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PDF
MAT14.pdf
(mA) 9 0 0 Figure8.SaturationVoltagevs.CollectorCurrent Figure10.TotalNoisevs.CollectorCurrent 100 20 ) F18 ( E C16 ) A H I14 √ C n P ( 10µA A12 T C S 10 S10 N A E - D O 8 I - O R 6 N T C 1mA L 4 L O 2 C 1 9 0 1 1 10 100 1k 10k - 0 1 2 3 4 5 6 7 8 9 10 - 4 0 FREQUENCY (Hz) 0 COLLECTOR-TO-BASE VOLTAGE (V) 0 Figure9.NoiseVoltageDensityvs.Frequency Figure11.Collector-to-BaseCapacitancevs.Collector-to-BaseVoltage Rev.A | Page 6of 12 MAT14 ) 40 10 F ( E 35 N A I 30 1 A P ) A n C 25 ( T N A E T 20 R 0.1 S U U C S 15 C O I - R 10 0.01 T C E 5 L O C 0 0.001 0 1 2 3 4 5 6 7 8
in „Transistorarray mit 3 differentiellen (NPN) Pärchen gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siedle_HTS811_SET_CA_812-x_EW_210008862-00_PI--.pdf
call as 2-tone call in and insert the cores into the base Compact set with ZERT 811-0 pos- Electrostatic charging plate. Fasten the base plate using 4 sible screws. Close the two openings at • Integrated call silencing via volume the top using rubber stoppers
in „Klingel mit 100 Melodien - last minute Weihnachtsgeschenk“ · Projekte & Code ·
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PDF
Datenblatt_VPC3_CLF3_UM300.pdf
base address of Din_Buf 1 20H R_Din_Buf_Ptr2 Segment base address of Din_Buf 2 21H R_Din_Buf_Ptr3 Segment base address of Din_Buf 3 22H R_Len_DXBout_Buf Length of the 3 DXBout_Buf 23H R_DXBout_Buf_Ptr1 Segment base address of DXBout_Buf 1 24H R_Len Diag_Buf1 Length of Diag_Buf 1 25H R_Len Diag_Buf2 Length of Diag_Buf 2 26H R_Diag_Buf_Ptr1 Segment base address of Diag_Buf 1 27H R_Diag_Buf_Ptr2 Segment base address
in „Profibus an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUV48AFI_STMicroelectronics.pdf
Collector-Emitter VoltageBE= 0) 850 1000 V VCEO Collector-Emitter VoltagB (I = 0) 400 450 V VEBO Emitter-Base Voltage CI = 0) 7 V IC Collector Current 15 A ICM Collector Peak Current 30 A CP Collector Peak Current non repetitipe (t <20 s) 55 A IB Base Current 4 A I Base Peak Current 20 A BM TO-3 TO-218 ISOWATT218
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PDF
STC04IE170HV.pdf
maximum ratings Symbol Parameter Value Unit VCS(SS) Collector-source voltageBS= VGS = 0) 1700 V VBS(OS) Base-source voltage CI = 0GSV= 0) 30 V VSB(OS) Source-base voltage CI = 0GSV= 0) 17 V VGS Gate-source voltage ± 17 V IC Collector current 4 A ICM Collector peak currenP (t < 5 ms) 8 A I Base current 4 A
in „Versorgung über Basis“ · Analoge Elektronik und Schaltungstechnik ·
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R1610C.PDF
15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 BA[19:12] 0 0 0 0 R3 R2 R1 R0 Bit Name Attribute Description Base Address. BA[19:12] corresponds to Bit [19:12] of the 1M-Byte (20-bits) programmable base address of the PCS_n chip select block. When the PCS_n chip 15-8 BA[19:12] R/W selects are mapped to I/O space
in „Hilfe JTAG für IP Webcam ?“ · Mikrocontroller und Digitale Elektronik ·
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PicoMOD-Startintf_Hardware_eng_Rev100.pdf
this pin 17 COM2 TXD J10 18 COM2 RXD J10 10 Connector Description and Pin Assignment J1 Pin Use on base board Remarks Connector 19 COM2 RTS J10 20 COM2 CTS J10 21 COM3 TXD (J4) 22 COM3 RXD (J4) 23 COM1 TXD (J6) 24 COM1 RXD (J6) 25 USB Device DN (J14) 26 USB Host DN (J10, J11, J12) 27 USB Device DP (J14
