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current-sensor_ACS754.pdf
Ambient, TA, S range .......................–2• Motor control • Battery monitors Maximum Junction, TJ(max)...........................165°C Maximum Storage Temperature, S ....–65 to 170°C Use the following complete part numbers when ordering: Part Number Signal Pins Terminals Ambient ACS754LCB-050-PFF Formed
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
69034fe-6.pdf
= 25°C. V = 2.7V to 5.5V, GND = 0V, unless otherwise noted. A SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS ∆fi Initial Frequency Accuracy f = 1.039kHz, V= 3V, CLOAD= 5pF ±0.75 % ∆f Total Frequency Accuracy (Note 7) Single Output Act+ve: Over All Settings+ V 2.7V, LOAD = 5pF 0.5 1.1 % Over All Settings
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn2864.pdf
Otherwise Specified SUPPLY A L ICL8038CC ICL8038BC ICL8038AC TEST PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Supply Voltage Operating Range V SUPPLY V+ Single Suppy +10 - +30 +10 - +30 +10 - +30 V V+, V- Dual Supplies ±5 - ±15 ±5 - ±15 ±5 - ±15 V Supply Current ISUPPLY VSUPPLY
in „Rechteck -> Sinus, Dreieck, Sägezahn(!)“ · Analoge Elektronik und Schaltungstechnik ·
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ICL8038.pdf
Otherwise Specified SUPPLY A L ICL8038CC ICL8038BC ICL8038AC TEST PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Supply Voltage Operating Range V SUPPLY V+ Single Suppy +10 - +30 +10 - +30 +10 - +30 V V+, V- Dual Supplies ±5 - ±15 ±5 - ±15 ±5 - ±15 V Supply Current ISUPPLY VSUPPLY
in „8038 IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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4088fb.pdf
Note 4) Input Quiescent Current 1x Mode 6 mA 5x Mode 14 mA 10x Mode 14 mA Low Power Suspend Mode 0.038 mA High Power Suspend Mode 0.038 mA hCLPROG (Note 4) Ratio of MeasureBUS Current to 1x Mode 224 mA/mA CLPROG ProgramCurrent 5x Mode 1133 mA/mA 10x Mode 2140 mA/mA Low Power Suspend Mode 11.3 mA/mA High
in „[EAGLE Anfänger] Package finden oder herstellen“ · Platinen ·
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23810294.pdf
LUG02A 4.7K 2 % 3984 K 0.5 % RESISTANCE TEMPERATURE CHARACTERISTICS TEMP. RESISTANCE R/R T Rmin. R max. (°C) R (T) 25 () (%) (%/K) (K) () () - 40 33.43 157 109 3.90 - 6.63 0.59 150 982 163 236 - 35 24.13 113 422 3.72 - 6.41 0.58 109 206 117 638 - 30 17.61 82 782 3.54 - 6.19 0.57 79 851 85714 - 25
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Weidezaun_S03_4093.pdf
LY3369-EH gelb 2,2V 2mA 67S5321RV1.25-3 (Red Ring Insulated Wire Connector Crimp Terminal 1,71-/100 max18V R6 GND 11,1V 3s 3,7V 2,5-4,2V 2600mAh SonyVTC5 230Vac 6Vac 2,5A EI57x25 87/60x27x50 2xBLD4x73mm 13,81€ u A war 10M R2 war 22k 3msR2 rd3mm 0R (11k)ZPD3v3 1000u 16V D8x16mm LowESR R3=220R@13,8V 6Vac
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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THS4061-4062.PDF
) Seating Plane 0.069 (1,75) MAX 0.010 (0,25) 0.004 (0,10) 0.004 (0,10) 4040047/D 10/96 NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. Body dimensions do not include
in „Verstärker für DC bis hohe Frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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Torex_XC6210B332MR_-_LDO.pdf
