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INTERFACE_FT2232H.pdf
FT2232H Dual High Speed USB to Multipurpose UART/FIFO IC Datasheet Version 2.6 Document No.: FT_00006Clearance No.: FTDI#77 Future Technology Devices International Ltd FT2232H Dual High Speed USB to Multipurpose
in „LC Filter nach LDO nötig?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_FT2232H.pdf
FT2232H Dual High Speed USB to Multipurpose UART/FIFO IC Datasheet Version 2.6 Document No.: FT_00006Clearance No.: FTDI#77 Future Technology Devices International Ltd FT2232H Dual High Speed USB to Multipurpose
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PDF
DS_FT2232H.pdf
FT2232H Dual High Speed USB to Multipurpose UART/FIFO IC Datasheet Version 2.6 Document No.: FT_00006Clearance No.: FTDI#77 Future Technology Devices International Ltd FT2232H Dual High Speed USB to Multipurpose
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Datei
FT2232H_minimal_D.vhd
fifo_reset, fifo_check, fifo_write, fifo_wait); signal fsm_fifo: fsm_fifo_type:=fifo_reset; type fsm_ft2232h_type is(ft2232h_fetch, ft2232h_write, ft2232h_check, ft2232h_wait, ft2232h_bram_wait); signal fsm_ft2232h: fsm_ft2232h_type:=ft2232h_wait; signal D_out: std_logic_vector(7 downto 0):=(others =>
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TN_167_FIFO_Basics.pdf
FIFO modes. Device FIFO Mode Driver (VCP or D2XX) FT245B/FT245R/FT2232D/FT240X Asynchronous VCP or D2XX FT232H/FT2232H Asynchronous VCP or D2XX FT232H/FT2232H Synchronous D2XX only Table 2.3 Driver Applications 8 Product Page Document Feedback Copyright
in „FT2232H Asyncron FIFO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
("FT2232H NOT FOUND!\n"); //return 0; } ftStatus = FT_Open(FT2232H_found, &FT2232H_ftHandle); if (ftStatus == FT_OK) { if (r==1){ while(READ_ADR < 128){ ftStatus = FT_ReadEE(FT2232H_ftHandle, READ_ADR, &EEPromData
in „FPGA Board mit FT2232H und Spartan7“ · Projekte & Code ·
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AN_165_Establishing_Synchronous_245_FIFO_Communications_using_a_Morph-IC-II.pdf
. The major components of this module are the FTDI FT2232H and an Altera Cyclone II FPGA. The FT2232H is a dual channel USB communications device which converts USB data into a range of different interfaces including UART, Synchronous 245 FIFO, Asynchronous
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Datei
FT2232H_minimal_A.vhd
library IEEE; use IEEE.STD_LOGIC_1164.ALL; use IEEE.NUMERIC_STD.ALL; use ieee.math_real.all; entity FT2232H_minimal_A is Port( clk100: in std_logic; -- FT2232H D: out std_logic_vector(7 downto 0); RXF: in std_logic; TXE: in std_logic; RD: out std_logic; WR: out std_logic; SIWU: out std_logic; CLKOUT: in std_logic; --60MHz FTDI OE: out std_logic; PWRSAV: out std_logic); end FT2232H_minimal_A; architecture Behavioral of FT2232H_minimal_A is component fifo_generator_0 IS PORT( rst : IN STD_LOGIC; wr_clk : IN STD_LOGIC; rd_clk : IN STD_LOGIC; din : IN STD_LOGIC_VECTOR(7 DOWNTO
