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Datei
f2u_tiny45.c
FIN_MAX 50 // 50 Hz #define MIN_MESSZEIT 2 // in 10ms, etwa max. 50 Messungen/Sekunde #define TIMEOUT 200 // ab 2 Sekunden oder <= 0,5 Hz #define BIT(x) (1<<x) #define F_EINGANG 2 // PB.2 #define PWM_AUSGANG 0 // PB.0 #define BLINK_LED 4 // PB.4 // Variablen zur Frequenzmessung volatile uint16_t mess_dauer
in „Impulse von Reedkontakt als Spannung anzeigen NE555“ · Mikrocontroller und Digitale Elektronik ·
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Datei
f2u_tiny45.c
FIN_MAX 50 // 50 Hz #define MIN_MESSZEIT 2 // in 10ms, etwa max. 50 Messungen/Sekunde #define TIMEOUT 200 // ab 2 Sekunden oder <= 0,5 Hz #define BIT(x) (1<<x) #define F_EINGANG 2 // PB.2 #define PWM_AUSGANG 0 // PB.0 #define BLINK_LED 4 // PB.4 // Variablen zur Frequenzmessung volatile uint16_t mess_dauer
in „Analoges Fahrrad-Tachymeter mit Dynamo betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NEC_Usage_of_Three_Terminal_Regulators.pdf
reference reference voltage used in the PC7800A Series. Figure 3-2. Band Gap Reference Circuit V+ I V REF= VBE3+ R2 (KT lnR2) R3 q R1 V REF R 1 R2 R2 V BE R3 Q3 Q 2 VBE Q 1 VBE R 3 GND The reference voltage is as follows. V REF = VBE3 + (I2 + I ) •R 2 R2 = VBE3 + ( V ) + I B3• R2 R3 = VBE3 + R2 KT lnR2
in „Literatur des Linearregler“ · Analoge Elektronik und Schaltungstechnik ·
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2547887.pdf
1.8A 0 ~ 1.4A 0 ~ 0.9A RATED POWER 14.85W 20W 21.6W 21W 21.6W RIPPLE & NOISE (max.)Note.2200mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p OUTPUT VOLTAGE TOLERANCE Note.3 ±2.5% ±2.5% ±2.5% ±2.5% ±2.5% LINE REGULATION ±0.5% ±0.5% ±0.3% ±0.3% ±0.3% LOAD REGULATION ±1% ±1% ±0.5% ±0.5% ±0.5% SETUP, RISE TIME
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PDF
Datenblatt_MW_ACDC_IRM_10_15.PDF
0 ~ 0.67A 0 ~ 0.42A RATED POWER 8.25W 10W 10.2W 10.05W 10.08W RIPPLE & NOISE (max.)Note.2200mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p OUTPUT VOLTAGE TOLERANCE Note.3±2.5% ±2.5% ±2.5% ±2.5% ±2.5% LINE REGULATION ±0.3% ±0.3% ±0.3% ±0.3% ±0.3% LOAD REGULATION ±0.5% ±0.5% ±0.5% ±0.5% ±0.5% SETUP, RISE TIME
in „AC/DC Wandler Isolationsproblem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7680.pdf
or DD 2, 3 Input Capacitance, C IN 10 pF max LOGIC OUTPUTS Output High Voltage, V V − 0.2 V min I = 200 μA OH DD SOURCE Output Low Voltage, V OL 0.4 V max SINK= 200 μA Floating-State Leakage Current ±0.3 μA max 2, 3 Floating-State Output Capacitance 10 pF max Output Coding Straight (Natural) Binary CONVERSION
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PDF
2__HV9961_.pdf
mV --- VLD(OFF) LD input voltage, shutdown - - 150 - mV V LDfalling ΔV LD input voltage, enable - - 200 - mV V rising LD(OFF) LD T Current sense blanking interval * 150 - 320 ns --- BLANK T Minimum on-time - - - 1000 ns CS = V +30mV ON(min) CS Maximum steady-state duty Reduction in output LED current
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PDF
AV02-1132EN_DS_HEDS-9x40_2014-03-17__3_.pdf
