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D_CH23103.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „LTS25-NP Stromwandler am ATmega -> Spannungsverstärkung muss wohl her“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D_CH23103.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „Messung mit Stromwandler LTSR 15-NP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D_CH23103.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „Wo Entstörkondensatoren in meiner Schaltung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D_CH23103.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „Strommessung mit Hallsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTSR.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „LEM-Wandler Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D_CH23103.pdf
400 1 2 4 6 8 10 20 40 60 80 100 200 Hz kHz kHz Bei Verwendung einer externen Refe- START 50 Hz STOP 300kHz renz ist es leichter, den Wandler an Geräte wie A/D-Wandler anzuschließen. Bild 10 und 11: Amplituden- und Phasengang des LTSR 25-NP. 4 Wichtige Kenndaten Der Kompromiss, den man für diesen Vorteil
in „Stromsensor von LEM prüfen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dac7621.pdf
Data Format Parallel Data Coding Straight Binary Logic Family CMOS Logic Levels V 0.7 • V V IH DD V IL 0.3 • VDD V IIH 10 A I 10 A IL DYNAMIC PERFORMANCE Settling Time2(t ) To 1 LSB of Final Value 7 s S DAC Glitch 5 nV-s Digital Feedthrough 2 nV-s POWER SUPPLY V DD +4.75 +5.0 +5.25 V IDD VIH5V, VIL0V,
in „Frage zu DAC“ · Mikrocontroller und Digitale Elektronik ·
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tssp960.pdf
Adjust the under a max. temperature of 30 °C, 60 % RH after temperature of the soldering iron below 300 °C opening the dry pack envelope • Finish soldering within 3 s • Set the furnace temperatures for pre-heating and heating • Handle products only after the temperature has cooled off in accordance with
in „was ist das für ein Bauteil??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLC2543.pdf
V V CC High-level control input voltaIH, V VCC = 4.5 V to 5.5 V 2 V Low-level control input voltagIL V VCC = 4.5 V to 5.5 V 0.8 V Clock frequency at I/O CLOCK 0 4.1 MHz Setup time, address bits at DATA INPUT before I/O CLOCK⇓su(A) (see Figure 4) 100 ns Hold time, address bits after I/O CLOCK⇓, t(see
in „externer A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9306.pdf
pF CL= 15 pF Unit Min Max Min Max Min Max V = 3.3 V; V = 2.3 V; V = 0 V; V = 3.3 V; V = 1.15 V; R = 300 Ω (see Figure 8) I(EN) IH IL TT M L t LOW to HIGH from (input) SCL1 or SDA1 0 1.75 0 1.0 0 0.5 ns PLH propagation delay to (output) SCL2 or SDA2 PHL HIGH to LOW from (input) SCL1 or SDA1 0 2.75 0 1.65
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
pF CL= 15 pF Unit Min Max Min Max Min Max V = 3.3 V; V = 2.3 V; V = 0 V; V = 3.3 V; V = 1.15 V; R = 300 Ω (see Figure 8) I(EN) IH IL TT M L t LOW to HIGH from (input) SCL1 or SDA1 0 1.75 0 1.0 0 0.5 ns PLH propagation delay to (output) SCL2 or SDA2 PHL HIGH to LOW from (input) SCL1 or SDA1 0 2.75 0 1.65
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
