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MB3775.pdf
Connection of Master, Slave V CC MB3775 (MASTER) C T RT R pull MB3775 (SLAVE) V RT 2 V MB3775 (SLAVE) DS04-27204-6E 17 MB3775 ■ TYPICAL PERFORMANCE CHARACTERISTICS Fig. 9 - Reference voltage vs. Power supply voltage Fig. 10 - Average supply current vs. Power supply voltage 2.0 2.0 A ) m ( 1.5 (a 1.5 E C
in „Elko identifizieren (mal wieder)“ · Analoge Elektronik und Schaltungstechnik ·
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SST39LF010-SST39LF020-SST39LF040-SST39VF010-SST39VF020-SST39VF040-Data-Sheet-DS20005023.pdf
SST39LF/VF010, A17 for SST39LF/VF020 and A18 for SST39LF/VF040 DS20005023E-page 12 2000-2025MicrochipTechnologyInc.anditssubsidiaries SST39LF010/020/040/SST39VF010/020/040 FIGURE 7-5: TOGGLE BIT TIMING DIAGRAM ADDRESS
in „[V] 10St. neue OPV Flash Micochip SST39LF040 4Mb 3-3.6V Parallel Flash PLCC32 (10€)“ · Markt ·
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21425b.pdf
s80 ( ( 1000 pF S60 L60 R F t 40 470 pF t40 470 pF 20 100 pF 20 100 pF 0 03 5 7 9 11 13 15 17 19 3 5 7 9 11 13 15 17 19 V SUPPLY (V) VSUPPLY (V) FIGURE 2-1: Rise Time vs. Supply FIGURE 2-4: Fall Time vs. Supply Voltage. Voltage. 140 140 120 5 V 120 5 V 100 100 ) c e s 80 ( 80 10 V ( 10 V E L
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Luefter.asm
push r20 ldi r17,0 DS1820_readRom_eeprom_loop: cpi r17,8 breq DS1820_readRom_exit pop r20 mov r16,r20 ;r17 = address rcall Eprom_writeByte inc r17 rjmp DS1820_readRom_eeprom_loop DS1820_readRom_exit: ret /*----------
in „DS1820 temperatur - falsch oder richtig“ · Mikrocontroller und Digitale Elektronik ·
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ANLOGIC_EG4S20BG256_DevBoard_V1.2.pdf
UART1_DTR 1 4 R 1 4 R 1 4 R 1 4 R KEY3 E16 ADC7 R16 ADC7 1 1 1 1 13 68 KEY1 14F9 8p R14 67 UART1_CTS SEG5 SEG6 SEG7 SEG8 KEY2 C15 ADC5 N12 ADC5 15 66 SEG8 1 R17 2510 16A11 8n R12 65 UART2_DTR SEG7 R18 C16 ADC6 P12 ADC6 1 2510 17 64 SEG6 1 R19
in „Sipeed Lichee Tang FPGA mit RISC-V Core aus China unter 20€“ · FPGA, VHDL & Co. ·
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doc6241-1369051.pdf
A6 E6 D24 PA7 SPARE1 PB7 PC7 A13 D13 D21 B6 D6 D23 PA8 PB8 PC8 A14 D14 D22 C6 PA9 PB9 PC9 A15 D15 D25 A7 E7 D29 PA10 PB10 PC10 A16 D16 D26 B7 D7 D28 PA11 PB11 PC11 A17 D17 D27 C7 PA12 PB12 PC12 A18 D18 D30
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AY0438a.pdf
22 13 28 SEG 7 SEG 21 14 27 SEG 8 • Industrial displays SEG 20 15 26 SEG 9 SEG 19 16 25 SEG 10 • Consumer product displays SEG 18 17 24 SEG 11 • Telecom product displays SEG 17 18 23 SEG 12 • Automotive dashboard
in „Suche Datenblatt HC0438A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DG506_507_508_509A.pdf
in the “MO Series Symbol List” in Section 2.2 of A eB - 0.700 - 17.78 7 Publication No. 95. 4. Dimensions A, A1 and L are measured with the package seated in L 0.115 0.200 2.93 5.08 4 JEDEC seating plane gauge GS-3. N 28 28 9 5. D, D1, and E1 dimensions
in „Bestimmtes Bauteil gesucht zur Signalverteilung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
B--0193_DS18B20_Nr27_29_30_31_Rest32_33_34_b.h
unsigned long long fuehler1=0xE4000000AB97AC28,fuehler2=0x89000000A88CBA28,fuehler5=0xD80000019B65B428; unsigned long long fuehler6=0x7E0000019B8CEC28,fuehler7=0x9200000230007E28,fuehler8=0x1C0000022FDF0928; unsigned long long fuehler9
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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DM8203.pdf