in „PicoMOD1 - 400 MHz 32MB Ram SBC für 9,95 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Slinky_VIII_Oct.2011.pdf
ABS and the two ABS tees and replaced them with a single piece of 3.5” OD acrylic tube, in this case 20” long. 1/8” wall thickness. However, this could be any length you wish, which would give you a longer period. A 48” or 60” may require a heavier base to keep from tipping. You could also use a short
in „Nachbau TC1 Seismometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
+3 7:0 ADD0 Address [7:0] Base+4 7:0 DATA0 Data byte 0 Base+5 7:0 DATA1 Data byte 1 Base+6 7:0 DATA2 Data byte 2 Base+7 7:0 DATA3 Data byte 3 z Usages Write SPI instructions to Base+0. Set up the addresses and the data in Base+2
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NanoEveryRegister.h
const uint8_t portCtrl = 0x0A; // Slewrate Bit }; constexpr Offset addrOffset; struct Address // base addresses of registers { uint16_t vport; uint16_t port; uint8_t pinCtrl; uint8_t mask; }; // The index is always the Arduino pin number. constexpr Address baseAddr[] { // | VPORT | PORT | PINn | BIT | // | Base | Base | CTRL | MASK | // BIT | PIN {0x0008, 0x0440, 0x15, 0x20}, // 5 | 0 {0x0008, 0x0440, 0x14, 0x10}, // 4 | 1 {0x0000, 0x0400, 0x10, 0x01}, // 0 | 2 {0x0014, 0x04A0, 0x15, 0x20}, // 5 | 3 {0x0008
in „Fehlerhafte Adressierung von lokalen Arrays bei tinyAVR(R) 0-series“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2sc4132.pdf
mm) 1)Highbreakdownvoltage.(BV CEO =120V) 2)Lowcollectoroutputcapacitance. 2SC4132 4.0 1.0 2.5 (Typ.20pFatV CB =10V) 0.5 1 0 ( )1 3)Hightransitionfrequency.(f =80MHz) T . . ( )2 . . 4)Complementsthe2SB1236. 3 0 (3) 1 4 1 0 1 . (1)Base(Gate) 0 (2)Collector(Drain) ROHM : MPT3 (3)Emitter(Source) z Absolutemaximumratings (Ta=25°C) EIAJ : SC-62 Parameter Symbol Limits Unit Collector-base voltage V CBO 120 V Collector-emitter voltage V CEO 120 V 2SD1857 6.8 Emitter-base voltage V EBO 5 V C 2 A 2.5 Collector current . 4 ICP 3 A *1 0 0.5 *2 0 Collector power 2SC4132 0.65Max. 1 5 dissipation
in „Ersatztyp für 2SD1857 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZX5T851A.pdf
NOVEMBER 2003 1 SEMICONDUCTORS ZX5T851A ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL LIMIT UNIT Collector-base voltage BVCBO 150 V Collector-emitter voltage BV 60 V CEO Emitter-base voltage BVEBO 7 V (a) Continuous collector current C 4.5 A Peak pulse current CM 15 A Practical power dissipationa) P 1.0 W D Linear
in „Ersatz für MPSA06 Transistor gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XPort-Pro_IG.pdf
Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active CC 225 270 mA (Evolution) 100Base-TX Active (Linux) I 200 270 mA CC 100Base-TX Idle (Evolution) CC 215 mA 100Base-TX Idle (Linux) CC 175 mA 10Base-T Active (Evolution) I 145 250 mA CC 10Base-T
in „[V] 2St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell, KLEINEN DEFKTEN , zu Fädeln (beide 8€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active CC 225 270 mA (Evolution) 100Base-TX Active (Linux) I 200 270 mA CC 100Base-TX Idle (Evolution) CC 215 mA 100Base-TX Idle (Linux) CC 175 mA 10Base-T Active (Evolution) I 145 250 mA CC 10Base-T
in „[V] 3St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell MIT KLEINEN DEFKTEN (alle für 15€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
