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mic2950.pdf
V OUT ON EXTERNAL CIRCUIT GND FB PROTECTED FROM OR + 4 7 OVER TEMPERATURE (V+ GOES OFF WHEN TEMP. LM34 OR SENSOR LM35 TEMP.> 125 °) RELAY 8.2kΩ – LM34 for 125°F Shutdown LM35 for 125°C Shutdown System Overtemperature Protection Circuit Schematic Diagram IN FEEDBACK R18 Q15A 20kΩ 100x Q15B Q24 Q26 Q25
in „Spannungsstabilisieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
schemath.txt
ROHDE & SCHWARZ: HF-DC Millivoltmeter-URV SCHOMANDEL: FD1 FDM1 SE: SM111 SEAFARER: 700/5 SOLARTRON : LM902.2 LM1420.2 TEKTRONICS: 134 177 502A TM501 AM503 D1 D2 516 545A 555 577 TEXTRONICS: PULG IN TYPE L + CA - K 53/54E TELEQUIPMENT: 43 TRIO : CO-1303D CS-1010 CS-1012 CS-1020 CS-1021 CS-1022 WANDEL&GOLTERMANN
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Ledanzeigen1986_s.pdf
fecわ 7820 Posltach 5329 州dre部G明記r-$弘30 4800 Blelefeld, 6000 Frankfurt 1 3000 Hannover , POSI'OCI1 �84t. Postfacη3280 'z'(069)797�O白 !.414131 950 Nürnberg 1 含(0521) 29I・1.1 ‘932805 FAX (06也) i97‘2:1.53 ..(05111 �2.9O. 刊 922333 官il(0911) 654・O.,1,('22251 9700 Würzburg 21 ,AX (0621) 291 375 FAX (0511) 129
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STM32-P207-P407_rev_D.pdf
OUT_B n 1 1 1 25 INT/PHYAD0 T K GND2 12 F k NA 0 _ C 1 n 1 k OTG_HS_VBUS R111 0R 0R(NA) RM4G2 33k LM3526-L(SO-8) 1 USB_OTG R59 2k 2 M MI F 6-0 1 RM4G1 33k I 3 / R/ 3 2 1 0 N / R C 2 1 R R R R 3.3V 3.3V 3.3V D D S L D D D D E C E D B ( USB_OTG 640x480 [VGA] CAMERA UEXT V G C C T T T T T T T VD F m 9
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Very short pulses of the same length, spaced differently. pulse length: 0.55ms, short pause length: 1.84ms double pause length: 4.375ms quad pause length: 9.5ms => SYNC 101001010010100000010000001001101001 101001010tt0dddddddddddd????????cccc */ unsigned char unk2() { static int qp = F_CPU / PRESCALER /
in „RFM12 als Empfänger für TFA THX301 Funk Wetter Sensor“ · HF, Funk und Felder ·
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PDF
SW017_ISO_tag_DS.pdf
All the rest of the bits are mask programmed. 128 bits pattern ISO 11785 Send bit 1 first 1 1112 83 84 101102 128 Header Identification code CRC Extension 11 bits 16 + 2 bits24 + 3 bits 64 + 8 bits National code Country Reser 64 send first 27 26 171615 2 1 64 bits pattern identification code ISO 11784
in „Kontaklose Chipkarten????“ · Mikrocontroller und Digitale Elektronik ·
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Schrittmotor.pdf
Möglichkeit ist die Ansteuerung des Leistungsteils mit einMicrocontroller (zB. PICs, wie der PIC16F84, Atmels AVRs, 8051-Derivate oder 68HCxx, und so weiter ...) Hierbei wird in einer Schleife ein I/O- Pin als ‘Takteingang’ abgefragt (oder noch besser über einen Interrupt), evtl. auch ein Pin für Vor
in „Schrittmotoren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
-v_-Wl-v_Toolchain_b.txt