64 COL2 GND 17 0 1 2 3 4 5 6 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 3 C 3 2 1 0 2 I 2 3 2 2 C D I N 2 2 2 N 2 E C C C R S N V M M G D D D G D T V T V X C G T T T T T 10 Preliminary datasheet DM8203-15-DS-P05 October23,2008
in „2 Port Switch IC wie in IP telefonen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8203.pdf
64 COL2 GND 17 0 1 2 3 4 5 6 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 3 C 3 2 1 0 2 I 2 3 2 2 C D I N 2 2 2 N 2 E C C C R S N V M M G D D D G D T V T V X C G T T T T T 10 Preliminary datasheet DM8203-15-DS-P05 October23,2008
in „[V] DM8203 & DM8603“ · Markt ·
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PDF
70599B.pdf
bottom outside corner of any page. The last character of the literature number is the version number, (e.g., DS30000A is version A of document DS30000). Errata An errata sheet, describing minor operational differences from the data sheet and recommended workarounds, may exist for current devices. As device
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet__ICM-20948_.pdf
register, prior to initialization. I K D C A / / D A L S X S S S S n A R R 2 2 2 2 2 1 NC 1 18 GND NC 2 17 NC NC 3 16 NC ICM-20948 NC 4 15 NC NC 5 14 NC NC 6 13 VDD 7 8 9 1 1 1 C I D U C T X D / O Y I U V O E F A D R S Figure 3. Pin out Diagram for ICM-20948 3 mm x 3 mm x 1 mm QFN Document Number: DS-000189
in „20948 I2C <-> SPI?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stb6nk60z.pdf
b1 1.14 1.70 0.044 0.066 c 0.49 0.70 0.019 0.027 c2 1.23 1.32 0.048 0.052 D 8.95 9.35 0.352 0.368 e 2.40 2.70 0.094 0.106 e1 4.95 5.15 0.194 0.202 E 10 10.40 0.393 0.410 L 13 14 0.511 0.551 L1 3.50 3.93 0.137 0.154 L2 1.27 1.40 0.050 0.055 13/17 Package mechanical data STB6NK60Z - STB6NK60Z-1 - STP6NK60ZFP
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PDF
stb6nk60z.pdf
b1 1.14 1.70 0.044 0.066 c 0.49 0.70 0.019 0.027 c2 1.23 1.32 0.048 0.052 D 8.95 9.35 0.352 0.368 e 2.40 2.70 0.094 0.106 e1 4.95 5.15 0.194 0.202 E 10 10.40 0.393 0.410 L 13 14 0.511 0.551 L1 3.50 3.93 0.137 0.154 L2 1.27 1.40 0.050 0.055 13/17 Package mechanical data STB6NK60Z - STB6NK60Z-1 - STP6NK60ZFP
in „Unterschiedliche Power MOSFET kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FT2232_datasheet.pdf
C I I ADBUS2 3V3OUT O O ADBUS3 21 N S S1 S S A B 20 S T C D U E U U U U ADBUS4 19 C S C N O I C R B B B B 8 ADBUS5 E T A A TX X V PW B B B B USBDM ADBUS6 17 16 ADBUS7 7 ACBUS0 15 USBDP 13 48 37 ACBUS1 12 EESK 1 36 BDBUS4 ACBUS2 5 ACBUS3 11 EEDATA BDBUS5 RSTOUT# 10
in „AVR-Programmierung via USB mit FT2232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLIZ44N_IR.pdf
Temperature IRLIZ44NPbF 15 2800 V = 0V, f = 1MHz ID = 25A CGS = C + C , C SHORTED ▯V = 44V Ciss = Cgs gd ds ) DS 2400 rss gd ( ▯VDS = 28V C▯iss Coss = Cds + Cgd e 12 ) t F 2000 o ( V c e 9 n 1600 r i o a C▯oss - p 1200 - C t 6 , a C 800 , S C▯rss G 3 400 V FOR TEST CIRCUIT SEE FIGURE 13 0 A 0 A 1 10 100 0
in „Toggle Schaltung mit NE555 schaltet ein, aber nicht aus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
50002370A.pdf
bottom outside corner of any page. The last character of the literature number is the version number, (e.g., DS30000000A is version A of document DS30000000). Errata An errata sheet, describing minor operational differences from the data sheet and recommended workarounds, may exist for current devices.
