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SG6105A.pdf
does not recommend exceeding them or designing to Absolute Maximum Ratings. Symbol Parameter Min. Max. Unit T Operating Ambient Temperature Range -40 +105 °C A © 2008 Fairchild Semiconductor Corporation www.fairchildsemi.com SG6105A • Rev. 1.0.2 6 S G 6 Electrical Characteristics 0 V =5V, T = 25°C, R=75KΩ, unless noted operating specs. 5 CC A I A — Symbol Parameter Conditions Min. Typ. Max. Units P ICC Total Supply Current PG High 5 10 mA o 3.3V 3.9 4.1 4.3 w r V OVP Over-Voltage Protection 5.0V 5.8 6.1 6.5 V S 12.0V 13.9 14.5 14.9 u p 3.3V 2.0 2.6 2.8 p y V UVP Under-Voltage Protection
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PDF
qt300_102.pdf
SPI-capable microcontrollers. The S 1% o 100 E SPI interface has the following specifications: 1% % 50 Max clock rate, Fckm 40KHz (master mode) Max clock rate, Fcks 40KHz (slave mode) 0 0% Data length 2 bytes (16 bits total) 100 101 102 103 104 105 106 107 108 109 110 Cx, pF Inter-byte delay ≥8µs (master
in „Techniker-Projekt: Füllstandsanzeige für Modellfahrzeug“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC3824fg.pdf
is given by : The maximuminductor current is determined by : V V IRIPPLE P = OUT+ D (I ) (1+δ)R IL(MAX) =IOUT(MAX) + MOSFET V IN D OUT DS(ON) 2 (VIN V OUT )•D + K(V IN(I OUT )(CRSS )(f) where IRIPPLE = f •L ThefirsttermintheequationrepresentstheI Rlossesin VOUT + VD andDuty Cycle D= V + V thedeviceandthesecondtermistheswitchinglosses.K
in „DC/DC Wandler Vin 15-50V, Vout 12V 9A!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
x_amd_phenom_10h_2010_Power_and_Thermal_Data_Sheet_.pdf
43375 Rev 3.46 - September 2010 AMD Family 10h Desktop Processor Power and Thermal Data Sheet OPN HD700EOCK3DGI 19 HD705EOCK3DGI 19 8 State Specification Notes Single-Plane Dual-Plane Single-Plane Dual-Plane Tcase Max 1 55 C to 72 C 55 C to 72 C o o Tctl Max 2 70 C 70 C Tambient Min 5 oC 5 C S0.C0.Px
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PDF
LM2576.pdf
Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) VSAT Saturation Voltage IOUT = 3A (Note 4) 1.4 V 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 %(Min) I Current Limit (Notes 4, 11) 5.8 A CL 4.2/3.5 A(Min) 6.9/7.5 A(Max) I Output Leakage Current (Notes 6, 7): Output = 0V 2 mA(Max) L Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) I Standby Quiescent ON /OFF Pin = 5V (OFF) 50 µA STBY Current 200 µA(Max) 5 www.national.com V H 6 All Output
in „Schaltnetzteilverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1647.PDF
LOAD = 10mA 100 mV VL AC_PRESENT Trip Point MAX1647 3.20 4 5.15 V REF Output Voltage 0µA < SOURCE < 500µA 3.74 3.9 4.07 V REF Overdrive Input Current 700 µA SWITCHING REGULATOR Oscillator Frequency 200 250 300 kHz DHI Maximum Duty Cycle 89 93 % DHI
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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PDF
MAX1647_1_.PDF
LOAD = 10mA 100 mV VL AC_PRESENT Trip Point MAX1647 3.20 4 5.15 V REF Output Voltage 0µA < SOURCE < 500µA 3.74 3.9 4.07 V REF Overdrive Input Current 700 µA SWITCHING REGULATOR Oscillator Frequency 200 250 300 kHz DHI Maximum Duty Cycle 89 93 % DHI
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74hct595.pdf
shift clock pulse width and maximum shift clock frequency. handbook, full pagewidth SH_CP input VM t 1/max su ST_CP input VM W t t PLH PHL Qn output VM MSA700 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.8 Waveforms showing the storage clock (ST_CP) to output (Qn) propagation
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Philips.pdf
