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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
~255) is set by Set Contrast command 81h; and the scale factor is 8 by default. The magnitude of I REF is controlled by the value of resistor, which is connected between I REF pin and V as shown in Figure 8-15. It is recommended to set I to 12.5 ± 2uA so as to achieve I = SS REF SEG 100uA at maximum contrast 255. Figure 8-15 :IREF Current Setting by Resistor Value SSD1306 I (voltage at IREF~ 12.5uA REF this pin = V CC – 2.5) R1 V SS Since the voltage at I pin is V – 2.5V, the value of resistor R1 can be found as below: REF CC For IREF = 12.5uA, V CC =12V: R1 = (Voltage at I REF – V SS/ IREF = (12
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PDF
SSD1306.pdf
~255) is set by Set Contrast command 81h; and the scale factor is 8 by default. The magnitude of I REF is controlled by the value of resistor, which is connected between I REF pin and V as shown in Figure 8-15. It is recommended to set I to 12.5 ± 2uA so as to achieve I = SS REF SEG 100uA at maximum contrast 255. Figure 8-15 :IREF Current Setting by Resistor Value SSD1306 I (voltage at IREF~ 12.5uA REF this pin = V CC – 2.5) R1 V SS Since the voltage at I pin is V – 2.5V, the value of resistor R1 can be found as below: REF CC For IREF = 12.5uA, V CC =12V: R1 = (Voltage at I REF – V SS/ IREF = (12
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
~255) is set by Set Contrast command 81h; and the scale factor is 8 by default. The magnitude of I REF is controlled by the value of resistor, which is connected between I REF pin and V as shown in Figure 8-15. It is recommended to set I to 12.5 ± 2uA so as to achieve I = SS REF SEG 100uA at maximum contrast 255. Figure 8-15 :IREF Current Setting by Resistor Value SSD1306 I (voltage at IREF~ 12.5uA REF this pin = V CC – 2.5) R1 V SS Since the voltage at I pin is V – 2.5V, the value of resistor R1 can be found as below: REF CC For IREF = 12.5uA, V CC =12V: R1 = (Voltage at I REF – V SS/ IREF = (12
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
~255) is set by Set Contrast command 81h; and the scale factor is 8 by default. The magnitude of I REF is controlled by the value of resistor, which is connected between I REF pin and V as shown in Figure 8-15. It is recommended to set I to 12.5 ± 2uA so as to achieve I = SS REF SEG 100uA at maximum contrast 255. Figure 8-15 :IREF Current Setting by Resistor Value SSD1306 I (voltage at IREF~ 12.5uA REF this pin = V CC – 2.5) R1 V SS Since the voltage at I pin is V – 2.5V, the value of resistor R1 can be found as below: REF CC For IREF = 12.5uA, V CC =12V: R1 = (Voltage at I REF – V SS/ IREF = (12
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
u2270b.pdf
can D VS VEXT VS VBattStandby be assumed (refer to application note ANT019). 7 to 16 V 12579 Figure 5. 2. Two-rail operation In that application, the driver voltage, DV S, and the pre-driver supply, VEXT, are operated at a higher voltage than the
in „Pollin RFID Entwicklungsboard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUK100-50GL_1.pdf
