1 : Linear Interpolation Diagram 206-0000-090 Rev. 1.1, 2/7/2006 1 CHRONTEL AN-90 However, depending on the image content, bilinear


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PDF AN-90 CH7308 upscaler AN-90 Bios Modification Program CH7308A nonlinear lvds ch7308b opcode sheet Chrontel AN-90 Chrontel CH7308
SCR voltage regulator

Abstract:
Text: Maxim > App Notes > POWER-SUPPLY CIRCUITS Keywords: Negative-Output Boost Regulator Has High Efficiency Jul 09, 1998 APPLICATION NOTE 90 Negative-Output Boost Regulator Has High Efficiency The circuit of Figure 1 converts 5V to an adjustable output of -12V to -22V, suitable for use as a , inverting-topology converters (Figure 2). Figure 1 . This switching regulator operates with a discrete-component , . Figure 2. The Figure 1 circuit exhibits excellent efficiency at higher load currents. Q1 and Q2 form an


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PDF com/an90 MAX634: APP90, Appnote90, SCR voltage regulator MAX634 SCR powersupply CIRCUIT SWITCH SCR POWER SUPPLY AN90 mosfet vs SCR scr regulator voltage regulator mosfet
AN90 siliconix

Abstract:
Text: Figure 1 , a charge-pum p circuit is used to boost the 5-V supply (actually 4.5-V m inim um) to a voltage , © Figure 1 . 5-Volt, 3-Phase Motor Drive (11/30/92) 97 AN90-5 voltage rating for the lower , upper and lower gates from a comm on voltage, as illustrated in Figure 1 , not only elim inates the need , than 1 |tA of supply current when on (output high). This (11/30/92) JAE F S ilic oGroup n ix , voltage to enhance the upper device. As shown in Figure 1 , the generation of a higher voltage to drive


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PDF AN90-5 AN90-4. Si9955DY Si9956DY AN90 siliconix SI9910 Si9959
1990 - AMD 22V10

Abstract:
Text: Clk2xIn CONTROL LINES GENERAL DESCRIPTION OF THE DRAM SYSTEM Figure 1 illustrates a typical system , timing, and data path control. The system shown in Figure 1 runs at 25 Mhz (2x clock = 50 Mhz). The , 2880 drw 01 Figure 1 . R3051 RISController Family Based System ©1990 Integrated Device Technology, Inc. 1 DESIGNING A DISCRETE DRAM CONTROLLER FOR THE R3051 RISCONTROLLERTM FAMILY , will focus on the DRAM control and data path sub-system. The main DRAM memory system is based on 1 to


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PDF R3051 AN-90 R3051 R3051TM AMD 22V10 FCT161 20R8-10 AN-90 MIPS R3000A R3000A
1996 - amd 22V10

Abstract:
Text: Clk2xIn CONTROL LINES GENERAL DESCRIPTION OF THE DRAM SYSTEM Figure 1 illustrates a typical system , timing, and data path control. The system shown in Figure 1 runs at 25 Mhz (2x clock = 50 Mhz). The , 2880 drw 01 Figure 1 . R3051 RISController Family Based System ©1996 Integrated Device Technology , sub-system. The main DRAM memory system is based on 1 to 4 banks of non-interleaved DRAMs with 80 nsec of , :A0). Figure 2 illustrates the architecture of the main DRAM memory system. Table 1 illustrates the


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PDF R3051 AN-90 R3051 R3051TM amd 22V10 AN-90 R3000A
SMW14N50F

Abstract:
Text: surface-m ount package. T he standard-outline surface-m ount package (SO-8, see Figure 1 ) has a copper , 3000 pF can be efficiently switched at rates g reater than 1 MHz. This switching ability greatly , L ~ A, j i t Figure 1 . SO-8 Package Dimensions ( 12/01/92) 89 AN90-4 This , . Motor Drive Inductive Flyback ) v+ Motor Drive (Re-enabled) (T3) OV+ 1 ^ D I D4 Sili Q2 OFF il V Q4 OFF . D2 D3 . !| Q3 ON 4 1 - T (T l) Q1 and Q3 ON for