in „[V] 2St. Microchip Bluetooth4.0 Module RN4677“ · Markt ·
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PDF
LiveDesign_Schematics.pdf
V V V V V V V V V V C SRAM0_A16 P5 IO,LVDS2p(DQ1L6) IO,LVDS32p (DQ1T1) A7 GREEN0 SRAM1_A4 E17 IO,LVDS53n (DQ0R2) IO,LVDS84p U12 IO28 P1 VCCIO1 C C SRAM0_D7 N4 IO,DPCLK0 (DQS1L) IO,LVDS31n (DQ1T2) B7 DIG1_SEG3 KBCLOCK F15 IO,DPCLK4 (DQS0R) IO,LVDS84n T12 IO27 V V SRAM0_WE N3 IO,LVDS3n(DQ1L5)
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Masterarbeit.pdf
der parasitären Elemente erklärt worden sind, wird im Folgenden zunächst der Einschaltvorgang des eGaN-FET erläutert. Die zeitlichen Verläufe von i , u (Maßstab: 1) und u sind in Abbildung 2.17 dargestellt. D,2 DS,2 20 GS,2 50 V / 45 S G 40 u V 35 / 0 30 1 2 u DS,2 ·2 25 u GS,2 S iD,2 D 20 u A 15 / , 10 iD 5 UTH 0 t0 t1 t2 t3 t4 5 t6 t / ns Abbildung 2.17: simulierter Einschaltvorgang eines eGaN-FET (GS66056T) t < t0 T2 ist ausgeschaltet. Der Drosselstrom iLläuft über der “Bodydiode“ von T1 frei. Es gilt: uDS,2 = U Z u DS,1≈ U Z t0< t < t 1 Zum Zeitpunkt
in „False Turn On bei Synchron Buck mit eGaN FETs“ · Analoge Elektronik und Schaltungstechnik ·
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Infineon-IRLIB9343-DS-v01_02-EN.pdf
Voltage (V) DS DS Fig. 1 Typical Output Characteristics Fig. 2 Typical Output Characteristics 100.0 2.0 c D = -14A ) T J 25°C a V = -10V T = 175°C i GS t J e n R r n 1.5 u 10.0 O ) e r d r u i u S a S t r t n o n
in „DS3231 RTC Modul, Raspberry Pi, Zeitschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
10 10 J 42 PC18 S PC18 TWCK_SCL 11 PD30 11 2 U PC17 41 PC17 TWD_SDA 12 2 PD29 12 2 GND 40 PC16 CAN1_TX 13 1 PD28 13 1 PC16 39 PC15 0 0 PC15 CAN1_RX 14 N CS_SCH1 14 N Vbus D+ 39 25 DP PC05 38 PC05 PA23 15 N CS_Temp1 15 N GND E 1 3 R1 24 37 PC04 C C E GND
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
10 J 42 PC18 S PC18 TWCK_SCL 11 PD30 11 2 U PC17 41 PC17 TWD_SDA 12 2 PD29 12 2 GND 40 PC16 CAN1_TX 13 1 PD28 13 1 PC16 39 PC15 0 0 PC15 CAN1_RX 14 N CS_SCH1 14 N Vbus D+ 39 25 DP PC05 38 PC05 PA23 15 N CS_Temp1 15 N GND E 1 3 R1 24 37 PC04 C C E GND
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
10 J 42 PC18 S PC18 TWCK_SCL 11 PD30 11 2 U PC17 41 PC17 TWD_SDA 12 2 PD29 12 2 GND 40 PC16 CAN1_TX 13 1 PD28 13 1 PC16 39 PC15 0 0 PC15 CAN1_RX 14 N CS_SCH1 14 N Vbus D+ 39 25 DP PC05 38 PC05 PA23 15 N CS_Temp1 15 N GND E 1 3 R1 24 37 PC04 C C E GND
in „Layout prüfen“ · Platinen ·
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Datei
main.lst
