-
PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
G C905 R9 09001 R I R I I04.3 R I I R9032R9o56IRgoss R914O n RD00E RC014 R903 R902 Ü ¬ OS1 t O U T 10 U C9012 05 680 2 e g_ 90 ceoos SP2 ¦ C8006 C9007 U5 C90N9 129037 +65V š_EE1< 3301-1 802 90 390R 4 U AmK L2 08 77 1RF _ 2?? E804 ¦ 10;, EW 0_10r C9010 43 C u :.1 ____ <3 R9_ ' 09041 Q 3 6BR OOR L? L?
-
PDF
Datasheet_SHT3x_DIS.pdf
maximal tolerance maximal tolerance typical tolerance ±6 ±6 typical tolerance ±4 ±4 ±2 ±2 ±0 ±0 0 10 20 30 40 50 60 70 80 90 100 0 10 20 30 40 50 Relative Humidity (%RH) SHT30 Relative Humidity (%RH) SHT31 Figure 2 Tolerance of RH at 25°C for SHT30. Figure 3 Tolerance of RH at 25°C for SHT31. DRH (%
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt ·
-
PDF
bh1745nuc-e-519994.pdf
MODE_CONTROL2(42h)=12h, No input light RGBC Data Update Period TINT - 160 225 msec MODE_CONTROL2(42h)=10h INT Output ‘L’ Voltage VINTL 0 - 0.4 V IINT = 3mA SCL SDA Input 'H' Voltage V IH 1.26 - - V SCL SDA Input 'L' Voltage V - - 0.54 V IL SCL SDA Input 'H'/’L’ Current IIHL -10 - 10 µA I C SDA Output 'L
in „Farbsensor BH1745NUC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR_ATmega_328PB.pdf
by writing a regular START value TWCRn=1x10x10x. A STOP condition is generated by writing a value of the type TWCRn=1x01x10x. After a repeated START condition (status code 0x10), the 2-wire Serial Interface can access the same Slave again, or
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
C2053 C1710 C1709 C1717 C1716 C1715 C1714 C1713 C1712 C1711 C1726 C1725 C1724 AB_A6 R8 A6 CD_A6 R8 A6 10u 10u 100n 100n 100n 100n 100n 100n 100n 100n 100n 100n 100n 100n R2 A7 DQL0 E3 R2 A7 DQL0 E3 10V 10V 10V 10V 10V 10V 10V 10V 10V 10V 10V 10V 10V 10V AB_A7 T8 F7 B_DQL0 CD_A7 T8 F7 D_DQL0 AB_A8 R3 A8
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
m16def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „avra woher die ***def.inc dateien nehmen?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
m16def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „ATMega16 mehrere Taster an INT0“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Preisliste_deutsch_0509_2.pdf
Intelligente JX2-Module JX2-PID1 dig. PID-Regler-Modul mit 4 analogen Eingängen 10000105 595,00 0-10V, ±10V (12 Bit) und 4 analogen Eingängen 0(4) - 20 mA (12 Bit), 4 analoge Ausgänge 0-10V, ±10V (12Bit), 4 PWM Ausgänge, 4 interne PID-Regelkreise JX2-PROFI1 Profibus DP Slave, 12 Mbit/s, 10000251 405,00
in „Siemens Logo“ · Haus & Smart Home ·
-
PDF
1LTC2641_2642.pdf
Unipolar Mode (LTC2641) l 11 14.8 kΩ Bipolar Mode (LTC2642) l 8.5 11.4 kΩ Dynamic Performance—V OUT SR Voltage Output Slew Rate Measured from10%to 90% 15 V/μs Output Settling Time To ±0.5LSB of FS 1 μs DAC Glitch Impulse Major Carry Transition 0.5 nV•s Digital Feedthrough Code = 0000hex; NCS = DD; 0.2
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Configuration.h
FRONT of the Nozzle has a Negative Y offset * * Some examples: * #define NOZZLE_TO_PROBE_OFFSET { 10, 10, -1 } // Example "1" * #define NOZZLE_TO_PROBE_OFFSET {-10, 5, -1 } // Example "2" * #define NOZZLE_TO_PROBE_OFFSET { 5, -5, -1 } // Example "3" * #define NOZZLE_TO_PROBE_OFFSET {-15,-10, -1 } //
in „Custom 3D-Drucker zu ausgebuchtete Ecken“ · Mechanik, Gehäuse, Werkzeug ·