Symbol Min Typical Max Units Supply Voltage VCC 3.15 3.3 3.46 Vdc Supply Voltage Ripples VCC_PP 2 % 100Base-TX Active CC 225 270 mA (Evolution) 100Base-TX Active (Linux) I 200 270 mA CC 100Base-TX Idle (Evolution) CC 215 mA 100Base-TX Idle (Linux) CC 175 mA 10Base-T Active (Evolution) I 145 250 mA CC 10Base-T
in „[V] 1x gebrauchtes Lantronix XPORT PRO Module -LAN-Seriell Module (13€)“ · Markt ·
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PDF
UMS-21100.pdf
32 MB h d Ethernet Controller CS1 0xCC00 0000 to 0xCC00_000F* 16 BYTES a i External DUART CS1 0xCC20 0000 to 0xCC20_000F* 16 BYTES i r e Read CPU and CS1 Read 0xCC40_0000* 2 BYTES m y Base board versions D7-D0 = CPU, D15-D8 = Base board n i r a CS1 Write to 0xCC80_0000* (Output) 2 BYTES p t Memory Mapped
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OpAmp_MC3407x_KapazitiveLast.pdf
+1.5 V) E 60 R 60 ADM DV O D L + M P N 40 - U 40 DVEE +PSR O DV ADM DV S DVO DM M CM + O E +PSR = 20 Log DV CC O W , 20 DV CM P 20 DV /A M CMR = 20 Log x DM R -PSR = 20 Log O DM -PSR C DV O P DV EE (DVEE = +1.5 V) 0 0 0.1 1.0 10 100 1.0 k 10 k 100 k 1.0 M 10 M 0.1 1.0 10 100 1.0 k 10 k 100 k 1.0 M 10
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
w5500.h
(_W5500_IO_BASE_ + (0x0031 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0032 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0033 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0034 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0035 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0036 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved
in „Wiznet W5500 Datenübertragung via Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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std888.pdf
1 Electrical ratings Table 1. Absolute maximum rating Symbol Parameter Value Unit VCBO Collector-base voltagE (I = 0) -45 V VCEO Collector-emitter voltaBe (I = 0) -30 V VEBO Emitter-base voltageC(I = 0) -6 V IC Collector current -5 A I Collector peak current (t < 5ms) -10 A CM P P tot Total dissipation
in „SMD Transistor (Leistung) bei Reichelt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Full_Code.c
defined end // Initialize all the handles needed for this application myClk = CLK_init((void *)CLK_BASE_ADDR, sizeof(CLK_Obj)); myCpu = CPU_init((void *)NULL, sizeof(CPU_Obj)); myFlash = FLASH_init((void *)FLASH_BASE_ADDR, sizeof(FLASH_Obj)); myGpio = GPIO_init((void *)GPIO_BASE_ADDR, sizeof(GPIO_Obj)); myPie = PIE_init((void *)PIE_BASE_ADDR, sizeof(PIE_Obj)); myPll = PLL_init((void *)PLL_BASE_ADDR, sizeof(PLL_Obj)); myPwm1 = PWM_init((void *)PWM_ePWM1_BASE_ADDR, sizeof(PWM_Obj)); myPwm2 = PWM_init((void *)PWM_ePWM2_BASE_ADDR, sizeof
in „Fließkommazahlen in Ganzzahlen umrechnen für Register“ · Mikrocontroller und Digitale Elektronik ·
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BD329.PDF
) and symbol. QUICK REFERENCE DATA SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VCBO collector-base voltage open emitter − − 32 V VCEO collector-emitter voltage open base − − 20 V CM peak collector current − − 3 A P total power dissipation T ≤ 45 °C − − 15 W tot mb hFE DC current gain IC= 0.5 A; CE
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2N3442_Audiopower_NPN.PDF