shift clock pulse width and maximum shift clock frequency. handbook, full pagewidth SH_CP input VM t 1/max su ST_CP input VM W t t PLH PHL Qn output VM MSA700 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.8 Waveforms showing the storage clock (ST_CP) to output (Qn) propagation
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Shiftregister.pdf
shift clock pulse width and maximum shift clock frequency. handbook, full pagewidth SH_CP input VM t 1/max su ST_CP input VM W t t PLH PHL Qn output VM MSA700 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.8 Waveforms showing the storage clock (ST_CP) to output (Qn) propagation
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595.pdf
shift clock pulse width and maximum shift clock frequency. handbook, full pagewidth SH_CP input VM t 1/max su ST_CP input VM W t t PLH PHL Qn output VM MSA700 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.8 Waveforms showing the storage clock (ST_CP) to output (Qn) propagation
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT4851.pdf
circuit see Fig. 8. Symbol Parameter Conditions 25 °C -40 °C to -40 °C to Unit +85 °C +125 °C Min Typ Max Min Max Min Max 74HC4851 R ON resistance V = V to GND; E = V ON(peak) I CC IL (peak) VCC = 2.0 VSWI= 2 mA - 400 650 - 670 - 700 Ω VCC = 3.0 VSWI≤ 2 mA - 215 330 - 360 - 380 Ω VCC = 3.3 VSWI≤ 2 mA -
in „4051 Analog-Multiplexer, PullUps?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CY8C4147AZI.pdf
SID274 GBW_LO power=lo – 1 – Input and output are 0.2 V toDDA -0.2 V I V = 2.7 V, 500 mV from rail OUT_MAX DDA power=hi 10 – – Output is 0.5 V DDAV SID275 IOUT_MAX_HI -0.5 V SID276 IOUT_MAX_MID power=mid 10 – – mA Output is 0.5 V DDAV -0.5 V Output is 0.5 V to V SID277 IOUT_MAX_LO power=lo – 5 – DDA -0.5 V IOUT VDDA = 1.71 V, 500 mV from rail SID278 I power=hi 4 – – Output is 0.5 V DDAV OUT_MAX_HI -0.5 V SID279 IOUT_MAX_MID power=mid 4 – – mA Output is 0.5 V to VDDA -0.5 V SID280 IOUT_MAX_LO power=lo – 2 – Output is 0.5 V to V DDA-0.5 V IDD_Int Opamp block current Internal Load I – – SID269
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r5421n.pdf
5 R5421NxxxC/xxxF ELECTRICAL CHARACTERISTIC • R5421N111C %3.1< = Symbol Item Conditions Min. Typ. Max. Unit 7. ,915 #5 .61#:3 19 3 19 # -5 #94# #F# a :a: 85 5 6 #3. ,915 # 3 12 3 19 # -5 #94# #2# 2# 41 a 9 #-3,#: #;09, 5 #2# <: % 7: ,2;09, #10, 403 ! 1 ;1#,545 # #3-#46.. S :3 19 %3.1< = a a : a A 490
in „Li-Ion Schutzschaltung für MagLite Mod“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa847.pdf
√Hz max B Pulse Response Rise-and-Fall Time 0.2V Step 1.2 1.75 2.0 2.2 ns max B Slew Rate 2V Step 950 700 625 535 V/µs min B Settling Time to 0.01% 2V Step 20 ns typ C 0.1% 2V Step 10 12 14 18 ns max B 1% 2V
in „ADC für OPA847“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1758.pdf
external thermistor to PART TEMP. RANGE PIN-PACKAGE prevent charging outside the acceptable temperature MAX1758EAI -40°C to +85°C 28 SSOP range. The MAX1758 is available in a space-saving 28-pin Typical Operating Circuit SSOP package. Use the MAX1758EVKIT to help reduce design time. For a stand-alone charger with a 14V switch, refer to the MAX1757 data sheet. For a charger IN 6V TO 28V controller capable of up to 4A charging current, refer to DCIN CSSP the MAX1737 data sheet. CSSN LOADEM REF HSD ________________________Applications LX Li+
in „Verständnisfrage Strom für MAX1758“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KD035FM-7-TP.pdf