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Datei
FT2232H_minimal_C.vhd
library IEEE; use IEEE.STD_LOGIC_1164.ALL; use IEEE.NUMERIC_STD.ALL; use ieee.math_real.all; entity FT2232H_minimal_C is Port( clk100: in std_logic; -- FT2232H D: out std_logic_vector(7 downto 0); RXF: in std_logic; TXE: in std_logic; RD: out std_logic; WR: out std_logic; SIWU: out std_logic; CLKOUT:
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Datei
ftd2xx.h
FT_DEVICE; enum { FT_DEVICE_BM, FT_DEVICE_AM, FT_DEVICE_100AX, FT_DEVICE_UNKNOWN, FT_DEVICE_2232C, FT_DEVICE_232R, FT_DEVICE_2232H, FT_DEVICE_4232H }; #ifdef __cplusplus extern "C" { #endif FTD2XX_API FT_STATUS
in „FTDI und plattformunabhängige Programmierung“ · Softwareentwicklung ·
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Datei
FT2232H_minimal_B.vhd
library IEEE; use IEEE.STD_LOGIC_1164.ALL; use IEEE.NUMERIC_STD.ALL; use ieee.math_real.all; entity FT2232H_minimal_B is Port( clk100: in std_logic; -- FT2232H D: out std_logic_vector(7 downto 0); RXF: in std_logic; TXE: in std_logic; RD: out std_logic; WR: out std_logic; SIWU: out std_logic; CLKOUT: in std_logic; --60MHz FTDI OE: out std_logic; PWRSAV: out std_logic); end FT2232H_minimal_B; architecture Behavioral of FT2232H_minimal_B is component fifo_generator_0 IS PORT( rst : IN STD_LOGIC; wr_clk : IN STD_LOGIC; rd_clk : IN STD_LOGIC; din : IN STD_LOGIC_VECTOR(7 DOWNTO
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AN232B-04_DataLatencyFlow.pdf
and hardware designers when changing from a traditional RS232 based solution to one that uses the FT232R, FT2232C (UART mode) or FT232BM USB to serial interface devices. Much of the information in this application note also applies to the FT245R, FT2232C (FIFO mode) and FT245BM USB to parallel FIFO
in „STM32f103 DMA Uart Rx ist zu langsam“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Liste von AVRDUDE Programmierern
Definitions], page 53. There is more detail about each programmer in the AVRDUDE configuration file. 2232hio 2232hio based on FT2232H with buffer and LEDs (TPI, ISP) 4232h FT2232H programmer (TPI, ISP) 89isp Atmel at89isp cable (TPI, ISP) 89isp Atmel at89isp cable (TPI, ISP) abcmini ABCmini Board, aka Dick
in „Arduino Uno Bootloader verwenden“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
ft2232h_fifo.v
module ft2232h_fifo #( parameter dw = 8, parameter aw = 4 ) (/* Interface to FT2232H */ input usb_clk, input ft_full, input usb_offline, output reg [dw-1:0] data2ft, output reg ft_wr_n, output [7:0] ft_debug,
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Datei
AudioInterface.vhd
STD_LOGIC; AD_MCLK : OUT STD_LOGIC; AD_SDOUT : IN STD_LOGIC; AD_SCLK : OUT STD_LOGIC; --- UART PMOD --- FT2232H_TX_PMOD : OUT STD_LOGIC; FT2232H_RX_PMOD : IN STD_LOGIC--; --- UART --- -- FT232R_TX : OUT STD_LOGIC; -- FT232R_RX : IN STD_LOGIC ); --***********************************************************
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
AudioInterface.vhd