CURRENT CURRENT CURRENT (V) (V) (mV) (mV) (µA) (µA) (µA) V OUT Vdif1 Vdif2 IDD ICEH ICEL VOUT(T) MIN. MAX. TYP. MAX. TYP. MAX. TYP. MAX. MIN. MAX. MIN. MAX. 0.80 0.770 0.830 700.0 800.0 0.90 0.870 0.930 100.0 600.0 250.0 700.0 38.0 60.0 1.50 5.00 -5.00 -1.50 1.00 0.970 1.030 500.0 600.0 50.0 150.0 1.10
in „Low-drop Torex 1V Dropout zu viel“ · Analoge Elektronik und Schaltungstechnik ·
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TL431.pdf
CHARACTERISTICS (T = 25°C, unless otherwise noted.) A TL431I TL431C Characteristic Symbol Min Typ Max Min Typ Max Unit Reference Input Voltage (Figure 1) V V ref VKA = VrefIK= 10 mA TA = 25°C 2.44 2.495 2.55 2.44 2.495 2.55 TA= T lowto Thigh(Note 1) 2.41 − 2.58 2.423 − 2.567 Reference Input Voltage
in „Linenarregeler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
xparameters.h
SDRAM_BASEADDR_CTRL3 0x02c #define XPAR_DDR3_SDRAM_HIGHADDR_CTRL3 0x037 #define XPAR_DDR3_SDRAM_BASEADDR_CTRL4 0x038 #define XPAR_DDR3_SDRAM_HIGHADDR_CTRL4 0x047 #define XPAR_DDR3_SDRAM_BASEADDR_CTRL5 0x048 #define XPAR_DDR3_SDRAM_HIGHADDR_CTRL5 0x053 #define XPAR_DDR3_SDRAM_BASEADDR_CTRL6 0x054 #define XPAR_DDR3_
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0754-200.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current I –200 – 200 A P Supply Voltage VCC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 6.5 8 10 mA CC CC Output Resistance R OUT OUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2008T-femto-counters.pdf
oscillator • Down-conversion: f = |bf – x f | c • fbis in the range of a classical counter (100-200 MHz max) • no resolution reduction in the case of a classical frequency counter (no need of reciprocal counter) • Old scheme, nowadays used only in some special cases (frequency metrology) 18 4 – Interpolation
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LT3475.pdf
at input volt- frequency. ages greater than V . For example, an application IN(MAX) Example: f = 600kHz, V OUT = 4V with an output voltage of 3V and switching frequency of DC =1−167ns 600kHz=0 90 . 1.2MHzhasaV IN(MAX)of20V,asshowninFigure2.Figure MAX 3showsoperationat35V. Outputrippleandpeakinductor
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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top222y.pdf
230 VAC ±15% 85 to 265 VAC 100/115/230 VAC ±15% 85 to 265 VAC P 4,6 P 4,6 ORDER P 5,6 P 5,6 NUMBER MAX MAX NUMBER MAX MAX TOP221Y 12 W 7 W TOP221P or TOP221G 9 W 6 W TOP222Y 25 W 15 W TOP222P or TOP222G 15 W 10 W TOP223Y 50 W 30 W TOP223P or TOP223G 25 W 15 W TOP224Y 75 W 45 W TOP224P or TOP224G 30 W
in „Suche Ersatz für TOP222Y“ · Mikrocontroller und Digitale Elektronik ·
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LTC4414_Power_Manegement.pdf
, V DS(MAX), mine the magnitude of the voltage droop include the must be high enough to withstand the maximum drain- supply rise and fall times, the MOSFET’s characteristics, source voltage seen in the application
in „P-Mosfet als Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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TOP222Y.pdf
230 VAC ±15% 85 to 265 VAC 100/115/230 VAC ±15% 85 to 265 VAC P 4,6 P 4,6 ORDER P 5,6 P 5,6 NUMBER MAX MAX NUMBER MAX MAX TOP221Y 12 W 7 W TOP221P or TOP221G 9 W 6 W TOP222Y 25 W 15 W TOP222P or TOP222G 15 W 10 W TOP223Y 50 W 30 W TOP223P or TOP223G 25 W 15 W TOP224Y 75 W 45 W TOP224P or TOP224G 30 W