Electrical Characteristics 5.1 Absolute Maximum Rating (Ta=25 VSS=0V) Characteristics Symbol Min. Max. Unit Digital Supply Voltage VDD -0.3 4.2 V Digital interface supple Voltage VDDIO -0.3 VDD V Operating temperature TOP -20 +70 ℃ Storage temperature TST -30 +80 ℃ 5.2 DC Electrical Characteristics Characteristics Symbol Min. Typ. Max. Unit Note Digital Supply Voltage VDD 2.6 3..3 4.2 V -- Digital interface supple VoltageVDDIO 1.65 3.3 4.2 V -- Normal mode Current consumption IDD -- 10 -- mA -- V IH 0.7VDDIO -- VDDIO V -- Level input
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PDF
LM2576.pdf
Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) V Saturation Voltage I = 3A (Note 4) 1.4 V SAT OUT 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 % (Min) ICL Current Limit (Notes 4, 11) 5.8 A 4.2/3.5 A(Min) 6.9/7.5 A(Max) IL Output Leakage Current (Notes 6, 7): Output= 0V 2 mA(Max) Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) ISTBY Standby Quiescent ON /OFF Pin = 5V (OFF) 50 µA Current 200 µA(Max) θJA Thermal Resistance T Package,
in „Netzteil selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NSC-LM2576-5.pdf
Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) V Saturation Voltage I = 3A (Note 4) 1.4 V SAT OUT 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 % (Min) ICL Current Limit (Notes 4, 11) 5.8 A 4.2/3.5 A(Min) 6.9/7.5 A(Max) IL Output Leakage Current (Notes 6, 7): Output= 0V 2 mA(Max) Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) ISTBY Standby Quiescent ON /OFF Pin = 5V (OFF) 50 µA Current 200 µA(Max) θJA Thermal Resistance T Package,
in „KFZ Spannung mit LM2576 Diode vor die Spule?“ · Analoge Elektronik und Schaltungstechnik ·
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ON_Semiconductor_LSTTL_Data_DL121-D.pdf
HIGH 20 A VCC = MAX, VOUT = 2.4 V OZL Output Off Current LOW –20 A VCC = MAX, VOUT = 0.4 V 20 A VCC = MAX, VIN = 2.7 V IH Input HIGH Current 0.1 mA VCC = MAX, VIN = 7.0 V IL Input LOW Current –0.4 mA VCC = MAX, VIN = 0.4
in „Tasterentprellung nach microcontroller.net“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tan.c
637, 640, 643, 646, 649, 652, 656, 659, 662, 665, 668, 671, 675, 678, 681, 684, 687, 691, 694, 697, 700, 704, 707, 710, 714, 717, 720, 724, 727, 730, 734, 737, 741, 744, 747, 751, 754, 758, 761, 765, 768, 772, 775, 779, 782, 786, 789, 793, 796, 800, 804, 807, 811, 815, 818, 822, 826, 829, 833, 837, 840
in „XMEGA DMA transfer nach PORT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6n136.pdf
....1 A Reverse Current R 0.5 ( 10) A VR=5 V Thermal Resistance................................... 700 K/W Total Power Dissipation (T A 70 °)...............45 mW Capacitance CO 125 pF VR=0 V, f=1 MHz Detector Temperature Coeffi- cient, Forward Voltage VF/ T A -1.7 mV/°C IF=16 mA Supply Voltage ......
in „High-speed Optokoppler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1187-17-EE-17-PP002.pdf
SC-620 ¤ þ ¤ Immunity ESD ¤ ¤ ¤ ¤ Burst (fast transients) ¤ ¤ ¤ ¤ Surge 1.2/50 µs ¤ ¤ ¤ ¤ Surge 10/700 ¤ ¤ ¤ ¤ Injected currents ¤ ¤ ¤ ¤ Radiated electromagnetic fields ¤ ¤ ¤ ¤ Voltage dips andinterruptions ¤ ¤ ¤ ¤ Magneticfield with power frequency ¤ ¤ ¤ ¤ Test result: ¤ Pass þ Fail ¤ without Remark
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LA1266___LM7000_PLL.pdf
Specifications Maximum Ratings at Ta=25°C Parameter Symbol Conditions Ratings Unit Maximum supply voltage VCC max Pins 7,8,20 16 V Flow-in current I8 Pin 8 20 mA Flow-out current I22 Pin 22 1 mA I Pin 24 2 mA 24 Allowable power dissipation Pd max Ta≤60°C 700 mW Operating temperature Topr –20 to +70 °C Storage temperature
in „1890 DFC / 1896DFC und LM7001“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LA1266.pdf