-
PDF
mcp6004.pdf
Characteristics: Unless otherwise indiAated, T, VDD = +1.8 to 5.5VSS= GND, V CM = VDD/2, VOUT ≈ VDD/2, L = 10 kΩ toDD/2, and L = 60 pF. Parameters Sym Min Typ Max Units Conditions AC Response Gain Bandwidth Product GBWP — 1.0 — MHz Phase Margin PM — 90 — ° G = +1 Slew Rate SR — 0.6 — V/µs Noise Input Noise Voltage
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
slaa074.pdf
--------------------------------- Task_10ms mov.b TStat_10ms,R5 mov.b Tbl_10ms(R5),R5 add R5,PC Tbl_10ms .byte T1-Tbl_10ms ; Task 1 .byte T2-Tbl_10ms ; Task 2: dco control .byte T3-Tbl_10ms ; Task 3 .byte T4-Tbl_10ms ; last task ;-----------
in „MSP430 CPU Takt erhöhen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LGT8F328P.pdf
, TC1 Standby using a 10-bit prescaler CPS1, TC3 independently uses the prescaler CPS3. The following description is used for TC0, TC1 and TC3, where n represents 0, 1 or 3. rcm2x 10-bit Clock 10-bit Clock Prescaler 310 clkio
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
avra_test_list.txt
UBRR8 = 0 ; USART Baud Rate Register bit 8 .equ UBRR9 = 1 ; USART Baud Rate Register bit 9 .equ UBRR10 = 2 ; USART Baud Rate Register bit 10 .equ UBRR11 = 3 ; USART Baud Rate Register bit 11 ;.equ URSEL = 7 ; Register Select ; ***** PORTA ************************ ; PORTA - Port A Data Register .equ PORTA0
in „AVR mit Linux Programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN0177V3-MGRT_MX25L12836E_45E_35E_to_35F.pdf
NC PO1 PO1 NC 5 12 NC PO4 PO4 NC NC PO0 PO0 NC 6 11 NC PO3 PO3 NC CS# CS# CS# CS# GND GND GND GND 7 10 SO/SIO1 SO/SIO1/PO7 SO/SIO1/PO7 SO/SIO1 8 9 WP#/SIO2 WP#/SIO2 WP#/SIO2 WP#/SIO2 8-WSON MX25L12835E MX25L12836E MX25L12845E MX25L12835F MX25L12835E MX25L12836E MX25L12845E MX25L12835F (8x6mm) (8x6mm)
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
-
PDF
CP7-Sunshine.pdf
capacity is detected by a thermopile (Figure 7.9 (b)). A bimetallic pyranograph is shown in Figure 7.10. The radiation-sensing element (in the upper right of the figure) consists of two pairs of bimetals, one painted black and the other painted white, placed in opposite directions (face up and face down
in „Sonnenscheindauer Sensor selber bauen Eigenbau ATmega Assembler“ · Projekte & Code ·
-
Datei
main.c
DCMI_D6 PE6 ------> DCMI_D7 PG13 ------> ETH_TXD0 PG11 ------> ETH_TX_EN PC11 ------> SDMMC1_D3 PC10 ------> SDMMC1_D2 PD3 ------> DCMI_D5 PG9 ------> DCMI_VSYNC PD2 ------> SDMMC1_CMD PA10 ------> USB_OTG_FS_ID PH14 ------> DCMI_D4 PI0 ------> S_TIM5_CH4 PC9 ------> I2S_CKIN PA8 ------> RCC_MCO_1 PC8
in „Probleme beim Debuggen mit SW4STM32 und und F7Disco“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSL21084.pdf
switch-off supply voltage 9.5 10 10.5 V CC(swoff)reg V CC(reg)hys regulator supply voltage hysteresis CC(swoff)regVCC(swon)reg 0.3 - - V V CC(regswon-stop)upply voltage difference between VCC(swon)regVCC(stop) 0.3 - - V regulator switch-on
in „LED Leuchte 230V - Nur jede 2te LED defekt?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
tlv571.pdf
SMALL-OUTLINE PACKAGE 16 PINS SHOWN 0.050 (1,27) 0.020 (0,51) 0.014 (0,35) 0.010 (0,25) M 16 9 0.419 (10,65) 0.400 (10,15) 0.299 (7,59) 0.010 (0,25) NOM 0.293 (7,45) Gage Plane 0.010 (0,25) 1 8 0⋅–8⋅ 0.050 (1,27) A 0.016 (0,40) Seating Plane 0.104 (2,65) MAX 0.012 (0,30) 0.004 (0,10) 0.004 (0,10) PINS *
