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LB_LT_M673_Pb_free.pdf
D= P IF IF D = P IF T T T T D = D = 0.005 0.15 0.005 0.15 0.01 0.01 0.02 0.02 0.05 0.05 0.1 0.1 0.10 0.2 0.10 0.2 0.5 0.5 1 1 0.05 0.05 0 -5 -4 -3 -2 -1 0 1 2 0 -5 -4 -3 -2 -1 0 1 2 10 10 10 10 10 10 10 s10 10 10 10 10 10 10 10 s10 tp tp Zulässige Impulsbelastbarkeit IF = f tp) Zulässige Impulsbelastbarkeit
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CH572DS1_en.PDF
address Description Reset value R32_STK_CTRL 0x00 System count control register 0x00000000 R32_STK_SR 0x04 System count status register 0x00000000 R32_STK_CNTL 0x08 System counter low register 0x00000000 R32_STK_CMPLR 0x10 Count reloaded low register 0x00000000 System Count Control Register (R32_STK_CTRL
in „Eagle 7.5 Bibliothek - bitte um Prüfung und Hinweise“ · Platinen ·
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PDF
hm3036.pdf
GND <-- 17 Y1_POS --> 5 DC_ON 3 GND --> 6 TV_ON --> 4 FOC_CTRL <-- 18 Y1/100 --> 7 LF_ON <-- 19 Y1/10 --> 8 TRIG_AT/¯N¯ <-- 20 Y1/2 <-- 21 Y1/1 --> 9 AC_ON <-- 22 Y1x5 --> 10 TR_LED --> 11 ¯SR1¯ PS-Board (J1009) and CR-Board (W6003) <-- 23 Y1_VAR --> 12 SR2 --> 24 -6V Direction Pin Name --> 25 +5V --> 13 ¯LINE¯ --> 1 HT-2 --> 26 +12V --> 14 ¯SR5¯ --> 2 HT-1 --> 15 ¯XY¯ --> 16 ¯SR10¯ --> 3 -2kV --> 4 FOCUS --> 17 ¯SC2¯ YP-Board (J2007) and TB-Board (J4007) --> 18 ¯SH0¯ --> 19 ¯SC3¯ Direction Pin Name --> 20 T_VAR --> 1 ¯CT¯ --> 21 ¯X_MAG¯ PS-Board
in „HM303-6 Schaltpläne“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hameg_HM303-6_Service_manual.pdf
GND <-- 17 Y1_POS --> 5 DC_ON 3 GND --> 6 TV_ON --> 4 FOC_CTRL <-- 18 Y1/100 --> 7 LF_ON <-- 19 Y1/10 --> 8 TRIG_AT/¯N¯ <-- 20 Y1/2 <-- 21 Y1/1 --> 9 AC_ON <-- 22 Y1x5 --> 10 TR_LED --> 11 ¯SR1¯ PS-Board (J1009) and CR-Board (W6003) <-- 23 Y1_VAR --> 12 SR2 --> 24 -6V Direction Pin Name --> 25 +5V --> 13 ¯LINE¯ --> 1 HT-2 --> 26 +12V --> 14 ¯SR5¯ --> 2 HT-1 --> 15 ¯XY¯ --> 16 ¯SR10¯ --> 3 -2kV --> 4 FOCUS --> 17 ¯SC2¯ YP-Board (J2007) and TB-Board (J4007) --> 18 ¯SH0¯ --> 19 ¯SC3¯ Direction Pin Name --> 20 T_VAR --> 1 ¯CT¯ --> 21 ¯X_MAG¯ PS-Board
in „Hameg 303-6 Schaltplan + PCB.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Blinky.c
, 0x08 } }, { CAN_STD_ID, 0x321, 4, { 0xAA, 0x55, 0xAA, 0x55 } }, { CAN_EXT_ID, 0x12345678, 8, { 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17 } }, { CAN_STD_ID, 0x013, 4, { 0x02, 0x06, 0x20, 0x00 } } }; void SCU_Configuration(void) { //SCU_MCLKSourceConfig(SCU_MCLK_OSC); SCU_PCLKDivisorConfig(SCU_PCLK_Div2
in „Problem mit CAN Kommunikation beim STR912FA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code.txt
v5.7.2/css/all.css" integrity="sha384-fnmOCqbTlWIlj8LyTjo7mOUStjsKC4pOpQbqyi7RrhN7udi9RwhKkMHpvLbHG9Sr" crossorigin="anonymous"> <link rel="icon" href="data:,"> <style> html {font-family: Arial; display: inline-block; text-align: center;} h1 { font-size: 2rem;} body { margin: 0;} .topnav { overflow: hidden