in „Voltcraft SPS-1540 PFC defekt - Reparaturhilfe benötigt“ · Analoge Elektronik und Schaltungstechnik ·
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opa541.pdf
+25°C and S = ±35VDC, unless otherwise noted. OPA541AM/AP OPA541BM/SM PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS INPUT OFFSET VOLTAGE VOS ±2 ±10 ±0.1 ±1 mV vs Temperature Specified Temperature Range ±20 ±40 ±15 ±30 µV/°C vs Supply Voltage V = ±10V to ±V ±2.5 ±10 ✻ ✻ µV/V S MAX vs Power ±20 ±60
in „High-Power OPV mit mehr Bandbreite“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0704-015.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current1 I –15 – 15 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 5 8 10 mA CC CC Output Resistance ROUT IOUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Stromfluss detektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current1 I –15 – 15 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 5 8 10 mA CC CC Output Resistance ROUT IOUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Gibts eigentlich auch ADCs, die Strom messen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
ambient temperature range unless otherwise stated Characteristic Symbol Test Conditions Min. Typ. Max. Units Primary Sensed Current1 I –15 – 15 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 5 8 10 mA CC CC Output Resistance ROUT IOUT = 1.2 mA – 1 2 Ω Output Capacitance
in „Spule als Stromwandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ASUS_ML229H_LM215WF3-SLC1_Datasheet.pdf
1223 mA 3 Pc TYP - 3.99 4.59 Watt 2 Power Consumption Pc MAX - 5.32 6.12 Watt 3 Rush current IRUSH - - 3.0 A 4 Note : 1. Permissive power ripple should be measured under LCD =5.0V, 25°C, fV(frame frequency)=MAX condition and At that time, we recommend the bandwidth
in „Hilfe bei LVDS Signal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XCL213-XCL214.pdf
<E-2> <E-3> <C-1> <E-5> <E-6> <E-7> VOLTAGE <E-1> <E-2> <E-3> <C-1> <E-5> <E-6> <E-7> V MIN. TYP. MAX. V MIN. TYP. MAX. V MIN. TYP. MAX. V MIN. TYP. MAX. OUT(T) IN OUT(T) IN 0.80 0.784 0.800 0.816 2.70 71 119 166 2.25 2.205 2.250 2.295 3.75 140 200 260 0.85 0.833 0.850 0.867 2.70 72 121 169 2.30 2.254
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
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Polyswitch_Sicherung.pdf
0.04) C (AHS080 only) 18 AWG AGR:Radial-Leaded Dimensions (millimeters/inches) Part IH* (A) H *(A) V max. I max. R min. R 1ax. Ramax. A B C number R max. R max. (Vdc) (A) (Ω) (Ω) (Ω) (max.) (max.) (typ.) Fig. 1 a AGR400 4.0 3.0 16 100 0.0186 0.061 0.085 8.9 (0.35) 14.1 (0.56) 5.08 (0.2) 2 AGR500 5.0 4.3
in „Tipps für 24V DC Absicherung gesucht ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sdio.patch
+#define MVSDMMC_CMD_TIMEOUT 2 /* 100 usec*/ + +/* + * Clock rates + */ + +#define MVSD_CLOCKRATE_MAX 50000000 +#define MVSD_BASE_DIV_MAX 0x7ff + +#define CONFIG_SYS_MMC_CLK_PP 25000000 + +/* + * The base MMC clock rate + */ + +#define MVSDMMC_CLOCKRATE_MIN 100000 +#define MVSDMMC_CLOCKRATE_MAX MVSD_CLOCKRATE_MAX
in „20Euro Embedded System mit ARM, 128MB ram und 256MB Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sdio.patch