: --param ggc-min-expand=100 --param ggc-min-heapsize=131072 Compiler executable checksum: d000853d84d24099aba95c21583122aa COLLECT_GCC_OPTIONS='-funsigned-char' '-funsigned-bitfields' '-D' 'F_CPU=20000000UL' '-D' 'NDEBUG' '-I' 'C:\Program Files (x86)\Atmel\Studio\7.0\Packs\Atmel\AVR-Dx_DFP\2.5.294\include
in „GCC v14 Release“ · Compiler & IDEs ·
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Datei
-v_-Wl-v_Toolchain_c.txt
: --param ggc-min-expand=100 --param ggc-min-heapsize=131072 Compiler executable checksum: d000853d84d24099aba95c21583122aa COLLECT_GCC_OPTIONS='-funsigned-char' '-funsigned-bitfields' '-D' 'F_CPU=20000000UL' '-D' 'NDEBUG' '-I' 'C:\Program Files (x86)\Atmel\Studio\7.0\Packs\Atmel\AVR-Dx_DFP\2.5.294\include
in „GCC v14 Release“ · Compiler & IDEs ·
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PDF
IRG4BC20U_INR.pdf
Collector Current 13 C @ TC= 100°C Continuous Collector Current 6.5 A CM Pulsed Collector Current 52 LM Clamped Inductive Load Current 52 VGE Gate-to-Emitter Voltage ± 20 V EARV Reverse Voltage Avalanche Energy 5.0 mJ PD@ T C 25°C Maximum Power Dissipation 60 PD@ T C 100°C Maximum Power Dissipation 24
in „LED Stripe über IGBT schalten“ · Analoge Elektronik und Schaltungstechnik ·
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elv.pdf
SEG18 87 14 SEG18 Mikrocontroller C206 100K SEG19 86 28 SEG19 ELV07670 85 29 100n/SMD R206 10 SEG20 84 30 SEG20 C207 100K VLC1 SEG21 83 31 SEG21 SEG22 82 SEG22 100n/SMD R207 9 SEG23 32 SEG23 C208 100K VLC2 SEG24 81 33 SEG24 100n/SMD R208 SEG25 80 34 SEG25 100K 8 VLC3 SEG26 79 35 SEG26 C209 78 36 100n/
in „Problem mit ELV Netzteil Bausatz PPS 5630“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematics.pdf
IC14A TLC272 AD706 TLC272 C94 22k 5 n 9 n 4 n 8 n 2 n 6 n 0 k 5 k C 4 C 3 C 2 C 1 C 1 C 6 R 1 R 4 1n 6 LM7332 R65 R71 R76 R80 R84 R88 7 5 10k 10k 10k 10k 10k 10k GND IC10B GND 1 k GND 6 n 0 n 5 n 9 n 3 n 7 n R 1 C 4 C 3 C 2 C 1 C 1 C 6 R66 R72 R77 R81 R85 R89 5 IC13B C IN2 3 IC11A 10k 10k 10k 10k 10k 10k 7 1 6 2 AD706 LM7332 7 n 1 n 6 n 0 n 4 n 8 n 2 k C 4 C 3 C 2 C 1 C 1 C 6 R 1 2 p C 5 0 k R 2 3 k R62 R 1 22k 6 LM7332 GND 7 5 D IC11B AM Audio 5 GND 2 p + C 1 3 µ C92 C95 C97 C99 C101 I-COMP 5 IC12B C 1 R73 8 8 8 8 8
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AD8307.pdf
AMPLIFIER STAGES DCto 500MHz operation, ±1dB linearity INP 8 MIRROR Slope of 25 mV/dB, intercept of −84 dBm INM 1 1.1kΩ –INP 3 2µA Highlystablescalingovertemperature 2 /dB 4 OUT Fullydifferentialdc-coupledsignalpath NINSPACED 14.3dBLLS 12.5kΩ 100nspower-up time,150μA sleepcurrent COM 2 COM INPUT-OFFSET
in „logarithmic detector“ · Mikrocontroller und Digitale Elektronik ·
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6307.pdf
500 MHz Operation, 61 dB Linearity AMPLIFIER STAGESHz INT INT. ADJ Slope of 25 mV/dB, Intercept of –84 dBm +INPUT INP Highly Stable Scaling Over Temperature 1.15kV MIRROR Fully Differential DC-Coupled Signal Path –INPUT INM 2mA 100 ns Power-Up Time, 150 mA Sleep Current 3 /dB OUT OUTPUT NINE DETECTOR