in „ESP 8266 ESP-NOW Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JSN-SR20-Y1-2-W100.pdf
1 DESCRIPTION: Ultrasonic Sensor PICTURE: MODEL: JSN-SR20-Y1-2-W100 CHARACTERISTIC This model has two types. One is the sensor be soldered on board. Another one is using a sensor with wire, normal wire length 1 meter. Item Value Pulse width output Serial
in „Fragen zum US Sensor JSN-SR20-Y1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LA_LO_LS_LY_T676_Pb_free.pdf
Luminous Intensity 2) 7) page 15 IF = f(V F);T A = 25 °C IV V (20 mA) = f(IF);T A = 25 °C 2 OHL00232 10 1 OHL10233 10 mA IV 5 I V(20mA) IF 10 1 10 0 5 10 0 10 -1 5 super-red yellow orange/amber -1 -2 10 10 0 1 2 1 1.4 1.8 2.2 2.6 3 V 3.4 10 10 mA 10 V F I F 2)Seite 15 Maximal zulässiger Durchlassstrom
in „LED's ohne vorwiderstand Oo“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sinosz4.pdf
der DGLn 2. Zur Vorbereitung fürs Labor: Durchspielen des Programms mit typischen Parametern: max= 10, min =-10, R1=R3=1000, C=0.1E-6, L=0.01 H, RL= 20, tmax=0.001. Startwerte setzen: Z.B. uC = 1. Wie klein muss dt mindestens sein? Wie groß R4 zum Erreichen eines Sinus konstanter Amplitude? Hängt Sinusfrequenz
in „Wien Robinson Oszilator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP2354DS.pdf
LX VLX 10V/div. 10V/div. MP2354-TPC01 MP2354-TPC02 Startup from Shutdown 2A Resistive Load Load Transient V V RUN O, AC 2V/div. 200mV/div. VOUT IL 1V/div. 1A/div. I LOAD IL 1A/div. 1A/div. MP2354-TPC03 MP2354-
in „[S] Step Down Converter MP2354DS (für Fritzbox 7170)“ · Markt ·
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PDF
AR0130_DS_D.pdf
# words = mean mean histBegin histBegin histEnd histEnd code = 8'h0B 10'h00C [19:10] [9:0] [19:10] [9:0] [19:10] [9:0] stats line 2 lowEndMean lowEndMean perc_lowEnd perc_lowEnd norm_abs_ norm_abs_ 8'h07 [19:10] [9:0] [19:10] [9:0] dev [19:10] dev [9:0] The statistics embedded
in „Auswahl des richtigen dsp“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
version_1p3_assembler.asm
SR01 LJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H JZ SR02 ;MUST BE GOSUB AJMP SGT1 SR02: RET ;NORMAL FALL THRU EXIT
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
IS52Basic.a51
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H ;hier JNZ SGT1 ;MUST BE GOSUB JZ SR02 LJMP SGT1 ;MUST BE GOSUB SR02
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H ;hier JNZ SGT1 ;MUST BE GOSUB JZ SR02 LJMP SGT1 ;MUST BE GOSUB SR02
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H ;hier JNZ SGT1 ;MUST BE GOSUB JZ SR02 LJMP SGT1 ;MUST BE GOSUB SR02
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