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PDF AN90-4 Si9942DY 9942DY SMW14N50F AN90 siliconix an904
sensorless bldc c source code dspic30f

Abstract:
Text: No file text available


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PDF dsPIC30F dsPIC30F DM300020) DM300022) AC300020) AN901 AN901, DS51406) DV164005) sensorless bldc c source code dspic30f sensorless bldc control source code AN901 dsPIC30F microchip AN901 sensorless bldc c source code brushless motor sensorless DM300022 HALL 276 sensorless circuit
2005 - motor control using PIC

Abstract:
Text: 1 Time, Lock Position 2 Time Lock Position 1 Demand, Lock Position 2 Demand Ramp Start and End , ­ Closed Volts - Mode 1 ­ Closed Current - Mode 2 ­ Open Volts - Mode 3 ­ Open Current · Control , . DS93005A-page 1 GS005 OPERATING THE SMTI Tuning the sensorless BLDC application software for a particular , the SMTI from the MPLAB IDE Tools menu, as shown in Figure 1 . The menu option is only available when , the nonvolatile memory of the target device. Halt the target FIGURE 1 : DS93005A-page 2


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PDF GS005 dsPIC30F dsPIC30F AN901 DS93005A-page motor control using PIC bldc Break BLDC motor control PIC AN901 MOTOR GS005 PI control PIC bldc motor speed control sensorless bldc control source code
1996 - N-Channel Depletion-Mode MOSFET

Abstract:
Text: . Figure 1 . Classification of FETs Siliconix 21-Jun-94 1 AN901 ÈÈÈÈ ÈÈÈÈ n Gate , be clarified by studying the transfer characteristics (biasing), (Figure 1 ). This mode of , and allows ID to become greater than IDSS! 2 ID VGS = ­ 1 V VGS = ­1.5 V VP VDS , Basic Regulator Circuit V GS + V GS(off) D DSS V GS(off) ID V GS ] 1 I RS + ID ID DSS ( 1 ) 12 (2) A change in either supply voltage or load impedance


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PDF AN901 ND2012 ND2406 2N692) 21-Jun-94 N-Channel Depletion-Mode MOSFET P-Channel Depletion Mosfets DEPLETION MOSFET depletion mode fet depletion mode mosfet P-Channel Depletion-Mode mosfet depletion n-channel mosfet triggering n mosfet depletion depletion p mosfet
P-Channel Depletion Mosfets

Abstract:
Text: devices have opposite arrows () and polarities versus n-channel devices. Figure 1 . Classification of , , 1-408-970-5600. Please request FaxBack document #70612. Siliconix 10-Mar-97 1 AN901 Drain n n , be clarified by studying the transfer characteristics (biasing), (Figure 1 ). MOSFET, we see , ID VGS = ­ 1 V VGS = ­1.5 V VP This mode of operation results in a unique series of output , 160 0V 120 ­0.2 V ­0.4 V 80 ­0.6 V ­0.8 V 40 ­ 1 V ­1.2 V ­1.4 V ­1.6 V 0 4


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PDF AN901 ND2012 ND2406 2N692) 10-Mar-97 P-Channel Depletion Mosfets mosfet low idss mosfet depletion P-Channel Depletion-Mode depletion mode fet Depletion MOSFET n-channel mosfet triggering N-Channel Depletion-Mode MOSFET depletion mode mosfet P-Channel Depletion-Mode MOSFET
DMB0224C10002

Abstract:
Text: No file text available


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PDF dsPIC30F dsPIC30F2010, dsPIC30F3010 dsPIC30F4012 dsPIC30F AN901 28-pin DM300021) DMB0224C10002 AC300020) DMB0224 sensorless bldc c source code AN992 dsPIC30F2010 BLDC c programming dsPIC30F3010 AN901 dsPIC30F an992 dsPIC30F3010 28pin AC300020 c source code motor speed
high voltage regulator design notes

Abstract:
Text: backplane bias supply for LCDs. The circuit of Figure 1 converts 5V to an adjustable output of -12V to -22V , ) surpasses that of most invertingtopology converters (Figure 2). Figure 1 . This switching regulator , , negative output voltage. Page 1 of 2 Figure 2. The Figure 1 circuit exhibits excellent efficiency at