in „HI-Empfänger: Könnte das so funktionieren?“ · HF, Funk und Felder ·
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-_IC_LEXIKON_-_multimaster.pdf
HD63310P20 japan LaNrNOS PosFRCkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 033 k3 xilinx qua pc84c Xc3020tm-100 a30753a Bki 9515 LaNrNOS PosFRCkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 034 k3 ST gro 2 9041 ef68821p LaNrNOS PosFRCkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 035 k3
in „(V) Bauelemente 70er-90er zu verkaufen Vintage Retro“ · Markt ·
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Beamer_Protocol.pdf
P R O T O C O LM A N U A L .............. ......... .............. ......... VPL-PX11 Serial No. 6,500,001 and later WORLD VPL-PX11 CHINA VPLL-CW10 WORLD Serial No. 6,000RM-PJM126,500,000 WORLD VER SIO N1.0 VPL-PX11
in „Beamer über RS232 bedienen?“ · Mikrocontroller und Digitale Elektronik ·
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ZN425E.pdf
simply by adding an external the R-2R ladder, the value depending on the digital number comparator (LM311) and clock inhibit gating (7400). By simply clocking the counter the ZN425 can be used applied to the bit inputs. as a self-contained precision ramp generator. Fig.3 The R-2R ladder network 3 ZN425
in „Digital Analog Converter“ · Mikrocontroller und Digitale Elektronik ·
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avr8-gnu-toolchain-3.4.0.663-readme.pdf
(everything mentioned in <math.h>, and a bit more). Thus it is a good idea to always include the `-lm` linker option. Also, there are additional libraries which allow a customization of the printf and scanf function families. 4 AVR 8-bit GNU Toolchain AVR 8-bit GNU Toolchain avr-libc also contains the
in „ATtiny10 ISR TIM0_COMPB_vect“ · Mikrocontroller und Digitale Elektronik ·
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OURDSO_V2.pdf
31S_D10 IO, LVDS28n 181 S_D9 330u 104 22u 104 104 47u S_A13 26 A13 I/O11 32S_D11 IO, LVDS28p 182 S_D5 LM2596S-3.3 1 S_A14 27 A14 I/O12 35S_D12 IO, LVDS26p, DQ1T0/DQ1T9 185 S_D10 D1 S_A15 42 A15 I/O13 36S_D13 IO, LVDS25n 187 S_D4 GND GND S_A16 43 A16 S S E E I/O14 37S_D14 IO, LVDS25p, DQ1T1/DQ1T10 188 S_D11
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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LT1019.pdf
Regulators references presently available including AD580, AD581, REF-01, REF-02, MC1400, MC1404, and LM168. Constant Current Sources V/F Converters For ultra-low drift applications (<2ppm/°C), the LT1019 Bridge Excitation can be operated in a heated mode by driving an internal resistor with an external
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SAK-C167CR-LM_HA.pdf
product. Table 1 C167CR Derivative Synopsis Derivative) Program Memory XRAM CAN Interface SAK-C167SR-LM --- 2 KByte --- SAB-C167SR-LM SAK-C167SR-L33M SAB-C167SR-L33M SAK-C167CR-LM --- 2 KByte CAN1 SAF-C167CR-LM SAB-C167CR-LM SAK-C167CR-L33M SAB-C167CR-L33M SAK-C167CR-4RM 32 KByte ROM 2 KByte CAN1 SAB-C167CR