circuit load providing the drain-source suppDDP(P)ximum.oes not exceed V For further information, refer to OVERLOAD PROTECTION CHARACTERISTICS. November 1996 2 Rev 1.300 Philips Semiconductors Product specification PowerMOS transistor BUK100-50GL Logic level TOPFET THERMAL CHARACTERISTICS SYMBOL PARAMETER
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PDF
742792731.pdf
JEDEC JS709B] , 0 Scale - 20:1 Halogen Free Conform [IEC 61249-2-21] ± 0 Component Qualification AEC-Q200 Grade 1 Schematic: General Information: 5 Do not use this part beyond the Rated Current as this will create excessive heat and can harm the , component ± 5 Operating Temperature -55 up to +125 °C 0
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PDF
742792731.pdf
JEDEC JS709B] , 0 Scale - 20:1 Halogen Free Conform [IEC 61249-2-21] ± 0 Component Qualification AEC-Q200 Grade 1 Schematic: General Information: 5 Do not use this part beyond the Rated Current as this will create excessive heat and can harm the , component ± 5 Operating Temperature -55 up to +125 °C 0
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PDF
S-350-27_datasheet.pdf
351W 349.2W 350.4W RIPPLE & NOISE (max.)Note.2150mVp-p 150mVp-p 150mVp-p 150mVp-p 150mVp-p 150mVp-p 200mVp-p 240mVp-p 240mVp-p OUTPUT VOLTAGEADJ. RANGE 4.5 ~ 5.6V 6 ~ 9V 10 ~ 13.2V 12 ~ 15V 13.5 ~ 18V 20 ~ 26.4V 26 ~ 32V 32~40V 41 ~ 56V VOLTAGE TOLERANCE Note.3 2.0% 2.0% 1.0% 1.0% 1.0% 1.0% 1.0% .0% 1.0%
in „[V] 14 Netzteile 27V 13A“ · Markt ·
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PDF
LOG_RATIO_-_log102.pdf
8 2 used, the value may be large depending on I REF. If REF is 10nA and +2.5V is used: CC Amplifier4Aot being used. R REF = 2.5V/10nA = 250MΩ 1000pF 10µF V– Unused amplifiers should I have positive inputs grounded REF 2N2905 and negative inputs tied to their respective outputs. R REF 2N2905 3.6kΩ FIGURE 1. Basic Connections with Output Gain Factor of the +15V –15V 6V LOG102. IN834 I = 6V REF RREF INPUT CURRENT RANGE FIGURE 3. Temperature Compensated Current Source. To maintain specified
in „Logarithmic and log ratio amplifier“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
E5148_M4A77D_V2.pdf
youMUSTfollowtocompleteatask. NOTE: Tips andadditional informationtohelpyoucompleteatask. Wheretofindmoreinformation Refer tothefollowingsources for additional informationandfor product andsoftware updates. 1. ASUSwebsites TheASUSwebsiteprovides updatedinformationonASUShardwareandsoftware products. Refer totheASUScontact
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RGB_Bildsensor_-_D100997D.pdf
RFTN Light shielding −2000 +300 +1000 mV Random noise (CDS) σCDS Light shielding − 1.0 − mV Notes 1. Refer to TIMING CHART 2, 3. 2. When the fall time of φ1L and φ2L (t1’, t2’) is the Typ. value (refer to TIMING CHART 2, 3). 3. The reset feed-through noise changes by peripheral circuit of register, the
in „Pollin 1,95€ RGB Bildsensor - C-Mos Pegel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AOZ2368QI-11.pdf
MIN NOM MAX MIN NOM MAX A 0.80 0.90 1.00 0.031 0.035 0.039 A1 0.00 --- 0.05 0.000 ---- 0.002 A2 0.20REF 0.008REF D 4.90 5.00 5.10 0.193 0.197 0.201 D1 3.35 3.45 3.55 0.132 0.136 0.140 D2 1.16 1.26 1.36 0.046 0.050 0.054 D3 1.36 1.46 1.56 0.054 0.057 0.061 D4 0.25 0.35 0.45 0.010 0.014 0.018 D5 1.69 1.79