: \ 00000000 DS8 4 34 #include "zeichensatz.h" \ In segment DATA_I, align 4, align-sorted \ unsigned char __data einstellungen_28x28[1567] \ einstellungen_28x28: \ 00000000 DS8 1568 \ 00000620 REQUIRE `?<Initializer for einstellungen_28x28>` \ In segment DATA_I, align 4, align-sorted \ unsigned char __data einstellungen_txt_28x28[1403] \ einstellungen_txt_28x28: \ 00000000 DS8 1404 \ 0000057C REQUIRE `?<Initializer for einstellungen_txt
in „LPC2103 Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Seiten_aus_Websterphysik.pdf
ϕ,t)sinϑdϑdϕ ∂r ϑ=0 ϕ=0 r=x ∂ = |S(x)| P(x,t) (2.19) ∂x folgt daraus (.16). (2.17) folgt ge¨aß ∂ U(x,t) = ∂ 1 U(x ,t) dS ′ ∂t ∂t |S(x)| x S(x) 1 ∂ 2 = D(x ,t) dS x′ 1.37) |S(x)| S(x) ∂t 2 1 ′ = ˆ |S(x)| ∆ x(x ,t) dS x′ 1.35) S(x) 2 1 ′ = ˆ ∇ x∇ x′ D(x ,t)) dS x′ (.36) |S(x)| S(x) = −cˆ κ 1 (∇ ′P(x ,t)) dS ′ 1.38) |S(x)| S(x) x x 1 ∂ = − P(x,t). (.23),2.19) ∂x Man sieht leicht, daß die Gleichungen (2.16) und (2.17) mit (2.18) naherungswe¨se auch fu¨ allgemeinere Hornformen, wie z.B. in Abbildung 2.2 skizziert
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LiveDesign_EB_Schematics-xilinx_spartan.pdf
DIG4_SEG1 D2 N21 SRAM1_D4 AB6 N14 SRAM0_D10 M6 IO_L38P_6 IO_L19P_2 E18 DIG5_SEG5 D3 IO_L19P_7 IO_L35P_3 N20 AB17 VCCAUX GND P3 SRAM0_D12 N1 IO_L38N_6 IO_L19N_2 E19 DIG5_SEG2 E3 IO_L19N_7/VREF_7 IO_L34N_3 N19 VCCAUX GND P9 SRAM0_D11 N2 IO_L35P_6 BANK 0 IO_L20N_2 E20 DIG5
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0900766b81417515.pdf
(V) DS DS Fig. 9 Typical Total Capacitance Fig. 10 Typical Leakage Current vs. Drain-Source Voltage 1 E C D = 0.7 N D = 0.5 T I D = 0.3 S R L 0.1D = 0.1 A M D = 0.9 E D = 0.05 H T RθJAt) = r(θJA* R N D = 0.02
in „Datenblatt DMG4511SK4 COMPLEMENTARY PAIR MOSEFT“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CS8130.pdf
8. IR and RS232 from 1 UART DS134PP2 23 CS8130 10 + + +3V +3V 10 F 0.1 F 0.1 F 10 F 0.33 F 8 12 1 VA+ VD+ VCC 5 19 5 CIA- CIB- 4 AGND EXTCLK 0.33 F 0.33 F 2 3 7 17 CIA+ CIB+ PINC XTALIN 25 BPV23NF C2+ CS8130 3.6864 MHz 0.33 F 6 PINA
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23x256.pdf
Measurement Reference Level: Input 0.5 VCC Output 0.5 VCC © 2009 Microchip Technology Inc. Preliminary DS22100C-page 3 23A256/23K256 FIGURE 1-1: HOLD TIMING CS 16 16 15 15 SCK 17 17 High-Impedance SO n + 2 n + 1 n n n - 1 Don’t Care 5 SI n + 2 n + 1 n n n - 1 HOLD FIGURE 1-2: SERIAL INPUT TIMING 4 CS 2 7
in „AVR: Port wiederholt schnellstmöglich auslesen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irfp260n.pdf
, Drain-to-Source Voltage (V) V DS , Drain-to-Source Voltage (V) Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 e 3.5 50A n ID= A t t i 3.0 n e r R u n 2.5 C100 O ) c T J 175 C c e u u l 2.0 o o a - -