in „Problem mit Infinion C167CR mit AM29F200B-70SE“ · Mikrocontroller und Digitale Elektronik ·
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CS8126-1YDPS7G_drop_out_5V_linear_regler.pdf
providing full capacitor discharge (0.2 V type). THE SUFFIX Note: The CS8126 is lead compatible with the LM2927 and CASE 314J LM2926. 1 5 Features Pin 1. VIN • Low Dropout Voltage (0.6 V at 0.5 A) D PAK−7 2. OUT DPS SUFFIX 3. V • 3.0% Output Accuracy CASE 936AB 4. GND(SENSE) • Active RESET 1 7 5. Delay • External
in „Suche Spannungsregler CS8126-1YDPS7G“ · Analoge Elektronik und Schaltungstechnik ·
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LT1019.pdf
presently available including AD580, AD581, ■ A/D and D/A Converters REF-01, REF-02, MC1400, MC1404 and LM168. ■ Precision Regulators ■ Constant Current Sources , LTC and LT are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners. ■ V/F
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
augabe.txt
und Einstellungen\\Daniel\\Eigene Dateien\\Arduino\\libraries\\U8glib\\src\\clib\\u8g_dev_pcd8544_84x48.c" -o "C:\\DOKUME~1\\Daniel\\LOKALE~1\\Temp\\arduino_build_180034\\libraries\\U8glib\\clib\\u8g_dev_pcd8544_84x48.c.o" "C:\\Programme\\Arduino\\hardware\\tools\\avr/bin/avr-gcc" -c -g -Os -w -std=
in „Marlin auf anet e12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LA1266___LM7000_PLL.pdf
mod. 31 37 dBµ Demodulation output VO VIN100dBµ, 100% mod. 270 390 540 mV S/N ratio S/N VIN100dBµ 78 84 dB Total harmonic distortion THD VIN100dBµ, 100% mod. 0.03 0.3 % Signal meter output VSM1 No input 0 0 0.2 V VSM2 VIN100dBµ 1.7 2.3 3.1 V LED drive sensitivity LED-ON ILED=1mA 46 61 76 dBµ LED drive
in „1890 DFC / 1896DFC und LM7001“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LA1266.pdf
mod. 31 37 dBµ Demodulation output VO VIN100dBµ, 100% mod. 270 390 540 mV S/N ratio S/N VIN100dBµ 78 84 dB Total harmonic distortion THD VIN100dBµ, 100% mod. 0.03 0.3 % Signal meter output VSM1 No input 0 0 0.2 V VSM2 VIN100dBµ 1.7 2.3 3.1 V LED drive sensitivity LED-ON ILED=1mA 46 61 76 dBµ LED drive
in „Was ist das für ein Bauteil - benötige Ersatz! Bandfilter?“ · HF, Funk und Felder ·
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PDF
LiveDesign_EB_Schematics-xilinx_spartan.pdf
TP5S GJ1S GJ2S U3S (2V50) LM1084IS-ADJ 1 1 +5V 2V50 VCCAUX B 2 2 3 IN OUT 2 B Header 2 Header 2 1 C71S C75S R33S C76S 470uF 16V 10uF 1 120R 1% 10uF GJ3S GJ4S Tant Tant 1 1 2 2 R34S Header 2 Header 2 120R 1% TP8S (1V20) U4S C C +5V LM1084IS-ADJ 1V20 VCCINT 3 IN OUT 2 D2S 1 1 C77S R37S C78S C72S 3 10uF 1 10uF 470uF 16V 2 R38S Tant Tant 470R BAS40-04 Do Not Mount V-232 R31S R30S 10R 4k7 C79S 10uF Tant D D Title NEB - Spartan Power Supply
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vacon-x2c-series-user-s-manual.pdf
Indications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 84 9.3 Resetting a Fault. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 84 9.4 Fault Codes. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „TWIKE - Gedanken zu einem anderen Antriebssystem“ · Offtopic ·
