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DG506_507_508_509A.pdf
0.51 9 -A- A h x 45 C 0.0091 0.0125 0.23 0.32 - D D 0.3977 0.4133 10.10 10.50 3 -C- E 0.2914 0.2992 7.40 7.60 4 α e 0.050 BSC 1.27 BSC - e A1 C H 0.394 0.419 10.00 10.65 - B 0.10(0.004) h 0.010 0.029 0.25 0.75 5 0.25(0.010) M C A M B S L 0.016 0.050 0.40 1.27 6 N 16 16 7 NOTES: o o o o 1. Symbols are defined
in „Bestimmtes Bauteil gesucht zur Signalverteilung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Apex_PA03.pdf
PA03 • PA03A GRAPHS ) POWER DERATING BIAS CURRENT CURRENT LIMIT (500 X 256 50 P (B N , 64 I400 T A 40 T E ( P R 16 I S300 R , 30 I C I D S 4 I R I L E200 B N 20 W D 1 E P Z R L100 L U 10 A A .25 C R M E 0 O N 0 40 80 120 160 200 N .0–15 5 45 65 85 105 0–50 –25 0 25 50 75 100 125 I 25 CASE TEMPERATURE
in „Hochleistungs-Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vn820-e.pdf
c 0.45 0.60 c2 1.17 1.37 D 8.95 9.35 D2 8.00 E 10.00 10.40 E1 8.50 e 3.20 3.60 e1 6.60 7.00 L 13.70 14.50 L2 1.25 1.40 L3 0.90 1.70 L5 1.55 2.40 R 0.40 V2 0º 8º Package weight 1.40 Gr (typ) 34/44 Doc ID 10890 Rev 6 VN820-E Package and packing information 5.4
in „P2PAK in Eagle“ · Platinen ·
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Datei
version_1p3_assembler.asm
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
version_1p3_assembler.asm
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS52Basic.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS51Basic133.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
Figaro_TGS_Serien.pdf
is mounted on the tube. Electrode Heater coil Sintered SnO2 Ceramic tube Structure R type : resin base + resin cover C type : ceramic base + metal cover unit : mm unit : mm Basic measuring circuit M type : resin base / ceramic base + TGS metal cover a i Vc RL Vout t p u ( V H Circuit conditions Circuit
in „Auswertung Figaro Gassensoren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
at89c51snd1c.h
MSK_IPLI2C 0x02 #define MSK_IPLMMC 0x01 /* TMOD bits */ #define MSK_GATE1 0x80 #define MSK_C_T1 0x40 #define MSK_MO1 0x30 #define MSK_GATE0 0x08 #define MSK_C_T0 0x04 #define MSK_MO0 0x03 /* MP3CON bits */ #define MSK_MPEN 0x80 #define MSK_MPBBST 0x40 #define MSK_CRCEN 0x20 #define MSK_MSKANC 0x10 #
in „Suche Compiler/IDE für AT89C51AC3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arcam-FMJ-P7.pdf
2V710 Capacitor Non-Polar Radial Electrolytic 100UF 16V C322 2P910AM Capacitor Radial Electrolytic Dia 40mm PCB Mount 10000uF 71V C323 2P910AM Capacitor Radial Electrolytic Dia 40mm PCB Mount 10000uF 71V D101 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D200 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D201 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D202 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D203 3AV99W Diode Dual Surface Mount Small Signal
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
2V710 Capacitor Non-Polar Radial Electrolytic 100UF 16V C322 2P910AM Capacitor Radial Electrolytic Dia 40mm PCB Mount 10000uF 71V C323 2P910AM Capacitor Radial Electrolytic Dia 40mm PCB Mount 10000uF 71V D101 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D200 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D201 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D202 3AS16W Diode Surface Mount Small Signal BAS16W SOT-23 Package D203 3AV99W Diode Dual Surface Mount Small Signal
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mach-mini2440.c
, }, [1] = { /* mini2440 + 7" TFT + touchscreen */ _LCD_DECLARE( 10, /* the 7" runs slower */ 800, 40, 40, 48, /* x timing */ 480, 29, 3, 3, /* y timing */ 50), /* refresh rate */ .lcdcon5 = (S3C2410_LCDCON5_FRM565 | S3C2410_LCDCON5_INVVLINE | S3C2410_LCDCON5_INVVFRAME | S3C2410_LCDCON5_PWREN), }, /*
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADuC706x_App.s
