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LCD_ERM24064-1_Series_Datasheet.pdf
Series EastRising buydisplay.co m 3. OUTLINE DRAWING 1 7 1 2 2 A A T 0 - D : : : D a u C Z 1 V M A S F E B 1 R T E M E V Y : H O Y L I S R D W J N s P M U i A r 2 L S I E . x . 司 1 O S 0 0 M o 4 : M E . 8 y 公 6 Y O I E 1 g 限 4 B I E E l 有 2 E I T T n M K C 1 I c 技 R C E O e 科 E E D M P2.54X10=25.4 T 方 : H n 东 R C . 7.5 0.3 1 3.5 i E E 0 1 5.5±0.3 5 4 R 日 B R A A 2 s 旭 M 1 2 a U : E N Y 2 2 nc T B ia R N ti A W su P A Eb R D y S B T e o O p D p r B L E , , e P O E V A 4 o 0 0 3 . 0 6 s 0 . 0 ± 5 u 0 6 ±. 2 7 C 1 1 5 1 1 X 1 0 4 2
in „Platine von Aisler“ · Platinen ·
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PDF
RTC-4553.pdf
characteristics Reference at 5 V ±5 Aging fa T a= + 2 5 °CD= 5 V , x 1 0 / first year year R4553 A 0 5 4 E 935 6B 7 DC characteristics (GND=O V, V DD=5 V 10 % , Ta=-30 °C to +70 °C) Item Symbol Condition Min. Typ. Max. Unit ___ IDD1 SCK=500 kHz — 100 10.1 0.2 Currentconsumption ___ — µA IDD2 SCK =O Hz 1.0
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Motion_msd542-microstepping-driver.pdf
) Motion Control Products Ltd., 11-15 FrancisAve. Bournemouth, UK BH11 8NX Tel.: +44 (0)1202 599922e-mail: enquiries@motioncontrolproductswebsite: www.motioncontrolproducts.Page: 1/4 MSD542-V2.0 Microstepping Drive Datasheet Rev.1.0 Mechanical Specifications (in mm, 1 inch = 25.4 mm) **** Recommend
in „Leadshine M542 - Geräusche bei Stillstand der Motoren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
TKproEdocs.pdf
................................................48 Converting existing TCL/TK applications to TKproE.........................................................................49 4 of 49 TKproE 2.01 Documentation About TKproE Programmer: Dennis R. LaBelle TKproE is an integrated program development environment
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SS8050_D-2320098.pdf
1.1.0 2 S S 8 0 Typical Performance Characteristics 5 0 — 0.5 1000 N V = 1V P CE T B = 3.0mA N N 0.4 E R I = 2.5mA N R B A 100 p C G t R 0.3 B = 2.0mA T a O E x C R a E B = 1.5mA U l L 0.2 C O C 10 S , B = 1.0mA , l A F c IC 0.1 h o B = 0.5mA n 1 T 0 0.4 0.8 1.2 1.6 2.0 0.1 1 10 100 1000 r a n VCEV]
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C300_QSH4218_manual.pdf
is not sufficient, you could either increase the voltage or reduce the current (and thus torque). 5.4 Back EMF (BEMF) Within SI units, the numeric value of the BEMF constant has the same numeric value as the numeric value of the torque constant. For example, a motor with a torque constant of 1 Nm/A would
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irlr120n.pdf
4.0V ( 4.0V n BOTTOM 2.5V n BOTTOM 2.5VV e e u 10 u 10 C C e e r r o u S S o - - - 2.5V i 1 i 1 r 2.5V r D D , , ID ID 20µs PULSE WIDTH 20µs PULSE WIDTH T J 25°C T = 175°C 0.1 A 0.1 J A 0.1 1 10 100 0.1