PC147 PC154 2.2U(0805) 0.01U 1U NEAR H8 B - 38 Schematic Diagrams S/W Board & Hot-Key VSW2 LID_SW#_10 1 3 2 4 VCN3 VCC_3S VIN_10 VIN_10 1 A SD1 SC2 MPU-101-81 PWRS_10 LID_SW#_10 3 B C A SR1 330(0805) LID_SW#_10 WEB0#_10 4 C SML_010MT_B S 0.1U WEB1#_10 WEB1#_10 5 E SD2 WEB2#_10 WEB2#_10 6 F C A SR3 330(0805) c GND_L GND_L VCC_3S 8 G SML_010MT_B Sheet 38 of 39 h H SD3 CON8 C A SR2 330(0805) S/W Board & e SD4 SML_010MT_B m GND_L C A SR4 330(0805) Hot-Key a Hot keys,Power SML_010MT_B switch,key,Lid t i GND_L c D i a VIN_10 VSW1 g 1 3 PWRS_10 s 2 4 SC1 HCH STS-05-A 0.1U GND_L SWEB3
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Datei
spi.c
; // 3-pin, 8-bit SPI master // Clock polarity high, MSB UCB0CTL1 |= UCSSEL_2; // ACLK UCB0BR0 = 0x10; // /2 change to /1 UCB0BR1 = 0; // UCB0CTL1 &= ~UCSWRST; // **Initialize USCI state machine** return(ESUCCESS); } //***************************************************************************** // /
in „MSP430 Interrupt - CC3000 WLAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HSD043I9W1-B00_formal_specification.pdf
Document No. Revision 1.0 6.5 Power On/Off Sequence Power On Sequence Power Off Sequence 90% VDD Toff 10% 10% 10% Tr VDD power input timing Notes: Data include R0~R7, G0~G7, B0~B7, HSD, VSD, DCLK, DE Power on sequence: VDD ▯ DISP ▯ Data ▯ V LED Power off sequence: DISP ▯ V LED▯ Data ▯ VDD VDD power input
in „TFT-LCD HSD043I9W1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slaa049.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 3.1 Non-Interrupt Processing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 3.2 Interrupt Processing . . . . . .
in „[msp430] 9600 Baud mit 32kHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPI_Interface_On_GPS_Receiver_A2035_H.pdf
...................................................................................................10 4.1 IMAGES...................................................................................................................................11 5 Related Information..................................
in „Schlampiges GPS-Receiver Datenblatt (Maestro 2035-H)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
F2013_touchpad.c
associated pairs of keys */ const uint8_t map_sense_to_key[NUM_KEYS][2] = { {11, 14}, {2, 8}, {0, 5}, {1, 10}, {9, 13}, {4, 12}, {3, 7}, {6, 15} }; /* The working data for the 8 sense lines */ key_line_data_t key_line[NUM_LINES]; //In diesem Array sind die 8 Datensätze für die Messwerte (aktiven Werte) //ein
in „Touchpad Eval Board mit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LY_E67F.pdf
Seite 19 Durchlassstrom Relative Lichtstärke IF= f (VF); S = 25 °C V VI (50 mA) = f(F );ST = 25 °C 10 2 OHL04608 10 2 OHL04151 mA IV IF IV (50mA) 10 1 5 yellow 1 amber, 0 10 orange 10 5 -1 10 5 0 -2 10 10 0 1 2 1.5 1.7 1.9 2.1 2.3 V 2.5 10 5 10 mA 10 VF IF 2013-04-29 8 Version 1.1 LY E67F Relative Forward
in „PLCC-6 LED auf PLCC-4 Platine Löten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1930.pdf