STD_LOGIC; AD_MCLK : OUT STD_LOGIC; AD_SDOUT : IN STD_LOGIC; AD_SCLK : OUT STD_LOGIC; --- UART PMOD --- FT2232H_TX_PMOD : OUT STD_LOGIC; FT2232H_RX_PMOD : IN STD_LOGIC--; --- UART --- -- FT232R_TX : OUT STD_LOGIC; -- FT232R_RX : IN STD_LOGIC ); --***********************************************************
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
ft2232h_fifo.v
module ft2232h_fifo #( parameter dw = 8, parameter aw = 4 ) (/* Interface to FT2232H */ input usb_clk, input ft_full, input usb_offline, output reg tx_nextdata, output [dw-1:0] fifo_rd_data, output reg tx_wr,
in „FT2232H in FT245 FIFO Mode - kein Burst möglich“ · FPGA, VHDL & Co. ·
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Datei
cablelist.txt
1500000 for all cable connected cables and max for all on board cables ftdi ftdi 1500000 0x0403:0x6010: ft232h ftdi 1500000 0x0403:0x6014: ft4232h ftdi 1500000 0x0403:0x6011: cm1 ftdi 1500000 0x0403:0x8350: bbv2 ftdi 1500000 0x0403:0x6010::1:0x00:0x10:0x00:0x0 bbv2_2 ftdi 1500000 0x0403:0x6010::2 dlp2232h
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sam7x256.pdf
sam7x256.cfg 1 #daemon configuration 2 telnet_port 4444 3 gdb_port 3333 4 5 #interface 6 interface ft2232 7 ft2232_device_desc "Olimex OpenOCD JTAG ARM-USB-TINY-H" 8 ft2232_layout "olimex-jtag" 9 ft2232_vid_pid 0x15ba 0x002a 10 11 12 #use combined on interfaces or targets that can't set TRST/SRST separately
in „AT91SAM7X265 fabrikneu starten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sam7x256.pdf
sam7x256.cfg 1 #daemon configuration 2 telnet_port 4444 3 gdb_port 3333 4 5 #interface 6 interface ft2232 7 ft2232_device_desc "Olimex OpenOCD JTAG ARM-USB-TINY-H" 8 ft2232_layout "olimex-jtag" 9 ft2232_vid_pid 0x15ba 0x002a 10 11 12 #use combined on interfaces or targets that can't set TRST/SRST separately
in „AT91SAM7X startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
program_cfg_program_script_debug_cfg_debug_script.txt
######################## #daemon configuration telnet_port 4444 gdb_port 3333 #interface interface ft2232 ft2232_device_desc "Olimex OpenOCD JTAG TINY A" ft2232_layout jtagkey ft2232_vid_pid 0x15BA 0x0003 jtag_speed 2 jtag_nsrst_delay 200 jtag_ntrst_delay 200 #use combined on interfaces or targets that
in „probleme beim debuggen. brauche dringend hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan eines CY7C65632 Mikrocontrollers
U$1 CY7C65632 VCC_A 5*3 DD-1 3 FT600_D_N VCC_D 27 DD+1 4 FT600_D_P 25 OVR#1 28 VREG 10 XIN 6 DD-2 FT2232H_D_N 11 XOUT 7 DD+2 FT2232H_D_P 24 OVR#2 17 RESET 12 DD-3 23 SELFPWR 13 DD+3 18 TEST/I2C_SCL OVR#3 20 PWR#/I2C_SDA 26 GND 1 D- 2
in „USB-Hub funktioniert nicht.“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Datei
UM-FT2232H.xml