Mode_UND EQU 0x1B Mode_SYS EQU 0x1F I_Bit EQU 0x80 ; when I bit is set, IRQ is disabled F_Bit EQU 0x40 ; when F bit is set, FIQ is disabled ;// <h> Stack Configuration (Stack Sizes in Bytes) ;// <o0> Undefined Mode <0x0-0xFFFFFFFF:8> ;// <o1> Supervisor Mode <0x0-0xFFFFFFFF:8> ;// <o2> Abort Mode <0x0
in „ARM - Init Problem bei Second-Stage-Bootloader ADUC7060“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BAT13003_-_ST13003D-K.pdf
CES Collector-emitter volBE= 0)V 700 V V CEO Collector-emitter voBtage (I = 0) 400 V V EBO Emitter-base voltCge (IB= 0, I =P0.75 A, t < 10 µsV(BR)EBO V C Collector current 1.5 A IIM Base currentak curPent (t < 5 ms) 0.75 s A IBM Base peak currenP (t < 5 ms) 1.5 c t ( A PTOT Total dissipatioc at T = 25 °C d40 W TSTG Storage temperature ro-55 to 150 °C TJ Max. operating junction temperature e P 150 °C le t s o O b ) - t( s u c o d P r te o le b s O 2/8 Doc ID 14182 Rev 2 ST13003D-K Electrical characteristics
in „USB SmartPhone Ladestecker - Reparaturversuch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CP2200_short.pdf
Controller ing an integrated IEEE 802.3 Ethernet Media Access Con- - Integrated IEEE 802.3 MAC and 10 BASE-T PHY troller (MAC), a 10 BASE-T Physical Layer (PHY), and - Fully compatible with 100/1000 BASE-T networks 8 kB of Non-Volatile Flash Memory available in a 28-pin - Full/Half duplex with auto-negotiation
in „"Neuer" Ethernet Controller von Silabs: Erfahrungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSi001_R3v2.0.pdf
6.3 Ordering Information Ordering code format MSiXXXX-PPP-T-FF XXXX Part Number PPP Package Type Q40 6 x 6 mm QFN 40 pin T Temperature Range C Commercial (-20 to +85 °C) FF Finishing Form DS Dry pack Trays DT Dry pack tape and reel NS Non-Dry pack Trays NT Non- Dry pack tape and reel Table 34: Ordering Information Code Description MSi001-Q40-C-DS MSi001 Dry pack trays MSi001-Q40-C-DT MSi001 Dry pack tape and reel R3v2.0 Mirics Confidential 24 MSi001 For more information contact: Mirics Semiconductor Inc info@mirics.com Oakmere, Barley Way
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PDF
JLX12864G-378.pdf
--*/ 0x00,0xFE,0x82,0x42,0xA2,0x9E,0x8A,0x82,0x86,0x8A,0xB2,0x62,0x02,0xFE,0x00,0x00, 0x00,0x7F,0x40,0x40,0x7F,0x40,0x40,0x40,0x40,0x40,0x7F,0x40,0x40,0x7F,0x00,0x00}; uchar code lei1[]={/*-- 文字: 畾 --*/ /*-- 宋体 12; 此字体下对应的点阵为:宽 x 高=16x16 --*/ 0x80,0x80,0x80,0xBF,0xA5,0xA5,0xA5,0x3F,0xA5,0xA5,0xA5,0xBF
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PDF
APPCHP6.PDF
thyristor, 492 fluorescent lamp, 579 triac, 494, 523, 529 switchstart, 579 Compact fluorescent lamp, 585 Base drive, 136 Continuous mode base inductor, 147 see Switched Mode Power Supplies base inductor, diode assisted, 148 Continuous operation, 557 base resistor, 146 Converter (dc-dc) drive transformer, 145
in „Motorsteuerung verbessern bei el. Nähmaschine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.pdf
thyristor, 492 fluorescent lamp, 579 triac, 494, 523, 529 switchstart, 579 Compact fluorescent lamp, 585 Base drive, 136 Continuous mode base inductor, 147 see Switched Mode Power Supplies base inductor, diode assisted, 148 Continuous operation, 557 base resistor, 146 Converter (dc-dc) drive transformer, 145
in „defekter Drehzahlsteller eines Schwingschleifers“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.PDF
thyristor, 492 fluorescent lamp, 579 triac, 494, 523, 529 switchstart, 579 Compact fluorescent lamp, 585 Base drive, 136 Continuous mode base inductor, 147 see Switched Mode Power Supplies base inductor, diode assisted, 148 Continuous operation, 557 base resistor, 146 Converter (dc-dc) drive transformer, 145
in „AQH2213 SSR Snubber dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOSFET_Switched_Mode_Amplifiers_Part_1_-_Handimans_Guide.pdf
increasing base cause drain current to start flowing is Radio Shack for about $1.These cheap switching mosfet's are the ones used in TheexceptiontothisaresomeIRF510s most home brew QRPtransmitters, and sold by Radio