in „Stepdown Schwingt in kleinem Frequenzbereich“ · Analoge Elektronik und Schaltungstechnik ·
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AM3N-S-Z.PDF
1000 62 AM3N-0509SZ 4.5-5.5 9 333 1000 70 AM3N-0512SZ 4.5-5.5 12 250 1000 70 AM3N-0515SZ 4.5-5.5 15 200 1000 70 AM3N-0518SZ 4.5-5.5 18 167 1000 65 AM3N-0524SZ 4.5-5.5 24 125 1000 67 AM3N-1203SZ 10.8-13.2 3.3 600 1000 60 AM3N-1205SZ 10.8-13.2 5 600 1000 66 AM3N-1207SZ 10.8-13.2 7.2 417 1000 69 AM3N-1209SZ 10.8-13.2 9 333 1000 68 AM3N-1212SZ 10.8-13.2 12 250 1000 74 AM3N-1215SZ 10.8-13.2 15 200 1000 72 AM3N-1218SZ 10.8-13.2 18 167 1000 70 AM3N-1224SZ 10.8-13.2 24 125 1000 70 AM3N-2403SZ 21.6-26.4 3.3 600 1000 52 AM3N-2405SZ 21.6-26.4 5 600 1000 66 AM3N-2407SZ 21.6-26.4 7.2 417 1000 61 AM3N
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PDF
RBS17707-SN65HVD230-CAN-Board-Datasheetsiyyp0AhGRhw5g.pdf
connection. AVAILABLE OPTIONS PART NUMBER LOW INTEGRATED SLOPE V PIN T MARKED AS: POWER MODE CONTROL ref A SN65HVD230 Standby mode Yes Yes VP230 SN65HVD231 Sleep mode Yes Yes –40°C to 85°C VP231 SN65HVD232 No standby or sleep mode No No VP232 2 www.ti.com SN65HVD230 SN65HVD231 SN65HVD232 SLOS346G – MARCH
in „PCB Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3875.pdf
www.ti.com Typical Application *Optional components dependent upon specific design requirements. Refer to the External Components Description section for a component function description. Figure 1. Typical Audio Amplifier Application Circuit Connection Diagram (1) Figure 2. Plastic Package - Top View
in „PCB Prüfung LM3875“ · Platinen ·
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Datei
LTC2387_16.vhd
Behavioral of LTC2387_16 is signal CLK125: std_logic:='0'; signal CLK125_buff: std_logic:='0'; signal CLK200: std_logic:='0'; signal CLK200_buff: std_logic:='0'; signal CLK250: std_logic:='0'; signal CLK_Feedback_out: std_logic:='0'; signal CLK_Feedback_in: std_logic:='0'; signal IDELAYCTRL_reset: std_logic
in „Spartan 3 mit two lane LVDS á 200Mbit/s“ · FPGA, VHDL & Co. ·
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PDF
4N35-1.pdf
dielectric breakdown rating. 1. For this test, Pins 1 and 2 are common, and Pins 4, 5 and 6 are common. 2. Refer to Quality and Reliability Section in Opto Data Book for information on test conditions. Preferred devices are Motorola recommended choices for future use and best overall value. GlobalOptoisolator
in „Vorwiderstand für eine Led eines Optokopplers“ · Mikrocontroller und Digitale Elektronik ·
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BUK7514-55A.pdf
(ON) Ohm a 30V TrenchMOS 17 2 15 1.5 13 11 1 9 0.5 7 5 6 8 10 12 14 16 18 20 -100 -50 0 50 100 150 200 VGS/V Tj / C Fig.7. Typical on-state resistance, T = 25 ˚C. j Fig.10. Normalised drain-source on-state resistance. R DS(ON) = f(V GS conditions: I = 25DA; a = R DS(ON) /R DS(ON)25 ˚C f(T)j I D 25 A;
in „Wärmewiderstandsberechnung FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK_7514-55.pdf
(ON) Ohm a 30V TrenchMOS 17 2 15 1.5 13 11 1 9 0.5 7 5 6 8 10 12 14 16 18 20 -100 -50 0 50 100 150 200 VGS/V Tj / C Fig.7. Typical on-state resistance, T = 25 ˚C. j Fig.10. Normalised drain-source on-state resistance. R DS(ON) = f(V GS conditions: I = 25DA; a = R DS(ON) /R DS(ON)25 ˚C f(T)j I D 25 A;