+#define MVSDMMC_CMD_TIMEOUT 2 /* 100 usec*/ + +/* + * Clock rates + */ + +#define MVSD_CLOCKRATE_MAX 50000000 +#define MVSD_BASE_DIV_MAX 0x7ff + +#define CONFIG_SYS_MMC_CLK_PP 25000000 + +/* + * The base MMC clock rate + */ + +#define MVSDMMC_CLOCKRATE_MIN 100000 +#define MVSDMMC_CLOCKRATE_MAX MVSD_CLOCKRATE_MAX
in „20Euro Embedded System mit ARM, 128MB ram und 256MB Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16389fg.pdf
3.45 1 2 3 4 (.206) 0.53 p 0.152 MIN (.126 – .136) (.021 p .006) 1.10 0.86 (.043) (.034) DETAIL “A” MAX REF 0.18 0.42 p 0.038 0.65 (.007) (.0165 p .0015) (.0256) BSC SEATING TYP PLANE 0.22 – 0.38 0.1016 p 0.0508 RECOMMENDED SOLDER PAD LAYOUT (.009 – .015) TYP 0.65 (.004 p .002) NOTE: (.0256) MSOP (MS8
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Weidezaun_S04_ELV50.pdf
ST.com a BL4 220k 3*4,7u630V=14,1u*400V^2=2,256J CBB PP 2,71€/10 i BL35 T2 B2 10uA e=U*U*C7=J (Energie max.50J <10ms) Oese1+2_Crimp r Schr1-4_Geh1_PCB1 BC546B R4 T M3x10_DIN963 65V 0,1A hfe110-800 0,5W TO92 10u50V D5x11mm RM2,5 85°C Mut1-4 M3_MUTTER_DIN934_SW55 E1 1M 1 2 3 TH1_SCR1 M3 Ringoese RV1.25-3 B
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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LTC1864.pdf
CC IREF Reference Current (LTC1864 SO-8 and MSOP, CONV = VCC ● 0.001 3 μA LTC1865 MSOP) SMPL = SMPL(MAX) ● 0.05 0.1 mA ICC Supply Current CONV = VCC After Conversion ● 0.001 3 μA CONV = VCC After Conversion, H-Grade ● 0.001 5 μA f = f 0.85 1.3 mA SMPL SMPL(MAX) ● P D Power Dissipation SMPL = SMPL(MAX)
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ADC_LTC1865.pdf
CC IREF Reference Current (LTC1864 SO-8 and MSOP, CONV = VCC ● 0.001 3 μA LTC1865 MSOP) SMPL = SMPL(MAX) ● 0.05 0.1 mA ICC Supply Current CONV = VCC After Conversion ● 0.001 3 μA CONV = VCC After Conversion, H-Grade ● 0.001 5 μA f = f 0.85 1.3 mA SMPL SMPL(MAX) ● P D Power Dissipation SMPL = SMPL(MAX)
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RIN32M3_CL.h
__IO uint32_t TAUJ2CSR1; /*!< 0x034 : channel status register 1 */ __IO uint32_t TAUJ2CSR2; /*!< 0x038 : channel status register 2 */ __IO uint32_t TAUJ2CSR3; /*!< 0x03C : channel status register 3 */ __IO uint32_t TAUJ2CSC0; /*!< 0x040 : channel status clear trigger register 0 */ __IO uint32_t TAUJ2CSC1
in „R-IN32M3-CL (Cortex-M3): Wie funktioniert Senden/Empfangen auf dem Feldbus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mic2950.pdf
4.753 4.947 V Output Voltage MIC295x-02/-05 (±0.5%), 100µA ≤ I ≤ 150mA, T ≤ T 4.930 5.070 V L J J(max) Over Load Variation MIC295x-03/-06 (±1%), 100µA ≤ I L 150mA, T J T J(max) 4.880 5.120 V MIC2951-3.3 (±1%), 100µA ≤ I L 150mA, T ≤JT J(max) 3.221 3.379 V MIC2951-4.8 (±1%), 100µA ≤ I ≤ 150mA, T ≤ T 4.733 4.967 V L J J(max) Output Voltage MIC295x-02/-05 (±0.5%), Note 9 20 100 ppm/°C Temperature Coefficient MIC295x-03/-06 (±1%), Note 9 50 150 ppm/°C MIC2951-3.3 (±1%), Note 9 50 150 ppm/°C MIC2951-4.8 (±1%), Note 9 50 150
in „Spannungsstabilisieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC18_CHAPTER_5_1.pdf
operated within SOA limits, broken line in Fig.2. this value is permissible since it is below tot max K The same result can be obtained graphically from the P tot max diagram (Fig.3) for the relevant transistor. handbotot halfpage Ptot max K handbook, halfpage P 100 MGK032 tot max P tot max (W) 80 0 0T T T Tmb mb 1 mb K j max T j-mb max MGK031 60 47.5 Fig.2 Maximum DC power dissipation in a transistor as a function of the 40 mounting-base temperature. 20 In the second case, T > T : mb mb K 0 0 40 80 120 160 200 P = Tjmax