in „EEPROM beschreiben ohne MC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP3221.pdf
V = 5V 90 DD 80 80 70 70 ) B d 60 V = 2.7V ( 60 ( 50 DD D 50 VDD= 2.7V N 40 A S I 40 30 S 30 20 20 10 10 0 0 1 10 1 10 Input Frequency (kHz) Input Frequency (kHz) FIGURE 2-20: SNR vs. Input Frequency. FIGURE 2-23: SINAD vs. Input Frequency. 0 80 -10 VDD= 5V 70 -20 -30 ) 60 B B 50 ( -40 VDD= 5V ( VDD=
in „Suche Bauteilbezeichnung 5-Pin SOT-23 mit "S1SD" Marking“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
src.txt
div> <hr style="clear: both;" /> <div class="post-vote-links noprint" style="float:right; font-size: 10px;"> Lesenswert? <table><tr> <td><span class="score">•</span></td> <td> <a class="up" rel="nofollow" data-remote="true" href="/topic/vote_post?id=7363113&rating=1"><span class="arrow-down">▲
in „Verweis/Referenzierung zu anderen Beiträgen“ · www.mikrocontroller.net ·
-
PDF
XC4000.pdf
of Field-Programmable Gate Arrays Device XC4002A 4003/3A 4003H 4004A 4005/5A 4005H 4006 4008 4010/10D 4013/13D 4020 4025 Appr. Gate Count 2,000 3,000 3,000 4,000 5,000 5,000 6,000 8,000 10,000 13,000 20,000 25,000 CLB Matrix 8 x 8 10 x 10 10 x 10 12 x 12 14 x 14 14 x 14 16 x 16 18 x 18 20 x 20 24 x
in „Xilinx XC4006“ · FPGA, VHDL & Co. ·
-
PDF
samsungRCProtokoll.pdf
becomes to unknown state. 40 File 4 4F : Not built-in chip 7F Figure 1-11. KS51840 Data Memory Map 1-10 KS51840 REGISTER DESCRIPTIONS Stack Register (SR) Three levels of subroutine nesting are supported by a three-level stack as shown in Figure 1-13. Each subroutine call (CALL) pushes the next PA and PC
in „37.47kHz Rechteck erzeugen mit 7.3728MHz Quarz, welcher Timer Modus?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADT7420.pdf
active low comparator interrupt. Open-drain configuration. A pull-up resistor is required, typically 10 kΩ. 10 CT Critical Overtemperature Indicator. Logic output. Power-up default polarity is active low. Open-drain configuration. A pull-up resistor is required, typically 10 kΩ. 11 GND Analog and Digital
in „STM32F4 mit I2C-Sensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
vds_2005_web_1_.pdf
Kennzeichen oder Kennzeichnung mit (alt)....................................................................10 5.10 Kennzeichen ............................................................................................................................10 5.11 Kennzeichen , oder (alt)............................................................................................10 5.12 Kennzeichen .....................................................................................................................10 5.13 Kennzeichen .............................................
-
PDF
LP2950-D.PDF
°C V m 80 A 2.0 ( 1000 T TA= 75°C G E N 100 Unstable Region 100 mF R 60 0 H s U C h C G o( 10 Stable Region 0.1 mF U T SR T 40 - 2.0 O E O T 1 ,t U Unstable Region for 0.1 mF capacitor only Vo20 - 4.0 T LP2951CN O 0.1 Lower unstable region is for 0.1 mF only. 0 - 6.0 1 mF and 100 mF show no instability
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LP2950_LP2951.pdf