in „Brauche Hilfe bei Motoransteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AAN_105-03__Designing_a_Potentiostatic_Circuit_.pdf
potential as the reference electrode. Figure 1 is a circuit diagram of a zero bias potentiostat circuit. Refer to this during the discussions below. Counter C1 C2 Electrode 10nF 1nF Reference R1 R2 Electrode 10k 10k - + IC2 +V R3 Q1 Working D 1M 10k Electrode G R4 S 22k C3 R load 10nF - - IC1 10 to 100R + Output
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V035QN02-A06.pdf
Note 2: The full color display depends on 8bit data signal (pin12~35). Note 3: Not include FPC. Refer to the next page for further information. 4/20 D. Outline Dimension m n . m 0 ( n ^ h / t d r 0 e 3 r : l e g 纸 b r 贴 e v a 签 l a r 标 o s a s n r i e P p l 2 F 9 s 0 f ( o y o ± s t c i s s a a e n
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PDF
s81350hg.pdf
=22 F, 800 OUT=30mA 1200 OUT=40mA 1000 Ringing Ringing amount 600 amount 800 (mV) (mV) 400 600 400 200 200 -30 0 50 80 -30 0 50 80 Ta ( C) Ta ( C) 4.2 Undershoot S-81330HG S-81350HG 500 1000 CL=22 F, CL=22 F, 400 I =30mA 800 IOUT40mA OUT Ringing Ringing amount 300 amount 600 (mV) (mV) 200 400 100 200
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PDF
MC7800-D.pdf
4.318 4.572 D 0.026 0.036 0.660 0.914 D N P E 0.045 0.055 1.143 1.397 0.010 (0.254) M T G F 0.051 REF 1.295 REF R G 0.100 BSC 2.540 BSC H 0.539 0.579 13.691 14.707 J 0.125 MAX 3.175 MAX K 0.050 REF 1.270 REF L 0.000 0.010 0.000 0.254 C M 0.088 0.102 2.235 2.591 N 0.018 0.026 0.457 0.660 SOLDERING FOOTPRINT* P 0.058 0.078 1.473 1.981 R 5_REF 5_REF S 0.116 REF 2.946 REF 8.38 U 0.200 MIN 5.080 MIN 0.33 V 0.250 MIN 6.350 MIN 10.66 1.016 5.08 0.42 0.04 0.20 3.05 0.12 17.02 0.67 SCALE 3:1 ǒ mm Ǔ 2 inches D PAK-3 *For additional information on
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PDF
TDA8702_Philips_DA_CONVERTER_8Bit.pdf
small outline package; 16 leads; body width 7.5 mm SOT162-1 BLOCK DIAGRAM handbook, full pagewidth REF 1 100 nF CURRENT REFERENCE REFERENCE LOOP 6 16 DGND CURRENT VCCA 2 GENERATORS AGND 75 75 5 15 VOUT CLK CLOCK INPUT CURRENT 14 INTERFACE SWITCHES VOUT TDA8702/ REGISTERS TDA8702T 13 (LSB) D0 12 VCCD
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PDF
Old_261_0005229_390119061403P001.pdf
it via UART (ASCII coded, CR (0x0D) after each value, 8 bit data, one stop bit, no parity bit, 19 200 baud if a 11.0592 MHz crystal is used). Format is 15 bit unsigned integer, right- justified. Resolution is 0.02 degrees Kelvin / LSB. Refer to explanation of the routines below for examples on the temperature
in „Pic Assembler Programm in AVR C Programm umschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PT6312.pdf
to set the pulse width. Please refer to the diagram below. When the power is turned ON, a 1/16 pulse width is selected and the displayed is turned OFF (the key scanning is stopped). MSB LSB 1 0 - - b3 b2 b1 b0 Not relevant Dimming quantity
in „VFD Driver IC - Wieso negative Treiberspannung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CA723CT.pdf
