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2012_02-RIAA.pdf
2 2 0 0 2 2 2 C52 C54 1 5 220u R74 C50 C51 IC8A 35V R95 K6 2000R 3 220n R80 R81 R82 IC8B 7 0dB 47R LLL_P_R 6 R84 R85 2400R 220n 220n 0 3 8 R75 R76 R77 R78 R79 2 4 6 0 0 C49 k k k k R83 8 1 3 3 1 1 10k 2n2 C53 +5dB R86 R87 RE2C
in „Empfehlung für Phono-Vorverstärker-Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dog-me.pdf
the right DOG SERIES 3.3V to change specifications without prior notice. d w o ) F M t l g t e 1 1 l ) u e s a n e o , , a p t 5 N a t r er m a o s m ( ( = u p 3 ( ) ) e D o o t d y p i r r r , r r + 0 S S e a = n g r y l h a e s s d s s l l ( ( n R d r r p a i i a a o o o M o o u u a a a at a
in „EADOGM162W-A-Anzeige mit XMEGA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
3 D3 0 D4 0 D5 0 3,4,5,8 I2C1_SCL 3 AUDMUX4_RXD 0 0 0 E E E CH81102M10100 CH81102M10100 1 1 1 P P P T T T MISC GP LED A RS232 Header BASE_PER_3V3 J17 A BASE_PER_3V3 J25 1 2 R5 330R 3 4 PWM_BackLightEN 3,4 3 GP_LED2
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PDF
WebenchReportsServlet.pdf
1 $0.01 Cap= 100.0 nF Series= X7R ESR= 64.0 mOhm VDC= 50.0 V 0805 13mm2 IRMS= 1.64 A 4. Cin TDK C5750X7R1H106M 1 $0.68 Cap= 10.0 µF Series= X7R ESR= 3.0 mOhm VDC= 50.0 V 2220 60mm2 IRMS= 5.5 A 5. Cout TDK C3216X5R1C106M 2 $0.06 Cap= 10.0 µF Series= X5R ESR= 4.6 mOhm 1206 19mm2 VDC= 16.0 V IRMS= 2.7 A 6. Cr MuRata GRM2165C2A201JA01D 1 $0.03 Cap= 200.0 pF Series= C0G/NP0 VDC= 100.0 V IRMS= 0.0 A 0805 13mm2 7. Css Yageo America CC0805KRX7R9BB153 1 $0.01
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PDF
WebenchReportsServlet.pdf
1 $0.01 Cap= 100.0 nF Series= X7R ESR= 64.0 mOhm VDC= 50.0 V 0805 13mm2 IRMS= 1.64 A 4. Cin TDK C5750X7R1H106M 1 $0.68 Cap= 10.0 µF Series= X7R ESR= 3.0 mOhm VDC= 50.0 V 2220 60mm2 IRMS= 5.5 A 5. Cout TDK C3216X5R1C106M 2 $0.06 Cap= 10.0 µF Series= X5R ESR= 4.6 mOhm 1206 19mm2 VDC= 16.0 V IRMS= 2.7 A 6. Cr MuRata GRM2165C2A201JA01D 1 $0.03 Cap= 200.0 pF Series= C0G/NP0 VDC= 100.0 V IRMS= 0.0 A 0805 13mm2 7. Css Yageo America CC0805KRX7R9BB153 1 $0.01
in „LM3150 zu geringe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Uponor_IM_Smatrix_Base_PRO_MODBUS-RTU_EN_1090255_032018.pdf
L N T-144 R X00X101X103 T-145 RS485 1 HDD – – T-146 HDD F T-147 2 O K PE PE T-148 X300 E T-149 B X300 DVI-D Caution! If an Uponor Smatrix Base PRO Interface I-147 is connected, it must be unregistered and disconnected
in „Modbus Sniffer mit Linux“ · Mikrocontroller und Digitale Elektronik ·
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PDF
modbus-fronius.pdf
convention convention EEI: + EEI: - (Leading, capacitive) (Lagging, inductive) ) ) a A a ( pa A) ( e en r( e r i tPo owe r i w c we t w c P R rV arn P R e d A) pp e d t r A t r a p a p R E ϕ ϕ R E Active Power Active Power Exported/Received (W) Exported/Received (W) (-kW, (+kW, -kWh) Active Power +kWh
in „3 Phasen Strom messen mit einem 4-20mA Eingang“ · Haus & Smart Home ·
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PDF
ROS-1700W.pdf