to 5V SEPIC Converter with Coupled Inductors 5V to 24V Boost Converter C3 L1A 1µF D1 L1 4V TO 6.5V 10µH • VOUT 10µH D1 VOUT 5V VIN 24V 5 1 300mA 5V 5 1 90mA C1 VIN SW C1 V IN SW R1 2.2µF 4.7µF 665k 4-CELL LT1930 243k • LT1930 C2 BATTERY 4 3 L1B C2 4 3 SHDN SHDN FB 10µH 10µF SHDN SHDN FB 2.2µF GND 82.5k
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS8126-1YDPS7G_drop_out_5V_linear_regler.pdf
Temperature Current Over Temperature 90 103 80 COUTT==110F,, SR = 1 102 &S.1=m1ES01=m0F, ESR = 0 70 101 C = 47/68 mF B 60 OUT ( ) 0 n 50 ( 10 Stable Region t R e 40 S10−1 e C OUT= 10 mF, ESR = 1.0 W E COUT = 47 mF R 30 10−2 20 C = 68 mF COUT = 10 mF, ESR = 10 W −3 OUT 10 10 0 10−4 100 101 102 103 104 105 106 107 10 8 100 101 102 103 Freq. (Hz) Output Current (mA) Figure 10. Ripple Rejection Figure 11. Output Capacitor ESR RESET CIRCUIT WAVEFORM (1) = No Delay Capacitor
in „Suche Spannungsregler CS8126-1YDPS7G“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sct2932.pdf
LED Driver with Internal Switch SCT2932 ApplicationCircuit Typical applicatiom circuit VIN Rs Cled 10uF/50V D1 L1 68uH C1 10uF/50V V ISENSE SW IN DIM TTP93932 GND GND BlockDiagram Page 3 of 27 1.5A LED Driver with Internal Switch SCT2932 MaximumRatings (TA= 25°C) Characteristic Symbol Rating Unit Supply
in „Suche geeigntes Netzteil für 3x LED-Downlights Konstanstrom 250mA“ · Haus & Smart Home ·
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Datei
spc560b50.h
_t DSI:8; vuint32_t:10; vuint32_t MRE:1; vuint32_t MRV:1; vuint32_t EIE:1; vuint32_t AIS:1; vuint32_t AIE:1; vuint32_t AID:1; } BIT; } UT0; union { /* User Test Register 1 */ vuint32_t REG; struct { vuint32_t DAI:32; } BIT
in „Toolchain für PowerPC mit VLE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
modules_install_file_list_LK5.2-RC2.txt
rc-lme2510.ko INSTALL drivers/media/rc/keymaps/rc-manli.ko INSTALL drivers/media/rc/keymaps/rc-medion-x10-digitainer.ko INSTALL drivers/media/rc/keymaps/rc-medion-x10-or2x.ko INSTALL drivers/media/rc/keymaps/rc-medion-x10.ko INSTALL drivers/media/rc/keymaps/rc-msi-digivox-ii.ko INSTALL drivers/media/rc/keymaps
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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PDF
tm035pdh03_v1.0.pdf
4KV, 5 times; GB/T17626.2 (Operation) (Environment: 15℃~35℃, 30%~60%, 86Kpa~106Kpa) Frequency range:10~55Hz, Stroke:1.5mm 8 Vibration Sweep:10Hz~55Hz~10Hz 2 hours IEC60068-2-6 (Non-operation)for each direction of X.Y.Z. GB/T2423.10 (6 hours for total) (Package condition) 9 Shock 60G 6ms, ±X,±Y,±Z 3times
in „Tianma 3,5" TFT Display ansteuern mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ArmAssemblerTutorial.pdf
ldr r2, =(~(1 << TIMx_SR_UIF)) ldr r1, [r0, #TIMx_SR] bics r1, r2 beq 2f str r2, [r0, #TIMx_SR] ldr r0, =BlinkStep ldrb r1, [r0] cmp r1, #(BlinkTableEnd-BlinkTable) bhs 2f ldr r0, =TimerEvents ldrb r3, [r0] subs r3, #1 itt ne
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QingKeV2_Processor_Manual.PDF