ÿþ< ? x m l v e r s i o n = " 1 . 0 " e n c o d i n g = " u t f - 1 6 " ? > < F T _ E E P R O M > < C h i p _ D e t a i l s > < T y p e > F T 2 2 3 2 H < / T y p e > < / C h i p _ D e t a i l s > < U S B _ D e v i c e _ D e s c r i p t o r > < V I D _ P I D > 0 < / V I D _ P I D > < i d V e n d o r > 0 4 0 3 < / i d V e n d o r > < i d P r o d u c t > 6 0 1 0 < / i d P r o d u c t > < b c d U S B > U S B 2 . 0 < / b c d U S B > < / U S B _ D e v i c e _ D e s c r i p t o r > < U S B _ C o n f i g _ D e s c r i p t o r > < b m A t t r i b u t e s > < R e m o t e W a k e u p E n a b l e d > f a
in „MachXO2 USB-Programmieradapter - Billige Alternative oder unbrauchbar?“ · FPGA, VHDL & Co. ·
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Datei
ft2232h_controller.v
module ft2232h_fifo_controller ( //fifo of our design fifo_clk, fifo_re, fifo_q, fifo_empty, fifo_usew, // FT fifo ft_clk, // INPUT! ft_wr, ft_rd, ft_oe, ft_data_in, ft_full ); output wire fifo_clk; output reg
in „Empfehlenswerte Chips zur FPGA <-> PC Kommunikation über USB“ · FPGA, VHDL & Co. ·
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Datei
PokeFlash.cpp
entry point for the console application. // #include <iostream> using namespace std; #include <windows.h> #include <stdio.h> #include <tchar.h> #pragma comment(lib, "FTD2XX.lib") #include "FTD2XX.h" #define DEV_DESC "Dual RS232-HS B" //"FT2232H MiniModule A" #define BUFSIZE (4*1024*1024) // 4MB - huge buffer to hold all the commands that are sent down the USB to the FT2232H #define BLOCKSIZE (8*1024) // We read/write chunks of 8kb to the cart #define NBLOCKS ((512*1024) / BLOCKSIZE) #define N_WAIT_CYCLES 96 // How many wait cycles for byte programming? #define FLASH_RESET
in „SPI mit FT2232H“ · Mikrocontroller und Digitale Elektronik ·
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PDF
811EVBK.pdf
prevents in-circuit programming and debugging. USB Device Controller Functions Device Overview An FT2232 device from Future Technology Devices International Ltd manages USB-to-serial conversion. The FT2232 is factory configured by Luminary Micro to implement a JTAG/SWD port (synchronous serial) on channel
in „Luminary Evalution Board als ARM JTAG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STMxx-Discovery-Versaloon-How2.pdf
//www.versaloon.com/bbs/viewtopic.php?p=43#p43 I just modified openocd_update , and added --enable-ft2232_libftdi to the "./configure" around line 80 , so i had support for both hw dongles. [code] ./configure --enable-vsllink --enable-ft2232_libftdi --enable-maintainer-mode [/code] You will need "libftdi devel" installed on your distro (>= 1.17 is needed for FT2232H) http://www.intra2net.com/en/developer/libftdi/ On Ubuntu just use Synaptic , and you'll get >= 1.17 SW: 1: Start OOCD sudo openocd -f interface/signalyzer-lite.cfg -f target/stm32.cfg 2: telnet
in „Use your STMxx-Discoveryboard as JTAG (SWD)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_FT232H.pdf
correlates the CLK signal with a return clock RTCK. This is a technique used by ARM ® processors. The FT232H will assert the TCK line and wait for the RTCK to be returned from the target device to GPIOL3 line before changing the TDO (data out line). TDO TCK GPIOL3 RTCK ARM CPU FT2232H Figure 4.15 Adaptive