0.004) (0.096/0.095X0.110) 2.44/2.41DIA. DEEP 8.64(0.340) 2.44/2.41X2.79 2.16(0.085)DEEP (0.096/0.095) REF. 17.27 (0.096/0.095X0.110) 2.92±0.10** 2.16(0.085)DEEP (0.680) 2.16(0.085)DEEP (0.115±0.004) 10.16 OPTICAL 4.11(0.162) 20.96 OPTICALCENTER (0.400) CENTER 6.35(0.250)REF. (0.825) TYPICALDIMENSIONSIN
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PDF
X1226.pdf
shows the selection bitslow 6pf or 12.5pf crystal being used and widen the selection. In addition, refer to Table 6, using a Seiko for this output. VT-200 crystal with different ATR bits combinations, it provides an estimated ppm range from +116ppm to -37ppm to the nominal frequency compensation. The
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PDF
mcp6004.pdf
7: Input Noise Voltage Density FIGURE 2-10: Input Offset Voltage Drift vs. Frequency. Histogram. 0 200 ) V DD= 1.8V V -100 V 150 ( ( e -200 e 100 a g l l 50 VDD= 5.5V V -300 o t t 0 s -400 TA= -40°C e VDD= 1.8V f T = +25°C f -50 O -500 A O u TA = +85°C u -100 p -600 TA= +125°C p I I -150 -700 VCM = VSS
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PDF
Low_Drop_Spannungsregler_MCP_1702-5002.pdf
For V ≥ 2.5V OUT_mA R 50 100 — mA For VR< 2.5V, VIN≥ 2.7V 100 130 — mA For VR< 2.5V, VIN≥ 2.95V 150 200 — mA For V < 2.5V, V ≥ 3.2V R IN 200 250 — mA For VR< 2.5V, VIN≥ 3.45V Output Short Circuit Current IOUT_SC — 400 — mA VIN= VIN(MIN)(Note 1), OUT = GND, Current (average current) measured 10 ms after
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AT25080A.pdf
Output Low Z 2.7–5.5 0 50 ns 1.8–5.5 0 100 4.5–5.5 40 tHZ HOLD to Output High Z 2.7–5.5 80 ns 1.8–5.5 200 4.5–5.5 40 t Output Disable Time 2.7–5.5 80 ns DIS 1.8–5.5 200 4.5–5.5 5 tWC Write Cycle Time 2.7–5.5 5 ms 1.8–5.5 5 Endurance (1) 5.0V, 25°C, Page Mode 1M Write Cycles Note: 1. This parameter is characterized
in „Atmel 25080A - SPI - AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bltn_eng_pir-1075997.pdf
zones 80 zones (size is 700mm × 250mm 27.559inch × 9.843inch) (for the slight motion detection type, 200mm × 200mm 7.874inch × 7.874inch) ASCTB240E 201208-T Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e/ PIR Motion Sensor (EKMB, EKMC, AMN2, 3) DETECTION PERFORMANCE
in „Frage zu PaPIR / Panasonic PIR Sensor Schaltung (S.9)“ · Mikrocontroller und Digitale Elektronik ·
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Ultraschall.pdf
Schaltschwelle der Counter wieder gestoppt. Der Counter kann nun ausgelesen werden. Mit der bekannten Refe- renzclock kann nun die Zeit und somit die Entfernung berechnet werden. 1.1.2 Baken-Verfahren Das Bakenverfahren 3 [4] beruht auf a¨nlichen Uberlegungen wie das Reflexi- onsverfahren (siehe Abschnitt
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UP6281B8.pdf
-------------------------------------------------------------------------0.3VtoVCC12+15V <200ns---------------------------------------------------------------------------------------------------------------------------------0.3Vto42V UGATE toDC------------------------------------------------------------------------------------------------------------- -0.3Vto(BOOT-PHASE+0.3V) <200ns---------------------------------------------------------------------------------------------------- -5Vto(BOOT-PHASE+0.3V) LGATEtoGND m <200ns------------------------------------------------------