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PDF
an-937_gateDrive.pdf
the sake of simplicity. Special considerations for IGBTs are contained in INT-990) 1. GATE DRIVE VS BASE DRIVE The conventional bipolar transistor is a current-driven CURRENT PRODUCES VOLTAGE PRODUCES device. As illustrated in IN BASE CURRENT AT GATE CURRENT IN COLLECTOR IN DRAIN Figure 1(a). a current
in „Gatekapazität (FET)“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Produktübersicht Orange Pi CM4 Single Board Computer
Neu Preis Kostenloser Versand Ansicht Orange pi Set 3 4GB LPDDR4/4X 32GB eMMC Flash Orange Pi CM4 Base Board Rockchip RK3566 30% OFF € 52,10 € 74,44 Orange pi CM4 8GB Ram + Base Board RK3566 64GB Emmc... € 67,57 € 96,54 Bestellungen(2) Orange pi cm4 base board compute modul 4 mit m.2 M-KEY... € 11,78
in „Nachrichten-Allerlei: neue Entwicklerboards, Meadow-Update uvm“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
bd139.pdf
SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit BD135 BD139 VCBO Collector-Base Voltage EI = 0) 45 80 V VCEO Collector-Emitter VoltageB(I = 0) 45 80 V VEBO Emitter-Base Voltage CI = 0) 5 V IC Collector Current 1.5 A CM Collector Peak Current 3 A IB Base Current 0.5 A Ptot Total
in „Was passiert bei zu großem Kollektorstrom am Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD2500_Macro_Assembler_V402_Manual.pdf
.... 1 - 40 SYMBOLS ........................................................................................ 1 - 40 IV 2500 A.D. Z80 Macro Assembler - Version 4.02 Table of Contents OPTIONS .....................
in „2500 A.D. Z80 Macro Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asmfunc.S
] @ Issule EOI command MOVS PC, LR RegVect: CMP R0, #32 @ Range check MOVCSS PC, LR LDR IP, =(LPC_BASE_VIC+VIC_VectAddr0) STR R1, [IP, R0, LSL #2] @ Set VICVectVectAddr<n> LDR IP, =(LPC_BASE_VIC+VIC_VectPriority0) STR R2, [IP, R0, LSL #2] @ Set VICVectPriority<n> MOV R1, #1 MOV R1, R1, LSL R0 LDR IP, =LPC_BASE_VIC LDR R2, [IP, #VIC_IntSelect] @ Set corresponding bit in the VICIntSelect BIC R2, R1 CMP R3, #1 ORREQ R2, R1 STR R2, [IP, #VIC_IntSelect] STR R1, [IP, #VIC_IntEnable] @ Enable corresponding interrupt
in „GCC ARM: writeback of base register is UNPREDICTABLE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asmfunc.S
] @ Issule EOI command MOVS PC, LR RegVect: CMP R0, #32 @ Range check MOVCSS PC, LR LDR IP, =(LPC_BASE_VIC+VIC_VectAddr0) STR R1, [IP, R0, LSL #2] @ Set VICVectVectAddr<n> LDR IP, =(LPC_BASE_VIC+VIC_VectPriority0) STR R2, [IP, R0, LSL #2] @ Set VICVectPriority<n> MOV R1, #1 MOV R1, R1, LSL R0 LDR IP, =LPC_BASE_VIC LDR R2, [IP, #VIC_IntSelect] @ Set corresponding bit in the VICIntSelect BIC R2, R2, R1 CMP R3, #1 ORREQ R2, R2, R1 STR R2, [IP, #VIC_IntSelect] STR R1, [IP, #VIC_IntEnable] @ Enable corresponding
in „FIQ interrupt using asmfunc.S or startup.S“ · µC & Digital Electronics ·
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PDF
TIPL791Af.PDF
100°C B 1 C 2 ● 1000 Volt Blocking Capability 3 E Pin 2 is in electrical contact with the mounting base. MDTRACA absolute maximum ratings at 25°C case temperature (unless otherwise noted) RATING SYMBOL VALUE UNIT TIPL791 850 Collector-base voltagE (I = 0) VCBO V TIPL791A 1000 TIPL791 850 Collector-emitter
in „Kühlkörper für mehrere Bauteile berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TTester_096k.pdf
GND as shown in Figure 4.4. If the negative side of component has a voltage of above 3.4V, when the base side 680 resistor was connected to GND, it must be a PNP transistor or a P-Channel FET. This can be easy ▯nd out by analysing the base voltage. If the base voltage is greater 0.97V, it must be a PNP
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Datei
main.c