MAXIMUM RATINGS (Note 1) Rating Symbol Value Unit Collector−Emitter Voltage V 140 Vdc CEO Collector−Base Voltage VCB 160 Vdc Emitter−Base Voltage VEB 7.0 Vdc Collector Current− Continuous C 10 Adc − Peak 15 TO−204AA (TO−3) CASE 1−07 Base Current − Continuous B 7.0 Adc − Peak − STYLE 1 Total Device Dissipation
in „BJT-2N3442 von ON -ist der echt ?“ · Analoge Elektronik und Schaltungstechnik ·
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K4B4G1646Q-Samsung.pdf
Setting RTT_Wr Setting V [V] V [V] NOTE Parameter SW1 SW2 RZQ /4 NA 0.05 0.10 tAON R /12 NA 0.10 0.20 ZQ RZQ /4 NA 0.05 0.10 tAONPD RZQ/12 NA 0.10 0.20 tAOF RZQ /4 NA 0.05 0.10 RZQ/12 NA 0.10 0.20 RZQ /4 NA 0.05 0.10 tAOFPD RZQ/12 NA 0.10 0.20 tADC R /12 R /2 0.20 0.25 ZQ ZQ - 29 - Preliminary Rev. 0.5
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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DS_K4B8G1646Q-MY_Rev10.pdf
Setting RTT_Wr Setting V [V] V [V] NOTE Parameter SW1 SW2 R ZQ/4 NA 0.05 0.10 tAON R /12 NA 0.10 0.20 ZQ R ZQ/4 NA 0.05 0.10 tAONPD RZQ/12 NA 0.10 0.20 tAOF R ZQ/4 NA 0.05 0.10 RZQ/12 NA 0.10 0.20 R ZQ/4 NA 0.05 0.10 tAOFPD RZQ/12 NA 0.10 0.20 tADC R /12 R /2 0.20 0.25 ZQ ZQ - 30 - Rev. 1.0 K4B8G1646Q
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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Aluminum_Electrolytic_Capacitors_EPCOS.pdf
5 2 1 5 2 0 40 50 60 70 80 90 100 ˚C 110 TA;TB Ratedconditions Figure 20 Useful life versus ambient temperatureT Aor natural cooling and base temperature TBfor base cooling (series B43560/B43580). 41 10/02 Aluminum Electrolytic Capacitors General Technical Information Example
in „Wie lange halten sich verpackte Elkos?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
include <util/delay.h> // // Der Prescaler muss so gewählt werden, dass der Ausdruck // für MILLISEC_BASE einen Wert kleiner als 128 ergibt // MILLISEC_BASE ist der Timerwert, der 1 Millisekunde Zeitdauer ergeben // soll. // #define PRESCALER 8 #define PRESCALER_BITS (1<<CS01) #define MILLISEC_BASE ( F_CPU / PRESCALER / 1000 ) #define CENTER ( MILLISEC_BASE / 2 ) // links = 0 / CENTER = 62,5 / rechts = 125 // // Konfiguration der Servoleitungen // #define NR_SERVOS 8 #define SERVO_DDR DDRD #define SERVO_PORT PORTD uint8_t ServoPuls[NR_SERVOS] = { 1<<PD0
in „Servo Delay Modul (Atmega8)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cmu_bat.txt
removed outcommented lines rem to prevent file not found warning rem rem Rev 1.4 02 Apr 2002 11:25:20 thorsten rem now the logging is version dependend again rem rem Rev 1.3 18 Mar 2002 16:43:58 thorsten rem added SYS_BASE to get the CMU BASE directory rem needed for showing the fgroup versions rem rem
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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Datei
W5500.h
(_W5500_IO_BASE_ + (0x0031 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0032 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0033 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0034 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0035 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved (_W5500_IO_BASE_ + (0x0036 << 8) + (WIZCHIP_CREG_BLOCK << 3)) // Reserved
in „Mit ATmega328PB einen W5500 Ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