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ESP32-PROG_V2.1.pdf
C25 U2 LD1117S33CTR VDD3V3 0.1uF/25V(10%) U1 4 9 1 3 6 2 3 4 5 ESP_EN 2 NC VCC J L 1 2 3 1 2 3 4 16 FT_TCK 4 A 3 0.1uF/25V(10%) 3 D 2 R1 H L E E E I I I I ADBUS0 17 FT_TDI Y GND VIN / VOUT 4 2.2K(1%) P V R R R C C C C ADBUS1 18 FT_TDO MC74VHC1GT04DF D Tab VDD3V3 V C C C C C C C ADBUS2 FT_TMS ESP_EN_N
in „ESP32-WROVER-E / ESP32-D0WD-V3 Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ESP32-PROG_V2.1.pdf
C25 U2 LD1117S33CTR VDD3V3 0.1uF/25V(10%) U1 4 9 1 3 6 2 3 4 5 ESP_EN 2 NC VCC J L 1 2 3 1 2 3 4 16 FT_TCK 4 A 3 0.1uF/25V(10%) 3 D 2 R1 H L E E E I I I I ADBUS0 17 FT_TDI Y GND VIN / VOUT 4 2.2K(1%) P V R R R C C C C ADBUS1 18 FT_TDO MC74VHC1GT04DF D Tab VDD3V3 V C C C C C C C ADBUS2 FT_TMS ESP_EN_N
in „LC Filter nach LDO nötig?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
avrdude.pdf
communicate through the USB, using libusb as a platform abstraction layer. The avrftdi adds support for the FT2232C/D, FT2232H, and FT4232H devices. These all use the MPSSE mode, which has a specific pin mapping. Bit 1 (the lsb of the byte in the config file) is SCK. Bit 2 is MOSI, and Bit 3 is MISO. Bit 4 usually
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schemath.txt
FT7B FT77 FT101/ZD FT200 YAESU: FT211RH FT250 FT290R FT290R2 FT221R FT225RD FT227R FT230R FT270R/RH YAESU: FT301D FT411 FT470 FT480 FT707 FT708 FT720 FT736 FT780R YAESU: FT747GX FT757GX FT901DM FT2311R FT2400H FT2700RH FTCPU2500R FT4700RH YAESU: FTDX400 FTDX500 ZODIAC GEMINI ZELFBOUW: ELECTUUR 23CM RT70 TRANSVERTER: CQ-PA PE1CMO ELECTUUR : 2-70 PA0ERW : 2-6/2-10 PA2HKR : 10-2 10-70 PE1CMO : 2-50 PE0SHF
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PDF
KS8863MLL_FLL_RLL_DEMO_BOARD_V1.pdf
EEDATA SI/WUB 26 47 TEST PWREN# 41 D JP3 N D D D D G N N N N R191 A G G G G 1K 5 9 8 5 4 U18 4 1 2 3 FT2232 ( SPI PINOUT ) SPIQ A A CONFIDENTIAL & PROPRIETARY Title KSZ8863FLL/MLL/RLL DEMO BOARD Size Document Number Rev Device Configuration 1.0 Date: Wednesday, August 10, 2011 Sheet 3 of 9 5 4 3 2 1 5
in „KSZ8863RLL Paketverlust“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USB_Read_EXT_UART_FT2232H_8MBaud_Right_new.py
wurden data = ser.read(1000000) if len(data) > 0: sr.extend(data) ser.close() aufnahme = open("UART_FT2232H_8MBaud_Signals_Right_10s.bin",'wb') aufnahme.write(sr) aufnahme.close()
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
USB_Read_EXT_UART_FT2232H_8MBaud_Left_new.py
) if len(data) > 0: sr.extend(data) ser.close() aufnahme = open("UART_testtest5.bin",'wb') #("UART_FT2232H_8MBaud_Signals_Left_10s.bin",'wb') aufnahme.write(sr) aufnahme.close() # In[ ]:
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
Devices.txt
IRF620 2 IRF1404_GATE 2 IR2308S 2 IPS022G 2 IND 2 ILD74 2 ICL762PD 2 HM44HS 2 HCPL-901JWIDE 2 HC49U-H 2 GMSTBV3 2 GF1 2 G6C-1117P 2 G2R2 2 G2R 2 FUSETE5 2 FUSEBLANK_5X20MM 2 FT245RL 2 FT245BM 2 FE20-2 2 FE10-2 2 FE07-1 2 FE05-2W 2 FDN302P 2 F15HDHS 2 ES2D 2 ENCODER 2 EL-BI25-10AXIAL 2 EI48-1 2 EI38-1