pF CL= 15 pF Unit Min Max Min Max Min Max V = 3.3 V; V = 2.3 V; V = 0 V; V = 3.3 V; V = 1.15 V; R = 300 Ω (see Figure 8) I(EN) IH IL TT M L t LOW to HIGH from (input) SCL1 or SDA1 0 1.75 0 1.0 0 0.5 ns PLH propagation delay to (output) SCL2 or SDA2 PHL HIGH to LOW from (input) SCL1 or SDA1 0 2.75 0 1.65
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
pF CL= 15 pF Unit Min Max Min Max Min Max V = 3.3 V; V = 2.3 V; V = 0 V; V = 3.3 V; V = 1.15 V; R = 300 Ω (see Figure 8) I(EN) IH IL TT M L t LOW to HIGH from (input) SCL1 or SDA1 0 1.75 0 1.0 0 0.5 ns PLH propagation delay to (output) SCL2 or SDA2 PHL HIGH to LOW from (input) SCL1 or SDA1 0 2.75 0 1.65
in „V] ca. 170 St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
pF CL= 15 pF Unit Min Max Min Max Min Max V = 3.3 V; V = 2.3 V; V = 0 V; V = 3.3 V; V = 1.15 V; R = 300 Ω (see Figure 8) I(EN) IH IL TT M L t LOW to HIGH from (input) SCL1 or SDA1 0 1.75 0 1.0 0 0.5 ns PLH propagation delay to (output) SCL2 or SDA2 PHL HIGH to LOW from (input) SCL1 or SDA1 0 2.75 0 1.65
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
leLM392_Op.pdf
= 15 V DC , A = 25˚C 50 200 V/mV Large Signal Response Time VIN= TTL Logic Swing, V REF = 1.4 VDC 300 ns VRL = 5 VDC , L = 5.1 kΩ, TA= 25˚C Response Time V = 5 V , R = 5.1 kΩ, T = 25˚C 1.3 µs RL DC L A Output Sink Current V =1 V , V = 0 V , 6 16 mA IN(−) DC IN(+) DC VO ≥1.5 VDC , A = 25˚C Saturation
in „Temperatursensor LM35 DZ will nicht funktionieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SN3355_LED_Driver_SOT-89-5_SI-EN_Technology_ISSI.pdf
Supply 700 150 Operating Mode Shutdown Mode 600 ) ) 125 A A ( 500 ( n n 100 e e u 400 u C C 75 l l p 300 p u u S 200 S 50 100 25 0 0 6 10 15 20 25 30 35 40 6 10 15 20 25 30 35 40 Power Supply(V) Power Supply(V) 图6 Supply Current vs. Power Supply (Operating Mode) 图7 Supply Current vs. Power Supply (Shutdown
in „Welche Step*-Konstantstromquelle könnte das sein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2sk1402.pdf
Body to drain diode forward V DF — 0.9 — V IF= 4 A, V GS= 0 voltage Body to drain diode reverse trr — 300 — ns IF= 4 A, VGS = 0, recovery time di /dt = 100 A/µs F Note: 1. Pulse test 3 2SK1402, 2SK1402A Power vs. Temperature Derating Maximum Safe Operation Area 60 50 30 ) W 10 ( ) 10 h A a 10 s c 40 ( ar P 0 P ID h () W s n t 3 it DS DC = t n i b y O 0 1 a e ra e pe m m s i u 1 pemi ra s( i C O il o 1s D n n( ho l 20 a C tp n r 0.3 = ul n D Ta = 25°C 25 se) a C C ) 0.1 2SK1402 0.05 2SK1402A 0 50 100 150 1 3 10 30 100 300 1,000 Case Temperature T (°C) Drain to Source Voltage V (V) C DS Typical
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon_TLE4205-1168721.pdf
Input-voltage drift ∆V /∆T – 20 30 µV/K – IO Input zero current IIO – 75 – 75 mA – Input current II – 300 – 300 nA – Input-current drift ∆I /T – – 5 nA/K – I Input common-mode V IC – – VS – 2 V – range, positive Input common-mode V IC – – – 0.5 V – range, negative Power-supply PSSR – – 200 µV/V RS= 10 kΩ
in „[V] Konvolut Motortreiber : 22St L293DNE-DIL16 und 9St. TLE4202B“ · Markt ·
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PDF
Infineon_TLE4205-1168721.pdf