lines: W162B (2x16) // ----------------------------------------- #define LCD_ADR_2X16_L1 0x00 // base address line 1, character 1 #define LCD_ADR_2X16_L2 0x40 // base address line 2, character 1 // addresses of lines: W204B (4x20) // ----------------------------------------- #define LCD_ADR_4X20_L1 0x00 // base address line 1, character 1 #define LCD_ADR_4X20_L2 0x40 // base address line 2, character 1 #define LCD_ADR_4X20_L3 0x14 // base address line 3, character 1 #define LCD_ADR_4X20_L4 0x54 // base address
in „LCD funktioniert nur an Port D (ATmega644P)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC337.pdf
VCE= 25 V,amb = 125°C — — 10 µA BC337 45 — — Collector-EmitterBreakdownVoltBC338 V(BR)CEO IC= 10 mA 20 — — V BC337 50 — — Collector-EmitterBreakdownVoltBC338 V(BR)CES IC= 0.1 mA 30 — — V Emitter-Base Breakdown Voltage V(BR)EBO IE= 0.1 mA 5 — — V Collector Saturation Voltage VCEsat C = 500 mA, B = 50 mA — — 0.7 V Base-Emitter Voltage VBE VCE = 1 V,CI = 300 mA — — 1.2 V Gain-Bandwidth Product T VCE = 5 VC I = 10 mA — 100 — MHz f = 50 MHz Collector-Base Capacitance C CBO VCB = 10 V, f = 1 MHz — 12 — pF Ratings and
in „Relais oder Transistoren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A100_BC337_BC338_VIS.pdf
VCE= 25 V,amb = 125°C — — 10 µA BC337 45 — — Collector-EmitterBreakdownVoltBC338 V(BR)CEO IC= 10 mA 20 — — V BC337 50 — — Collector-EmitterBreakdownVoltBC338 V(BR)CES IC= 0.1 mA 30 — — V Emitter-Base Breakdown Voltage V(BR)EBO IE= 0.1 mA 5 — — V Collector Saturation Voltage VCEsat C = 500 mA, B = 50 mA — — 0.7 V Base-Emitter Voltage VBE VCE = 1 V,CI = 300 mA — — 1.2 V Gain-Bandwidth Product T VCE = 5 VC I = 10 mA — 100 — MHz f = 50 MHz Collector-Base Capacitance C CBO VCB = 10 V, f = 1 MHz — 12 — pF Ratings and
in „LED-Flasher - Findet jemand einen Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ED1602_2.pdf
transistor ED1602 FEATURES PINNING • Low current (max. 100 mA) PIN DESCRIPTION • Low voltage (max. 20 V). 1 emitter 2 base APPLICATIONS 3 collector • Audio pre-amplifiers and driver stages • FM multiplex stereo decoders • Small-signal circuits in television receivers handbook, halfpage 3 23 • Medium
in „Suche Datenblatt Transistor Siemens STr 1602“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SL43-E3-57T_Diode_Schottky_4A_30V_SMD-Gehaeuse_DO214.pdf
converters, and polarity protection applications. PRIMARY CHARACTERISTICS MECHANICAL DATA IF(AV) 4.0 A VRRM 20 V, 30 V, 40 V Case: SMC (DO-214AB) Molding compound meets UL 94 V-0 flammability rating IFSM 150 A Base P/N-E3 - RoHS-compliant, commercial grade VF 0.31 V, 0.35 V Base P/N-M3 - halogen-free, RoHS-compliant, commercial TJmax. 125 °C grade Package SMC (DO-214AB) Base P/NHE3_X - RoHS-compliant and AEC-Q101 qualified Base P/NHM3_X - halogen-free, RoHS-compliant, and Circuit configuration Single AEC-Q101 qualified (“_X” denotes revision code e.g. A, B, .....) Terminals
in „Schottky diode / Uf kleiner als 0,2V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SL43-E3-57T_Diode_Schottky_4A_30V_SMD-Gehaeuse_DO214.pdf
converters, and polarity protection applications. PRIMARY CHARACTERISTICS MECHANICAL DATA IF(AV) 4.0 A VRRM 20 V, 30 V, 40 V Case: SMC (DO-214AB) Molding compound meets UL 94 V-0 flammability rating IFSM 150 A Base P/N-E3 - RoHS-compliant, commercial grade VF 0.31 V, 0.35 V Base P/N-M3 - halogen-free, RoHS-compliant, commercial TJmax. 125 °C grade Package SMC (DO-214AB) Base P/NHE3_X - RoHS-compliant and AEC-Q101 qualified Base P/NHM3_X - halogen-free, RoHS-compliant, and Circuit configuration Single AEC-Q101 qualified (“_X” denotes revision code e.g. A, B, .....) Terminals