in „Wärmewiderstand Rthg - Rthgk“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
21709c_EEPROM.pdf
(SOIC) E E1 p D 2 B n 1 h α 45° c A2 A φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „EEPROM mit Infineon XC2200 ueber IIC benutzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21709c.pdf
(SOIC) E E1 p D 2 B n 1 h α 45° c A2 A φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „24LC02B mit (scheinbar) seltsamer Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UBN30_MODBUS.pdf
NUMBER OF EXTERNAL MODULES * 0=none 1=EM80A (8 analog outputs) $E015 1 NUMBER OF HARMONICS $0A66 2 MAX MEMORY SIZE OF MIN/AVG/MAX RECORDING $0A68 2 MEMORY SIZE OF THE CURRENT MIN/AVG/MAX RECORDING $0A9B 2 MAX MEMORY SIZE OF DAILY ENERGY COUNTERS RECORDING $0A9D 2 MEMORY SIZE OF THE CURRENT DAILY ENERGY
in „[V] Digitalzähler“ · Markt ·
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PDF
m48t08-150pc1.pdf
AC Characteristics M48T08/M48T18/T08Y Symbol Parameter (1) –100/–10 (T08Y) –150/–15 (T08Y) Unit Min Max Min Max AVAV READ Cycle Time 100 150 ns t Address Valid to Output Valid 100 150 ns AVQV tE1LQV Chip Enable 1 Low to Output Valid 100 150 ns E2HQV Chip Enable 2 High to Output Valid 100 150 ns tGLQV
in „parallele SRAM Bausteine (nennt man das so ?) in Bascom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC2631.pdf
LZ12 (V FS = 2.5V) LTC2631-8 LTC2631-10 LTC2631-12 LTC2631A-12 SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS DC Performance Resolution l 8 10 12 12 Bits Monotonicity V = 3V, Internal Ref. (Note 4) 8 10 12 12 Bits CC DNL Differential V CC= 3V, Internal Ref. (Note 4)
in „STM32 -> LTC2870 -> DA-70157“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT.pdf
LECTR AL CHAICCTERIST ICS T j 25°C, V = INV, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Switch “Off” Leakage LT1074 VIN ≤ 25V, SW = 0 5 300 A V = V V = 0 (Note 7) 10 500 A IN MAX, SW LT1076 VIN = 25V, SW = 0 150 A V = V V = 0 (Note 7) 250 A IN MAX, SW Supply Current (Note 2) V FB2.5V
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1074.pdf
LECTR AL CHAICCTERIST ICS T j 25°C, V = INV, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Switch “Off” Leakage LT1074 VIN ≤ 25V, SW = 0 5 300 A V = V V = 0 (Note 7) 10 500 A IN MAX, SW LT1076 VIN = 25V, SW = 0 150 A V = V V = 0 (Note 7) 250 A IN MAX, SW Supply Current (Note 2) V FB2.5V
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
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TC2014.pdf
LDOs with Shutdown and Reference Bypass Features General Description • Low Supply Current: 80 µA (Max) The TC2014, TC2015 and TC2185 are high-accuracy • Low Dropout Voltage: 140 mV (Typ.) @ 150 mA (typically ±0.4%) CMOS upgrades for bipolar Low Drop-out Regulators (LDOs), such as the LP2980. • High-Output
in „Mcp3551 PT1000 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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LP3947.pdf