Input-voltage drift ∆V /∆T – 20 30 µV/K – IO Input zero current IIO – 75 – 75 mA – Input current II – 300 – 300 nA – Input-current drift ∆I /T – – 5 nA/K – I Input common-mode V IC – – VS – 2 V – range, positive Input common-mode V IC – – – 0.5 V – range, negative Power-supply PSSR – – 200 µV/V RS= 10 kΩ
in „[V] Motortreiber 2x L6203 Multivatt11 und 5x Siemens TLE4205“ · Markt ·
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PDF
Infineon_TLE4205-1168721.pdf
Input-voltage drift ∆V /∆T – 20 30 µV/K – IO Input zero current IIO – 75 – 75 mA – Input current II – 300 – 300 nA – Input-current drift ∆I /T – – 5 nA/K – I Input common-mode V IC – – VS – 2 V – range, positive Input common-mode V IC – – – 0.5 V – range, negative Power-supply PSSR – – 200 µV/V RS= 10 kΩ
in „[V] Konvolut DC Motortreiber: L293D, L6203, TLE4202B, TLE4205“ · Markt ·
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PDF
AW9364.pdf
Shutdown Time vs Supply Voltage C Line Transient Response 900 VIN S 800 e 700 c VIN n 600 i t 400 S 300 n Current 200 i 1002.8 3.0 3.2 3.4 3.6 3.8 4.2 4.4 w Supply Voltage (V) Time (100us/Div) a www.awinic.com.cn 7 Copyright © 2018 SHANGHAI AWINIC TECHNOLOGY CO., LTD Feb 2018 V2.3 BLOCK DIAGRAM VIN LED1
in „Arduino Custom Firmware für Fitness Armband mit NRF52“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEKTRONIX_Component_Service_Manual_TDS_520B_Mod_CM_Digitizing_Oscilloscope_070-9710-03.pdf
75272–5303 13500 N CENTRAL EXPRESSWAY PO BOX 655303 02113 COILCRAFT, INC. 1102 SILVER LAKE RD. CARY, IL 60013 04222 AVX/KYOCERA PO BOX 867 MYRTLE BEACH, SC 29577 04713 MOTOROLA INC SEMICONDUCTOR PRODUCTS SECTOR PHOENIX, AZ 85008–4229 5005 E MCDOWELL ROAD 06090 RAYCHEM CORP 300 CONSTITUTION DR MENLO PARK
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
spansion_inc_am29f040b_eol_21445e8-3004346.pdf
0.5 V X X X High-Z TTL Standby H X X X High-Z Output Disable L H H X High-Z Legend: L = Logic Low = IL, H = Logic High =IH ,ID= 12.0 ±0.5 V, X = Don’t CareIND= Data In,OUT = Data Out, AIN= Address In Note: See the “Sector Protection/Unprotection” section. for more information. Requirements for Reading
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Si_4420.pdf
detect threshold Programmable in 0.1 V steps 2.25 5.35 V V lba Low battery detection accuracy +/-3 % V il Digital input low level voltage 0.3*V dd V V ih Digital input high level voltage 0.7*Vdd V I Digital input current V = 0 V -1 1 µA il il Iih Digital input current V ihV ,dd dd= 5.4 V -1 1 µA V ol Digital
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semi_mps_buck_55v_3a_mp24943.pdf
VINAC 500mV/div. 500mV/div. VSW VSW 10V/div. 50V/div. EN55022 V /AC V /AC 50mV/div. OUT 50mV/div. IL L 2A/div. 2A/div. VIN VIN VEN 10V/div. 10V/div. 5V/div. VSW VSW VSW 10V/div. 10V/div. 10V/div. V V 5V/div. 5V/div. VOUT 5I/div. OUT L IL 5A/div. 2A/div. 2A/div. MP24943 Rev. 1.0 www.MonolithicPower.com
in „Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AP3429_A-766309.pdf
Circuit VIN2.7V to 5.5V 4 VIN C A IN P L1 2.2mH 22mF 4 3 V OUT1.8V 2 LX 2 9 T GND A C1 R1 C OUT C 22pF 300k 22mFx2 U 5 D 1 FB O ON OFF EN R R2 P 150k W E N Pin Descriptions Pin Number Pin Name Function Enable control input. Force this pin voltage above 1.5V enables the chip, and below 0.4V shuts 1 EN down
in „Trafo-Treiber für DC/DC-Wandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL7116-ICL7117.pdf