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Bauteile_verkauf_1120C.pdf
Bauteile Stand 19.11.20 Bauteil Verfügbare Menge VB /Stück. USB: FT245AM FTDI TQFP 4 (Tape) 1,- FT2232C FTDI TQFP 2 (Tape) 1,- VNC1L-1AFTDI Vinculum 2 (Tray) 8,- PDIUSBD12D stand alone USB Contr. 5 (Tube) 2,- ISP1581 (Highspeed USB stand alone) QPF64 9 (ESD-Folie, Tape
in „[V] ICs, Mikrocontroller etc. aus Lagerräumung“ · Markt ·
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PDF
JTAGkey2_clone_clone_rev1.pdf
2013BC-BE Note4: D3 is TOSHIBA TLYE1002 5 5 Note5: D4 is TOSHIBA TLGU1002 based on 20110601 Rev.1 Added FT2232 ThroughMode SW(for Lattice ispVM) http:///www.amontec.com/amontec_jtagkey_flyer_diagram.pdf Title and Amontec JTAGkey2 Compatible Circuit (1.65-5VSupport) http://emmie.koka-in.org/~kensyu/handicraft
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PDF
Bauteile_verkauf_1120.pdf
Bauteile Stand 18.11.20 Bauteil Verfügbare Menge VB /Stück. USB: FT245AM FTDI TQFP 4 (Tape) 1,- FT2232C FTDI TQFP 2 (Tape) 1,- VNC1L-1AFTDI Vinculum 2 (Tray) 8,- PDIUSBD12D stand alone USB Contr. 5 (Tube) 2,- ISP1581 (Highspeed USB stand alone) QPF64 9 (ESD-Folie, Tape
in „[V] ICs, Mikrocontroller etc. aus Lagerräumung“ · Markt ·
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PDF
SCH_ESP32-Ethernet-Kit_A_V1.2_20200528.pdf
Switch 5V-3.3V IP101GRI MAC RESET_N 5V ESP32 JTAG D+/D- Module B USB USB-UART B CNN USB-JTAG TX/RX (FT2232H) LED*2 DTR/RTS Auto EN+IO0 IO0+EN Prog Key*2 ESP32-ETHERNET-KIT_A A A Title <ESP32-Ethernet-Kit_A> SizePage Name Rev A3 <01 : DesignBlock> V1.2onfidential and Proprietary Date: Thursday, May 28,
in „Arduino Library für Netzwerkchip W5500?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MachXO2BreakoutBoardEvaluationKitUsersGuide.pdf
Interfaces Schematic Component/Interface Type Reference Description Circuits USB Controller Circuit U2: FT2232H USB-to-JTAG interface and dual USB UART/FIFO IC USB Mini-B Socket I/O J7:USB_MINI_B Programming and debug interface Components U3: LCMXO2- LCMXO2 FPGA 7000HE-4TG144C 7000-LUT device packaged in
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
Teile1.pdf
€ 1 Reichelt Hauptteil 9,80 € 1 Stück 9,80 € 1 Platine LA 5,00 € 1 Stück 5,00 € 48,47 € USB 1 USB FT2232L Segor 6,38 € 1 Stück 6,38 € 1 Eprom 93LC56B/SN-ND Segor 0,53 € 1 Stück 0,53 € 1 Tantal Elko B/10V C/16V Segor 0,21 € 1 Stück 0,21 € 1 Induktivität 3,3µH 1206 Würth 0,40 € 1 Stück 0,40 € 1 Multiplexer
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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PDF
USB_Port.pdf
Typ B PCB Rule FDC638 P PCB Rule D? L X2 D? i USB_5V i BYM13-40 L 1 L? USB_5V E VBUS A T C? C? 22uH C? C? C? BYM13-40 C? A S 4 100n 1n 100n 1n 10u Soft Start 100n +5V T GND Parameter SetKer. Ker. Ker. Ker. Ker. T FIL? R? I i N d D- 2 4 DI- DO- 3 10k H i USB_GND L? C S D+ 3 6 DI+ DO+ 1 BLM21AH102SN1D
in „USB Spannung zu hoch?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Teile1.pdf
