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PDF
ST10F27X_Flyer.pdf
to enable innovative and competitive solutions. success, adding cutting-edge DSP potential to its ST10 advanced 16-bit MCU. ST10 0.18µm family features ■ ST10 with DSP unit 832K ST10F276 ST10F296 832K Flash/68K RAM 832K Flash/68K RAM ■ 5th generation embedded Flash ■ Uniform peripheral set 768K ST10F275
in „Programmer für C167“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST10F27X_Flyer.pdf
to enable innovative and competitive solutions. success, adding cutting-edge DSP potential to its ST10 advanced 16-bit MCU. ST10 0.18µm family features ■ ST10 with DSP unit 832K ST10F276 ST10F296 832K Flash/68K RAM 832K Flash/68K RAM ■ 5th generation embedded Flash ■ Uniform peripheral set 768K ST10F275
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
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PDF
MMA8452Q.pdf
1.276 2.56 10 10 5 10 100 5.1 5.1 1.276 5.1 20 20 5 20 50 10.2 10.2 1.276 10.2 40 40 5 40 12.5 10.2 40.8 1.276 40.8 40 160 5 160 6.25 10.2 40.8 1.276 81.6 40 160 5 320 1.56 10.2 40.8 1.276 81.6 40 160 5 320
in „Beschl-Sensor mit i2C reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMBJ5.pdf
Document updated for low leakage current. 09-Jul-2010 9 Changed timescale in Figure 9. 20-Oct-2010 10 Updated Figure 13. Doc ID 5616 Rev 10 9/10 SMBJ Please Read Carefully: Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”
in „Zener Diode gesucht, die bei 4,0V nur 5-10mA zieht und 2-3 Watt "verbrennen" kann“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
errorlog.txt
of macro "SCB" (declared at line 276 of "C:\Keil\ARM\RV31\INC\core_cm3.h") C:\Keil\ARM\INC\ST\STM32F10x\stm32f10x_map.h: #define SCB ((SCB_TypeDef *) SCB_BASE) C:\Keil\ARM\INC\ST\STM32F10x\stm32f10x_map.h: ^ C:\Keil\ARM\INC\ST\STM32F10x
in „STM32 LED blinken Startschwierigkeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VIPower_30W.pdf
Switching V in Iin V out1 at 65 mA V out2 at 0 mA P out P in Efficiency frequency Vdc mA Vdc Vdc W W % KHz 276 3.33 6.51 16.6 0.42 0.92 46 BURST 325 3.02 6.51 17.5 0.42 0.98 43 BURST 374 2.67 6.51 18.2 0.42 1.0 42 BURST Figure 1. Electrical schematic V V 6 T 1 T + R + R % % 1 1 F 6 K 7 K X F R 6 R 4 V X - C
in „Schaltnetzteil - Viper50A-E 45W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
YAMAICHI_TS-Katalog-2017_01_2.pdf
IC Parallel Clamp ∅ GND 1/2 IC Height Socket Dim. W Part Number Count A x B Tip-to-Tip E Pin Hole F G x H Type L C X D U G IC357-0644-06**-* 64 10.0 x 10.0 12.0 x 12.0 - - 0.6375 26.2 x 26.2 OT ( IC500-0644-008P 64 10.0 x 10.0 12.0 x 12.0 - - 0.67 29.6 x 29.6 OT P F IC357-1644-126* 64 10.0 x 10.0 12.0