°C V m 80 A 2.0 ( 1000 T TA= 75°C G E N 100 Unstable Region 100 mF R 60 0 H s U C h C G o( 10 Stable Region 0.1 mF U T SR T 40 - 2.0 O E O T 1 ,t U Unstable Region for 0.1 mF capacitor only Vo20 - 4.0 T LP2951CN O 0.1 Lower unstable region is for 0.1 mF only. 0 - 6.0 1 mF and 100 mF show no instability
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
-
PDF
MB1137.pdf
101 P0U8A0101 14 PB9 P0STLK0TX SB6 P0SB601 P0SB602 USART3_RX PD9 78 P0U8B078 21 PF9 USB_VBUS SB125 PA10 1020 PA9 PB9 P0U8A699 PB100PB10 STLK_TX PD100PD10 79 PD9 PF9 P0U82022 PF100PF10 USB_ID P0USB0ID P0SB12501 P0SB12502 P0U8A010PA10 PB10 P0U8B07PD10 PF10 SB133 Closed PA1 N0PA11 103 P0U8A0103 P0U8A700 PB110PB11
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CM6206_Datasheet_v2.1_en.pdf
W Gpio12 output enable 13 GPIO11_o R/W Gpio11 signal 12 GPIO11_OEN R/W Gpio11 output enable 11 GPIO10_o R/W Gpio10 signal 10 GPIO10_OEN R/W Gpio10 output enable 9 GPIO9_o R/W Gpio9 signal 8 GPIO9_OEN R/W Gpio9 output enable 7 GPIO8_o R/W Gpio8 signal 6 GPIO8_OEN R/W Gpio8 output enable 5 GPIO7_o R/W
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCA9685.pdf
OFF_H[4] R/W 1* LED9 full OFF 3:0 LED9_OFF_H[3:0] R/W LEDn_OFF count for LED9, 4 MSBs 0000* 2Eh LED10_ON_L 7:0 LED10_ON_L[7:0] R/W 0000 0000* LEDn_ON count for LED10, 8 LSBs 2Fh LED10_ON_H 7:5 reserved R 000* non-writable 4 LED10_ON_H[4] R/W 0* LED10 full ON 3:0 LED10_ON_H[3:0] R/W 0000* LEDn_ON count for LED10, 4 MSBs 30h LED10_OFF_L 7:0 LED10_OFF_L[7:0] R/W 0000 0000* LEDn_OFF count for LED10, 8 LSBs 31h LED10_OFF_H 7:5 reserved R 000* non-writable 4 LED10_OFF_H[4] R/W 1* LED10 full OFF 3:0 LED10_OFF_H[3:
in „LED-Streifen dimmen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
cm6206_2_3.pdf
W Gpio12 output enable 13 GPIO11_o R/W Gpio11 signal 12 GPIO11_OEN R/W Gpio11 output enable 11 GPIO10_o R/W Gpio10 signal 10 GPIO10_OEN R/W Gpio10 output enable 9 GPIO9_o R/W Gpio9 signal 8 GPIO9_OEN R/W Gpio9 output enable 7 GPIO8_o R/W Gpio8 signal 6 GPIO8_OEN R/W Gpio8 output enable 5 GPIO7_o R/W
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
cm6206_2_3.pdf
W Gpio12 output enable 13 GPIO11_o R/W Gpio11 signal 12 GPIO11_OEN R/W Gpio11 output enable 11 GPIO10_o R/W Gpio10 signal 10 GPIO10_OEN R/W Gpio10 output enable 9 GPIO9_o R/W Gpio9 signal 8 GPIO9_OEN R/W Gpio9 output enable 7 GPIO8_o R/W Gpio8 signal 6 GPIO8_OEN R/W Gpio8 output enable 5 GPIO7_o R/W
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
-
PDF
CM6206_Datasheet__v2.3_1_.pdf
W Gpio12 output enable 13 GPIO11_o R/W Gpio11 signal 12 GPIO11_OEN R/W Gpio11 output enable 11 GPIO10_o R/W Gpio10 signal 10 GPIO10_OEN R/W Gpio10 output enable 9 GPIO9_o R/W Gpio9 signal 8 GPIO9_OEN R/W Gpio9 output enable 7 GPIO8_o R/W Gpio8 signal 6 GPIO8_OEN R/W Gpio8 output enable 5 GPIO7_o R/W
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
combined_comparison.pdf
2.7-5.5V 10 ns (30MHz) tr(I/O)outOutput low to high rise time CL= 50pF, V DD = 2.7-5.5V 10 ns The EXTI controller detects tEXTIpw the pulse width of the 10 ns external signal 3.3.10 NRST pin characteristics Table
-
PDF
53131a_53132a_bedienungsanleitung_deutsch_komprimiert.pdf