...-65ºC to +160ºC Clock Input Lead Temperature (soldering, 60s)..................................+300ºC ICL7116 ....................................................................Test to V ICL7117 ...................................................................GND to V Note 1: Input voltage may
in „Erfahrungwerte zum Maxim ICL7117RCPL und verwande ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS3930.pdf
mode 250 Fast mode 0.6 Start Setup Time (Note 3) tSU:STA µs Standard mode 4.7 Fast mode 20 + 0.1C 300 Rise Time of Both SDA and SCL tR B ns Signals (Note 7) Standard mode 20 + 0.1CB 1000 Fast mode 20 + 0.1C 300 Fall Time of Both SDA and SCL F B ns Signals (Note 7) Standard mode 20 + 0.1CB 300 Setup
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MAX351-MAX353.pdf
..............-65°C to +150°C 3 Lead Temperature (soldering, 10s).................................+300°C Note 1: Signals on NC_, NO_, COM_, or IN_ exceeding V+ or V- will be clamped by internal diodes. Limit forward diode current to X maximum current rating. A Note 2: All leads are soldered or welded
in „analogschalter wie seht ihr das ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1307.pdf
TOP VLEW X1 VCC X1 VCC X2 SQW/OUT X2 SQW/OUT VBAT SCL VBAT SCL GND SDA GND SDA SO (150 mils) PDIP (300 mils) ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +
in „[V] noch 2 x 10St. Dallas RTC DS1307Z (SO8) abzugeben“ · Markt ·
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PDF
DS1307.pdf
TOP VLEW X1 VCC X1 VCC X2 SQW/OUT X2 SQW/OUT VBAT SCL VBAT SCL GND SDA GND SDA SO (150 mils) PDIP (300 mils) ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +
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PDF
ds1307.pdf
TOP VLEW X1 VCC X1 VCC X2 SQW/OUT X2 SQW/OUT VBAT SCL VBAT SCL GND SDA GND SDA SO (150 mils) PDIP (300 mils) ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24fc256.pdf
2.5V Hysteresis of Schmitt Trigger D3 VHYS 0.05 VC — V VCC 2.5V (Note 1) Inputs (SDA, SCL pins) IL = 3.0 mA @ VCC= 4.5V D4 V OL Low-Level Output Voltage — 0.40 V IL = 2.1 mA @ VCC= 2.5V VIN= VSS or CC, WP = VSS D5 ILI Input Leakage Current — ±1 µA VIN= VSS or CC, WP = VCC D6 LO Output Leakage Current
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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PDF
82514_TFDU4100.pdf
...4°C/s 80 60 40 20 0 0 50 100 150 200 250 300 350 19048 Time/s Figure 7. Solder Profile, RSS Recommendation www.vishay.com Document Number 82514 8 Rev. 1.4, 25-Jun-04 TFDU4100 VISHAY Vishay Semiconductors Current Derating Diagram 600 ) m 500 ( n r 400 C g 300 a e O 200 the maximum forward current of of k IRED. Maximum duty cycle: 25%. e 100 P 0 –40 –20 0 20 40 60 80 100 120 140 14880 Temperature ( 5 °C ) Figure 8. Current Derating Diagram Document Number
in „IR-Tranceiver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EM150X1.pdf
Item Symbol Value Unit Note Min. Max. Lamp Voltage VL - 2.5K V RMS (1), (2),LI = 8 mA Lamp Current IL - 8.5 mA RMS (1), (2) Lamp Frequency FL - 80 KHz Note (1) Permanent damage to the device may occur if maximum values are exceeded. Function operation should be restricted to the conditions described