in „was ist denn da los.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
faq_15.txt
Alternate solver If still not OK: 3. Back to Normal solver Try with method: Gear If still not OK: 4. Back to default settings. Try with "startup" in the .TRAN setting . If still not OK: 5. Back to default settings. Try with Gmin, but not lower than 1e-10 If still not OK: 6. Back to default settings
in „Zusammenkopieren von funktionierende schaltungsteilen bringt fehlermeldung bei LTspice“ · Analoge Elektronik und Schaltungstechnik ·
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reduction_of_output_ripple___noise.pdf
External External Vin External Vout External Vin Vout Capacitor Capacitor Capacitor Capacitor 5VDC 4.7μF 5VDC 10μF 5VDC 4.7μF 5VDC 4.7μF 12VDC 2.2μF 9VDC 4.7μF 12VDC 2.2μF 9VDC 2.2μF 24VDC 1μF 12VDC 2.2μF 24VDC 1μF 12VDC 1μF -- -- 15VDC 0.47μF -- -- 15VDC 1μF Table 1 A016e Reduction of Output Ripple
in „DC/DC Wandler, Kondensatoren und "Spulen"?!, Application Note“ · Mikrocontroller und Digitale Elektronik ·
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IRF3205Z.pdf
g VDS= 11V F l ( 4000 V e Ciss e 12 n u i 3000 o a - a - 8 C 2000 t C G , G 4 1000 Coss V Crss 0 0 0 20 40 60 80 100 120 1 10 100 V , Drain-to-Source Voltage (V) Q G Total Gate Charge (nC) DS Fig 5. Typical Capacitance Vs. Fig
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
PD8 VDDA 22 54 PB15 PA0-WKUP 23 53 PB14 PA1 24 52 PB13 PA2 25 51 PB12 2 2 2 2 3 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 A _ _ A A A A C C B B B E E E 1 1 1 1 1 1 1 1 _ _ P S D P P P P P P P P P P P P P P P P P P P P S D V V V V ai14391 19/83 Pin descriptions STM32F103x6, STM32F103x8, STM32F103xB Figure
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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irlu024n.pdf
J 175°C 2 www.irf.com IRLR/U024N 100 VGS 100 VGS TOP 15V TOP 15V 12V 12V 8.0V 8.0V A 6.0V A 6.0V ( 4.0V ( 4.0V n BOTTOM 2.5VV n 3.0V e e BOTTOM 2.5V u 10 u 10 C C e e r r u u o o - - - - 2.5V i 1 i 1 r r D D , , ID 2.5V ID 20µs PULSE WIDTH 20µs PULSE WIDTH 0.1 T J 25°C A 0.1 TJ= 175°C 0.1 1 10 100 0.1
in „Konstantstromquelle mit JFet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlu024N.pdf
J 175°C 2 www.irf.com IRLR/U024N 100 VGS 100 VGS TOP 15V TOP 15V 12V 12V 8.0V 8.0V A 6.0V A 6.0V ( 4.0V ( 4.0V n BOTTOM 2.5VV n 3.0V e e BOTTOM 2.5V u 10 u 10 C C e e r r u u o o - - - - 2.5V i 1 i 1 r r D D , , ID 2.5V ID 20µs PULSE WIDTH 20µs PULSE WIDTH 0.1 T J 25°C A 0.1 TJ= 175°C 0.1 1 10 100 0.1
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1MA98_4E_dB_or_not_dB.pdf
are commonly used. Intermediate values which are not found in the table can often be derived easily: 4 dB = 3 dB + 1 dB, corresponding to a factor of 2 + 20% of the power, i.e. approx. 2.4 times the power. 7 dB = 10 dB – 3 dB, corresponding to 10 times the power and then half, i.e. 5 times the power.