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ON_LV8772.PDF
and GND. Fchop = Ichop/ (Cchop × Vtchop × 2) (Hz) Ichop : Capacitor charge/discharge current, typ 10μA Vtchop : Charge/discharge hysteresis voltage (Vtup-Vtdown), typ 0.5V For instance, when Cchop is 180pF, the chopping frequency will be as follows : Fchop = 10μA/ (180pF × 0.5V × 2) = 55kHz No.A1975
in „Welcher Schrittmotor?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FXOS8700CQ.pdf
power Normal LPLN Low power resolution resolution 800 0.638 0.638 0.638 0.638 2.5 2.5 2.5 2.5 400 1.276 1.276 1.276 1.276 5 5 5 5 200 2.56 2.56 1.276 2.56 10 10 5 10 100 5.1 5.1 1.276 5.1 20 20 5 20 50 10.2 10.2 1.276 10.2 40 40 5 40 12.5 10.2 40.8 1.276 40.8 40 160 5 160 6.25 10.2 40.8 1.276 81.6 40
in „Beschleunigungssensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LUW_T6SG_-_TOPLED-473049.pdf
2) 7) page 17 Forward Current Relative Luminous Intensity IF = f(V F);T A = 25 °C IV V(20 mA) = f (IF);TA = 25 °C 2 OHL02359 1 OHL02386 10 10 mA IV IF 5 IV(20mA) 1 0 10 10 5 5 10 0 10-1 2.5 3 3.5 4 4.5 V 5 10 0 5 101 mA 10 2 VF IF Relative Vorwärtsspannung 2) Seite
in „Vorwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC7A20-SilanMicroelectronics.pdf
最小值 典型值 最大值 单位 零漂 TyOff0 FS=0 -- ±40 -- mg 温漂 TC Off 与 25°C 的最大偏差 -- ±0.5 -- mg/°C Vst1 FS=0, X 轴 -- 276 -- LSb 自测输出 Vst2 FS=0, Y 轴 -- 276 -- LSb V FS=0, Z 轴 -- 984 -- LSb st3 系统带宽 BW -- ODR/2 -- HZ 工作温度 T OPR -40 -- +85 °C 注意:电路 2.5V 出厂校准。电路实际工作电压 1.71V-3.6V 电气参数(VDD=2.5V, T =25°C) A 参 数 符 号 测试条件 最小值
in „Arduino Custom Firmware für Fitness Armband mit NRF52“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S2-L2-5V.pdf
allowable Type voltage, voltage, voltage ating current, tance,Ω V DC V DC (max.) V DC (min.) mA (±10%) mH power, voltage, mW V DC (40 °C) ST-L1-3V 3 2.1 0.3 33 90 0.04 99 8.4 ST-L1-5V 5 3.5 0.5 16 300 0.14 80 15.3 ST-L1-6V 6 4.2 0.6 16 360 0.14 96 16.8 ST-L1-12V 12 8.4 1.2 8 1450 0.6 96 33.7 ST-L1-24V
in „24V Relais ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S2-L2-5V.pdf
allowable Type voltage, voltage, voltage ating current, tance,Ω V DC V DC (max.) V DC (min.) mA (±10%) mH power, voltage, mW V DC (40 °C) ST-L1-3V 3 2.1 0.3 33 90 0.04 99 8.4 ST-L1-5V 5 3.5 0.5 16 300 0.14 80 15.3 ST-L1-6V 6 4.2 0.6 16 360 0.14 96 16.8 ST-L1-12V 12 8.4 1.2 8 1450 0.6 96 33.7 ST-L1-24V
in „(V) 4-Fach 5*7 Punktmatrix Osram DLR 2416, Bistabile Relais SDS, LED-Display 7-Seg. 4-Fach“ · Markt ·
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PDF