initialization: - Configure the Flash prefetch - Systick timer is configured by default as source of time base, but user can eventually implement his proper time base source (a general purpose timer for example or other time source), keeping in mind that Time base duration should be kept 1ms since PPP_TIMEOUT_VALUEs
in „FatFS Beispiel STM3210C-EVAL f_open Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
solidstate.pdf
60 Vdc (DC Output) • SIP G EN ERA L SPECI FI CA T I O N S Dielectric Strength 50/60Hz Input/Output/Base 4000 Vrms Insulation Resistance (Min.) @ 500 Vdc 10 9Ohm Max. Capacitance Input/Output 8 pF Ambient Operating Temperature Range -40 to 80˚C Ambient Storage Temperature Range -40 to 125˚C M ECH A N I
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan und Simulationsergebnisse einer Transistorschaltung
GPIO17 V3 PULSE(0 3.3 50 1u 1u 10m 20m) V1 V2 5 3.3 Tueroeffner V4 PULSE(-1 1 25m 1u 20m 40m) R6 10k R4 10k T2 NPN R5 10k Q1 PNP R7 100 R2 2.2k R3 1k S1 MYSW D D1 D 1k T1-Base I(D1) V(tueroeffner) V(gpio17) 3.6V 3.2V 2.8V 2.4V 2.0V 1.6V 1.2V 0.8V 0.4V 0.0V -0.4V -3.2V 3.0mA 2.7mA 2.4mA 2.1mA
in „Raspberry GPIO Schaltung Taster und Relais“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
XLampXML2.pdf
TO ANY UTHORIZED PERSON W ITHOUT THE W RITTEN CONSENT REE INC. POCKETSIZE xlamp ® xm-l2 leds Ao - 5.40mm [.213"] D 2.00[.079] Do1.50 +.10 .0591 +.0039 P2 -.00 -.0000 [ ] Bo - 5.40mm [.213"] Ko - 3.35mm [.132"] 4.00[.157] 1.75[.069] Po E1 Tape and Reel 3.0° 5.40[.213] Bo All Cree carrier tapes conform
in „Li Akku effizient in WLED endladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Driver_Library_user_guide.pdf
(unsigned long ulBase, unsigned long ∗pulRxCount, unsigned long ∗pulTxCount) void CANInit (unsigned long ulBase) void CANIntClear (unsigned long ulBase, unsigned long ulIntClr) void CANIntDisable (unsigned long ulBase, unsigned
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2SB1623A.pdf
Symbol Rating nUnit . 4r 0±0.1ycl 0.5±0.15 Collector-emitter voltage VCEOe op−80 V 1 S if c Emitter-base voltage (CollVEBOr op−5) V uc5.0±0.50 Peak collector current ICn −8 A u rod2 3 2: Collector Collector power TC= 25°C PCP 40 W n ur P TO-220D-A1 Package dissipation e 2.0 t i g fo pe ion. Storage temperatureet
in „Endstufen Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
openbase Collector emitter leakage current CES – 0.1 1 2) μA VCE= 13 V,BE= 0, E-Bshortcircuited 1 40 2) nA V = 5V,V =0, CE BE E-Bshortcircuited 2) Collector baseleakage current CBO 1 40 VCB=5 V,IE= 0, open emitter 2) Emitter baseleakage current EBO 10 500 VEB=0.5V, C = 0, open collector DCcurrent gain
in „keysight ads bjt transistor (Bipolartransistor) Parameter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
openbase Collector emitter leakage current CES – 0.1 1 2) μA VCE= 13 V,BE= 0, E-Bshortcircuited 1 40 2) nA V = 5V,V =0, CE BE E-Bshortcircuited 2) Collector baseleakage current CBO 1 40 VCB=5 V,IE= 0, open emitter 2) Emitter baseleakage current EBO 10 500 VEB=0.5V, C = 0, open collector DCcurrent gain
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder ·
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PDF
TE28F128J3D75.pdf
(see Table 22). In the case of the 256 Mbit device (2 x 128), the command should be issued to the base address of the die. Table 22. Device Information Summary Device Information Word Address DQ[15:0] Device Manufacturer Code (Intel) Device Base Address + 00h 0089h Device ID Code Device Base Address + 01h (See Appendix B, “ID Codes”) 1 DQ0 = 0 Unlocked Block Lock Status Block Base Address + 02h DQ0 = 1 Locked DQ[15:1] = RFU 1 OTP Lock Register Device Base Address + 80h Lock Register 0 Data OTP Register - Factory Segment Device Base Address + 81h to 84Factory-Programmed Data OTP
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PDF
2SA1010.pdf