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Datei
display.c
0x80, 0xfe, 0x00 }, // 50 2 { 0x7c, 0x82, 0x02, 0x7c, 0x02, 0x82, 0x7c, 0x00 }, // 51 3 { 0x80, 0x84, 0x84, 0xfe, 0x04, 0x04, 0x04, 0x00 }, // 52 4 { 0xfe, 0x80, 0x80, 0x7c, 0x02, 0x82, 0x7c, 0x00 }, // 53 5 { 0x7c, 0x82, 0x80, 0xfc, 0x82, 0x82, 0x7c, 0x00 }, // 54 6 { 0xfe, 0x84, 0x08, 0x10, 0x20,
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Dokumentation.PDF
D1 DSO-C2/X2.3 17V SMBJ10A-E3 1 D2 DO-41 1N4007 1.0 Ampere General Purpose 1 Rectifier D3 318-07 BZX84C10LT1 Zener Voltage Regulator Diode 1 D4 318-07 BZX84C10LT1 Zener Voltage Regulator Diode 1 D6 LED_0805 blue Typical INFRARED GaAs LED 1 IC1 TSQFP50P1200X1200- STM32F105RB 1 64M IC2 PWP028 DRV8824 1
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OLIMEX-stm32-p107-schematic.pdf
81 PD0 PE0 98 PE1 PD1/OSC_OUT/CAN1_TX 82 PD1 PE1 1 PE2/TRACECK 83 PD2 PE2 2 PD2/TIM3_ETR/UART5_RX 84 PE3 3 PE3/TRACED0 PD3/USART2_CTS 85 PD3 3.3V 3.3V 3.3V PE4 4 PE4/TRACED1 PD4/USART2_RTS 86 USART2_TX PD4 USART2_TX PE5 5 PE5/TRACED2 PD5/USART2_TX 87 USART2_RX PD5 USART2_RX PWDW_D PE6 PE6/TRACED3 PD6
in „Streuung der ADC-Werte beim STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN_Hybrid_Kit_for_HP2_module_V1.1.pdf
PGND Isen IPD144N06NG 20K S 7 1 10n/50V/X7R ES1A D15 C882 UNDER_VOL_DETECTION IPD70N03S4L-04 3 X 1 LM3478MM 4u7/25V/X7R 4 V R GND_DIG1 14 + C883 1SMAVz=15V3G GND_VB GND_DIG1 8 / 15 22u/35V C 2 GND_DIG1 k k k C885 GND_VB 2 1 1 1 4u7/25V/X7R VN8_VB 9 9 9 -8.0V 9 7 R R R R 4 16 VP15_UB 7 5 D16 +15.0V V
in „Linksammlung für Leistungselektronik“ · Mikrocontroller und Digitale Elektronik ·
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dmf5000.pdf
care 6. Application Circuits Following diagrams are the examples of interface circuit with CPU TMPZ84C00P (Z80, CMOS 4MHz). For the interface to 16 bit CPU, please refer the diagram using PPI LSI (TMP82C55). 6.1 Module Located in the Memory Area of CPU The module can be directly connected to CPU data
in „Optrex DMF50126“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dmf5000.pdf
care 6. Application Circuits Following diagrams are the examples of interface circuit with CPU TMPZ84C00P (Z80, CMOS 4MHz). For the interface to 16 bit CPU, please refer the diagram using PPI LSI (TMP82C55). 6.1 Module Located in the Memory Area of CPU The module can be directly connected to CPU data
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PDF
ADC0804_NSC.pdf
voltage level specifications A converters that use a differentialpotentiometric n Works with 2.5V (LM336) voltage reference D ladder— similar to the 256R products. These converters arechip clock generator C designed to allow operation with the NSC800 and INS8080AV to 5V analog input voltage range with
in „Probleme Verständnis ADC 0804-1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7660.pdf