extended by 4096 registers using an internal dedicated 12-bit address codingspace.AndusethehightwoCSR[11:10]todefinetheread/writepermissionofthisregister,0b00,0b01, 0b10 for read/write allowed and 0b11 for read only. Use CSR[9:8] two bits to define the lowest privilege level that can access this register,
in „CH32V006 und CH32V007 von WCH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM124.pdf
Gain RL≥ 2 k 25 25 15 V/mV Output Voltage VOH V = 30V R L 2 k 26 26 26 V Swing (LM2902, V+= 26V) R L 10 k 27 28 27 28 27 28 + VOL V = 5V, RL= 10 k 5 20 5 20 5 20 mV Output Current Source V = 2V V + = +1V, 10 20 10 20 10 20 O IN V IN = 0V, V = 15V mA − Sink V IN = +1V, 10 15 5 8 5 8 + V +N = 0V, V = 15V
in „positiver Addierer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM035PDW01_P_V1.0.pdf
5 times; GB/T17626.2 (Operation) ( Environment: 15℃〜 35℃ , 30%〜60%, 86Kpa〜106Kpa) Frequency range:10~55Hz, Stroke:1.5mm Vibration Sweep:10Hz~55Hz~10Hz 2 hours IEC60068-2-6 8 (Non-operation)for each direction of X.Y.Z. GB/T2423.10 (6 hours for total) (Package condition) 9 Shock 60G 6ms, ±X,±Y,±Z 3times
in „Tianma 3,5" TFT Display ansteuern mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Delta_DRP012V030W1AZ.pdf
duration of 18ms, 3 times per direction, 18 times in total Vibration (Non-Operating) IEC 60068-2-6, 10Hz to 150Hz @ 50m/S² (5G peak); 90 min per axis for all X, Y, Z direction Pollution Degree 2 Protections Overvoltage 16V, +10% / -5%, SELV Output, Hiccup Mode, Non-Latching (Auto-Recovery) Overload /
in „PhotoMos mit TVS schützen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM358_LM158_LM258dual_op_amp.pdf
25 V/mV 2 M RL≥ 2 k / Output V V = +30V R = 2 k 26 26 26 V 8 OH L 1 Voltage (LM2904, V = 26V) RL= 10 k 27 28 27 28 27 28 V M + L Swing VOL V = 5V, RL= 10 k 5 20 5 20 5 20 mV Output Current Source V += +1V, V − = 0V, IN IN 10 20 10 20 10 20 mA V+ = 15V, O = 2V − + Sink VIN = +1V, VIN = 0V, V+ = 15V,
in „PWM Effektivwert messung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM358_APPNOTE.pdf
25 V/mV 2 M RL≥ 2 kΩ / Output V V = +30V R = 2 kΩ 26 26 26 V 8 OH L 1 Voltage (LM2904, V = 26V) RL= 10 kΩ 27 28 27 28 27 28 V M + L Swing VOL V = 5V, RL= 10 kΩ 5 20 5 20 5 20 mV Output Current Source V += +1V, V − = 0V, IN IN 10 20 10 20 10 20 mA V = 15V, VO= 2V − + Sink VIN = +1V, VIN = 0V, V = 15V,
in „unipolar zu bipolar converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WEO012864GWPP3N00F00.pdf
VOL - - - 0.1×VDD V 50% Check Board operating Current VCC =13.0V 20 22 24 mA WEO012864GWPP3N00F00 第 10 頁,共 23 頁 7.Optical Characteristics Item Symbol Condition Min Typ Max Unit (V)θ 160 deg View Angle (H)φ 160 deg Contrast Ratio CR Dark 10,000:1 - - T rise - 10 µs Response Time T fall - 10 µs Display
in „Oled ansteuern SSD1309“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lmc6001.pdf
2.5 10 10 μV/°C RIN Input Resistance >1 Tera Ω CMRR Common Mode 0V ≤ VCM≤ 7.5V 83 75 72 66 Rejection Ratio V = 10V 72 68 63 +PSRR Positive Power Supply 5V ≤ V ≤ 15V 83 73 66 66 dB Rejection Ratio 70 63 63 min