Layout (PL-012) Suggested Layout, Tolerance to be within±.002 inch Outline Dimensions ( mm ) A B C D E F G H J K L M N P Q R S T wt. .500 .500 .180 .100 .080 .115 .060 .040 .540 .060 .100 .135 .135 .115 .140 .070 .150 .070 grams 12.70 12.70 4.57 2.54 2.03 2.92 1.52 1.02 13.72 1.52 2.54 3.43 3.43 2.92 3.56 1.78 3.81 1.78 1.0 ® For detailed performance specs Mini-Circuits & shopping online see web sREV. C ISO 9001 ISO 14001 AS 9100 CERTIFIED TM M102713 P.O. Box 350166, Brooklyn, New York 11235-0003 (718) 934
in „Frage zu VCO Daten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JVC_rv-nb20b_Schema.pdf
R9176 10K 0V 1 1 1 5 . 76 AC/DC 5 5 5 2 1 R9177 220 R REC 77 E2CLK 0V R9178 220 78 E2DATA 5.2V 1 2 S 2501 79 NC 0V 1 K PERIODE R9180 10K 2 1 80 PERIODE 0V R PRESET TUCK R9181 2.2K POW ER 81 TUCK 5.2V R9286
in „JVC Boomblaster - 12V/230V unterschiedliche Bassstärke“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Font_Arial_16px_H.h
/ # // # // # // # // # // # // # // # // # // # // # 0x02, 0x1C, 0xE0, 0x80, 0x70, 0x0F, // @102 '*' (5 pixels wide) // // # // ##### // # // # # // # # // // // // // // // // // // 0x04, 0x34, 0x0E, 0x34, 0x04, 0x00, 0x00, 0x00, 0x00, 0x00, // @112 '+' (7 pixels wide
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PIC18Fxx2.pdf
t e e e f m D D 5 i P w a a a r f o r e 4 e S r p s . p t o n i l a i D 4 a f h u r c u g eg v w n h c 5 l o a b i d l A r e h UA u D R D 3 C a f d D a c o A r B r A o n : d S D 2 y a e P t n t e S e m l
in „AD1 und AD2 Multiplexen (PIC18F452)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D001BC.pdf
Character Codes and Character Patterns. Higher 4-bit (D4 to D7) of Character Code (Hexadecimal) 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 R(1) CG 1 R(2) CG l y 2 R(3) t i a l 3 RAM n n (4) e O 4 R(5) i d e CG f s m 5 R(6) o n U x 6 RAM o (7) C R r 7 R(8) s E o CG l u I N 0 8 R(1) p M 4 9 RAM n T L (2) u A R(3) S R
in „LCD Display initialisieren oder geht das automatisch?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
splc780D.pdf
Character Codes and Character Patterns. Higher 4-bit (D4 to D7) of Character Code (Hexadecimal) 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 R(1) CG 1 R(2) CG l y 2 R(3) t i a l 3 RAM n n (4) e O 4 R(5) i d e CG f s m 5 R(6) o n U x 6 RAM o (7) C R r 7 R(8) s E o CG l u I N 0 8 R(1) p M 4 9 RAM n T L (2) u A R(3) S R
in „2x16 LCD Batron Tabelle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D.pdf
Character Codes and Character Patterns. Higher 4-bit (D4 to D7) of Character Code (Hexadecimal) 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 R(1) CG 1 R(2) CG l y 2 R(3) t i a l 3 RAM n n (4) e O 4 R(5) i d e CG f s m 5 R(6) o n U x 6 RAM o (7) C R r 7 R(8) s E o CG l u I N 0 8 R(1) p M 4 9 RAM n T L (2) u A R(3) S R
in „LCD (HD44780) timing extrem träge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D001BC.pdf