P V = +5V -5 0 0 0 10 20 30 40 50 60 70 80 0 10 20 30 40 50 60 LOAD CURRENT I (mA) LOAD CURRENT I LmA) L FIGURE 7. OUTPUT VOLTAGE AS A FUNCTION OF OUTPUT FIGURE 8. SUPPLY CURRENT AND POWER CONVERSION CURRENT EFFICIENCY AS A FUNCTION OF LOAD CURRENT 5 FN3072.7 October 10, 2005 ICL7660, ICL7660A Typical
in „+5V zu -5V wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7660CPA.pdf
P V = +5V -5 0 0 0 10 20 30 40 50 60 70 80 0 10 20 30 40 50 60 LOAD CURRENT I (mA) LOAD CURRENT I LmA) L FIGURE 7. OUTPUT VOLTAGE AS A FUNCTION OF OUTPUT FIGURE 8. SUPPLY CURRENT AND POWER CONVERSION CURRENT EFFICIENCY AS A FUNCTION OF LOAD CURRENT 5 FN3072.7 October 10, 2005 ICL7660, ICL7660A Typical
in „OPV mit +4,5/-4,5V von einer 9V Batterie betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL7660.pdf
96 A 250 C T F 94 I F 92 E 200 E R O 90 IOUT= 15mA E S R 150 V+ = +2V R 88 U V O N 86 T 100 O U C 84 T E U 50 V+ = 5V W 82 O O V+ = +5V 0 P 80 -55 -25 0 25 50 75 100 125 100 1K 10K TEMPERATURE ( oC) OSC. FREQUENCY f OSC (Hz) FIGURE3. OUTPUT SOURCERESISTANCEAS A FUNCTION FIGURE 4. POWER CONVERSION EFFICIENCY
in „Ladungspumpe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7660.pdf
P V = +5V -5 0 0 0 10 20 30 40 50 60 70 80 0 10 20 30 40 50 60 LOAD CURRENT I (mA) LOAD CURRENT I LmA) L FIGURE 7. OUTPUT VOLTAGE AS A FUNCTION OF OUTPUT FIGURE 8. SUPPLY CURRENT AND POWER CONVERSION CURRENT EFFICIENCY AS A FUNCTION OF LOAD CURRENT 5 FN3072.7 October 10, 2005 ICL7660, ICL7660A Typical
in „Spannungsabfall durch drei Tl074 :-S“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BCM2070_RIN_Datasheet.pdf
a complete lower layer Bluetooth protocol stack, including the Link Controller (LC), Link Manager (LM), and HCI. Major features of the BCM2070 include: • Full support for Bluetooth 2.1 + EDR additional features: - Secure Simple Pairing (SSP) - Encryption Pause Resume (EPR) - Enhance Inquiry Response
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PDF
PPS5330_KM_G_080303.pdf
SEG18 C206 100K SEG19 86 28 SEG19 Mikrocontroller 100n/SMD R206 SEG20 85 29 SEG20 100K 10 VLC1 SEG21 84 30 SEG21 C207 SEG22 83 31 SEG22 100n/SMD R207 82 32 100K 9 VLC2 SEG23 81 33 SEG23 C208 SEG24 80 34 SEG24 100n/SMD R208 8 SEG25 79 35 SEG25 C209 100K VLC3 SEG26 78 SEG26 SEG27 36 SEG27 DR200 100n/SMD
in „Labornetzteil ELV PPS 5330 Fehlerdiagnose“ · Mikrocontroller und Digitale Elektronik ·
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PDF
33120-90017.pdf
8 DIODE- 70V 100MA 04713 MBAV99 CR302-CR303 1902-1541 3 DIODE-ZNR 3.3V 5% TO-236 (SOT-23) 04713 BZX84C3V3 CR401 1902-1541 DIODE-ZNR 3.3V 5% TO-236 (SOT-23) 04713 BZX84C3V3 CR601 1906-0291 DIODE- 70V 100MA 04713 MBAV99 CR701-CR702 1902-1512 2 DIODE-ZNR 7.5V 5% PD=.155W TC=+5.3MV 04713 BZX84C7V5 CR703-
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Metrawatt-MA_5D.pdf
C64 C4 R82 83 D 3 VIO.11 83 G(l5 A~ 1\84...88 D3 VIZ D4 C66,67 C5 R89...92 A2 VB C/D4 15 9 8 7 5 2 101 0 ° 5 104 U b erlouf- 10 3 10 22 12 11 23 13 2 10 2° 4 T BP 1 I 20 T I 1 1 1 V 2 1 V 1 1 V 6 1 V S V 4 4 V 3 4 1151.3 4 1.070 4 11.54 3 ~