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PDF
datasheet.pdf
the BTA series provides voltage insulated tab (rated at 2500V RMS) complying with UL standards (File ref.: E81734). ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit I RMS on-state current ² A T(RMS) D2 PAK Tc = 100°C (full sine wave) TO-220AB 16 TO-220AB Ins. Tc = 85°C ITSM Non repetitive surge peak
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LR8.pdf
VOUT TO-252 (K4) TO-92 (N3) Absolute Maximum Ratings Parameter Value VOUT V input voltage (voltages ref to ADJ) -0.5V to +480V IN ADJ Output voltage range -0.5V to +470V VOUT VIN Operating ambient temperature range -40°C to +85°C TO-243AA (SOT-89) (N8) Operating junction temperature range -40°C to +125
in „20 V AC bis 70 V AC --> 5 V DC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
07-01-3005.pdf
150 mW n e RY- 12 W-K 12 VDC 960Ω 8.5 VDC 0.6 VDC 150 mW h RY- 18 W-K 18 VDC 1,620Ω 12.6 VDC 0.9 VDC 200 mW i H RY- 24 W-K 24 VDC 2,880Ω 16.8 VDC 1.2 VDC 200 mW RY- 48 W-K 48 VDC 7,680Ω 32.6 VDC 2.4 VDC 300 mW RY- 3 WZ-K 3 VDC 18Ω 1.5 VDC 0.15 VDC 500 mW RY-4.5 WZ-K 4.5 VDC 36Ω 2.25 VDC 0.23 VDC 560 mW
in „Audio Signal umschalten von µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTA_16-600B.pdf
the BTA series provides voltage insulated tab (rated at 2500V RMS) complying with UL standards (File ref.: E81734). ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit I RMS on-state current ² A T(RMS) D2 PAK Tc = 100°C (full sine wave) TO-220AB 16 TO-220AB Ins. Tc = 85°C ITSM Non repetitive surge peak
in „BTA 16-600B Triacs“ · Markt ·
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PDF
Pana_FK.pdf
EEEFK1K220V (2) 500 80 33 8.0 10.2 10.5 F 130 1.30 0.08 EEEFK1K330P EEEFK1K330V (2) 500 47 10.0 10.2 10.5 G 200 0.70 0.08 EEEFK1K470P EEEFK1K470V (2) 500 68 12.5 13.5 13.8 H13 500 0.32 0.08 EEVFK1K680Q EEVFK1K680V (3) 200 100 12.5 13.5 13.8 H13 500 0.32 0.08 EEVFK1K101Q EEVFK1K101V (3) 200 150 12.5 13.5 13.8
in „Display vom Kühlschrank reparieren“ · Haus & Smart Home ·
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PDF
0900766b8164cbe1.pdf
meniscus is 1.21mm max 4. For Identification of polarity after the leads are trimmed off, please refer to the illustration below: CATHODE ANODE 2 DeviceSelectionGuide LuminousIntensity Typicalviewing ColorandDominant LampswithoutStandoff LampswithStandoff [1,2,5] Angle Wavelength(nm), onleads onleads
in „Wer kennt sich mit UV aus? (LED Panel zur Photosynthese)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDP-Performance_-__by_Prof._Rudi_Ratlos_.pdf
11,917 22,367 32,817 43,267 64,167 2300 12,459 23,384 34,309 45,234 67,084 2400 13,000 24,400 35,800 47,200 70,000 2500 13,542 25,417 37,292 49,167 72,917 2600 14,084 26,434 38,784 51,134 75,834 2700 14,625 27,450 40,275 53,100 78,750 2800 15,167 28,467 41,767 55,067 81,667 2900 15,709 29,484 43,259 57,034