in „Selbstbau Picoamperemeter.“ · Analoge Elektronik und Schaltungstechnik ·
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Microsemi_13.56_MHz__Class-D_Half_Bridge.pdf
drain on resistance of Q1 and Q2 to the 50Ω load. This match should reflect a real resistance of ≈X10 Rds(on) to the two drains of Q1 and Q2. A drain load lower than X10 or higher than X10 will lower the overall efficiency. In the Half Bridge topology of Figure 1, the most critical aspect is the control
in „Bauplan für HF Netzteil gesucht.“ · HF, Funk und Felder ·
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PDF
TLC59116.pdf
width of spikes that must be SP suppressed by the input filter7) 50 50 50 ns Reset W Reset pulse width 10 10 10 ns t Reset recovery time 0 0 0 ns REC RESET Time to reset(8)(9) 400 400 400 ns (1) Minimum SCL clock frequency is limited by the bus time-out feature, which resets the serial bus interface if either
in „Verstehe TWI überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HSD070IDW1-A20.PDF
Module Item Symbol Min. Typ. Max. Unit Note Vcc 2.7 3.0 3.5 V VGH 14.5 15 20 V Supply Voltage VGL -10 -7 -6.5 V AV DD 9.85 10 10.15 V VCOM V CDC - 3.9 - V Input signal ViH 0.7 Vcc - Vcc V Note (1) voltage ViL 0 - 0.3 Vcc V IDD - 5.426 - mA Vcc =3.0V Current of power IDD - 24.1 - mA AV =10 V(Black) supply
in „TFT 7" Ansteuern, bitte um hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HV_257.pdf
) (VPP300V,V DD=6.5V,VNN =5.5V) -50 3.5 -40 3.0 ) d ( -30 ) 2.5 R V S ( 2.0 PP-20 t P s Offset at -10 C V f 1.5 O O Offset at 25 C -10 t Offset at 85 C u n -2.0 0 10 100 1k 10k 100k 1M I -2.5 Frequency (Hz) -3.0 V DD PSRR vs Frequency -3.5 (V =300V,V =6.5V,V =5.5V,T =25 C) PP DD NN A -4.0 -50 -4.5 -40 1 2 3 ) V (Volts) d IN R -30 R P Gain vs V IN D-20 (V =300V,V =6.5V,V =5.5V,T =-10 ,+25 ,+85 C) VD PP DD NN A 73.97 -10 73.96 73.95 0 10 100 1k 10 100 1M 73.94 n 73.93 Frequency (Hz) a G 72.74 72.73 V NN PSRR vs Frequency 72.72 (VPP300V,V DD=6.5V,VNN =5.5V,TA=25 C) -50 72.71 72.70
in „Sockel und C_Load“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADUC7019_7020_7021_7022_7024_7025_7026_7027_7028.pdf
Reserved. Table 69. Feedback Configuration Bit Value PLAELM0 PLAELM1toPLAELM7 PLAELM8 PLAELM9toPLAELM15 10:9 00 Element15 Element 0 Element 7 Element 8 01 Element 2 Element 2 Element10 Element 10 10 Element 4 Element 4 Element12 Element 12 11 Element 6 Element 6 Element14 Element 14 8:7 00 Element 1 Element
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PDF
tlv320aic12k.pdf
/14K V O Output voltage 2.2 2.35 2.4 2.35 V Integrated noise 300 Hz-13 kHz 20 20 µV Offset voltage 10 10 mV Current drive 10 10 mA Unity gain bandwidth 1 1 MHz DC gain 140 120 dB OUTMV Amplifier Characteristics PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT AIC12/13/14/15 AIC12K/14K V Output