in „TFT-Farbdisplay Market Elite EM150X1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VN5160S-E.pdf
1)(2) µA S Supply current On State; V =13V; V =5V; CC IN OUT =0A 1.9 3.5 mA VINV OUT =0V; VCC=13V; IL(off1) Off state output Tj125°C 0 5 current(2) µA IL(off2) VIN 0V; VOUT = 4V -75 0 Output - VCCdiode VF voltage -OUT= 2A; Tj 150°C 0.7 V (1) Guaranteed by design/characterization (2) PowerMOS leakage
in „2 Spannungen mit Mosfets schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TJA1041.pdf
0.3 − 0.3V I/O V IH HIGH-level input current normal or pwon/listen-only −5 0 +5 A mode; VTXD = VI/O IL LOW-level input current normal or pwon/listen-only −70 −250 −500 A mode; VTXD = 0.3VI/O Ci input capacitance not tested − 5 10 pF 2004 Feb 20 12 Philips Semiconductors Product specification High speed
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SeikoChar.pdf
120 ns Data hold time th2 10 - ns Data hold time tDH 10 - ns V IH V IH VIH1 V IH1 RS VIL1 VIL RS V IL1 VIL1 tSU1 th1 SU th R/W R/W V IH V IL1 VIL1 VIL1 W th W h1 tf tf V IH V IH V IH1 V IH E V IL1 V V E V IL1 V IL1 V IL IL1 IL tSU2 D tf th t DH V IH Valid Data V IH1 V IH Valid Data V IH1 DB0 - DB7 VIL VIL1 DB0 - DB7 V IL VIL1 tc tc 2. Basic Operation 2.1 Block Diagram of Controller KS0066 Pow er V 1 Parallel/Serial Data conversion supply V 2 Circuit for LCD V 3 drive V 4 V 5 Character Busy Character Cursor VDD Flag Generator
in „Display Seiko L2432 und Kontrastproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VHF-COMM.1983.3.pdf
power levels handle this output power level. - up 10 approximately 120W at frequencies of up 10approx, 300 MHz - have only become pos 1. sible uSing MOS technology since Ihe develop ment 01 the V-MOS-FETs. The "V " stands for V-MOS, A SHORT INTRODUCTION thairvertical structure. thecurrant flows verti In
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PDF
2021_11_09_Projektierungshandbuch_de.pdf
Ammoniak < 2 + + Schwefelwasserstoff (H2S) < 0,05 + + NH3 2 bis 20 0 + > 0,05 – 0 > 20 – 0 Chlorid < 300 + + 2 < 1 0 0 HCO3- / SO 4 > 300 0 0 > 1 + + elektr. Leitfähigkeit < 10 µS/cm 0 0 Hydrogenkarbonat (HCO3-) < 70 0 + 10 bis 500 µS/cm + + 70 bis 300 + + > 500 µS/cm – 0 > 300 0 0 Eisen (Fe) gelöst <
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PDF
DS1337-DS1337C.pdf
to +85°C 8 µSOP 1337 DS1337U+ -40°C to +85°C 8 µSOP 1337 DS1337C -40°C to +85°C 16 SO (300 mils)DS1337C DS1337C# -40°C to +85°C 16 SO (300 mils)DS1337C + Denotes a lead-free/RoHS-compliant device. # Denotes a RoHS-compliant device that may include lead that is exempt under the RoHS requirements
in „Aufwecken mit Low-Level“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Regler_LM3488.pdf
average and peak currents expected through the inductor. In a boost converter, (12) and I L_peak= IL(max) + Δi Lmax), where DV IN ’iL = 2S L (13) A core size with ratings higher than these values should be chosen. If the core is not properly rated, saturation will dramatically reduce overall efficiency
in „Kein PWM-Signal bei DC-DC Wandler; 12->140V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
130_Schaltungen_sowjetischer_Transistorrundfunkgeraete.pdf