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stm32f030f4-956260.pdf
0.0059 A2 1.350 1.400 1.450 0.0531 0.0551 0.0571 b 0.170 0.220 0.270 0.0067 0.0087 0.0106 c 0.090 - 0.200 0.0035 - 0.0079 D 8.800 9.000 9.200 0.3465 0.3543 0.3622 D1 6.800 7.000 7.200 0.2677 0.2756 0.2835 D3 - 5.500 - - 0.2165 - E 8.800 9.000 9.200 0.3465 0.3543 0.3622 78/91 DocID024849 Rev 3 STM32F030x4
in „STM32F030 interne REF ausreichend für 12Bit?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00088500.pdf
0.0059 A2 1.350 1.400 1.450 0.0531 0.0551 0.0571 b 0.170 0.220 0.270 0.0067 0.0087 0.0106 c 0.090 - 0.200 0.0035 - 0.0079 D 8.800 9.000 9.200 0.3465 0.3543 0.3622 D1 6.800 7.000 7.200 0.2677 0.2756 0.2835 D3 - 5.500 - - 0.2165 - E 8.800 9.000 9.200 0.3465 0.3543 0.3622 78/91 DocID024849 Rev 3 STM32F030x4
in „Controller IC für digitale RGBW LED-Streifen“ · Mikrocontroller und Digitale Elektronik ·
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AEAT_6010_6012.pdf
AEAT-6010-A06 10 -40 to +125 Serial +5.0 Notes: 1. For other options of Magnetic Encoder, please refer to factory. Table1. AbsoluteMaximumRatings [2,3] Parameter Symbol Limits Units Notes DC SupplyVoltage at pinV DD = 5V VDD -0.3 to + 7 V InputVoltage Vi -0.3 toVDD+0.3 V StorageTemperature TSTG -40
in „10bit Resolver spuckt über SPI 16 bits aus!“ · Mikrocontroller und Digitale Elektronik ·
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CY3783A_DE.pdf
Ausgangsleitung Innere Kraft Start-up C Quelle fahren VFB Probenahme Konstante Spannung und konstanter Strom REF_Lebenslauf EA Kontrolle Kontrolle Überspannung REF_OVP Schützen Logik R EF_OCP Überstrom Schützen + Kurzschluss REF_SCP Schützen Kompensation der Eingangsspannung GND CS www.publicxin.com Li Chao18664968171
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PDF
ISl6298.pdf
4.28 400 CHARGE CURRENT = 10mA ) 4.26 ) 350 ( A E 4.24 ( 300 G 4.22 T T E 250 L 4.20 R V R 200 Y 4.18 C R E 150 T 4.16 G R = 50kΩ A R 100 IREF B 4.14 H 4.12 C 50 V = 0 V IREF 4.10 0 4.3 4.5 4.7 4.9 5.1 5.3 5.5 5.7 5.9 6.1 6.3 6.5 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 INPUT VOLTAGE (V) BATTERY VOLTAGE
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k9f6408u0a.pdf
Remark 0.0 Initial issue. April 10th 1999 Preliminary 0.1 1. Revised real-time map-out algorithm(refer to technical notes) July 23th 1999 Preliminary 0.2 Changed device name Sep. 15th 1999 Preliminary 1) KM29U64000AT -> K9F6408U0A-TCB0 2) KM29U64000AIT -> K9F6408U0A-TIB0 Changed the following items
in „woher bekomme ich ein ähnliches flash/sram“ · Mikrocontroller und Digitale Elektronik ·
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Datei
key_debounce.h
define KEY_PIN PINA #define DIR_INC_KEY 0 #define DIR_DEC_KEY 1 #define SETAXIS_KEY 2 #define GOTO_REF_KEY 3 #define ENCODER_KEY 4 #define ALL_KEYS (1<<DIR_INC_KEY | 1<<DIR_DEC_KEY | 1<<SETAXIS_KEY | 1<<GOTO_REF_KEY | 1<<ENCODER_KEY) #define REPEAT_MASK (1<<ENCODER_KEY | 1<<DIR_INC_KEY | 1<<DIR_DEC_KEY) // repeat: key1, key2 #define REPEAT_START 50 // after 500ms #define REPEAT_NEXT 20 // every 200ms extern void key_init(void); extern uint8_t get_key_press( uint8_t key_mask ); extern uint8_t get_key_rpt( uint8_t key_mask ); extern uint8_t get_key_short( uint8_t key_mask ); extern uint8_t get_key_long