Specifications Maximum Ratings at Ta=25°C Parameter Symbol Conditions Ratings Unit Maximum supply voltage VCC max Pins 7,8,20 16 V Flow-in current I8 Pin 8 20 mA Flow-out current I22 Pin 22 1 mA I Pin 24 2 mA 24 Allowable power dissipation Pd max Ta≤60°C 700 mW Operating temperature Topr –20 to +70 °C Storage temperature
in „Was ist das für ein Bauteil - benötige Ersatz! Bandfilter?“ · HF, Funk und Felder ·
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PDF
MCC.pdf
ca. 185 g/m ca. 150 µm Barytpapier, kartonstark ca. 283 g/m 2 ca. 258 µm MCC 1 / MCC 111 D = 2,30 max Bei Barytpapieren befindet sich zwischen Unterlage und Emul- MCC 118 D = 1,60 max sion eine Schicht aus Bariumsulfat (Baryt). DieniedrigereMaximaldichtevonMULTICONTRASTCLASSIC Diese Barytschicht verhindert
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Wide_Band_Power_Analyzer_System_NORMA_D_6000.pdf
Blatt 1 / DIN VDE 0411 Teil 1, Klimaklasse : KYG nach DIN VDE 40040, Festigkeit: Kapitel 11 Feuchte max. 85%, keine Betauung Schüttelprüfung: Prüfung in Gebrauchslage, in allen 3 Schwing- Sicherheit : IEC 61010-1, EN 61010-1 ebenen mit 0,15 mm Amplitude und 10...60 Hz, max. Spannung gegen Erde 1kV CATIII
in „suche Pinning für Einbaukarte Leistungsanalysator Norma D6000“ · PC Hard- und Software ·
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PDF
AN255_I2C__SMBus_REPEATERS_HUBS_AND_EXPANDERS.pdf
RC For standard-mode I C bus: t = rise time = 1000 ns so RC = 1180.2 ns. At a bus load of 400 pF: R max = 2.95 kΩ However, for fast-mode the maximum rise time is 300 ns, so at a bus load of 400 pF, R max = 885 Ω. For a 3 mA bus pull-up at V = 5.0 ± 0.5 V; R min = 1.700 kΩ and at V = 3.3 ± 0.3 V; R min
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN255.pdf
RC For standard-mode I C bus: t = rise time = 1000 ns so RC = 1180.2 ns. At a bus load of 400 pF: R max = 2.95 kΩ However, for fast-mode the maximum rise time is 300 ns, so at a bus load of 400 pF, R max = 885 Ω. For a 3 mA bus pull-up at V = 5.0 ± 0.5 V; R min = 1.700 kΩ and at V = 3.3 ± 0.3 V; R min
in „50 X LM75 an ATMEGA16?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1703_MIC.pdf
minimum V INmust meet two conditions: VIN≥ 2.7V and VIN ≥ (VOUT(MAX) + VDROPOUT(MAX) ). 2: V Rs the nominal regulator output voltage. For example:RV = 1.2V, 1.5V, 1.8V, 2.5V, 2.8V, 3.0V, 3.3V, 4.0V, or 5.0V. The input voltage IN = VOUT(MAX) + VDROPOUT(MAX) or VIN =
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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138720_DS.pdf
±1 µA typ VIN 0 V or VDD Logic 1 Input Current (All Digital Inputs) ±10 µA max VIN= VDD ±1 ±1 µA typ VIN V DD Logic 0 Input Current (Port 1, 2, 3) –80 µA max –40 –40 µA typ VIL= 450 mV Logic 1-0 Transition Current (Port 1, 2, 3) –700 µA max VIL 2 V –400 –400 µA typ V = 2 V IL
in „aduc812bs Wie programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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sn75lvds84a.pdf
48 25 6,20 8,30 6,00 7,90 0,15 NOM Gage Plane 0,25 1 24 0°–8° A 0,75 0,50 Seating Plane 0,15 1,20 MAX 0,10 0,05 PINS ** 48 56 64 DIM A MAX 12,60 14,10 17,10 A MIN 12,40 13,90 16,90 4040078/F 12/97 NOTES: A. All linear dimensions are in millimeters. B. This drawing is subject to change without notice
in „15" XGA Display an Computer anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_IC2__001183650-da-01-en-IC_SWITCH_HISIDE_8C_ISO1H801G_DSO_36_INF.pdf
lifetime. Parameter Symbol Limit Values Unit at j = -40 ... 135°C, unless otherwise specified min. max. Supply voltage input interface (VCC) VCC -0.5 6.5 V 1) Supply voltage output interface (Vbb) Vbb -1 45 Continuous voltage at data inputs (D0 ... D7) V -0.5 6.5 Dx Continuous voltage at pin CS VCS -
in „ISO1H811G Anteuerung mit Atmega 32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps3306-_AIC_-_AID_-_AIF_-_AIG_-.pdf