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4194-MAX4197.pdf
Offset Current IOS VCM = VCC /2 ±1.0 ±3.0 nA Input Offset Current DriftTCIOS VCM = VCC /2 15 pA/°C f = 10Hz 85 f = 100Hz 75 nV/√Hz G = +1V/V f = 10kHz 72 f = 0.1Hz to 10Hz 1.4 µV RMS f = 10Hz 35 f = 100Hz 32 nV/√Hz Input Noise Voltage e n G = +10V/V f = 10kHz 31 f = 0.1Hz to 10Hz 0.7 µV RMS f = 10Hz 32 f
in „ADC nicht sauber sinus auf oszi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EL4430CS.pdf
of 2; 300Ω and 2700Ω make a shifted above ground to accommodate the lack of negative good gain-of-10 divider. Alternatively, a small capacitor supply. across R Fan be used to create more of a frequency- compensated divider. The value of the capacitor should The dissipation of the amplifiers increases
in „Bezugsquelle/Ersatztyp: EL4430CS (Videodifferenzverstärker)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OP90.pdf
V = ±15 V, S 90 120 dB –15 V < CM < 13.5 V POWER SUPPLY REJECTION RATIO PSRR 3.2 10 µV/V SLEW RATE SR VS= ±15 V 5 12 V/ms SUPPLY CURRENT ISY VS= ±1.5 V 9 15 µA I V = ±15 V 14 20 µA SY S CAPACITIVE LOAD AV= 1 STABILITY 2 No Oscillations 250 650 pF INPUT NOISE VOLTAGE enp-p fO= 0.1 Hz
in „Stromverbrauch eines Mikrocontrollers zeitaufgelöst messen“ · Analoge Elektronik und Schaltungstechnik ·
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DCF_77.pdf
) 4 21 Minute (Einer) 48 Monat (Einer) 8 22 Minute (Einer) 2 23 Minute (Einer) 4 49 Monat (Zehner) 10 24 Minute (Einer) 8 50 Jahr (Einer) 1 25 Minute (Zehner) 10 51 Jahr (Einer) 2 26 Minute (Zehner) 20 52 Jahr (Einer) 4 27 Minute (Zehner) 40 .53 Jahr (Einer) 8 . . sagt man landläufig; und man müßte eigentlich
in „DCF77: Welcher Parallelkondensator?“ · HF, Funk und Felder ·
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HSDL-3612.pdf
0.50 (40 mm MIN.) DIRECTION OF PULLING CONFIGURATION OF TAPE LABEL SHAPE AND DIMENSIONS OF REELS A 10° 4 5 6 ∅1.55 ± 0.05 2.00 ± 0.10 4.00 ± 0.10 B 3 1.75 ± 0.10 5° (MAX.) 11.50 ± 0.10 2 12.50 ± 0.10 3.8 12 A 24.00 ± 0.30 1 ∅1.5 ± 0.18 0.40 ± 0.10 A A B 10 8.00 ± 0.10 A 7 11 4.25 ± 0.10 5° (MAX.) SECTION
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Metex_M3610D-3650D_text.pdf
4ea(C6,9,34,33) INC 15 67 4.7u?/16V 5ea(C4,5,10,ll,35) 5ea(C4,5, 10,11 ,.5) REV 16 68 c.c 104 lea (C32) 223 lea(C32) REV 17 69 104 lea (C33) 124 lea(C33) REV 18 70 lOOpF 2ea(C12,13) lOOpF lea(C12) DEC 71 220P? 3ea(C14-16) 220PF 2ea(C15,16) DEC 19
in „Voltcraft M-3610D (Metex) reparieren“ · Mikrocontroller und Digitale Elektronik ·
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715G7312_PSU.pdf
Circuit Diagrams and PWB Layouts QM16.3E LA 10. EN 93 10.4 A 715G7312 PSU 10-4-1 AC input AC input A01 A01 HS9901 HEAT SINK 1 2 3 4 2 FB9901 ! F9901 ! BEAD C9914 220PF 250V NR9901 3 4 1 2 1 2 ! ! ! C9911 NC9901 1.5R t T6.3AH 250V 47pF 250V ! C9902
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·