in „get_key_long() von Peter Dannegger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Panasonic_JD_700_800_Series_Service_Manual_1_.pdf
lOkQ B VR4l EVTVOUAOOB13 Horiz. hold lMQ B VR64 EVMJ6UIOKB26 Focus 2MQ B VR67 EVTVOUAOOB25 Bright 200kQ B OTHER PARTS 26 TJC305-l Fuse holder 27 TJS25640Y CRT socket - TMK81516 ' CRT cover TMM81434 Push revet 28 XBAIF20NU14 Fuse 2A" I - I I 5 15 6. FLOPPY DISK DRIVE 6.1 MINIFLOPPY DISK DRIVE • Refer
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PDF
Part_1_Physical_Layer_Specification_Ver3.01_Final_100218.pdf
1.8 - 8400 400 DDR50 50 50 1.8 - 400 t o 400 SDR12 12.5 25 1.8 - 100c 100/1507 High Speed 25 50 3.3 200 200 200 *1: The card supports a UHS-I mode shall support all lower UHS-I modes. 100/1507 *2: Host can control current by the current limit functidn in CMD6 (Refer to Section 4.3.10.3). *4: SDHC stands
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PDF
AD8551_8552_8554.pdf
50 VSY = ±1.35V 45 RL= 2kΩ V T = 25°C IN ) A (40 T 0V O35 H V SY= ±2.5V S R30 V IN= 200mV p-p V (RET TO GND) O25 +OS 0V L C L= 0pF A R L= 10kΩ N20 A = –100 I V S –OS L15 A M10 VOUT S 5 20µs 1V 0 2 0 10 100 1k 10k 1 BOTTOM SCALE: 1V/DIV 0 1 TOP SCALE: 200mV/DIV 1 CAPACITANCE (pF) 0 0 Figure27
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
94),S(93)}…{S(4),S(3), D(6,y), D(8,y)}…{D(194,y),D(196,y), D(3,y), D(1,y)} S(2), S(1)} D(198,y), D(200,y)} - One frame of data is the number of lines * rows. For example: 1.44”: One frame of data is 96 lines * 128 dots. 2”: One frame of data is 96 lines * 200 dots. 2.7”: One frame of data is 176
in „Probleme mit Breakoutboard für 2" Pervasive Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
94),S(93)}…{S(4),S(3), D(6,y), D(8,y)}…{D(194,y),D(196,y), D(3,y), D(1,y)} S(2), S(1)} D(198,y), D(200,y)} - One frame of data is the number of lines * rows. For example: 1.44”: One frame of data is 96 lines * 128 dots. 2”: One frame of data is 96 lines * 200 dots. 2.7”: One frame of data is 176
in „e Papier einzelne Bildpunkte setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
94),S(93)}…{S(4),S(3), D(6,y), D(8,y)}…{D(194,y),D(196,y), D(3,y), D(1,y)} S(2), S(1)} D(198,y), D(200,y)} - One frame of data is the number of lines * rows. For example: 1.44”: One frame of data is 96 lines * 128 dots. 2”: One frame of data is 96 lines * 200 dots. 2.7”: One frame of data is 176
in „Wie muss man Pervasive Displays beschreiben?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
94),S(93)}…{S(4),S(3), D(6,y), D(8,y)}…{D(194,y),D(196,y), D(3,y), D(1,y)} S(2), S(1)} D(198,y), D(200,y)} - One frame of data is the number of lines * rows. For example: 1.44”: One frame of data is 96 lines * 128 dots. 2”: One frame of data is 96 lines * 200 dots. 2.7”: One frame of data is 176
in „Suche Lösungsvorschlag zur Initialisierung eines Pervasiven Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4973-Datasheet.pdf