AMP VREF - SERIES PASS NOINPUT 5 + 10 VO REFT ERROR TRANSISTOR AMP +MP VREF 6 VOLT 9 V NON-INVERTING REF Z INPUT VOREGULATED OUTPUT V- 7 8 NC VZ CURRENT CURRENT LIMIT SENSE CA723C (CAN) V- TOP VIEW CURRENT LIMITER CURRENT LIMIT 10 TAB CURRENT 1 9 FREQ SENSE COMP V+ INPUTV 2 8 UNREG + INPUT NON-INV AMPOR
in „Kennt oder besitzt jemand dieses Philips Netzteil PE1540 DC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
151998-da-01-en-HCPL7840_Optokoppler.pdf
2.0 -40°C ≤ TA≤ 85°C 1,2,3 -J784 -1.0 0.3 4.0 4.5 ≤ (VDD1, VDD2) ≤ 5.5 V Gain G 7.60 8.00 8.40 V/V -200 ≤ V ≤ 200 mV 5 IN+ 7.44 8.00 8.56 -200 ≤ V IN+≤ 200 mV 5,6,7 -40°C ≤ TA≤ 85°C 4.5 ≤ (VDD1, VDD2) ≤ 5.5 V 200 mV Nonlinearity NL 0.1 0.2 % -200 ≤ V ≤ 200 mV 5, 8 3 200 IN+ 0.4 -200 ≤ V IN+≤ 200 mV 5,8,9
in „analoges Signal galvanische Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL7840.pdf
2.0 -40°C ≤ TA≤ 85°C 1,2,3 -J784 -1.0 0.3 4.0 4.5 ≤ (VDD1, VDD2) ≤ 5.5 V Gain G 7.60 8.00 8.40 V/V -200 ≤ V ≤ 200 mV 5 IN+ 7.44 8.00 8.56 -200 ≤ V IN+≤ 200 mV 5,6,7 -40°C ≤ TA≤ 85°C 4.5 ≤ (VDD1, VDD2) ≤ 5.5 V 200 mV Nonlinearity NL 0.1 0.2 % -200 ≤ V ≤ 200 mV 5, 8 3 200 IN+ 0.4 -200 ≤ V IN+≤ 200 mV 5,8,9
in „Galvanisch getrennte Spannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7840.pdf
2.0 -40°C ≤ TA≤ 85°C 1,2,3 -J784 -1.0 0.3 4.0 4.5 ≤ (VDD1, VDD2) ≤ 5.5 V Gain G 7.60 8.00 8.40 V/V -200 ≤ V ≤ 200 mV 5 IN+ 7.44 8.00 8.56 -200 ≤ V IN+≤ 200 mV 5,6,7 -40°C ≤ TA≤ 85°C 4.5 ≤ (VDD1, VDD2) ≤ 5.5 V 200 mV Nonlinearity NL 0.1 0.2 % -200 ≤ V ≤ 200 mV 5, 8 3 200 IN+ 0.4 -200 ≤ V IN+≤ 200 mV 5,8,9
in „Analoge Optokopplung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
help.c
t samples); void init(void); void sputchar(uint8_t val) // send byte { while(stxdata); stxdata = 0x200 | (val<<1); } void sputs(uint8_t *txt) // send string { while(*txt) sputchar(*txt++); } // INTERRUPT SERVICE ROUTINES ISR(TIMER0_OVF0_vect) // 4MHz/64 = 62500 Hz ~ 16µs { int16_t y, e; static int16_
in „AVR Referenz über welchen Bereich stabil?“ · Mikrocontroller und Digitale Elektronik ·
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Motor1.c
Top-Wert von timer1 } void ad_init(void) { // AD-Wandler mit einer Auflösung von 1024 ADMUX |= ((0<<REFS1) | (0<<REFS0)); //externe Spannung als Referenz (Aus Tabelle 21-3) ADMUX |= ((0<<MUX3) | (0<<MUX2) | (0<<MUX1) | (0<<MUX0)); //Kanal ADC0 als Ausgang (Aus Tabelle 21-4) ADCSRA |= (1<<ADEN); //ADC aktivieren
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Datei
pt1000_rp2040_neu.ino
define UEBERLAUF 999 // Fehler, auch bei offenem Eingang #define R_PT0 1000.0 // bei 0 Grad C #define R_REF 1200.0 // ext. Widerstand mit 0,1% #define R_ZULEITUNG 0 // bei laengeren Leitungen unbedingt anpassen #define PT_FAKTOR 3.85 // schon mit 1000.0 skaliert //#define IO_BANK0_BASE 0x40014000UL // ist
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PDF
UserManual_74.pdf
RMII_CRS_DV RMII_CRS_DV STLK_RX STLK_RX RMII_MDC RMII_MDC STLK_TX STLK_TX RMII_MDIO RMII_MDIO MCO MCO RMII_REF_CLK RMII_REF_CLK PWR_ENn D o NRST c I D 0 2 U5 8 LD1117S50TR VIN_5V 5 VIN 3 Vin Vout 2 9 Tab 4 9 C17 C18 R 10uF(25V) 1 10uF e v JP3 U5V 6 5 +5V U6 LD39050PU33R 7 SB1 Open 4 3 6 VI PG 3 C16 E5V 2 1 +