€ 1 Reichelt Hauptteil 9,80 € 1 Stück 9,80 € 1 Platine LA 5,00 € 1 Stück 5,00 € 48,47 € USB 1 USB FT2232L Segor 6,38 € 1 Stück 6,38 € 1 Eprom 93LC56B/SN-ND Segor 0,53 € 1 Stück 0,53 € 1 Tantal Elko B/10V C/16V Segor 0,21 € 1 Stück 0,21 € 1 Induktivität 3,3µH 1206 Würth 0,40 € 1 Stück 0,40 € 1 Multiplexer
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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PDF
FTDI_UM245R_Parallel_auf_USB.pdf
AVCC filter will substantially reduce the bill of materials cost for USB interface designs using the FT245R compared to its FT245BM predecessor. Enhanced Asynchronous Bit Bang Mode with RD# and WR# Strobes - The FT245R supports FTDI’s BM chip bit bang mode. In bit bang mode, the eight parallel FIFO data
in „FT245R sporalischer Initialisierungsfehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
audio_decode_14.py
matplotlib.pyplot as plt fig, (ax1, ax2, ax3, ax4) = plt.subplots(4, sharex=True) filename = "UART_FT2232H_8MBaud_Signals_Left.bin" bytesperpacket = 14 sample_rate = 32000 #Format: #0AAAAAA1 #AAAAAAA0 #AAAAAAA0 #AAAABBB0 #BBBBBBB0 #BBBBBBB0 #BBBBBBB0 #0CCCCCC0 #CCCCCCC0 #CCCCCCC0 #CCCCDDD0 #DDDDDDD0
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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PDF
spartan7.pdf
C82 C81 K10 K10_VCCAUX 3.3V VBUS 1 F O 2 GNDV FT232H_USB-_1 7 D- ACBUS5 32 L10N E13 E13_IO_L10N_T1_D15_14 D5A D2 E6 3.3V M7 C32 2 E1 L R FT232H_USB-_1 IC1 33 D2_IO_L10N_T1_34 E6_GND GND M7_M0_0 6 6 B D- R F 1 ACBUS6 GND GND L11P D14 L9 L9_VCCAUX R 5 R 5 U$2 S D+ 3 3 R FT232H_USB+_1 FT2232HL ACBUS7 34 D14_IO_L11P_T1_SRCC_14 D4A D1 E8 GND M8 470n U 4 6 _ FT232H_USB+_1 8 D1_IO_L11P_T1_SRCC_34 E8_GND 3.3V N6 M8_M1_0 SPI_CS 1 8 6 . ID 5 10 0 0 D+ L11N C14 N6_VCCO_0 R5 CS#
in „FPGA Board mit FT2232H und Spartan7“ · Projekte & Code ·
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Elektronikladen07.pdf
interne Funktion des FT232BM nahezu identisch mit dem FT245BM. Auch das PC-seitige Handling (Treibermodell, Virtueller COM-Port) ist für beide Varianten gleichartig. DLP-2232M: UNIVERSELLES DIP40 USB-INTERFACEMODUL MIT ZWEI
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mlaUSBCsz.pdf
3v3OUT ADBUS1 GND GND ADBUS2 22 USBD2 1 C204 HDR3 GND ADBUS3 21 USBD3 TCK 1 K16 2 27 R202 8 USBDM FT2232C ADBUS4 20 USBD4 TDO 2 3 ADBUS5 19 USBD5 3 4 U5 27 R203 7 USBDP ADBUS6 17 USBD6 5 USBD7 6 ADBUS7 16 1.5K R204 GND USB5V 5 15 TCK USB5V RSTOUT# ACBUS0 USB5V GND 220 R205 13 TDO ACBUS1 74HC4053 4 12
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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USB_Port.pdf
C? BYM 13-40 BYM13-40 T GND 4 100n DSS306 +3V3 100n T 50V Ker. Ker. I USB_GND PCB Rule N D- 2 T? i H e C h 3 FDC342P +5V S S D+ C? B 5 S 220n U Ker. USB_GND C? R? 100n C? R? 10k Ker. 100n 1k Ker. AD_5V R? C? USB_GND USB_GND 8k2 100n Ker. R? GND GND 1k 2x QTLP650D-2 C? C? +5V +5V B 100n C? RN?D RN?D
in „FT232: "Bus Powered" + eigene 3V3 Versorgung“ · Mikrocontroller und Digitale Elektronik ·