V IN(0) 0.27 Logic Input Current IIN(1) VIN V CC= 5 V — 0 –10 μA IIN(0) VIN 0 V, V CC= 5 V — –106 –200 μA Reference Input Current REF VREF= 0 V to 1 V – – ±5.0 μA Comparator Input Offset Volt. VIO VREF= 0 V – ±2.0 ±5.0 mV Reference Input Voltage Range V REF REF Pin 0 – 1 V Gain V = 1 V 1.9 2 2.1 – REF
in „DC-Motor Driver IC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
as possible to the REF 1 pin to reduce dynamic errors on the ADC reference. VREF2 Pin The differential voltage between V REF2 and AGND sets the analog input full-scale range. A 0.1- F ceramic capacitor and 10- F electrolytic capacitor are recommended between V REF2 and AGND. These capacitors should be located as close as possible to the V 2 pin to reduce dynamic errors on the ADC reference. REF DOUT Pin The DOUT pin has enough load drive capability, but if the
in „PCM1803 Audio ADC ewige Einschwingzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
as possible to the REF 1 pin to reduce dynamic errors on the ADC reference. VREF2 Pin The differential voltage between V REF2 and AGND sets the analog input full-scale range. A 0.1- F ceramic capacitor and 10- F electrolytic capacitor are recommended between V REF2 and AGND. These capacitors should be located as close as possible to the V 2 pin to reduce dynamic errors on the ADC reference. REF DOUT Pin The DOUT pin has enough load drive capability, but if the
in „ADC (PCM1803) rauscht bei hoher Abtastrate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slua517.pdf
V DC, line frequency between 47 HZ and 63 HZ and the switching operation frequency is 200 kHZ. For component selection on the bridgeless PFC, the designer can refer to the TI 300-W Interleaved Application Report (SLUA479) Step 6, however, the designer can allow each inductor to have more
in „PFC Drossel Anbieter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.pdf
Step–Up and 8 CASE 626 Voltage–Inverting applications with a minimum number of external 1 components. Refer to Application Notes AN920A/D and AN954/D for additional design information. Operation from 3.0 V to 40 V Input SO–8 8 D SUFFIX Low Standby Current 1 CASE 751 Current Limiting Output Switch Current
in „T6963C Versorgungspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM350-D.PDF
For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging SpecificationsBrochure, BRD8011/D. V in 310 310 230 120 5.6K 6.3V 170 K 160 . 12K 6 5.0pF K K 200 13K 1 2 1 3 1 6.8K 5 1 6.3V 3 30 30 6 pF pF 2.4K 105 K K 0 1 190 3 5
in „Einstellbare Last erzeugen für Netzteil-Test“ · PC Hard- und Software ·
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PDF
ABLIC-S-8520-8251_Series.pdf
S-8521B30MC (COUT= 22 F2) (C OUT= 22 F2) 240 240 200 200 IOUT= 500 mA ] ]160 IOUT= 100 mA V60 m [ OUT= 500 mA p120 OUT = 0.1 mA r20 I = 100 mA r V OUT V 80 80 IOUT= 0.1 mA 40 40 0 0 2 4 6 8 10 12 14 16 2 4 6 8 10 12 14 16 V [V] V IN] IN (5) S-8520F33MC (6) S-8521F33MC (COUT= 22 F) (COUT= 22 F) 240 240 200 200 I = 500 mA IOUT= 500 mA 160 OUT 160 I = 100 mA V OUT= 100 mA V OUT [120 I = 0.1 mA p20 IOUT= 0.1 mA i OUT r V V80 80 40 40 0 0 2 4 6 8 10 12 14 16 2 4 6 8 10 12 14 16 VINV] VINV] (7) S-8520D50MC