in „Wie stehen dBm und Volt zueinander?“ · HF, Funk und Felder ·
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SAQ-receiver-kit-manual-ver-3.pdf
volts and up to 12 volts. 2. Scheme and function For those interested Amplifier 7,6 V Mixer 8,2 V R4 D1 J2 Dr1 R3 L2 C2 Audio R1 6,6 V Dr2 amplifier L1 C1 J1 C4 7,6V C5 P1 IC1 C9 L3 C3 Q1 Q2 C6 386 0,25 V J4 R2 C7 C8 J3 a C11 D2 C10 R7 R5 IC2 555 b P2 5,1 V 0,8 kHz 0,8 kHz R6 kHz Local oscillator 16,4
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tca9548a.pdf
Copper Pour (outer layer) Via to Power Plane Via to GND Plane By-pass/de-coupling capacitors V DPUM e GND V CC n h A0 1 PW package 24 VCC o C a a e S V DPU0 A1 2 23 SDA C T n RESET 3 22 SCL V DPU7 e 7 l SD0 4 21 A2 n a A T C SC0 5 8 20 SC7 S v v l SD1 6 4 19 SD7 e o V DPU1 5 h T SC1 7 9 18 SC6 n A V DPU6 l C 6 l SD2 8 T 17 SD6 n V DPU2 h SC2 9 16 SC5 o C l a SD3 10 15 SD5 V DPU5 e S C T SC3 11 14 SC4 a n 5 3 GND 12 13 SD4 e a V DPU3 T h GND o e V DPU4 a l e S h T n e 4 Figure 20. Layout Schematic 26 Submit Documentation Feedback Copyright © 2012–2019, Texas Instruments Incorporated
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tca9548a.pdf
Copper Pour (outer layer) Via to Power Plane Via to GND Plane By-pass/de-coupling capacitors V DPUM e GND V CC n h A0 1 PW package 24 VCC o C a a e S V DPU0 A1 2 23 SDA C T n RESET 3 22 SCL V DPU7 e 7 l SD0 4 21 A2 n a A T C SC0 5 8 20 SC7 S v v l SD1 6 4 19 SD7 e o V DPU1 5 h T SC1 7 9 18 SC6 n A V DPU6 l C 6 l SD2 8 T 17 SD6 n V DPU2 h SC2 9 16 SC5 o C l a SD3 10 15 SD5 V DPU5 e S C T SC3 11 14 SC4 a n 5 3 GND 12 13 SD4 e a V DPU3 T h GND o e V DPU4 a l e S h T n e 4 Figure 20. Layout Schematic 26 Submit Documentation Feedback Copyright © 2012–2019, Texas Instruments Incorporated
in „Unterschied TCA9548A und PCA9548A“ · Mikrocontroller und Digitale Elektronik ·
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MAX31855.pdf
52.18µV/°C nominal T = -270°C to +400°C, °C THERMOCOUPLE -4 +4 sensitivity) (Note 4) TA= -40°C to +125°C (Note 3) TTHERMOCOUPLE = -200°C to +700°C, -2 +2 MAX31855E Thermocouple TA= -20°C to +85°C (Note 3) Temperature Gain and Offset TTHERMOCOUPLE = +700°C to
in „Thermoelementcontroller MAX31855 conversion time“ · Mikrocontroller und Digitale Elektronik ·
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Hitachi_SP10Q005-T.pdf
1,2 NOTE 1. DISP.OFF,YD, LOAD, CP,D0~D3,M. NOTE 2. MAKE CERTAINS YOU ARE GROUNDED WHEN HANDLING LCM. 4.2 ENVIRONMENTAL ABSOLUTE MAXIMUM RATINGS. I T E M OPERATING STORAGE COMMENT MIN. MAX. MIN. MAX. AMBIENT TEMPERATURE 0°C 50°C -20°C 60°C NOTE 2,3 NOTE 4 NOTE 4 HUMIDITY NOTE 1 NOTE 1 WITHOUT CONDENSATION
in „Hitachi SP10Q003 // SP10Q005 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT08.pdf
bp c D(1) E(1) e H E L Lp Q v w y Z θ 0.25 1.45 0.49 0.25 8.75 4.0 6.2 1.0 0.7 0.7 mm 1.75 0.10 1.25 0.25 0.36 0.19 8.55 3.8 1.27 5.8 1.05 0.4 0.6 0.25 0.25 0.1 0.3 o 8o 0.010 0.057 0.019 0.0100 0.35 0.16 0.244
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ssfp16.pdf