C)) (Op tionOOI) (Opti nO010) Tempererature Stabiliy: 6 7 9 (referenced to 25° C)Y <5 × 1 06 <2X × 10 77 <7X X 1 ’79 AgingRateate Per Daay: <4 × W10°8 8 < 5 Xx10 -10 (afte3Odays)s) Pe Month:h: | <3 X 10 | < 7 < 1.5 X 10' 8 <2 x 07Γ 1. x 078 Turn∙on stability vs. time: „7 88 (in 10 minute , re enced to
in „[V] HP/Agilent 53131a/53132a Bedienungsanleitung deutsch“ · Markt ·
-
PDF
dokserv.pdf
4.63) 20 SNR DDS, Gl. (4.66) 10 0 -4 -3 -2 -1 0 10 10 10 10 DDS C10 Abb. 4.25: Signal-Stör-Abstand der Pulse-Output-DDS entsprechend Gl. (4.63) und Gl. (4.66) Gl. (4.63) bzw. Gl. (4.66) können für die Berechnung des Signal-Stör-Abstandes
-
Datei
config-mod-LK511-mt7623n-BPiR2.txt
CONFIG_BLK_DEV_SD=y # CONFIG_CHR_DEV_ST is not set # CONFIG_CHR_DEV_OSST is not set CONFIG_BLK_DEV_SR=y # CONFIG_BLK_DEV_SR_VENDOR is not set # CONFIG_CHR_DEV_SG is not set # CONFIG_CHR_DEV_SCH is not set # CONFIG_SCSI_CONSTANTS is not set # CONFIG_SCSI_LOGGING is not set # CONFIG_SCSI_SCAN_ASYNC is
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
-
PDF
datasheet.pdf
= ± 15 V, T = 25°C CC ± A TL07xM ALL OTHERS PARAMETER TEST CONDITIONS UNIT MIN TYP MAX MIN TYP MAX SR Slew rate at unity gain VI= 10 V, RL= 2 kΩ, 5 13 8 13 V/µs CL= 100 pF, See Figure 1 Rise-time overshoot VI= 20 mV, RL= 2 kΩ, 0.1 0.1 µs r factor CL= 100 pF, See Figure 1 20% 20% Equivalent input noise
in „Experimentieren mit tl071cp“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
A300_PCA9538_NXP.pdf
interrupt and reset 7. Application design-in information VDD (5 V) SUB-SYSTEM 1 10 k 10 k 10 k 10 k 2 k 100 k V DD ( 3) (e.g., temp sensor) V DD MASTER INT CONTROLLER PCA9538 SCL SCL IO0 SDA SDA SUB-SYSTEM 2 IO1 (e.g., counter) INT INT IO2 RESET RESET RESET IO3 VSS A IO4 controlled
in „I²C-I/O-Expander mit TRI-state Output“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
iPhone_4_schem.pdf
PMU C191_PMUC274_PMU C76_PMU IN K3 VDD_VIB O BST_PROT G3 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 IN VDD_LDO_10 K11 VDD_LDO_10 O LX_LED E1 SW_BOOST 1 10% 10% 420%F 20%UF 10% 10% 120% 10% 10% 10% 10% 110% 10% 10% 10% C B BOOST_SENSEP E3 BOOST_SENSE_P 1 2 6.3V 2 6.3V 2 6.3V 2 6.3V 2 6.3V 2 6.3V 2 6.3V 2 6.3V 2 6.3V
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
register (GPIOx_DS_CFG )......................................................................161 7.3.10 GPIO flip rate configuration register (GPIOx_SR_CFG)..................................................................................161 AFIO REGISTERS ..............................................
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Aluminum_Electrolytic_Capacitors_EPCOS.pdf
Capacitance tolerance A Tolerances to which R – 20 %/+ 30 % no other code applies S – 20 %/+ 50 % K ± 10 % T – 10 %/+ 50 % M ± 20 % V – 10 %/+100 % N ± 30 % Y – 0 %/+ 50 % Q – 10 %/+ 30 % Z – 20 %/+ 80 % The climatic category is specified in accordance with IEC 60068–1 (see paragraph 6.4). If there is not
in „Wie lange halten sich verpackte Elkos?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
58L128.pdf
FLOW-THROUGH SYNCBURST SRAM 100-PIN PLASTIC TQFP (JEDEC LQFP) PIN #1 ID +0.03 0.15 -0.02 +0.06 0.32 -0.10 +0.10 22.10 -0.15 0.65 20.10 ±0.10 DETAIL A 0.62 1.50 ±0.10 0.10 14.00 ±0.10 +0.20 16.00 0.25 +0.10 -0.05 0.10 -0.05 GAGE PLANE 1.00 (TYP) 1.40 ±0.05 0.60 ±0.15 DETAIL A MAX NOTE: 1. All dimensions in