TEST CONDITIONS MIN TYP MAX UNIT tt(out) Watchdog time-out VI(SENSEn)VIT 0.2 V, 0.5 0.8 1.2 s See Timing Diagram V ≥ V + 0.2 V, td Delay time I(SENSEn) IT 70 100 140 ms See Timing Diagram Propagation (delay) time, tPHL high-to-low
in „Identifizierung Bauteil TI68 AID“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc1921.pdf
forCC = 4.0V to 5.5V and Load Capacitance = 80 pF. 12 MHz Osc Variable Oscillator Symbol Parameter Min Max Min Max Units tXLXL Serial Port Clock Cycle Time 1.0 12tCLCL µs tQVXH Output Data Setup to Clock Rising Edge 700 10tCLCL-133 ns tXHQX Output Data Hold After Clock Rising Edge 50 2tCLCL-80 ns tXHDX Input
in „ne frage zu AT89C55WD“ · Mikrocontroller und Digitale Elektronik ·
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Ezurio-Datenblatt.pdf
the underside of the Module. Pin Signal Description Pin Signal Description No. No. 1 Analogue 0 1.8v Max 2 GPIO1 I/O for Host. 3 Analogue 1 1.8v Max 4 GPIO2 I/O for Host 5 SPI_MISO SPI bus serial O/P 6 UART_RI ‘Ring’ Input or Output 7 SPI_CSB SPI bus chip select I/P 8 UART_DCD Input or Output 9 SPI_CLK
in „Ezurio Bluetooth-Modul => PC erkennt es nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD5415.pdf
REFnput Resistance 8 10 12 kΩ DAC input resistance V REFo V REFnput Resistance 1.6 2.5 % Typ = 25°C, Max = 125°C Mismatch R 1 FBResistance 16 20 24 kΩ R 2 3 Resistance 16 20 24 kΩ R 2o R 3esistance Mismatch 0.06 0.18 % Typ = 25°C, Max = 125°C 1 DIGITAL INPUTS/OUTPUT Input High Voltage, VIH 1.7 V VDD= 2.5
in „D/A mit Stromausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sla7024m.pdf
Figure 3 illustrates output current as a function of current-sensing resistance (R ). S 3.0 SLA7026M MAX. S2.5 R R1= 510 Ω P M2.0 R2= 100 Ω A RX= ∞ i Vb= 5 V N R1.5 R C I SLA7024M & SMA7029M MAX. R1.0 T U T O0.5 0 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 CURRENT-SENSING RESISTANCE in OHMS Dwg. GK-014 FIGURE 3
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PDF
ca3080-a.pdf
V = ±15V, Unless Otherwise Specified SUPPLY CA3080 CA3080A PARAMETER TEST CONDITIONS TEMP MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage IABC = 5µA 25 - 0.3 - - 0.3 2 mV IABC = 500µA 25 - 0.4 5 - 0.4 2 mV Full - - 6 - - 5 mV Input Offset Voltage Change IABC = 500µA to 5µA 25 - 0.2 - - 0.1 3 mV o
in „Dimensionierung eines OTA in CMOS-Technologie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vnh2sp30.pdf
MOTOR DRIVER Table 1. General Features Figure 1. Package Type RDS(on) Iout Vccmax VNH2SP30-E 19 mΩ max 30 A 41 V (per leg) ■ OUTPUT CURRENT: 30A ■ 5V LOGIC LEVEL COMPATIBLE INPUTS ■ UNDERVOLTAGE AND OVERVOLTAGE SHUT-DOWN MultiPowerSO-30 ■ OVERVOLTAGE CLAMP ■ THERMAL SHUT DOWN ■ CROSS-CONDUCTION PROTECTION
in „25A Regler per PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISO1050.pdf
terminal. (4) Tested while connected between Vcc2 and GND2. RECOMMENDED OPERATING CONDITIONS MIN NOM MAX UNIT VCC1 Supply voltage, controller side 3 5.5 V V Supply voltage, bus side 4.75 5 5.25 V CC2 VIor VIC Voltage at bus pins (separately or common mode) –12 (1) 12 V VIH High-level input voltage TXD
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PDF
MLX90640-Datasheet-Melexis.pdf
Figure 2 MLX90640 Overview and pin description 7. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit Remark Supply Voltage (over voltage) V 5 V DD Supply Voltage (operating max voltage) V 3.6 DD Reverse Voltage (each pin) -0.3 V Operating Temperature TAMB -40 +85 °C Storage Temperature TST -40
in „MLX90640 IR-Array 32x24 pixel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