in „S: DMM mit dB-Anzeige“ · Markt ·
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PDF
LMC6041.pdf
15V 75 68 62 dB Rejection Ratio V O 2.5V 66 60 min − −PSRR Negative Power Supply 0V ≤ V ≤ −10V 94 84 74 dB Rejection Ratio V = 2.5V 83 73 min O CMR Input Common-Mode V = 5V and 15V −0.4 −0.1 −0.1 V Voltage Range for CMRR ≥ 50 dB 0 0 max V − 1.9V V − 2.3V V − 2.3V V V − 2.5V V − 2.4V min AV Large Signal
in „Alternative zum LMC6041“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Stochino_Power_Amp_300V_us_power.pdf
. Here, positive and negative peak currents of the intermediate stage are I I � 10 100 lk 10k lOOk lM 10M Hz slightly higher and symmetrical than in Fig. 2. The biasing network of the intermediate Fig. S. Simulated frequency response - i.e. magnitude - of the power amplifier in Fig. 3. Test stage is
in „Audio-Endestufe - bitte um Erklärung der Funktion einer Teilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
avrdude.pdf
ATtiny26 t261 ATtiny261 t4 ATtiny4 t4313 ATtiny4313 t44 ATtiny44 t45 ATtiny45 t461 ATtiny461 t5 ATtiny5 t84 ATtiny84 t85 ATtiny85 t861 ATtiny861 t88 ATtiny88 t9 ATtiny9 x128a1 ATxmega128A1 x128a1d ATxmega128A1revD x128a3 ATxmega128A3 x128a4 ATxmega128A4 x128d4 ATxmega128D4 x16a4 ATxmega16A4 x16d4 ATxmega16D4
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
arm.pdf
10n L2L 3.3V power supply 733-334 4 C0 DR127-470-R 3A max. 8IGND4 1 PIGND8 SW PIN101 PIL2PIL202 VCC LM2676S-ADJ 2 0 0K V2V C1 C2C 32 C3 I2 C4C4 R1R1 R2R2 TGL34-33A 10u 100n 100n 4k7 56 0A C0 31 VKV3V3 I1 0 1 30BQ040 P1 C5C5 C1 C6 VA P2 330u C2 330u 2 R3R3 2 V4V4 2k7 KP-2012SGC 1 1 GND GND GND GND GND
in „ARM Board Layout“ · Platinen ·
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PDF
LT1083_LT1084_LT1085_LT.pdf
5 ADJ TA04 Remote Sensing R P (MAX DROP 300mV) V VIN IN LT1083 OUT 5VUT + ADJ 100 F VIN 7 2 25 – 6 LM301A 3 1k + 121 1 + 10 F 8 RL 4 5 F 100pF + 365 25 RETURN RETURN 1083/4/5 ADJ TA07 12 LT1083/LT1084/LT1085 U TYPICAL APPLICATIONS High Efficiency Regulator with Switching Preregulator V 1mH 28VN IN LT1083
in „Aus 12V 5V machen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1085.pdf
5 ADJ TA04 Remote Sensing R P (MAX DROP 300mV) V VIN IN LT1083 OUT 5VUT + ADJ 100 F VIN 7 2 25 – 6 LM301A 3 1k + 121 1 + 10 F 8 RL 4 5 F 100pF + 365 25 RETURN RETURN 1083/4/5 ADJ TA07 12 LT1083/LT1084/LT1085 U TYPICAL APPLICATIONS High Efficiency Regulator with Switching Preregulator V 1mH 28VN IN LT1083
in „LT1085 parallel“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lprp_schematic.pdf
IO_B1_54 IO_B1_82 83 171-0006 165-0001 USB_D5 IO_B1_55 IO_B1_83 M M FB L7 USB_D6 56 IO_B1_56 IO_B1_84 84 USB5VF USB_D0 USB_D7 57 IO_B1_57 IO_B1_85 85 VBUS 1 19 VCC D0 30 58 IO_B1_58 IO_B1_86 86 1 4 D- 2 141-0002 USB_RD 61 IO_B1_61 IO_B1_87 87 D+ 3 USBDM 15 USBDM D1 2 USB_D1 USB_WR 66 IO_B1_66 IO_B1_88
in „ALTERA The Low Power Reference Platform (LPRP) = 19,99€!!“ · Markt ·