in „LD39050 mit Spannung am Ausgang -> geht was kaputt?“ · Analoge Elektronik und Schaltungstechnik ·
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Speicher.pdf
&21752//(5 +9▯*(1(5$7,21 ▯▯▯0ELW▯▯▯▯▯0ELW ' 1$1'▯)ODVK ( 35( & 0(025<▯$55$< 2 $/( ' &/( ( :( 5 &( &200$1' :3 ,17(5)$&( /2*,& 5( 3$*(▯%8))(5 &200$1' 5(*,67(5 <▯'(&2'(5 '$7$ 5(*,67(5 %8))(56 ,2 Figure 6: Block Diagram Rev 0.5 / Jun. 2006 18 HY27US(08/16)561A Series HY27SS(08/16)561A Series 256Mbit (32Mx8bit
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ucc28c43.pdf
conditions MIN MAX UNIT Input voltagDD V 18 V Output voltage rangOUTV 18 V Average output curreOUT I 200 mA Reference output currOUT(ref) −20 mA Operating junction temperature, T −55 150 °C J ¶It is not recommended that the device operate under conditions beyond those specified in this table for extended
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Datei
PLL_200mhz.vhd
logic --devices manufactured by Altera and sold by Altera or its --authorized distributors. Please refer to the applicable --agreement for further details. LIBRARY ieee; USE ieee.std_logic_1164.all; LIBRARY altera_mf; USE altera_mf.all; ENTITY PLL_200mhz IS PORT ( areset : IN STD_LOGIC := '0'; inclk0
in „Flankenerkennung schlägt fehl (VHDL)“ · FPGA, VHDL & Co. ·
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Datei
PLL_200mhz.vhd
logic --devices manufactured by Altera and sold by Altera or its --authorized distributors. Please refer to the applicable --agreement for further details. LIBRARY ieee; USE ieee.std_logic_1164.all; LIBRARY altera_mf; USE altera_mf.all; ENTITY PLL_200mhz IS PORT ( areset : IN STD_LOGIC := '0'; inclk0
in „Probleme beim synthetisieren -> Timing constraints?“ · FPGA, VHDL & Co. ·
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PDF
LMV7235_39.PDF
U mode voltage range. The input common mn Ideal for 2.7V and 5V single supply applications extends 200mV below ground and 200mV an Available in space savi5-pin SOT23-5 a allowing both ground and supply sensingand 5-pin SC70-5 L an external resistor, the output of the comparator can be o used as a level
in „Welche SMD-ICs sind dies?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX7450ESA_T-Dallas-Semiconductor.pdf
4 A 0.2 5 A G A M 50 M I 0 M / ) N ( E -0.2 1 Y 40 F -0.4 E D 1st 2nd 3rd 4th 5th 6th 5 D IN S 4 U 200mV/div E DIFFERENTIAL PHASE R 30 G 0.3 7 G ( 0.2 S 0.1 X 20 H 0 OUT L -0.1 A 200mV/div I -0.2 10 E -0.3 0.1 1 10 E 6th / t = 200ns/div I 1st 2nd 3rd 4th 5th FREQUENCY (MHz) D 0 5 PASSBAND AMPLITUDE vs
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PDF
rtc.pdf
CC(MIN) CC(MAX) A 9 3 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Pushbutton Debounce PB DB 160 200 ms Reset Active Time tRST 160 200 ms Oscillator Stop Flag (OSF) Delay OSF (Note 16) 100 ms _____________________________________________________________________ 5 Low-Voltage SPI/3-Wire RTCs with Trickle
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PDF
h-bridge-driver_hip4081a.pdf