-2 : 3 x 405 x 0,06 LS 1-2 : 3 x 140,1 L9 3-4 : 3 x 26 5 x 0,06 160 � 120 L10 1-2 : 3 x 375 x 0,06 300 � 130 Lll 1-3 : 3 x 375 x 0,06 300 � 130 2-3 : 10 5 X 0,06 300 L12 1-3 : 160 o,os 2-3 : 50 o,os L13 4-5 : llO o,os Tr1 1-2 : 2500 0,06 Wicklungs- widerstand = 420n 3-4: 3.50 0,06 Wicklungs- widerstand
in „Fernsteuerempfänger der mit 1,2V funktioniert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1LTC2433-1fa.pdf
5.5V (Note 8) 0.8 V IL CC SCK 2.7V V CC 5.5V (Note 8) 0.6 V IIN Digital Input Current 0V V IN VCC –10 10 A CS, F O IIN Digital Input Current 0V V IN VCC(Note 8) –10 10 A SCK C IN Digital Input Capacitance 10 pF CS, O C IN
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
catalog.pdf
Ceramic Capacitor, 10 uF, 16 V, ± 10%, X7R, 1206 [3216 Metric] Chip SMD Resistors MPN: MMA02040C7507JB300 [ID]: 000326 [Price]: 0.05 USD [QTY]: 2900 [Category]: Chip SMD Resistors [Desc]: Res Thin Film 0204 0.75 Ohm 5% 1/4W ±50ppm/°C Conformal Melf SMD Blister T/R MPN: MMA02040C3308FB300 [ID]: 000328 [Price
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PDF
catalog.pdf
Ceramic Capacitor, 10 uF, 16 V, ± 10%, X7R, 1206 [3216 Metric] Chip SMD Resistors MPN: MMA02040C7507JB300 [ID]: 000326 [Price]: 0.05 USD [QTY]: 2900 [Category]: Chip SMD Resistors [Desc]: Res Thin Film 0204 0.75 Ohm 5% 1/4W ±50ppm/°C Conformal Melf SMD Blister T/R MPN: MMA02040C3308FB300 [ID]: 000328 [Price
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PDF
catalog-3.pdf
Ceramic Capacitor, 10 uF, 16 V, ± 10%, X7R, 1206 [3216 Metric] Chip SMD Resistors MPN: MMA02040C7507JB300 [ID]: 000326 [Price]: 0.0689 USD [QTY]: 2900 [Category]: Chip SMD Resistors [Desc]: Res Thin Film 0204 0.75 Ohm 5% 1/4W ±50ppm/°C Conformal Melf SMD Blister T/R MPN: MMA02040C3308FB300 [ID]: 000328
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LCD_DEM16216.pdf
2x16DMM IDD VDD = 5V - 1.5 3.0 mA 1x20, 2x20DMM V = 0V min - 2.5 4.0 mA 0 4x20, 2x40DMM Input voltage V IL 0 - 0.6 V V VIH 2.0 - DD V Output voltage V I = 1.6 mA - - 0.4 V OL OL VOH IOH= 0.2 mA 2.4 - - V LED Lightpipe Current 1x8, 1x16, 2x15DMM LED L+ L- = 5V 20 60 mA 2x20DMM 40 80 mA LED Lightbox Current 1x8, 1x16DMM 40 100 mA 2x16DMM 40 250 mA 1x20, 2x20, 4x20DMM 150 300 mA DRIVE VOLTAGE (Vlcd) IS NOT IDENTICAL FOR LCD Note: 1. Applies to DB0 - DB7, E, RS and R/W MODULES MANUFACTURES. ACCEPTABLE RESULTS 2. Applies to DB0 - DB7 CAN BE OBTAINED BY ADJUSTING V LCD . IF
in „lcd funkt leider nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCF4069UB.pdf
4 4 4 Voltage 1/9 <1 10 8 8 8 V 1.5/13.5 <1 15 12.5 12.5 12.5 V Low Level Input 4.5/0.5 <1 5 1 1 1 IL Voltage 9/1 <1 10 2 2 2 V 13.5/1.5 <1 15 2.5 2.5 2.5 IOH Output Drive 0/5 2.5 <1 5 -1.36 -3.2 -1.15 -1.1 Current 0/5 4.6 <1 5 -0.44 -1 -0.36 -0.36 mA 0/10 9.5 <1 10 -1.1 -2.6 -0.9 -0.9 0/15 13.5 <1 15
in „CD4049 in rauscharm, gibts das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MB510.pdf
Level Input Current for MC I V = 2.0V 0.4 mA Input IHM IH Low Level Input Current for MC Input IILM V IL0.8V –0.2 mA Modulus Set-up Time MC to OUT SET 16 26 ns Note: *Design Guarantee 3 MB510 VCC = +5.0V + 10% C Sampling scope input point 3 for input waveform VCC SW Sampling scope prober point C 1 for output
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·