in „1N5817 Schottky Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t6963c.h
glcd_FONT_WIDTH 6 // pixel width // #define glcd_BYTES_PER_ROW 0 // 40 chars per row // #define glcd_G_BASE 0x0400 // base address of graphics memory //#else // normal font #define glcd_FONT_WIDTH 8 // pixel width #define glcd_BYTES_PER_ROW 20 // 30 chars per row #define glcd_G_BASE 0x0000 // base address
in „GLCD mit T6963-Controller und 8kRAM ansteuern klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
block-cordic.asm
,SP,A16,A17,A18,A19,A20,A21,A22,A23,A24,A25,* ;* A26,A27,A28,A29,A30,A31,B16,B17,B18,B19,B20,B21, * ;* B22,B23,B24,B25,B26,B27,B28,B29,B30,B31 * ;*****************************************************************************
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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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
BD330.PDF
power transistor BD330 FEATURES PINNING • High current (max. 3 A) PIN DESCRIPTION • Low voltage (max. 20 V). 1 emitter 2 collector, connected to metal part of APPLICATIONS mounting surface 3 base • Powerswitchingandamplification,especiallyinportable equipment or e.g. car radio output stages. DESCRIPTION
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Datei
IS51Basic.ASM
18 ;PCON DB T_PC DB 'PCON' ; T_ASC EQU T_ULAST+19 ;ASC TOKEN DB T_ASC DB 'ASC(' ; T_USE EQU T_ULAST+20 ;USING TOKEN DB T_USE DB 'USING(' DB T_USE DB 'U.(' ; T_CHR EQU T_ULAST+21 ;CHR TOKEN DB T_CHR DB 'CHR(' ; $EJECT T_CMND EQU 0F0H ;COMMAND BASE ; DB 0F0H ;RUN TOKEN DB 'RUN' ; DB 0F1H ;LIST TOKEN DB
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
io-controller-hub-9-datasheet.pdf
..........................................776 20.1.13SLT—Secondary Latency Timer (PCI Express—D28:F0/F1/F2/F3/F4/F5)...................................................777 20.1.14IOBL—I/O Base and Limit Register (PCI Express—D28:F0/F1/F2/F3/F4/F5)..
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
BD650.pdf
Current B 1 ● Minimum h of 750 at 3V, 3 A FE C 2 E 3 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 BD646 -80 BD648 -100 Collector-base voltagE (I = 0) BD650 VCBO -120 V BD652 -140 BD646 -60 BD648 -80 Collector-emitter voltBge (I = 0) BD650 VCEO -100 V BD652 -120 Emitter-base voltage V -5 V EBO Continuous collector current C -8 A Peak collector current (see Note 1) I -12 A CM Continuous base current B -0.3 A Continuous device dissipation at (or below) 25°C case temperature
in „Kann man das so machen? PNP Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MJ2500-3000.pdf
AMPERE DARLINGTON ÎÎÎÎÎCollector–Emitter Voltage V 60 ÎÎ80 Vdc CEO POWER TRANSISTORS ÎÎÎÎÎCollector–Base Voltage V 60 ÎÎ80 Vdc COMPLEMENTARY CB ÎÎÎÎÎEmitter–Base Voltage V 5.0 ÎÎÎ Vdc SILICON EB 60–80 VOLTS ÎÎÎÎÎCollector Current ÎÎ I 10 Adc C 150 WATTS ÎÎÎÎÎBase CurrentÎÎÎÎÎ ÎÎ I 0.2 Adc B ÎÎÎÎÎTotal
in „Netzteilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
gu256x64d-7000_e01.pdf
. User-Window can be defined up to 4 windows. User-Window 1 User-Window 2 User-Window 4 Base-Window User-Window 3 - 9 - GU256X64D-7000 6.4 Write screen mode for “Base Window” This effects only for Base Window. There are two types of Write screen mode, Display screen mode and All screen mode