Character Codes and Character Patterns. Higher 4-bit (D4 to D7) of Character Code (Hexadecimal) 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 R(1) CG 1 R(2) CG l y 2 R(3) t i a l 3 RAM n n (4) e O 4 R(5) i d e CG f s m 5 R(6) o n U x 6 RAM o (7) C R r 7 R(8) s E o CG l u I N 0 8 R(1) p M 4 9 RAM n T L (2) u A R(3) S R
in „Bibliothek fuer SPLC780D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D.pdf
Character Codes and Character Patterns. Higher 4-bit (D4 to D7) of Character Code (Hexadecimal) 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 R(1) CG 1 R(2) CG l y 2 R(3) t i a l 3 RAM n n (4) e O 4 R(5) i d e CG f s m 5 R(6) o n U x 6 RAM o (7) C R r 7 R(8) s E o CG l u I N 0 8 R(1) p M 4 9 RAM n T L (2) u A R(3) S R
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
flacker.asm
____ ; 1 / |8 ; o--|RESET VCC|--o--\ ; o--|PB3 PB2|--o | ; Taster--------o--|PB4 PB1|--o--^-------[5K]-- >|- LED---Gnd ; | 100n--o--|GND PB0|--o--^-------[5K]-- >|- LED---Gnd ; | | 4 |__________|5 | ;Gnd | | ; \-------------------------/ ; ********************************** ; F I X & D E R I V. C O
in „Fehlersuche AVR-assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LP171WE2-TLA4.pdf
provide an excellent flat display for office automation products such as Notebook PC. Mini-LVDS signal(R) Mini-LVDS signal(L) Col. Driver #1~4 Col. Driver #5~8 c Mini-LVDS r Output e LVDS signal(Even) 1 n Block r LVDS signal(Odd) N k D TFT-LCD C i Timing o (1680 x 1050) E-EDID signal t Control R F Block
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Datei
SD_DOGM_test2.s
COMPARE1A = 0x2a .equ COMPARE1B = 0x28 .equ CAPTURE1 = 0x26 .equ RXC0 = 7 .equ TXC0 = 6 .equ UDRE0 = 5 .equ UCSR0A = 0x0b .equ UCSR0B = 0x0a .equ RXCIE0 = 7 .equ TXCIE0 = 6 .equ UDRIE0 = 5 .equ DOR0 = 3 .equ URXC0addr = 0x001a .equ UTXC0addr = 0x001e .equ UDRE0addr = 0x001c ;Low Block A .def _LA0 = R0 .def _LA1 = R1 .def _LA2 = R2 .def _LA3 = R3 ;Low Block B .def _LB0 = R4 .def _LB1 = R5 .def _LB2 = R6 .def _LB3 = R7 ;Temp Block A .def _TMP0 = R8 .def _TMP1 = R9 .def _TMP2 = R10 .def _TMP3 = R11 ;Temp Block B .
in „SPI und 2 "Bausteine"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eao_Serie_31.pdf
1 24 14.5 7 Indicator actuator page 5 a a a a 18 x 24 mm 18 x 18 mm Ø18 mm i i l i i 1.5 ... 6 r r a r r . t t g l l 0 i i l s s s 8 3 e e p e e d 2 l l l i i d S S ( U U + L L1 U U+D 23.5 26.5 36 - L1 U U+D 1D, 2D 36 10.5 L 21 06.2009 Drawings 31 8 Illuminated pushbutton actuator page 6 l l l l n n ) a a i i l i i e e a e e g g g l l r r l r r e e e o e e o o o l n n d S S ( U U + 18 x 24 mm 18 x 18 mm Ø18 mm 1.5 ...
in „[S] Custom Tastaturkappen mit individueller Beschriftung“ · Markt ·
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PDF
eao_Serie_31.pdf
1 24 14.5 7 Indicator actuator page 5 a a a a 18 x 24 mm 18 x 18 mm Ø18 mm i i l i i 1.5 ... 6 r r a r r . t t g l l 0 i i l s s s 8 3 e e p e e d 2 l l l i i d S S ( U U + L L1 U U+D 23.5 26.5 36 - L1 U U+D 1D, 2D 36 10.5 L 21 06.2009 Drawings 31 8 Illuminated pushbutton actuator page 6 l l l l n n ) a a i i l i i e e a e e g g g l l r r l r r e e e o e e o o o l n n d S S ( U U + 18 x 24 mm 18 x 18 mm Ø18 mm 1.5 ...