XBSM6T_DATA_E.pdf
characteristics, parameter values (T = 25 °C) amb V @ I V @ I RM @ VRM(1) VBR @ IR(2) CL PP CL PP αT (4) C(5) 10/1000 µs3) 8/20 µs3) Order code max min nom max max max max typ µA µA V V V V mA V A V A 10-4/°C pF (Tj=25°C) jT =85°C) SM6T6V8A/CA 10 50 5.8 6.45 6.8 7.14 10 10.5 57 13.4 298 5.7 4000 SM6T7V5A/CA 10 50 6.4 7.13 7.5 7.88 10 11.3 53 14.5 276 6.1 3700 SM6T10A/CA 1 10 8.55 9.5 10 10.5 1 14.5 41 18.6 215 7.3 2800 SM6T12A/CA 0.5 1 10.2 11.4 12 12.6 1 16.7 36 21.7 184 7.8 2300 SM6T15A/CA 0.5 1 12.8 14.3 15 15.8 1 21.2 28 27.2
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PDF
z01.pdf
SOT-223 Ttab= 90° C T(RMS) (full sine wave) 1 A TO-92 TL = 50° C Non repetitive surge peak on-state F = 50 Hz t = 20 ms 8 TSM current (full cyclej T initial = 25° C) A F = 60 Hz t = 16.7 ms 8.5 It I t Value for fusing t = 10 ms 0.35 A s p Critical rate of rise of on-state current dI/dt I = 2 x I , t
in „kann jemand Bauteil idetifizieren Z9M A818“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
9e.pdf
Ranges (FS) and Overpressure in Bar. Signal Output in mV. PR-9 -1 -0,5 -0,2 -0,1 0,1 0,2 0,5 1 2 5 10 20 PD-9 0,1 0,2 0,5 1 2 5 10 20 PAA-9 0,1 0,2 0,5 1 2 5 10 20 PA-9 1 2 5 10 20 50 100 200 Signal Output typ.* 100 60 30 15 15 30 60 100 140 200 225 225 225 225 225 Overpressure -1 -1 -1 -1 2,5 2,5 2,5
in „Differential spannung auswerten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
st7565r.pdf
WRITE Data setup time DS8 40 — WRITE Address hold time DH8 0 — D0 to D7 READ access time ACC8 CL= 100 pF — 70 READ Output disable time OH8 CL= 100 pF 5 50 Ver 1.5 60/72 2006/03/10 ST7565R Table 25 (VDD = 2.7V,Ta = –30 to 85°C) Rating Item Signal Symbol Condition Min. Max. Units Address hold time AH8 0 —
in „Neue DOG LCD-Grafikmodule SPI ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
db_lcd-controller-ST7565R.pdf
WRITE Data setup time DS8 40 — WRITE Address hold time DH8 0 — D0 to D7 READ access time ACC8 CL= 100 pF — 70 READ Output disable time OH8 CL= 100 pF 5 50 Ver 1.5 60/72 2006/03/10 ST7565R Table 25 (VDD = 2.7V,Ta = –30 to 85°C) Rating Item Signal Symbol Condition Min. Max. Units Address hold time AH8 0 —
in „G-LCD ST756-Controller , Schriftart und einzelne Pixel ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L5973D.pdf
15µH VOUT=3.3V 1 VIN = 4.4V to 35V VCC D1 8 L5973D STPS340U R1 SYNC. 2 5.6K 5 C2 C1 COMP 4 3 7 FB 330µF 10µF C4 10V 35V 22nF INH GND R2 CERAMIC 3.3K C3 R3 220pF 4.7K D03IN1439 January 2008 Rev 16 1/17 www.st.com 17 Contents L5973D Contents 1 Pin settings . . . . . . . . . . . . . . . . . . . . . . . .