in „EHAYP 7606 - Welcher IC?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Schlosswache.c
avr/io.h> #define F_CPU 8000000U #include <util/delay.h> void ADC_init ( void ) { ADMUX |= ( 0 << REFS0 ) | ( 0 << REFS1 ); // VCC als Referenz. ADCSRA |= ( 1 << ADEN ); // ADC aktiviert. ADCSRA |= ( 1 << ADPS2 ) | ( 1 << ADPS1 ) | ( 0 << ADPS0 ); // Frequenzvorteiler 64. ADCSRA |= ( 1 << ADSC ); //
in „ADC mit ATtiny85-20PU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mc39i_hd_v0102.pdf
Feature Implementation · Baud rates from 300bps to 230.400 bps · Autobauding supports baud rates: 1.200, 2.400, 4.800, 9.600, 19.200, 38.400, 57.600, 115.200 and 230.400 bps Phonebook Supported phonebook types: SM, FD, LD, MC, RC, ON, ME management SIM Application Toolkit Supports SAT class 3, GSM 11.14
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INA163_datasheet.pdf
temperature range. VO1 1 INA163 4 V IN 6k 6k Sense 3 A1 8 3k RG A3 9 VO 3k 6000 G = 1 + 6k 6k RG 12 Ref A2 10 VIN+ 5 14 11 6 V 2 V+ V- O Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and
in „Frage zu Schutzdioden“ · Analoge Elektronik und Schaltungstechnik ·
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Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
Control Relay 2 1GSs/500MSs Control Relay 2 F F F SoC SoC F F F TRG-CH1+ INDATA2 TRG-CH1- ADC ADC ADC REF OUT AD9288 (ch1) REF OUT AD9288 (ch1) CLK100M CLK100M REF OUT TRIGGER CPLD REF OUT AD9288 (ch2) REF OUT AD9288 (ch2) TRIGGER TRIGGER FPGA Cyclone III INDATA2 1GSs/500MSs CH2 RL1+ 1GSs/500MSs CH2 RL1
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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Datei
druck_flow_02.c
> #include <stdlib.h> #include <avr/pgmspace.h> #include "lcd.h" #include <util/delay.h> #define V_REF 4930 // Referenzspannung für ADC in mV #define DRUCK_MIN_WERT 0 #define DRUCK_MAX_WERT 3 #define FLOW_MIN_WERT 95 #define FLOW_MAX_WERT 105 #define LAUTSPRECHER_PORT PORTD #define LAUTSPRECHER_DDR DDRD
in „Programmoptimierung“ · Mikrocontroller und Digitale Elektronik ·
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cassegrain01.pdf
Fc (mm) 180,0000 34,6314 83,0702 -100,0000 19,5658 429,6068 131,3 -475 967,0202 58,33 -475 Ds Sub ref dia (mm) 200,0000 34,6314 83,0702 -92,0000 17,0443 429,6068 117,84 -450 967,0202 52,35 -450 Dm Dia main Dish (mm) 1210,0000 34,6314 83,0702 -84,0000 14,6197 429,6068 105,11 -425 967,0202 46,7 -425 Fm
in „Suche Wellen Adapter "ding" ?“ · Mechanik, Gehäuse, Werkzeug ·
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Kemet.pdf
standard), K tolerance ±10% (special order only) Rated Voltage Range 3 – 50 V DF (120 Hz at 25°C) Refer to Part Number Electrical Specification Table Leakage Current Refer to Part Number Electrical Specification Table at rated voltage up to 85°C Dimensions – Millimeters (Inches) T396 T398 T T a imum
in „Welches Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·