in „Taster für Kanalumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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SCHEMATIC1___PAGE1.pdf
11 VCC A12 25 A11 C6 VCC DSACK0 114 DSACK0 D3 136 D3 D3 5 1 R2D A13 4 A12 10n DSACK1 113 DSACK1 D4 133 D4 D4 6 1 R2E 4 VBAT1 A14 28 A13 AVEC 112 132 D5 D5 7 1 R2F BT1 13 10k R3A 1 2 T2CLK A15 29 X1 111 AVEC D5 131 D6 D6 8 1 R2G 3V VBAT2 R3B 1 3 BKPT A16 3 A14
in „Schaltung mit 68332“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP41010.pdf
SS A V B= 0V. 1 14 Ω VDD= +3V to +5V ) R AB e k12 c 0.8 e t c10 i 0.6 t e i 8 RWB R e Code = 80h e 0.4 l 6 l R R n a WB WA m 4 r 0.2 o o N 2 N MCP41010, MCP42010 (10 kΩ potentiometers) 0 0 0 32 64 96 128 160 192 224 256 -40 -25 -10 5 20
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11195c.pdf
SS A V B= 0V. 1 14 Ω VDD= +3V to +5V ) R AB e k12 c 0.8 e t c10 i 0.6 t e i 8 RWB R e Code = 80h e 0.4 l 6 l R R n a WB WA m 4 r 0.2 o o N 2 N MCP41010, MCP42010 (10 kΩ potentiometers) 0 0 0 32 64 96 128 160 192 224 256 -40 -25 -10 5 20
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
SS A V B= 0V. 1 14 Ω VDD= +3V to +5V ) R AB e k12 c 0.8 e t c10 i 0.6 t e i 8 RWB R e Code = 80h e 0.4 l 6 l R R n a WB WA m 4 r 0.2 o o N 2 N MCP41010, MCP42010 (10 kΩ potentiometers) 0 0 0 32 64 96 128 160 192 224 256 -40 -25 -10 5 20
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
17PW20-1.PDF
3.3VSTBY +24V 4 7 C818 C857 C860 C830 +12V 3 1 +12V 1 2 5 7 9 C 3V3 IC825 4700u 4700u 2200u 100n 0 k 0 R 0 R 0 R 0 R STPS5L25B 6V3 6V3 6V3 16V 1 1 1 2 1 2 1 2 1 2 25V 4 2 2 R R R R R R1013 D 2 8 5 3 3 M 630V B GND 4k7 4 E N /U V TNY266 D 5 0 _ 10n IC826 Opto
in „LCD-TV und Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
5821.pdf
voltage. R A DATA OUT 5 I L 12 OUT5 S BiMOS II devices have much higher data-input rates than the STROBE 6 ST 11 OUT6 original BiMOS circuits. With a 5 V logic supply, they will OUTPUT 10 OUT typically operate
in „Datenblatt vom UCN5821A gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCH.pdf
LCD_Data_19 8 R3 VCC+3.3V LCD_Data_20 9 R4 4 1 5 2 0 6 6 4 3 2 3 02 0 9 2 8 2 6 5 7 0 0 7 42 7 4 2 8 4 8 5 4 LCD_Data_21 10 1 6 1 2 2 3 4 4 5 6 7 8 9 1 1 1 1 1 4 1 1 9 9 1 1 1 1 2 3 4 4 5 5 6 7 8 LCD_Data_22 11 R5 U2
in „Open407I-C (Board für STM32) mit OV9655 (Kameramodul) auf 5"-Touchdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1963.pdf
15 E 15 E 15 R R RL= 8.33, L = 300mA* R C C C N 10 I 10 N 10 RL= 11, L = 300mA* P R = 6, I = 300mA* P P D L L N D G G R L 25, L = 100mA* G 5 RL= 18, L = 100mA* 5 5 R L 33, L = 100mA* RL= 180, L = 10mA* RL
in „LT1963 puffern 2,5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
15 E 15 E 15 R R RL= 8.33, L = 300mA* R C C C N 10 I 10 N 10 RL= 11, L = 300mA* P R = 6, I = 300mA* P P D L L N D G G R L 25, L = 100mA* G 5 RL= 18, L = 100mA* 5 5 R L 33, L = 100mA* RL= 180, L = 10mA* RL
in „Widerstände für Spannungsregler ergeben nicht gewünschte Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1963es8.pdf