in „Brauche Hilfe: L5973D (2.5 A switch step down switching regulator)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smbj.pdf
5.7 SMBJ6.0A/CA 20 50 6.0 6.70 7.05 10 10.3 61 0.048 14.8 270 0.027 5.9 SMBJ6.5A/CA 20 50 6.5 7.20 7.58 10 11.2 56 0.058 15.2 266 0.027 6.1 SMBJ8.5A/CA 20 50 8.5 9.40 9.90 1 14.4 41.7 0.096 19.5 205 0.044 7.3 SMBJ10A/CA 0.2 1 10 11.1 11.7
in „SMD Diode unbekannte Kennzeichnung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
test.lst
95 1b sub r25, r21 10a: 55 0b sbc r21, r21 10c: bb 27 eor r27, r27 10e: aa 27 eor r26, r26 110: 62 17 cp r22, r18 112: 73 07 cpc r23, r19 114: 84 07 cpc r24, r20 116: 38 f0 brcs .+14 ; 0x126 <__divsf3_pse+0x26> 118: 9f 5f
in „AVR Studio 5 meckert sehr viel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OM4031.pdf
below 50 s. data. The open-drain data output allows level shifting of For a single CMOS input with a 10 pF capacitance the data to suit a microcontroller operating at a higher R = 1 M gives a rise time of approximately 30 s power supply voltage (VDD ). pull (3 × RC). At VDD = 2.0 V this corresponds with
in „Selbstbau eines guten 30m-Empfängers“ · HF, Funk und Felder ·
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PDF
PSE1800_a-_Schaltplaene.pdf
Dk yHus us f$—-— —-— ta — —-— —— —— MK? st on Ti. -= | 1S7 10 5uLSOb 81 BP aa a2 3 54LS 139 7 6 ; ; ta R75 wu BIE Wag & 4 Hi | Sas An yo yi Y2 nea 560 uous a2) 6 Ab {i8 Q i PB - 1S04 7 1764/2732 as (2 8 pal A2 Ag
in „AEG - Telefunken E1800 mit PIO 1200 Schnittstelle.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nkat20-21.pdf
Fax. 0911 / 58 13 41 Kapazität Spannung Bf. Best.Nr. St. ab 10 ab 100 ab 500 ab 2000 10 µF 6.3 V R 7236/12 -.89 -.315 -.175 -.135 10 µF 10 V A 7236/111 -.59 -.176 -.098 -.075 -.062 10 µF 16 V A 7236/111C -.65 -.203 -.113 -.087 -.072 10 µF 16 V B 7236/106
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PDF
TDA2003.pdf
F 0.8 1.05 0.031 0.041 F1 1 1.4 0.039 0.055 G 3.2 3.4 3.6 0.126 0.134 0.142 G1 6.6 6.8 7 0.260 0.268 0.276 H2 10.4 0.409 H3 10.05 10.4 0.396 0.409 L 17.55 17.85 18.15 0.691 0.703 0.715 L1 15.55 15.75 15.95
in „Verstärkerschaltung 5W“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
startup_stm32f40xx.lst
Uses At line 129 in file ..\..\STM32F4xx_DSP_StdPeriph_Lib_V1.3.0\Libraries\CM SIS\Device\ST\STM32F4xx\Source\Templates\arm\startup_stm32f40xx.s At line 276 in file ..\..\STM32F4xx_DSP_StdPeriph_Lib_V1.3.0\Libraries\CM SIS\Device\ST\STM32F4xx
in „Stm32f4 UART löst kein receive Interrupt aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP785-D.pdf
Note 5) Thermal Shutdown Hysteresis Temperature falling from T T − 10 − °C (Note 5) SD SDH Table 6. ELECTRICAL CHARACTERISTICS, V OUT = 5.0 V (−40°C ≤ T J 85°C; V IN= 340 V; OUT = 100 mA, C IN= 1 mF, OUT = 22 mF, unless otherwise noted. Typical values are Jt T = +25°C.