and appropriate instructions. With the first start (initialization of the FPGA) IP is set for 2.2.4 start and restart (restart) to 1 and the Rome exit (=Befehl) is set to 0. Same applies to a restart (restart). The Rome exit 0 corresponds to one sub r0, r0, thus an instruction, which does effectively
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MSM486SE-DIGITAL-LOGIC.pdf
Compact Flash Card Standard AT Interfaces: Serial: Name FIFO IRQs I/O Modes available COM1 yes IRQ4/11 3F8 RS232/ opt. RS422/RS485 COM2 yes IRQ3 2F8 RS 232C COM3 yes IRQ4 3E8 RS 232C COM4 yes IRQ3/14 2E8 RS 232C COM1 and COM3 can not share the IRQ4 line simultaneously (Baudrates: 50 – 115 KBaud programmable
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tiny13_doc2535.pdf
0.045 6 c 0.008 0.010 0.014 D 0.355 0.365 0.400 3 b2 L D1 0.005 3 b3 E 0.300 0.310 0.325 4 4 PLCS b E1 0.240 0.250 0.280 3 e 0.100 BSC Side View eA 0.300 BSC 4 L 0.115 0.130 0.150 2 Notes: 1. This drawing is for general information only; refer to JEDEC Drawing MS-001, Variation
in „Atmel AVRs: SRAM so unwichtig?“ · Mikrocontroller und Digitale Elektronik ·
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pcm1716.pdf
8 10 12 14 0 2 4 6 8 10 12 14 Frequency (kHz) Frequency (kHz) DE-EMPHASIS FREQUENCY RESPONSE (f = 44S1kHz) DE-EMPHASIS ERROR (f =S44.1kHz) 0 0.5 ) –2 ) B B 0.3 l –4 l 0.1 v –6 e–0.1 e e L –8 L–0.3 –10 –0.5 0 2 4 6 8 10 12 14 16 18 20 0 2 4 6 8 10 12 14 16 18 20 Frequency (kHz) Frequency (kHz) DE-EMPHASIS FREQUENCY RESPONSE (f = 48kHz) DE-EMPHASIS ERR0R (f = 48kHz) 0 S S 0.5 B –2 B 0.3 ( –4 ( 0.1 e e e –6 e–0.1 L –8 L–0.3 –10 –0.5 0 2 4
in „DAC über SPI configurieren??, Codevision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AF143086415692en-000101.pdf
Electronic units (voltages & code numbers) Compressors t 0 0 1 d C 0 C 0 r C 0 d C 0 I C 0 r C 0 C C 0 e & A i C 0 0 8 0 5 0 2 R134a Code a D 2 I D 2 t D 2 p D 2 E D 3 t D 3 a D 4 a D 4 n D 0 5 o D 6 6 x D 0 N x D 0 7 D 7 o D 7 o D 7 R404A/R507 * numbers n 4 N E 4 N h 4 N S 4 N O 4 N E h 4 N o 0 N o 5 N
in „Kompressor für Campingkühlschrank - elektrischer Anschluss?“ · Fahrzeugelektronik ·
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PDF
Danfoss_Katalog_BLDC_Compressors.pdf
Electronic units (voltages & code numbers) Compressors t 0 0 1 d C 0 C 0 r C 0 d C 0 I C 0 r C 0 C C 0 e & A i C 0 0 8 0 5 0 2 R134a Code a D 2 I D 2 t D 2 p D 2 E D 3 t D 3 a D 4 a D 4 n D 0 5 o D 6 6 x D 0 N x D 0 7 D 7 o D 7 o D 7 R404A/R507 * numbers n 4 N E 4 N h 4 N S 4 N O 4 N E h 4 N o 0 N o 5 N
in „12V Kompressor Kühlbox - Steuerung defekt - eigenes Thermostat verwenden“ · Haus & Smart Home ·
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PDF
24lc32a.pdf
SLAVE DEVICE ADDRESS SELECT BUS 1996 Microchip Technology Inc. Preliminary DS21144B-page 5 24LC32A 4.2 PageWrite 4.0 WRITE OPERATION 4.1 ByteWrite The write control byte, word address and the first data byte are transmitted to the 24LC32A in the same way Following the start condition from the master,
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM-ATOM1.0-V1.6.pdf
tie bar Burns. 2. Dimension E dose not include interlead flash. e1 e A 1 3. Dimension D & E inc1ude mold mismatch and are determined at the mold a parting line. 4. Dimension B does not include dambar protrusion/intrusion. 1 B 5.