for operation, J TJ= −40˚C to +85˚C. (Notes 7, 8, 9) Symbol Parameter Conditions Typ Limit Units Min Max VCC SUPPLY V Input Voltage Range 4.5 6 CHG-IN V VUSB 4.3 6 ICC Quiescent Current VCHG-IN ≤ 4V 2 20 EOC = Low, adaptor connected, µA 50 150 VBATT = 4.1V VOK-TSHD Adaptor OK Trip Point (CHG-IN) VCHG-IN
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lt3580.pdf
High Efficiency Step-Up DC/DC Converter V IN1.6V to 18V, VOUT(MAX) = 35V, Q = 1.8mA, ISD < 1μA, MS10 Package LT1930/LT1930A 1A (ISW ), 1.2MHz/2.2MHz High Efficiency Step-Up DC/DC V IN2.6V to 16V, VOUT(MAX) = 34V, IQ= 4.2mA/5.5mA, I SD < Converter 1μA, ThinSOT Package
in „Switcher CAD III Simulation - Schaltungsfehler ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
-_IC_LEXIKON_-_multimaster.pdf
9210b LaNrNOS PESsSRkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 127 k6 maxim 2x8mi max232epe O243 LaNrNOS PESsSRkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 128 k6 maxim 2x8mi max359cpe 9834 LaNrNOS PESsSRkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 129 k6 maxim 2x7mi max423cpc
in „(V) Bauelemente 70er-90er zu verkaufen Vintage Retro“ · Markt ·
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PDF
ATGmeo5c.pdf
(85,85) Ø 3.875 B.C. (43,69) 98,43 +.0000 (2X 45˙) .3750 -.0005 Ø 9,53 -0,013 .002 0,051 -A- 2.62 MAX. 66,55 .06 1,52 .71 MAX-ENCODER Ø 2.875 ± .002 18,04 MOUNTING OPTION 73,025 ± 0,051 (.18) ONLY .003 (4,57) 0,077 A L2 ENCODER 1.25 CONNECTOR- MODEL L1 MAX. ENCODER MOUNTING NUMBER L1 MAX. L2 31,75 OPTION
in „Schrittmotor-Treiber Stepper Motor Pacific Scientific Powermax II“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF272L.pdf
to +150 °C Operating Junction Temperature TJ 200 °C THERMAL CHARACTERISTICS Characteristic Symbol Max Unit Thermal Resistance, Junction to Case R JC 0.65 °C/W ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted) C Characteristic Symbol Min Typ Max Unit OFF CHARACTERISTICS Drain–Source Breakdown
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LT3756.pdf
1.5A, 36V, 2MHz High Current LED Driver V IN: 2.8V to 16V, OUT(MAX) = 36V, True Color PWMDimming = 1000:1, with 1000:1 Dimming ISD < 10μA, 5mm× 7mmQFN Package LT3477 3A, 42V, 3MHz Boost, Buck-Boost, Buck LED Driver VIN: 2.5V to 25V, OUT(MAX) = 40V, Dimming = Analog
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PDF
OPA548.pdf
isolate the tab of TO-220 package from its ® OPA548 8 RESISTOR METHOD DAC METHOD (Current or Voltage) Max I = I O LIM (4.75) (15000) Max IO= ILIM ±ILIM=13750 + R ±I =15000 I 13750 CL 13750 LIM SET 4.75V 4.75V I SET 3 3 RCL 0.01µF D/A 4 (optional, for noisy 4 environments) V– V– 15000 (4.75V) ISET= ILIM15000
in „Schaltplan für ordentliches Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm7800.pdf
) REG Max (β +1) O Max BE(Q1) REG Max O Max Figure 24. High Current Voltage Regulator Figure 25. High Output Current With Short-Circuit Protection INPUT OUTPUT LM340 + OUT + + GND 0.1 PF INPUT OUTPUT LM79xx +
in „Netzteil für Röhrenvorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NCP300L.PDF
mV below the reset threshold and lasts 5.0 ms or less will not cause a reset pulse. VDET−_minDET−_max VDET+_minVDET+_max Transient immunity can be improved by adding a capacitor in close proximity to thCCVpin of the NCP30x. Input V CC VDET+_minDET−_minHYS_min VTH VDET+_maxVDET−_maxHYS_max Overdrive
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·