in „Linearregler >= 40V Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
l200.pdf
V i 10 V V o V ref Io= 0.5 A f = 100 Hz 1.5 m CURRENT REGULATION LOOP VSC Current Limit Sense Voltage V i 10 V V o V ref between Pins 5 and 2 I5= 100 mA 0.38 0.45 0.52 V VSC Average Temperature 0.03 %/°C T
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST__L200.pdf
Vi= 10 V Vo= V ref I = 0.5 A f = 100 Hz 1.5 m o CURRENT REGULATION LOOP V Current Limit Sense Voltage V = 10 V V = V SC i o ref between Pins 5 and 2 I5= 100 mA 0.38 0.45 0.52 V VSC Average Temperature 0.03
in „liegender einstellbarer Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LIS3LV02DQ28.pdf
typ=2.5V) while the I/O pads are supplied through Vdd_IO. Power supply decoupling capacitors (100 nF ceramic, 10 µF Al) should be placed as near as pos- sible to the pin 3 of the device (common design practice). All the voltage and ground supplies must be present at the same time to have proper behavior
in „"Halbleiterkreisel"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3LV02DQ28.pdf
typ=2.5V) while the I/O pads are supplied through Vdd_IO. Power supply decoupling capacitors (100 nF ceramic, 10 µF Al) should be placed as near as pos- sible to the pin 3 of the device (common design practice). All the voltage and ground supplies must be present at the same time to have proper behavior
in „Beschleunigungssensor für ca +/-6g in alle 3 Achsen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HEDS973X.pdf
Derating Curves Typical performance over extended operating range. These curves were derived using a 25 pF load with a 3.3 k pull-up resistor. Greater load capacitances will cause more error than shown in these graphs. A B 0 15 R R R ) +25 °C R ) -40 °C E E +85 °C E E 10 H E H E I G -5 I G +25 °C W D W D
in „Unbekannte opt. Sensoren von Agilent“ · Mikrocontroller und Digitale Elektronik ·
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PDF
druseidt_0105deu.pdf
418 A 477 A 531 A 580 A 115,00 19034 160 8 x 20 x 1 413 A 492 A 562 A 625 A 683 A 153,30 19036 200 10 x 20 x 1 497 A 592 A 676 A 752 A 821 A 191,60 19037 48 2 x 24 x 1 223 A 265 A 303 A 337 A 368 A 46,00 19038 72 3 x 24 x 1 276 A 329 A 375 A 417 A 456 A 69,00 19039 96 4 x 24 x 1 322 A 383 A 438 A 487
in „Pressverschweißen von Kabelenden“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
DSA0089278.pdf
6.0 6.7 10 10.3 61 13.7 290 5.9 3850 SMBJ6.5A-TR BUB SMBJ6.5CA-TR BBB 500 6.5 7.2 10 11.2 56 14.5 276 6.1 3700 SMBJ8.5A-TR BUC SMBJ8.5CA-TR BBC 5 8.5 9.4 1 14.4 41.7 19.5 205 7.3 2800 SMBJ10A-TR BUD SMBJ10CA-TR
in „welche Diode ist das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stp16cpc26.pdf
VDD=3.3V - 30 - CLK - SDO tPHLb Rext = 900 Ohm VDD=5V - 20 - RL = 50 Ohm tw(CLK) CLK Pulse width CL=10pF 20 - - tw(L) LE 20 - - w(OE) OE 150 - - ns tsu(L) Setup time for LE 5 - - h (L) Hold time for LE 5 - - tsu(D) Setup time for SDI 5 - - h(D) Hold time for SDI 10 - - (1) tr Maximum CLK rise time - -
in „[S] 12fach LED IC gesucht (ähnlich 74HC595)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t.lst