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DS301V402.pdf
used to implement the Initiate SDO Download service for SDOs. Initiate SDO Download Client Server 0 1 4 8 7..5 4 3..2 1 0 m d ccs=1 X n e s request indication 0 1 4 8 confirm response 7..5 4..0 m reserved scs=3 X Figure 17: Initiate SDO Download Protocol • ccs: client command specifier 1: initiate download
in „CanOpen Protokoll (für Freescale Controller)“ · Mikrocontroller und Digitale Elektronik ·
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an32.pdf
charging system,is also developed across R1 due to the inherent matching of the PNPs (defining the same I Cfor a given VBE ). As the current flowing through R1 also flows through R4 (less the base current of E3 and E1) then if R4 equals R1, R4willalsodevelop the same voltage across it as R2, but referenced
in „high-side Strommessung low voltage OP?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZDS1009TA-AN32.pdf
charging system,is also developed across R1 due to the inherent matching of the PNPs (defining the same I Cfor a given VBE ). As the current flowing through R1 also flows through R4 (less the base current of E3 and E1) then if R4 equals R1, R4willalsodevelop the same voltage across it as R2, but referenced
in „Stromspiegel als Levelshifter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZDS1009TA-AN32.pdf
charging system,is also developed across R1 due to the inherent matching of the PNPs (defining the same I Cfor a given VBE ). As the current flowing through R1 also flows through R4 (less the base current of E3 and E1) then if R4 equals R1, R4willalsodevelop the same voltage across it as R2, but referenced
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fn3082.pdf
0.02µF R 5 ICL7106 R1 = 24kΩ R2= 47kΩ 4 L R = 100kΩ V D C B A F G E D C B A F E D B F E A P 3 R4= 1kΩ 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 R5 = 1MΩ DISPLAY FIGURE 1. ICL7106 TEST CIRCUIT AND TYPICAL APPLICATION WITH LCD DISPLAY COMPONENTS
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn3082.pdf
0.02µF R 5 ICL7106 R1 = 24kΩ R2= 47kΩ 4 L R = 100kΩ V D C B A F G E D C B A F E D B F E A P 3 R4= 1kΩ 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 R5 = 1MΩ DISPLAY FIGURE 1. ICL7106 TEST CIRCUIT AND TYPICAL APPLICATION WITH LCD DISPLAY COMPONENTS
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1161.pdf
G02 1161 G03 Supply Current Input Threshold Voltage Drain Sense Threshold Voltage 20 2.4 110 + + ) + 18 V = 24V 2.2 V = 24V m100 V = 24V V E 16 (2.0 G 90 A G T ( 14 T1.8 O 80 T O TURN-ON V E 12 V1.6 L 70 R L H U 10 ALL CHANNELS ON H1.4 E 60 Y E TURN-OFF H 50 P 8 R1.2 T U 6 ALL CHANNELS OFF
in „Erfahrungen mit LT1161“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADCINCVR.pdf
Vin 5 0 < Vin 3.3 BandGap ± BandGap 0 < Vin 2.6 0 < Vin 2.6 (1.6*BandGap) ± (1.6*BandGap) 0 < V < 4.16 NA in (2*BandGap) ± BandGap 1.3 < Vin 3.9 NA (2*BandGap) ± P2[6] (2.6 - P2[6] < Vin (2.6 + VP2[6] NA P2[4] ± BandGap (VP2[4]- 1.3) < in< (VP2[4] 1.3) (VP2[4]- 1.3) < in< (VP2[4] 1.3) P2[4] ± P2[6] (V -V ) < V < (V +V ) (V -V ) < V < (V +V ) P2[4] P2[6] in P2[4] P2[6] P2[4] P2[6] in P2[4] P2[6] Document Number: 001-13254 Rev. *J Page 13 of 25 7- to 13-Bit Variable ADC Application Programming Interface The Application Programming Interface (API