in „VFD Displays look“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1MA98_4E_dB_or_not_dB.pdf
are some examples: The output power range of signal generators extends typically from -140 dBm to +20 dBm or 0.01 fW (femto Watt) to 0.1 W. Mobile radio base stations transmit at +43 dBm or 20 W. Mobile phones transmit at +10 dBm to +33 dBm or 10 mW to 2 W. Broadcast transmitters operate at +70 dBm to
in „Wie stehen dBm und Volt zueinander?“ · HF, Funk und Felder ·
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4N38.pdf
N Normalized to: E E VCE = 10 V R VCE= 10 V R IF= 10 mA U F = 106mA U RBE = 10 Ω C RBE= 10 Ω C IF= 20 mA TA = 25˚C T TA= 25˚C T U 1 U T T IF= 10 mA U U 1 - - R R E E IF= 5 mA I I D D Z 0.1 Z L L A A M M R R N N 0.01 0.1 1 10 -60 -40 -20 0 20 40 60 80 100 IF- LED INPUT CURRENT (mA) TA- AMBIENT TEMPERATURE
in „A4N38 Optokoppler SMD Gehäuse ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
folgende Verzeichnissstruktur: basict ---------- Makefile sendbas57600 compile_sendbas tbasic.c laufl.bas testinput.bas testprog.bas fakul.bas include --------- stm8s.h stm8_init.h stm8_gpio.h stm8_systimer.h src ------------- stm8_systimer.c stm8_init makefile.mk stm8unlock stm8unlock.bin stm8lock stm8lock.bin
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Infineon-BFP520-DS-v02_00-EN-_APs_.pdf
Feature list • Minimum noise figureNF =0.95dBat1.8GHz,2 V,2mA min • High gainGms = 24dB at1.8GHz,2V,20mA • OIP3= 25 dBmat 1.8GHz,2V,20mA Product validation Qualifiedfor industrial applicationsaccordingtotherelevanttestsofJEDEC47/20/22. Potential applications • Radio-frequency oscillatorssuch as anLNBlocaloscillator
in „R&S TSMU Radio Network Analyzer“ · HF, Funk und Felder ·
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ss12.pdf
inverters, freewheeling, DC/DC converters, and polarity protection VRRM 20 V, 30 V, 40 V, 50 V, 60 V applications. IFSM 40 A VF 0.50 V, 0.75 V MECHANICAL DATA TJmax. 150 °C Case: SMA (DO-214AC) Molding compound meets UL 94 V-0 flammability rating Package SMA (DO-214AC) Base P/N-E3 - RoHS-compliant, commercial grade Circuit configuration Single Base P/N-M3 - halogen-free, RoHS-compliant, commercial grade Base P/NHE3_X - RoHS-compliant and AEC-Q101 qualified Base P/NHM3_X - halogen-free, RoHS-compliant, and AEC-Q101 qualified (“_X” denotes revision
in „Identifikation SMD Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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S8050.PDF
V CBO E Collector-emitter breakdown voltage V(BR)CEO Ic= 0.1 mA, IB=0 25 V Emitter-base breakdown voltage V(BR)EBO IE= 100μ A, C =0 5 V Collector cut-off current CBO VCB 40 V , IE=0 0.1 μ A Collector cut-off current CEO VCE 20 V , IB=0 0.1 μ A Emitter cut-off current EBO VEB 5 V, IC=0
in „Drehzahlmesser an DIY Motorsteuerung“ · Fahrzeugelektronik ·
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S8550.pdf
, E =0 Collector-emitter breakdown voltage V(BR) Ic= 0.1 mA, I =0 25 V CEO B Emitter-base breakdown voltage V(BR)EBO I = 100μ A, I =0 5 V E C Collector cut-off current CBO VCB 40 V , IE=0 0.1 μ A Collector cut-off current CEO VCE 20 V , IB=0 0.2 μ A Emitter cut-off current EBO VEB 3 V, IC
in „Drehzahlmesser an DIY Motorsteuerung“ · Fahrzeugelektronik ·