15 E 15 E 15 R R RL= 8.33, L = 300mA* R C C C N 10 I 10 N 10 RL= 11, L = 300mA* P R = 6, I = 300mA* P P D L L N D G G R L 25, L = 100mA* G 5 RL= 18, L = 100mA* 5 5 R L 33, L = 100mA* RL= 180, L = 10mA* RL
in „LT1963 SHDN (shutdown) Pin Potenzialfrei ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HF_Zuendung.pdf
1N4148DO35-10 2 2 4093 (MC14093BCP) 4093 (MC14093BCP) k 4093 (MC14093BCP) 0 7 2 1 R 3 6 KIPPSTUFE 7,2 kHz 78% pos U1 R 5 1 4 5 GND 2 3 M P621 R 7 3 14 GND VSS 3FDD D1 D + 0 BZX79C15 D G 7 K V16 G k 8 1uF 5% 63V C F , R F 4 C44 µ R75 1 2 1N4148DO35-10 3 K 1R V44 R 1 k 0,1uF 5% 63V m 7 2 7 t W R 1 C45 V b 2 R76 3 5 33,2k R 1 2 9 K R 1 m hR67 R68 2 55,6K 2W 5,6K 2W - 3 G 5 C 350V 3 F 2 1 1 1 1GND R70 R40 L13 V I X 1R0 2W 5%; 254-0 X X X X 1 2 - N 33R 10% 2R7 10% 4 R74 G R19 / D - N 10K 8 G R
in „HF-Zündung - Step Up Wandler Ansteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bat54.pdf
Reverse leakage current versus reverse applied voltage (typical values) junction temperature IR(A ) R [j]/R[ j 25°C] 1.E+02 1.E+04 VR=3V Tj100°C 1.E+03 1.E+01 1.E+02 Tj50°C 1.E+00 1.E+01 Tj25°C 1.E-01 1.E+00 V (V) Tj(°C) R 1.E-02 1.E-01 0 5 10 15 20 25 30 0 25 50 75 100 125 150 Figure 5. Junction capacitance
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sg-17vlz_ds_en.pdf
1.E-08 e 0.01 e T J 25 °C T J 60 °C R 1.E-09 T J 25 °C 0.001 1.E-10 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Voltage Drop, V (V)F Reverse Voltage, V (R) Figure 3. Typical Characteristics: IFvs. V F Figure 4. Typical Characteristics: I Rs. V R 100 10 ) A (Z , 1 n r u C r 0.1 v e R 0.01 t = 200 μs 0.001 20 22 24 26 28 Breakdown Voltage, V (V)Z Figure 5. Typical Characteristics: I vs. V Z Z SG-17VLZ-DSE Rev.1.2 SANKEN ELECTRIC CO., LTD. 3 May
in „Thermische Belastbarkeit Limadioden“ · Fahrzeugelektronik ·
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PDF
Sanken_Zenerdioden.pdf
1.E-08 e 0.01 e T J 25 °C T J 60 °C R 1.E-09 T J 25 °C 0.001 1.E-10 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Voltage Drop, V (V)F Reverse Voltage, V (R) Figure 3. Typical Characteristics: IFvs. V F Figure 4. Typical Characteristics: I Rs. V R 100 10 ) A (Z , 1 n r u C r 0.1 v e R 0.01 t = 200 μs 0.001 20 22 24 26 28 Breakdown Voltage, V (V)Z Figure 5. Typical Characteristics: I vs. V Z Z SG-17VLZ-DSE Rev.1.2 SANKEN ELECTRIC CO., LTD. 3 May
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PDF
datasheet.pdf
system power > Windmill pitch control systems > Wireless transmissions > Dimensions: 3.96 44 72 85 78.5 25 165.1 25 1.25 1.25 215.5 Dimensions, mm Typical Case size Part # Balancing L W T Weight [g] Vol. [l] package qty BMOD0350-15EA 104058 Active 218 85 44 680* 0.69 1 BMOD0350-15ER 104057 Passive 218
in „[V] Super CAP 58 F 15V“ · Markt ·
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PDF
ZigBit_OEM_Module_Product_Datasheet.pdf