in „Strom bei 50 A begrenzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK7514-55A.pdf
voltage. Fig.14. Typical turn-on gate-charge characteristics. V GS(TO) = f(T)j conditions: I = D mA; V DS = V GS V GS = f(Q G; conditions: I = D0 A; parameter V DS 1E-01 Sub-Threshold Conduction [PICTURE] Fig.15. Typical reverse diode current. IF= f(V SDS); conditions: V GS = 0 V; parameter T j 1E-02 2% typ 98% WDSS% 1E-03 120 110 1E-04 100 90 80 1E-05 70 60 50 1E-060 1 2 3 4 5 40 30 Fig.12. Sub-threshold drain current. 20 ID= f(V GS); conditions: T = j5 ˚C; V DS = V GS 10 0 20 40 60 80 100 120 140 160 180 Tmb / C 4Capacitance
in „Wärmewiderstandsberechnung FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK_7514-55.pdf
voltage. Fig.14. Typical turn-on gate-charge characteristics. V GS(TO) = f(T)j conditions: I = D mA; V DS = V GS V GS = f(Q G; conditions: I = D0 A; parameter V DS 1E-01 Sub-Threshold Conduction [PICTURE] Fig.15. Typical reverse diode current. IF= f(V SDS); conditions: V GS = 0 V; parameter T j 1E-02 2% typ 98% WDSS% 1E-03 120 110 1E-04 100 90 80 1E-05 70 60 50 1E-060 1 2 3 4 5 40 30 Fig.12. Sub-threshold drain current. 20 ID= f(V GS); conditions: T = j5 ˚C; V DS = V GS 10 0 20 40 60 80 100 120 140 160 180 Tmb / C 4Capacitance
in „Brauche Hilfe bei Motoransteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25AA640A_25LC640A-MIC.pdf
number of available characters for customer-specific information. 2003-2013 Microchip Technology Inc. DS21830F-page 15 25AA640A/25LC640A D e D1 b L N N K E E2 E1 EXPOSED PAD NOTE 1 1 2 2 1 NOTE 1 D2 TOP VIEW BOTTOM VIEW φ A2 A A1 A3 NOTE 2 DS21830F-page 16 2003-2013 Microchip Technology Inc. 25AA640A/
in „Atmega 328p uint16_t auf EEPROM per SPI geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP41HVX1.pdf
Technology Inc. MCP41HVX1 D D2 EXPOSED PAD e E2 E 2 2 b 1 1 K N N TOP VIEW NOTE 1 BOTTOM VIEW L A A3 A1 2013 Microchip Technology Inc. DS20005207A-page 77 MCP41HVX1 DS20005207A-page 78 2013 Microchip Technology Inc. MCP41HVX1 APPENDIX A: REVISION
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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datenblatt_pic.pdf
M M M M I M D P D P U P B P B P B P B P B K K m 1 D 1 D 1 m M C C D sl ooT eratf oS sr ot al u mE reggubeD sre mmar gor P sti Kl avE dna sdraoBo meD * * † 2001 Microchip Technology Inc. DS35007B-page 47 PIC16F84A NOTES: DS35007B-page 48 2001 Microchip Technology Inc. PIC16F84A 9.0 ELECTRICAL
in „Flußdiagramm Digitale stoppuhr auf PIC 16F84A“ · Mikrocontroller und Digitale Elektronik ·
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16F84.pdf