transistor: 2SC2334 ABSOLUTE MAXIMUM RATINGS (Ta = 25 C) ° Parameter Symbol Ratings Unit Collector to base voltage VCBO −100 V Collector to emitter voltage VCEO −100 V Pin Connection Emitter to base voltage V EBO −7.0 V Collector current (DC) IC(DC) −7.0 A Collector current (pulse) IC(pulse) −15 A Base current (DC) IB(DC) −3.5 A Total power dissipation PT (Tc = 25 °C) 40 W Total power dissipation PT (Ta = 25 °C) 1.5 W Junction temperature T j 150 °C Storage temperature Tstg −55 to +150 °C * PW ≤ 300 µs, duty cycle ≤ 10% confirm that this is the latest version.ect to
in „Suche vergleichbaren Transistor 2SA1010“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mmh-config.ini
= [input_filename_base].gcode overhangs = 1 perimeter_acceleration = 0 perimeter_extruder = 1 perimeter_extrusion_width = 0 perimeter_speed = 40 perimeters = 3 post_process = /usr/bin/gpx -g -p -m r1d raft_layers = 0 resolution
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PDF
ST-4000.pdf
10 10 20 300 types 15 20 20 0/15 600 IL(MSI) 0/20 20 100 100 3000 J.lA 0/ 5 5 20 20 150 HCF 0/10 10 40 40 300 types 0/15 15 80 80 600 VOH 0/ 5 < 1 5 4.95 4.95 4.95 0/10 <1 10 9.95 9.95 9.95 v 0/15 < 1 15 14.95 14.95 14.95 VOL 5/0 <1 5 0.05 0.05 0.05 10/0 <1 10 0.05 0.05 0.05 v 15/0 < 1 15 0.05 0.05 0.05
in „RC-Oszillator mit zwei CD4001B-NOR-Gattern schwingt nicht an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_AMD_Rev_Guide_Family_15h_Mod_00h-0Fh.pdf
(D18F1x10C[0]). • APICXXX: APIC memory-mapped registers; XXX is the byte address offset from the base address in hex (this may be 2 or 3 digits). The base address for this space is specified by the APIC Base Address Register (APIC_BAR) at MSR0000_001B. • CPUID FnXXXX_XXXX_RRR_xYYY: processor capability
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PDF
appl_1a.pdf
is a detect a modulated signal such as an AC or pulse common-emitter amplifier. Light input at the base signal. The phototransistor has a base terminal with causes the output(V ) to decreasefrom high to low. a fixedbias throughresistors R and R . AnR emitter OUT 1 2 4 The circuit shown in Figure 24 (B
in „Lichtsensor überprüfen aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TTA0001_datasheet_en_20131101.pdf
amplifier output stage. Absolute Maximum Ratings (Tc = 25°C) Characteristics Symbol Rating Unit Collector-base voltage VCBO -160 V Collector-emitter voltage V -160 V CEO Emitter-base voltage VEBO -5 V 1.BASE 2.COLLECTOR(HEAT SINK) DC IC -18 A Collector current 3.EMITTER Pulse CP -35 A JEDEC ― Base current IB
in „Vergleichstyp Onkyo Endstufe TX NR 838, TTA0001, TTC0001“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1734.pdf
PACKAGE S6 PART MARKING 6-LEAD PLASTIC SOT-23 (Note 2)...............................................–40°C to 85°C TJMAX= 125°CJA= 230°C/W LTE6 Operating Junction Temperature (Note 2) ............100°C Storage Temperature Range................. –65°C to 150°C Lead Temperature (Soldering, 10 sec)........
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mmc.c
#include "sd.h" AT91PS_SPI s_pSpi = AT91C_BASE_SPI0; AT91PS_PIO s_pPioA = AT91C_BASE_PIOA; AT91PS_PIO s_pPioB = AT91C_BASE_PIOB; AT91PS_PMC s_pPMC = AT91C_BASE_PMC; AT91PS_PDC s_pPDC = AT91C_BASE_PDC_SPI0; char mmcGetResponse(void); char mmcGetXXResponse
in „NMEA-Daten auf der SD-Karte im KML-Format speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDS_Series_Oscilloscopes_Service_Manual_v1_0.pdf
from the screen center Trigger level range EXT ±600mV EXT/5 ±3V Internal ±0.3div Trigger level EXT ±(40mV + 6% of Set Value) Accuracy (typical) EXT/5 ±(200mV +6% of Set Value) Trigger displacement According to Record length and time base Trigger Holdoff 100ns~10s range 50% level setting Input signal frequency
in „WELEC W2000A vs. OWON SDS8102“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC131-PS3.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·