ZigBit™ OEM Modules Product Datasheet PinConfiguration ZDM-A1281-B0 Pinout T U T T X X A K _ O I C R R T A L L K I O L 7 6 T T T T D C _ D E 3 2 1 0 M M C P OP A A R R C C U N S S P P OP I I I G G U U U U I I C D R O G G G S P S S 18 17 16 15 14 13 12 11 10 98 7 6 5 4 3 2 1 GPIO3 1 0 8 GPIO4 2 4RF_GND GPIO5 1 7RFN_IO 2 4 DGND 2 4RF_GND DGND 2 4RFP_IO 4 4 D_VCC 2 4RF_GND D_VCC 5 2 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 S D O K _ _ _ T F D 9 R D D K 8 _ _ T _ T T T T T B R N I D R T C I Q Q _
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PDF
Infineon-ApplicationNote_Some_key_facts_about_avalanche-ApplicationNotes-v01_01-EN.pdf
2Singlepulse avalanche Then, we can expand the denominatorofEquation2 and obtain thefollowingequation. 2.5 R B R B ≈ R T B 0 T T0 Equation 3 As opposed tothe numeratorofEquation2,thedenominatorquicklyincreaseswithtemperature. Basedon equations1-3, thevariationoftheI critimitduringanavalancheeventisplotted
in „MOSFET Avalanche rated“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-ApplicationNote_Some_key_facts_about_avalanche-ApplicationNotes-v01_01-EN.pdf
2Singlepulse avalanche Then, we can expand the denominatorofEquation2 and obtain thefollowingequation. 2.5 R B R B ≈ R T B 0 T T0 Equation 3 As opposed tothe numeratorofEquation2,thedenominatorquicklyincreaseswithtemperature. Basedon equations1-3, thevariationoftheI critimitduringanavalancheeventisplotted
in „SMD Mosfet mit Z-Diode für induktive Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Steuerplattine.pdf
GND +5V n 6 0 C 1 V GND 2 0 IC2 5 R 1 30 71 + RESET RESET (AD7)PA7 72 ISP 100nF C11 22pF 33 (AD6)PA6 73 1 2 D XTAL2 (AD5)PA5 74 MISO 3 MISO +5V 4 +5V C14 N C10 22pF Q3 34 (AD4)PA4 75 VZA_T1 SCK 5 SCK MOSI 6
in „AVR MEGA 1280 schaltet sich mit 50Hz an und ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
armbian_modules.txt
pwm-regulator stv6111 ds3000 tda8083 drxd stb6000 af9033 tda18271c2dd cxd2841er ec100 tda10021 rtl2830 mt352 s5h1411 zd1301_demod cx24123 stv0900 cx24120 nxt6000 dvb_dummy_fe lgdt330x tda665x zl10036 tua6100 dib7000p cx24117 ts2020 stv0297 helene mt312 tda10023 cxd2820r dib7000m mn88443x as102_fe af9013 lgs8gl5
in „Samba auf Banana Pi Pro installieren“ · PC Hard- und Software ·
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PDF
Spec_Inkontinenzsensor_ATtiny461A.pdf
1101 .. + xxx + R/W 1110 0x70 112 0xE0 224 .. + xxx + R/W 0x78 120 0xF0 240 1111 .. + xxx + R/W reserviert ATtiny261 analog: /A3 0 1 0 A2 A1 A0 R/W ATtiny461A: 0 1 0 1 A2 A1 A0 R/W ATtiny261 binär: /A3 0 1 1 A2 A1 A0
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PDF
20071229232211734.pdf
.外形尺寸图 12.6MAX 2.0 13.0 2.54x19=48.26 16-?0.8 8.0 1.6 0.44 1 20 0.40 0 6 0 0 3 0 6 ± . 3 4 8 A . 6 5 A 3 128x64 DOTS 7 V A K Scale: 20:1 4-?2.5 A.A 56.28 Unmarked tolerance X.X ±0.2 V.A 62.0 68.0 X.XX ±0.1 74.4 78.0±0.3 3 PDF 文件使用 "pdfFactory Pro" 试用版本创建 www.fineprint.com.cn 2.主要外形尺寸 项 目 标 准 尺 寸 单 位