0000ed 2dec MOV R30,R12 0000ee e9ac LDI R26,LOW(_adc_data) 0000ef e0b1 LDI R27,HIGH(_adc_data) 0000f0 27ff CLR R31 0000f1 0fee LSL R30 0000f2 1fff ROL R31 0000f3 0fae ADD R26,R30 0000f4 1fbf ADC R27,R31 0000f5 b1e4 IN R30,0x4 0000f6 b1f5 IN R31,0x4+1 0000f7 93ed ST X+,R30 0000f8 93fc ST X,R31 ; 253
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t.lst
0000ed 2dec MOV R30,R12 0000ee e9ac LDI R26,LOW(_adc_data) 0000ef e0b1 LDI R27,HIGH(_adc_data) 0000f0 27ff CLR R31 0000f1 0fee LSL R30 0000f2 1fff ROL R31 0000f3 0fae ADD R26,R30 0000f4 1fbf ADC R27,R31 0000f5 b1e4 IN R30,0x4 0000f6 b1f5 IN R31,0x4+1 0000f7 93ed ST X+,R30 0000f8 93fc ST X,R31 ; 253
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.txt
: 02 c0 rjmp .+4 ; 0x108 <__do_copy_data+0x14> 104: 07 90 elpm r0, Z+ 106: 0d 92 st X+, r0 108: a4 30 cpi r26, 0x04 ; 4 10a: b1 07 cpc r27, r17 10c: d9 f7 brne .-10 ; 0x104 <__do_copy_data+0x10> 0000010e <__do_clear_bss>: 10e: 22 e0 ldi r18, 0x02 ; 2 110: a4 e0 ldi r26, 0x04 ; 4 112
in „Arduino Compiler Speicherverwaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PinTemplateVirtual.ino.elf.txt
e0 ldi r26, 0x00 ; 0 b2: b8 e2 ldi r27, 0x28 ; 40 b4: ea ed ldi r30, 0xDA ; 218 b6: f4 e0 ldi r31, 0x04 ; 4 b8: 02 c0 rjmp .+4 ; 0xbe <__do_copy_data+0x10> ba: 05 90 lpm r0, Z+ bc: 0d 92 st X+, r0 be: a8 30 cpi r26, 0x08 ; 8 c0: b1 07 cpc r27, r17 c2: d9 f7 brne .-10 ; 0xba <__do_copy_data
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSN10.pdf
15 pF Coss output capacitance VDS = 10 V; GS = 0; f = 1 MHz − 7 15 pF Crss feedback capacitance VDS = 10 V; GS = 0; f = 1 MHz − 2 5 pF Switching times on turn-on time D = 100 mA; VDD = 20 V; − 2 5 ns VGS = 0 to 10 V off turn-off time D = 100 mA; VDD = 50 V; − 5 10 ns VGS = 0 to 10 V 1 MDA690 MRA781 handbook, handbook, halfpage Ptot (W) C 0.8 (pF) 20 0.6 0.4 10 (1) 0.2 (2) (3) 0 0 0 50 100 150 200 0 5 10 15 20
in „Pegelwandler lässt TWI erfrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6206.pdf
7(03(5$785( 5() 352*&/ '▯▯,1▯▯▯▯9▯ $▯ 5&/$▯ 14/31 DocID7617 Rev 2 L6206 Circuit description Figure 10. Overcurrent protection waveforms IO U T I S OV E R V E N V D D V th(O N ) V th(O F F ) V E N (LO W ) O N O C D O F F O N B R ID G E tD E LAY tD IS A B LE O F F tO C D (O N ) tE N (FA LL) tO C D (O F
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_2N3904.pdf
10 mA; I = 1 mA; note 1 − 850 mV BEsat C B IC= 50 mA; B = 5 mA; note 1 − 950 mV Cc collector capacitance IE= e = 0; CB= 5 V; f = 1 MHz − 4 pF Ce emitter capacitance IC= c = 0; EB= 500 mV; f = 1 MHz − 8 pF T transition frequency IC= 10 mA; VCE = 20 V; f = 100 MHz300 − MHz F noise figure IC= 100 A; V CE= 5 V; S = 1 k ; − 5 dB f = 10 Hz to 15.7 kHz Switching times (between 10% and 90% levels); see Fig.2 on
in „12V relais lässt nicht los“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
HelloWorld.lst
r31, 0x00 ; 0 26c: e2 5f subi r30, 0xF2 ; 242 26e: fe 4f sbci r31, 0xFE ; 254 270: 80 83 st Z, r24 if (++inputEnd>=SERIAL_INPUT_BUFFER_SIZE) 272: 80 91 73 01 lds r24, 0x0173 ; 0x800173 <inputEnd> 276: 8f 5f subi r24, 0xFF ;
in „AVR: Speicherverwaltung in Mischprojekt C++ & ASM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