M M M M I M D P D P U P B P B P B P B P B K K m 1 D 1 D 1 m M C C D sl ooT eratf oS sr ot al u mE reggubeD sre mmar gor P sti Kl avE dna sdraoBo meD * * † 2001 Microchip Technology Inc. DS35007B-page 47 PIC16F84A NOTES: DS35007B-page 48 2001 Microchip Technology Inc. PIC16F84A 9.0 ELECTRICAL
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2Gb_1_35V_DDR3L.pdf
7.0 V/ns 6.0 V/ns 5.0 V/ns 4.0 V/ns 3.0 V/ns 2.0 V/ns 1.8 V/ns 1.6 V/ns 1.4 V/ns 1.2 V/ns 1.0 V/ns E e N a R e S Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Δ Q DS tDH tDS tDH tDS DH DS tDH tDS tDH DS tDH tDS tDH tDS DH DS tDH tDS tDH DS tDH tDS tDH D 4.0 33 23 33 23 33 23 3.5 28 19 28 19 28 19 28
in „DDR3 Datenblatt richtig lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF272L.pdf
transmitters RF POWER FET for FM broadcast or TV channel frequency bands. • Guaranteed Performance @ 500 MHz, 28 Vdc Output Power — 100 Watts Power Gain — 8.8 dB Typ Efficiency — 55% Typ D • 100% Ruggedness Tested At Rated Output Power • Low Thermal Resistance • Low C rss— 17 pF Typ @ V DS = 28 Volts • S–Parameters
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PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
GTR_REFCLK1_C2M_P [6] 4.70K 4.70K OUT4b 26 GTR_REFCLK1_C2M_N [6] 2 2 VDDO4 25 CC_PS_PGOOD_LS_B 8 31 17 INPUT1 OUT5 30 GTR_REFCLK0_C2M_P [6] CC_PL_PGOOD_LS_B 24 INPUT2 OUT5b 32 GTR_REFCLK0_C2M_N [6] 28 INPUT3 VDDO5 29 INPUT4 INPUT5 D 7 7 A Clock Generator Q11 3 4 Q16 3 4 e OUT0 = 125 MHz LVDS HDA I2C SWITCH
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PDF
70622B.pdf
15.249) regulatory standards. FIGURE 1: MRF89XA 32-PIN QFN PIN DIAGRAM 32-Pin QFN 4 3 ( I S R R R S C F E A V V D E N R T P D A V T 32 31 30 29 28 27 26 25 TEST5 1 TEST2 24 33 GND (1) TEST1 2 23 PLOCK VCORS 3 22 IRQ1 VCOTN 4 21 IRQ0 MRF89XA VCOTP 5 20 DATA PLLN 6 19 CLKOUT PLLP 7 SCK 18 TEST6 8 17 SDI 9
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PDF
70622B.pdf
15.249) regulatory standards. FIGURE 1: MRF89XA 32-PIN QFN PIN DIAGRAM 32-Pin QFN 4 3 ( I S R R R S C F E A V V D E N R T P D A V T 32 31 30 29 28 27 26 25 TEST5 1 TEST2 24 33 GND (1) TEST1 2 23 PLOCK VCORS 3 22 IRQ1 VCOTN 4 21 IRQ0 MRF89XA VCOTP 5 20 DATA PLLN 6 19 CLKOUT PLLP 7 SCK 18 TEST6 8 17 SDI 9
in „Wie genau funktioniert die drahtlose Kommunikation?“ · HF, Funk und Felder ·
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PDF
BMP581.pdf
device reliability. © Bosch Sensortec GmbH 2023 | All rights reserved, also regarding any disposal, eDocument number: BST-BMP581-DS004-11distribution, as well as in the event of applications for industrial property rights Bosch Sensortec | BST-BMP581-DS004-11 14 | 75 3 Quick start guide This section