Figure 2 MLX90640 Overview and pin description 7. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit Remark Supply Voltage (over voltage) V 5 V DD Supply Voltage (operating max voltage) V 3.6 DD Reverse Voltage (each pin) -0.3 V Operating Temperature TAMB -40 +85 °C Storage Temperature TST -40
in „Wärmebildkamera mit dem MLX90640 und Arduino Due“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMX813.pdf
Absolute Maximum Ratings Exceeding these maximum ratings can result in damage to the device. Min. Max. Units Supply (VDD - VSS) -0.3 7.0 V Voltage on any pin to SS -0.3 VDD + 0.3 V Current into or out oDDVand V SSpins -30 +30 mA Current into or out of any other pin -20 +20 MA E4 Package Min. Max. Units
in „leidiges Thema - SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3108fb.pdf
specifications are for T = 25°A (Note 2). VAUX = 5V, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS MinimumStart-Up Voltage Using 1:100 Transformer Turns Ratio, VAUX = 0V 20 50 mV No-Load Input Current Using 1:100 Transformer Turns Ratio; IN = 20mV, 3 mA V OUT2_EN = 0V; All Outputs Charged and
in „Blink LED mit Ladungspumpe für sehr niedrige Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ref3125.pdf
HIGH OUTPUT CURRENT: ±10mA The REF31xx’s small size and low power consumption ● HIGH ACCURACY: 0.2% max (100µA typ) make it ideal for portable and battery-powered ● LOW I : 115 µA max applications. The REF31xx does not require a load capacitor, Q but is stable with any capacitive load and can sink/source up ● EXCELLENT SPECIFIED DRIFT PERFORMANCE: to 10mA of output current. 15ppm/ °C (max) from 0 °C to +70 °C Unloaded, the REF31xx can be operated on supplies down 20ppm/ °C (max) from –40 °C to +125 °C to 5mV above the output voltage. All models are specified for the wide temperature
in „=> Referenzspannungsquelle für 2,5-4.5V Versorgung gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OP07.pdf
1 4 0.240 (6.10) 0.325 (8.26) 0.310 (7.87) 0.100 (2.54) 0.300 (7.62) BSC 0.060 (1.52) 0.195 (4.95) MAX 0.210 (5.33) 0.130 (3.30) MAX 0.115 (2.92) 0.015 0.150 (3.81) (0.38) 0.015 (0.38) 0.130 (3.30) MIN GAUGE 0.115 (2.92) PLANE 0.014 (0.36) SEATING 0.010 (0.25) PLANE 0.022 (0.56) 0.008 (0.20) 0.018 (0.46) 0.005 (0.13) 0.430 (10.92) MIN MAX 0.014 (0.36) 0.070 (1.78) 0.060 (1.52) 0.045 (1.14) COMPLIANT TO JEDEC STANDARDS MS-001 CONTROLLING DIMENSIONSARE IN INCHES; MILLIMETER DIMENSIONS A (IN PARENTHESES) ARE ROUNDED-OFF INCH EQUIVALENTS
in „Spannungsregler für Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1337.pdf
1.8V to 5.5V, T = -40°C to +85°C.) CC A PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Input Leakage LI (Note 1) 1 mA I/O Leakage ILO (Note 2) 1 mA Logic 0 Output (VOL= 0.4V) IOL (Note 2) 3 mA Active Supply Current I CCA (Note 3) 150 mA Standby Current CCS (Notes 4, 5) 1.5 mA DC
in „Atmega8 hängt in TWI Kommunikation fest (START schlägt fehl)“ · Mikrocontroller und Digitale Elektronik ·
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WBDesign8.pdf
VinMin = 10.0V Device = LMR23630AFDDAR VinMax = 30.0V Topology = Buck Vout = 5.0V Created = 2019-09-12 04:57:12.238 Iout = 1.5A BOM Cost = $3.16 ® BOM Count = 9 WEBENCH Design Report Total Pd = 0.83W Design : 8 LMR23630AFDDAR LMR23630AFDDAR 10V
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A4973-Datasheet.pdf
≥12 kΩ, CT= 470 pF 0.8 1.6 2.0 μs Crossover Dead Time tCODT – 500 – ns Maximum PWM Frequency fPWM(max) OUT = 1.5 A 70 – – kHz Control Circuitry Thermal Shutdown Temperature T – 165 – °C J Thermal Shutdown Hysteresis ∆TJ – 15 – °C UVLO Enable Threshold 2.5 2.75 3.0 V UVLO Hysteresis 0.12 0.17 0.25 V
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