in „Beispiel Anwendungen/Application zu ADCs - Abtastrate & Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2.5DTechnologyPlatformTheNewDimension_ATS.pdf
“thin” build up layers (40-60µm) Symmetrical build up with 1 or 2 flexible layers Polyimide PI fr▯e No baking process needed No Damage of Flexible laye▯sIncreased Bending Performance No special material▯ Cost advantage HDI design rules remain the same (also in flexible layers) Source: AT&S www.ats.net
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Datei
CC2500Einstellungen.c
28 & 47)für GDO0&2 funktionieren im moment nicht. 0x00, //IOCFG2 GDO2 output pin configuration 0x2E, //High impedance //LNA_PD. Note: LNA_PD will havethe same signal level in SLEEP and RX states. 0x02, //IOCFG0 GDO0 output pin configuration 0x2E, //High impedance //PA_PD. Note: PA_PD will have the
in „CC2500 Programm Ablauf (Tx/Rx Modus)“ · HF, Funk und Felder ·
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PDF
FQP50N06L-244346.pdf
O30 i N e r S r D101 D u20 r R S e - e a R r10 ,D ※ Notes: D ※ Note:J =2℃ I 175 ℃ 25℃ 1.VGS0V 2.250μsPulseTest 0 0 0 25 50 75 100 125 150 175 200 10 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 ID, Drain Current [A] V ,Source-Drainvoltage
in „Mosfet Treiber (low side) mit current sense Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc4298.pdf
the fuses. 7 4298A–AVR–10/03 . Table 4. Fuse settings on ATtiny2313. Bits changed from default are marked in bold AT90S2313 Default Value compatible Fuse Byte Bit Name Description (1) setting (1) (2) 7 – – 1 1 6 – – 1 1 t y 5 – – 1 1 e 4
in „tiny2313-90S2313“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SD_SDIO_specsv1.pdf
SDIO only card or the I/O portion of a combo card does not support the same SEND_STATUS (CMD13) protocol the SD memory uses. ACMD6 CMD52 (write to SET_BUS_WIDTH is handled by a write to the CCCR. See Bus_Width [1:0] 4.2 for details. in CCCR) ACMD13 NONE The SD Status register
in „Strom aus SD/MMC Card Steckplatz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL_7106_-_07_-_FN3082.pdf
3 DISPLAY 4 C 1 0.1 F 4 3 3 3 3 3 3 3 3 3 3 2 2 2 2 2 2 2 2 2 C 2= 0.47 F I - I - 1 2 3 S H L +F E M H L - F N V G C A G B C 3= 0.22 F S S S E F F R R C I N A U I C 4 100pF O O O T R E C C I B C = 0.02 F R 5 ICL7106
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sartorius_Waage_Manual_Anleitung_Handbuch_QC7DCE-S.pdf
#1, CHR$(27); “t12345678901234_”: REM14-digit numeric entry for ID 2141 PRINT #1, CHR$(27); “f6_” 4–10 2150 PRINT #1, CHR$(27); “P”: REM Pass print command to QC 2160 REM Catch output; dum$ catches Date/Time command 2161 INPUT #1, dum$, e1$, e2$, e3$, e4$ 2162 CLOSE #1 2170 LOCATE19, 4: PRINT e1$: LOCATE 20, 4: PRINT e2$: LOCATE 21, 4: PRINT e3$ 2500 LOCATE 22, 4: PRINT “...in the QC... The End! ...Your Entry...” 2600 INPUT a 2700 GOTO 1000 10000 LOCATE 23, 1: PRINT “Error:”, ERDEV$, ERDEV: BEEP: FOR i = 1