20.0 T S E 3.0 0°C I R B 15.0 U -40°C Y C P L P P 2.0 S 10.0 U G S I C T 5.0 IC1.0 O L F 0.0 0 100 200 300 400 500 600 700 800 900 1000 0.0 0 100 200 300 400 500 600 700 800 900 1000 SWITCHING FREQUENCY (kHz) SWITCHING FREQUENCY (kHz) FIGURE 6. SIDE A, B FLOATING SUPPLY BIAS CURRENT vs FIGURE 7. ICCO
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCD5580.PDF
0.145 (2.54) (.47) (1.27) .012 (.30) (3.68) typ. typ. .300 –.020 (10.0 –.15) (7.62 –.51) Pin 1 1.312 ref. 0.200 Indicator (33.32) (5.08) EIA date code Intensity Code SIEMENSX YYWW Z Y Hue Category 0.160 –.02 Seating Plane (4.06 –.51) .020 (.51) typ. .100 –.010 typ. FEATURES (2.54 –.25) • Eight 0.145" (
in „[V] 2 St. Punktmatrix Displays SCD5583, 5x5, 8-stellig, grün“ · Markt ·
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Hameg_Encoder_ALPS-EC11J.pdf
(pcs.) measurements 1 case /Japan 1 case /export packing (mm) Automotive 300 600 369×283×263 Use Refer to P.212 for product varieties. Refer to P.217 for product specifications. Refer to P.212 for soldering conditions. 210 Encoder 11mm Size Metal Shaft Reflow Type EC11J Series Dimensions Unit:mm PCboardmountingholedimensions
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PDF
MCP41010.pdf
Frequency. 6 Code = FFh 700 0 MCP41010, MCP42010 Code = 80h ) 600 Iw = 1 mA, Code = 00h, -6 ( V = 2.7V Refer to Figure 2-27 -12 Code = 40h e 500 DD Code = 20h c ) -18 a 400 d -24 Code = 10h i n Code = 08h s a -30 R 300 G Code = 04h r -36 Code = 02h p 200 -42 i VDD= 5V Code = 01h W 100 -48 -54 CL= 30pF, Refer
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11195c.pdf
Frequency. 6 Code = FFh 700 0 MCP41010, MCP42010 Code = 80h ) 600 Iw = 1 mA, Code = 00h, -6 ( V = 2.7V Refer to Figure 2-27 -12 Code = 40h e 500 DD Code = 20h c ) -18 a 400 d -24 Code = 10h i n Code = 08h s a -30 R 300 G Code = 04h r -36 Code = 02h p 200 -42 i VDD= 5V Code = 01h W 100 -48 -54 CL= 30pF, Refer
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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mcp41xxx.pdf
Frequency. 6 Code = FFh 700 0 MCP41010, MCP42010 Code = 80h ) 600 Iw = 1 mA, Code = 00h, -6 ( V = 2.7V Refer to Figure 2-27 -12 Code = 40h e 500 DD Code = 20h c ) -18 a 400 d -24 Code = 10h i n Code = 08h s a -30 R 300 G Code = 04h r -36 Code = 02h p 200 -42 i VDD= 5V Code = 01h W 100 -48 -54 CL= 30pF, Refer
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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LM2594HVM-5.0_Datenblatt.pdf
. Horizontal Time Base: 2 µs/div. Load Transient Response for Continuous Mode V = 20V, V = 5V, I = 200 mA to 500 mA Load Transient Response for Discontinuous Mode IN OUT LOAD V IN= 20V, VOUT = 5V, LOAD = 100 mA to 200 mA L = 100 µH, COUT = 120 µF, COUT ESR = 140 m L = 33 µH, C = 220 µF, C ESR = 60 m
in „Idee für ein ||transportables|| Handyladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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Atmega128_doc2467.pdf
differential input channel pair (ADCn - ADCm) is selected with a gain of GAIN and a reference voltage of V REF. Figure 119. Differential Measurement Range Output Code 0x1FF 0x000 - REFGAIN 0x3FF 0 VREFGAINDifferential Input Voltage (Volts) 0x200 241 2467R–AVR–06/08 Table 96. Correlation Between Input Voltage
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·