in „T6963c Display Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fdgfdkfdp.pdf
VERSION G202 = FDG 1R2 = 1.2 ± 2 % AC G.. CECC 40201-801S FDP E0 = G204 = FDK 12K = 12 k ± 5 % R1 R.. Version A G206 = FDP AB G.. CECC 40201-801S FDP E7 = RC R.. Version E LA failure rate level E7 Note • The products can
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Sheet1_AmpV2.pdf
ESR PIC3401ESR PICap Semi Header 3 N GND 1000µF 1000µF 2.2µF GND COC6 E U6 PIC6601 PIC6602 PIR640PIR6401 PIR6502PIR6501 17 GND GND 2.2K 2.2K +12V R2929 10µF PI1.5R2PIR2901 C2 PIC190 GND 10µF8 100nF L11L C0 PIC1902 PICC2121 PICC22 P I L 1 1 0P I L 1 1 0 1 PIR302 PIR6601PIR6602 PIC210nF PIC200nF 7µH R3R33 10K PIC520 PICOC40 3.3R COJ11 CC7 8 VREG C2020ND GND GND GND C5252 PI1nF1 PIC402 J11 PIC78PIC7802 GND PIC2002 PIC2001 C1 680nF C44C 4 P I J 1 1 0 2 B PCOR392 PIC401 B 150pF R39 330pF U1U11 P O 0
in „Verstärker TAS5630“ · Analoge Elektronik und Schaltungstechnik ·
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ad620.pdf
.PositivePSRvs.Frequency,RTI(G=1−1000) Figure18.LargeSignalFrequencyResponse 180 +V S0.0 160 ) –0.5 E G 140 A –1.0 ) L ( O 120 I V –1.5 I Y B L P (100 E P G S S G = 1000 T P 80 L T V D +1.5 G = 100 T E U R 60 P E +1.0 G = 10 I F R 40 ( +0.5 G = 1 1 2 20 - –V S+0.0 0 0.1 1 10 100 1k 10k 100k 1M 7 0
in „Probleme mit AD620 EKG“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hx8347.c
{0x08,0x18,0x08,0x08,0x08,0x08,0x1C,0x00}; unsigned char _2[8] = {0x1C,0x22,0x02,0x04,0x08,0x10,0x3E,0x00}; unsigned char _3[8] = {0x3E,0x04,0x08,0x04,0x02,0x22,0x1C,0x00}; unsigned char _4[8] = {0x04,0x0C,0x14,0x24,0x3E,0x04,0x04,0x00}; unsigned char _5[8] = {0x3E,0x20,0x3C,0x02,0x02,0x22,0x1C,0x00
in „Display mit HX8347A ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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asus-p701-unlocked.pdf
1 1 1 1 1 1 1 1 1 A 1 A 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 A A Y A A Y A A Y A A Y A A Y A A Y R A A A A A A A A Y R A A Y WV U T R P N M L A A Y WV U T R P N M L A A Y WV U T R P N M L A Y A Y WV U T R P N M L WV U T R P N M L U1E NQ82915PM 6 6 6 6 6 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 4 4 4 4 4 4
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Low_Drop_Spannungsregler_MCP_1702-5002.pdf
U %<2$R;6E 63NY\ZUR4ULZR1\N,G U% K<$$R;6E 6±UPLXXR9U\FGN D %<5$ %<=$ 6±UPLXXR<\ZNG 9 K<S5 5<72 OVXZUZR1L,/LFUR<\ZNGRLNR;LYU ) 7<7S 7<=$ OVXZUZR1L,/LFUR<\ZNGRLNR(V0 )% 7<%K 7<7S 6±UPLXXR4UWFNG ' 5<KS 5<=$ (L8R4UWFNG
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Display_8x40.pdf
: 4 2 DEM 40491 SYH-LY Product specification 4.External Dimensions Figure 2.0 5.PIN Assignment Pin No. Symbol Function 1 DB7 2 DB6 3 DB5 4 DB4 Display Data Signal 5 DB3 6 DB2 7 DB1 8 DB0 9 E1 Read/Write Enable Signal of first KS0066 10 R/W Read or Write Select Signal 11 RS Select
in „Display 8x40 mit Fleury ansteuern, mit 2x KS0066 Controller“ · Mikrocontroller und Digitale Elektronik ·