in „Frage zu einer Waage / Sartorius QC7DCE-S“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
sp10q003-t.pdf
1,2 NOTE 1. DISP.OFF,YD, LOAD, CP,D0~D3,M. NOTE 2. MAKE CERTAINS YOU ARE GROUNDED WHEN HANDLING LCM. 4.2 ENVIRONMENTAL ABSOLUTE MAXIMUM RATINGS. I T E M OPERATING STORAGE COMMENT MIN. MAX. MIN. MAX. AMBIENT TEMPERATURE 0°C 50°C -20°C 60°C NOTE 2,3 NOTE 4 NOTE 4 HUMIDITY NOTE 1 NOTE 1 WITHOUT CONDENSATION
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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PDF
D6T01_ThermalIRSensorWhitepaper.pdf
R SCL SCL FF OpenDrain Fig6.2(d) Using GPIO-ports Case5: Using I2C bus switch IC. Ex. PCA9545(4ch) , PCA9548(8ch) (multiple D6T sensors) 5V VCC R R D6T SDA SDA 0 SCL SCL 0 GND SDA 1 I2C bus switch SCL 1 : VDD SDA 2 VCC SCL 2 R R R R D6T MCU SDA SDA x SDA SCL SCL x SCL GND GND Fig6.2(e) Using I2C
in „Omron D6T Thermal Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm4871.pdf
W θJA (typ)—D0008A 140°C/W θJC (typ)—D0008E 37°C/W θ (typ)—D0008E 107°C/W JA θJC (typ)—DGK0008A 56°C/W θJA (typ)—DGK0008A 210°C/W θJC (typ)—NGN0008A 4.3°C/W θ (typ)—NGN0008A 56°C/W (6) JA (1) Absolute Maximum Ratings indicate limits beyond which
in „Verständnisfrage LM4871“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Spannungsregler_LM2776_Switched_Capacitor_Inverter.pdf
specified.) 0.000002 0.00012 TA= -40°C TA= 25°C 0.0000015 TA= 85°C 0.0001 0.00008 A 0.000001 A t t e e 0.00006 r r C0.0000005 C 0.00004 0 0.00002 TA= -40°C TA= 25°C TA= 85°C -0.0000005 0 2.7 3.1 3.5 3.9 4.3 4.7 5.1 5.5 2.7 3.1 3.5 3.9 4.3 4.7 5.1 5.5 VIN(V) V IN(V) D003 D004 No load Figure 3. Shutdown Current vs Input Voltage Figure 4. Quiescent Current vs Input Voltage 1000 100 T A -40°C 500 T A 25°C 90 300 T A 85°C 80 ) 200 ( 70 e 100 ) n ( 60 d 50 y e 30 n 50 m i t 20 f 40 p E u 10 30 O 5 20 3 TA= -40°C 2 10 TA= 25°C TA= 85°C 1
in „Geregelte negative Spannung mit LM2664 und LP2980 - geht das überhaupt?“ · Analoge Elektronik und Schaltungstechnik ·
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MCP4261-DigitalPot-2Fach-50kDATASHEET.pdf
INL 125C INL )W 260 -40C DNL 25C DNL 85C DNL 125C DNL 0.15 w 260 -40C DNL25C DNL 85C DNL 125C DNL 0.4 R ( INL e 220 INL 0.1 e 220 0.2 ) c ) DNL 0.05 b n ) DNL b t 180 S t s180 L i h 0 ( i h 0 r e (o40 o e (140 o R -0.05r R R -0.2 E e 100 RW E e 100 W i -0.1 i W 60 -40°C -0.15 W 60 -40°C -0.4 125°C85°
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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L H F E C O M : K T C A O : D S N N R I I V T 1 C P I F J I F O O R : : P C E T S L E T : E C H N P T D S S U A D : E T N E L / I T V G . E / / H D N V I F I S K CC S K C A I O0 0 B C E I S 0 C~ ~ 5 B S I N
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L H F E C O M : K T C A O : D S N N R I I V T 1 C P I F J I F O O R : : P C E T S L E T : E C H N P T D S S U A D : E T N E L / I T V G . E / / H D N V I F I S K CC S K C A I O0 0 B C E I S 0 C~ ~ 5 B S I N