in „4GSPS ADC SRAM Speicher“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EN_300744_DVBT.pdf
(dB) (MHz) (dB) (MHz) (dB) (MHz) (dB) (MHz) (dB) 1 -12 -100 -12 -100 -12 -100 -12 -100 -12 -100 2 -10,75 -76,9 -10,75 -76,9 -10,75 -76,9 -10,75 -78,7 -10,75 -72,4 3 -9,75 -76,9 -9,75 -76,9 -9,75 -76,9 -9,75 -78,7 -9,75 -72,4 4 -5,75 -74,2 -5,75 -74,2 -5,75 -70,9 -4,75 -73,6 -4,75 -60,9 5 -5,185 -60,9
in „Frage nach günstiges Pegelmessgerät - Messprinzip über mehrere Frequenzen“ · HF, Funk und Felder ·
-
PDF
AD1937.pdf
Firstclockgeneratedafterthisperiod 0.6 μs tSSH Setup time (stop condition) 0.6 μs tDS Data setup time 100 ns tSR SDA and SCL rise time 300 ns tSF SDA and SCL fall time 300 ns t Bus-free time Between stop and start 1.3 μs BFT DAC SERIAL PORT See Figure 2 tDBH DBCLK high Slave mode 10 ns tDBL DBCLK low Slave mode 10 ns tDLS DLRCLK setup To DBCLK rising, slave mode 10 ns DLRCLK skew From DBCLK falling, master mode −8 +8 ns tDLH DLRCLK hold From DBCLK rising, slave mode 5 ns tDDS DSDATA setup To DBCLK rising 10 ns
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
S8264A_B_C_E.pdf
Temperature (1) CO Pin Sink Current vs. DD (2) CO Pin Source Current vs. VDD Ta = 25 °C Ta = 25 °C 10.0 1000 ] 7.5 ] 700 A μ [ 5.0 [ 500 O O I I 2.5 250 0.0 0 0 5 10 15 20 25 0 5 10 15 20 25 V DD[V] V DD[V] 5. CTL Pin vs. Temperature (1) CTL Pin Threshold Voltage vs. Temperature (2) CTL Pin Input Resistance vs. Temperature V DD= 14 V V DD= 14 V 12.0 14.0 ] 11.5 12.0 [ M T 11.0 L 10.0 H C T R V 10.5 8.0 10.0 6.0 40 25 0 25 50 75 85 40 25 0 25 50 75 85 Ta [C] Ta [C] 26 BATTERYPROTECTIONICFOR2-SERIALTO4-SERIAL-CELLPACK(SECONDARYPROTECTION) Rev.4.7 _00 S-8264A/B/C Series Marking
in „IC-Identifikation: Q5A + KK9“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
xapp143.pdf
instead of 3’b011. The resulting code gives the following usage summary: Design Name: mux81 Date: 8-10-2000, 10:52AM Device Used: XC9536XL-5-PC44 Fitting Status: Successful ************************ Resource Summary ************************ Macrocells Product Terms Registers Function Block Used Used Used
in „Problem in Verilog: Simulation läuft,Fit gibt falsches Desi“ · FPGA, VHDL & Co. ·
-
PDF
CMAC_Xtal.pdf
A133U 24.000140MHz HC49 15/30/10/18Fund XTAL003360 A210A R T U Y 6.55360MHz HC49 20/30/10/12 XTAL003141 A135A 24.5760MHz HC49 20/50/10/30Fund XTAL003386 A223A Q C 7.37280MHz HC49 20/50/10/30 XTAL003329 A194A 32.0MHz HC49 20/30/10/SR3rd
-
PDF
Datasheet_ILI9225DS_V022.pdf
and 262K color ILI9225 8.2. Instruction Descriptions No. Registers Name R/W RS D15 D14 D13 D12 D11 D10 D9 D8 D7 D6 D5 D4 D3 D2 D1 D0 IR Index W 0 x x x x x x x x x ID6 ID5 ID4 ID3 ID2 ID1 ID0 SR Status Read R 0 x x x x x x x L8 L7 L6 L5 L4 L3 L2 L1 L0 00h Driver Code Read R 1 0 0 0 0 0 0 0 1 0 1 1 0 0
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
asm.txt
1a1b subs r3, r3, r0 8000196: 2b06 cmp r3, #6 8000198: d902 bls.n 80001a0 <deregister_tm_clones+0x10> 800019a: 4b04 ldr r3, [pc, #16] ; (80001ac <deregister_tm_clones+0x1c>) 800019c: b103 cbz r3, 80001a0 <deregister_tm_clones+0x10> 800019e: 4718 bx r3 80001a0: 4770 bx lr 80001a2: bf00 nop 80001a4: 20000433
in „NUCLEO-L432KC Blinky Projekt mit 11kB Speicherverbrauch“ · Mikrocontroller und Digitale Elektronik ·