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSO203.pdf
NC 36 L10 R42 Ain 10V 3 OPA2354 R7 R9 2 3 74HC4052PW 74HC4052PW 12K 12K 4 GND NC 35 2V8 L1 3K3 4K7 R17 R21 C21 12 DFS NC 46 2V8 FB R5 R5A C19 C17 GND VDD FB 105 105 22uF/6.3V 16 GND VDD 33 R47 27 GND AD9288-40 VDD 28 51R 29 15 5 L2 C18 C20 C22 32 GND VDD 48 4 U7 CESD5V0AP CN5 FB R6 R6A 10V 3 U2A R18 R22
in „Welches aktuelle DSO ist gut ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
1 2 3 4 5 6 7 8 9 10 11 1 3 E 9 2 P 8 C15 4 M E Ub+ 100nF J J S 7 3 J 6 5 MAX5035 LED A 4 GND 1 8 L2 2 1 A 4 3 2 BST LX 7 5V R 5V J CAN_GND VD V_IN 150uH 1.4A D10 R17 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR 1 CAN_H 4 5 CAP1 0 CAP2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
1 2 3 4 5 6 7 8 9 10 11 1 3 E 9 2 P 8 C15 4 M E Ub+ 100nF J J S 7 3 J 6 5 MAX5035 LED A 4 GND 1 8 L2 2 1 A 4 3 2 BST LX 7 5V R 5V J CAN_GND VD V_IN 150uH 1.4A D10 R17 R 2 CAN_L 3 SGND GND 6 2 1 XC6206P332MR 1 CAN_H 4 5 CAP1 0 CAP2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
9 2 M J PC19 43 PC19 PD12 10 1 PD28 6 J 42 PC18 _ PD29 7 S PC18 PD13 11 N PD30 8 8 2 U PC17 41 PC17 PD14 12 N X GND 40 PC16 13 C CAN1_RX 9 0 PC16 39 PC15 CAN1_TX 10 _ PC15 14 N Vbus D+ 39 25 DP PC05 38 PC05 15 PA04 11 O GND E 1 3 R1 24
in „Layout prüfen“ · Platinen ·
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PDF
3703fc.pdf
3703 G08 3703 G09 Driver Peak Source Current vs Driver Pull-Down R vs Driver Peak Source Current vs DS(ON) Temperature Temperature Supply Voltage 3.0 3.0 1.6 2.8 VCC= 10V VCC = 10V 1.4 2.5 ) 2.6 A ( 1.2 T N 2.4 N R ) 1.0 R 2.0 U 2.2 ( U C 2.0 N C C S0.8 C 1.5 U 1.8 D U O R 0.6 S K 1.6 K 1.0 E 0.4 E P
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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MEM4X16E43VTW-5.pdf
NC VCC 12 39 VSS WE# 13 38 CASL# OPTIONS MARKING RAS# 14 36 CASH# NC 16 35 NC# • Plastic Package NC 17 34 NC NC 18 33 NC/A12† 50-pin TSOP (400 mil) TW A0 19 32 A11 A1 20 31 A10 A2 21 30 A9 • Timing A3 22 29 A8 50ns access -5 A4 23 28 A7 60ns access -6 A5 24 27 A6 VCC 25 26 VSS • Refresh Rates †A12 for
in „SN74ABTH16460 4-to-1 Multiplexed/Demultiplexed Transceivers with 3-State Outputs“ · Mikrocontroller und Digitale Elektronik ·
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ESP32Radio.pdf
RST EN U U C54 GND C14 17 XSMT e e 4 R39 k R47 R49 25 21 12 i i 1 7 þÿ1µ BOOT IO0 SDO/SD0 GND SCK L L þÿ22µ25V 47k 4 IO02 24 IO2 SDI/SD1 22 26 17 R21 14 6 R32 2 GND C59 200p St-By IO4 SHD/SD2 DAC Data R22 22 DIN OUTL R33 470
in „TDA7439DS Störgeräusche und ein kochender TDA7377“ · Mikrocontroller und Digitale Elektronik ·