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PDF MAX634, MAX634 com/an90 APP90, Appnote90, high voltage regulator design notes 12V voltage charge regulator AN90 Automatic Voltage Regulator Circuit negative 12v voltage regulator negative high voltage regulator SCR voltage regulator switching regulator circuits high voltage output
2005 - sensorless bldc motor control using dsp

Abstract:
Text: BLDC motor is vastly improved. Figure 1 depicts a typical six-step commutation scheme with the Hall , windings, R, Y and B. Depending on the Hall sensor reading from 1 to 6, an appropriate pair of windings is , and the third is not driven. Example: In Hall position 6 or sector 1 , the R winding is driven high , advance. This phenomenon is known as phase © 2005 Microchip Technology Inc. FIGURE 1 : TYPICAL SIX-STEP COMMUTATION HA R 60° HB Y HC B Sector Hall 5 5 0 4 1 6 2 2 3 3


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PDF GS001 dsPIC30F DS93001A-page sensorless bldc motor control using dsp sensorless bldc c source code PIC sensorless bldc motor driver circuit using dsp bldc sensored c code PID control dsPIC dc motor speed control sensorless bldc motor driver circuit sensorless bldc c source code dspic PIC bldc motor speed control dspic30f motor control example codes DS51554
1999 - mm74c14 equivalent

Abstract:
Text: Maximum Ratings(Note 1 ) Absolute Maximum VCC -0.3Vto VCC + 0.3V Voltage at Any Pin Operating , 700 mW Small Outline 260°C Note 1 : "Absolute Maximum Ratings" are those values beyond which , 3.0 5.0 10.8 V VCC = 5V, IO = -10 µA 4.5 VCC = 10V, IO = -10 µA Logical " 1 " Output Voltage 12.9 1.4 VCC = 15V VOUT( 1 ) 10.0 0.7 VCC = 10V Hysteresis 9.0 , V 1.0 µA IIN( 1 ) Logical " 1 " Input Current VCC = 15V, VIN = 15V IIN(0) Logical


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PDF MM74C14 MM74C14 mm74c14 equivalent MM74C14N M14A MM74C14M MS-001 N14A
DM7489

Abstract:
Text: Dual-ln-Une Package A D D R E S S * IN P U TA ÌBKICT. 1 EHAIL1 H AILE u U R IT E dUTWT 1 dataJ . , P U T C < 3A D O R E S t IN P U T D 2* D A T A M P U T4 Ü .W T * OUTPUT* _ 1 6 N D- Top View , ( 1 ) v IN(0) !|N( 1 ) !|N(0) v OUT( 1 ) DC Electrical Characteristics Parameter Logical " 1 " Input , > > in V f iA JLtA Logical " 1 " Input Current Logical "0 " Input Current Logical " 1 " Output Voltage 0.005 - 1 in Ö I TM o o > 1 II II z z > lo = - 360 jaA lo ~ -150 [xA Iq ~ 360


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PDF MM54C989/MM74C989 MM54C989/MM74C989 64-Bit 16-word AN-90. DM7489 me 555 N
MM74C14N

Abstract:
Text: Note 1 : "Absolute Maximum Ratings" are those values beyond which the Storage Temperature Range -65°C to + 1 50°C safety of the device cannot be guaranteed. Except for "Operating Tempera- Power , _ Hysteresis VCC = 5V 1.0 2.2 3.6 V Vcc=10V 2.0 3.6 7.2 V Vcc=15V 3.0 5.0 10.8 V vout( 1 ) Logical " 1 , Voltage VCC = 5V, lo=10nA 0.5 V Vcc= 10V, l0 = 10 nA 1.0 V !|n( 1 ) Logical " 1 " Input Current Vcc = , ( 1 ) Logical " 1 " Input Voltage Vcc = 5 V 4.3 V vin(0) Logical "0" Input Voltage VCC = 5V 0.7 V


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PDF MM74C14 MM74C14 0005WC MM74C14N M14A MM74C14M MS-001 N14A
Supplyframe Tracking Pixel