100807728a.pdf
RPM Data transfer rate (up to) 140 MB/s 2.4 Physical Characteristics Height (mm/in) 7.0 (± 0.2) / 0.276 (± 008) Width (mm/in) 69.85 (± 0.25) / 2.750 (± 0.010) Length (mm/in) 100.35 (+0.20/-0.25) / 3.951 (+0.008/-0.010) Typical weight (g/lb) 90 / 0.198 (ST2000LM015) 85 / 0.187 (ST1000LM048 & ST500LM030
in „Komponenten für Low Power Fileserver?“ · PC Hard- und Software ·
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PDF
BC546_547_3.pdf
voltage C = 2 mA; VCE= 5 V; note 2 580 660 700 mV C = 10 mA; VCE= 5 V − − 770 mV C collector capacitance I = i = 0; V = 10 V; f = 1 MHz − 1.5 − pF c E e CB Ce emitter capacitance C = c = 0;EB = 0.5 V; f = 1 MHz− 11 − pF T transition frequency C = 10mA; VCE = 5 V; f = 100 MHz 100 − − MHz F noise figure I = 200 A; V = 5 V; − 2 10 dB C CE RS= 2 k ; f = 1 kHz; B = 200 Hz Notes 1. V BEsatecreases by about 1.7 mV/K with increasing temperature. 2. V BEdecreases by about
in „Rätselhafter Transistor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
hhi8(32767) 80 .LVL1: 81 004a 6050 subi r22,lo8(-(8704)) 82 004c 7E4D sbci r23,hi8(-(8704)) 83 004e 8F4F sbci r24,hlo8(-(8704)) 84 0050 9F4F sbci r25,hhi8(-(8704)) 85 0052 FB01 movw r30,r22 86 .LVL2: 87 0054 4083 st Z,r20 88 /* epilogue start */ 89 .LM10: 90 0056 1F91 pop r17 91 0058 0F91 pop r16 92 005a
in „RAM-Bankswitching - wie am geschicktesten mit GCC auf AVR?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS89.pdf
60 A GSS gate leakage current VDS = 0; GS= ±20 V − − ±100 nA R drain-source on-state resistance = 10 V; I = 400 mA − 4.5 6 DSon GS D yfs forward transfer admittance D = 400 mA; DS = 25 V 140 350 − mS Ciss input capacitance VDS = 25 V;GS = 0; f = 1 MHz − 45 − pF C output capacitance V = 25 V; V = 0; f = 1 MHz − 15 − pF oss DS GS Crss reverse transfer capacitance VDS = 25 V;GS = 0; f = 1 MHz − 3.5 − pF Switching times (see Figs 2 and 3) on turn-on time VGS = 0 to 10 VDDV= 50 V; − 5 − ns D = 250 mA
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PDF
bs208.pdf
1 − 5 15 pF on turn-on time note 2 − 5 10 ns t turn-off time note 2 − 20 30 ns off Notes 1. Measured at f = 1 MHz; −V = 25 V; V = 0. DS GS 2. −V GS = 0 to 10 V;D−I = 250 mA; DD= 50 V. handbook, halfpage VDD = −50
in „Mosfet BS208 sperrt nicht bei >3V“ · Analoge Elektronik und Schaltungstechnik ·
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BC847BS_2xnpn.pdf
mV Cc collector capacitance E = e = 0;CB = 10 V; f = 1 MHz − − 1.5 pF Ce emitter capacitance C = c = 0;EB = 500 mV; f = 1 MHz − 11 − pF f transition frequency I = 10 mA; V = 5 V; f = 100 MHz100 − − MHz T C CE Note 1. Pulse test: t 300 s; δ ≤ 0.02
in „BC547 matched“ · Analoge Elektronik und Schaltungstechnik ·
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TDA1562_PHI.pdf
landscape pages to be ... 1 T P 9 E h 8 T w 7 0 p A A h s r N W e 7 + VP D d m 100 2200 A a i c 4700 F nF F P g g n C1− C1+ VP1 VP2 L n h u 3 5 9 10 C s e t T t fi r CLASS-B O c c s status I/O6 CLASS-H TEMPERATURE LOAD DUMP N f e FAST MUTE SENSOR PROTECTION N c n F i c O t y mode 4 STANDBY disableLIFT-SUPPLY
in „Frage zu TDA1562 I/O Pin“ · Mikrocontroller und Digitale Elektronik ·