#serial IR transceiver
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https://www.futureelectronics.com/p/semiconductors--optoelectronics--infrared-transceivers/tfdu4301-tr3-vishay-5144504
Wireless transceiver, serial IR transceiver, Infrared motion, IR receiver cable
Infrared Transceivers IRDA Transceiver Tinyface mold
#Optoelectronics#Infrared Transceivers#TFDU4301-TR3#Vishay#wireless#serial IR transceiver#Infrared motion#IR receiver cable#IR transmitter receiver circuit#USB infrared#What is a infrared transceiver#Infrared detector#ir transceiver
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Vishay TFBS4711-TT1 in Reel. 115.2 kbps 2.4 - 5.5 V 130 us 1 m Link Side View SMT Serial Infrared Transceiver.
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What is an infrared emitter
I like reading about What is an infrared emitter and learning about IR transceivers and Microchip, SST26VF064B-104I/SM, Flash Memory, Serial NOR Flash (SPI) Memory
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Ip cam hacking
#Ip cam hacking serial#
Spi(cs1): Block:64KB Chip:8MB Name:"MX25L6406E"Ĩ192 KiB hi_sfc at 0:0 is now current device
#Ip cam hacking serial#
When I booted the camera again with my workstation’s serial console at 115200-8-N-1 I got: The main camera board runs at about 50° C. The IR LED board isn’t connected for this measurement. Side note: I’m running this from my Rigol DP832 (full-feature-hacked, of course) which reports the IP camera drawing about 150mA. Of course, my USB-serial converters are not FTDI these days, CH340G in this case. Connecting To the Development Serial PortĪs you can see at the bottom left I found a serial port running a 3.3V levels (checked with my oscilloscope) to which I soldered the yellow-orange-red wires and then connected to a cheap serial-to-USB converter module. Side note: apparently there’s an API for the HI3518 and Googling Hi3518_SDK_V1.0.7.0.tgz will get you an SDK. On the other side there’s the camera itself – you can unscrew the mechanicals to reveal the sensor which is mounted onto the PCB. Also you’ll see a HST-0041 SAR transformer for the wired Ethernet interface, a 25L6406E 64Mbit CMOS serial Flash and a IP101GR Ethernet transceiver. The camera is run by a HiSilicon HI3158 System-On-Chip for IP cameras. So far I’m not too wowed by this whole thing! The WiFi is implemented by a USB board Ty-Rap’ed into the cables at the back. I opened the enclosure up by unscrewing the front cap with the glass in it, teasing out the IR LED assembly, unscrewing the main board (one screw missing – cost reduction!), undoing the strain relief and then teasing out the guts. It’s pretty ironic that just about every embedded device on the planet runs Linux yet, in this case, only Microsoft Windows is supported by the manufacturer for the client. This left me with two options: bin it or reverse engineer this shonky POS. I need it to perform the simple task of serving a JPG through its web interface. I bought a €40 “Anbere” brand IP camera from eBay to find that it can only be used to feed the supplied Microsoft Windows application.
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Sell SI SI4116DY New Stock #SI4116DY SI SI4116DY New Trans MOSFET N-CH 25V 12.7A 8-Pin SOIC N T/R, SI4116DY pictures, SI4116DY price, #SI4116DY supplier ------------------------------------------------------------------- Email: [email protected] https://www.slw-ele.com/si4116dy.html ------------------------------------------------------------------- Manufacturer Part Number: SI4116DY-T1-GE3Pbfree Code: ActiveIhs Manufacturer: VISHAY SILICONIXPart Package Code: SOTPackage Description: SMALL OUTLINE, R-PDSO-G8Pin Count: 8ECCN Code: EAR99Manufacturer: Vishay SiliconixRisk Rank: 0.72Configuration: SINGLE WITH BUILT-IN DIODEDS Breakdown Voltage-Min: 25 VDrain Current-Max (Abs) (ID): 18 ADrain Current-Max (ID): 12.7 ADrain-source On Resistance-Max: 0.0086 ΩFET Technology: METAL-OXIDE SEMICONDUCTORJESD-30 Code: R-PDSO-G8JESD-609 Code: e3Moisture Sensitivity Level: 1Number of Elements: 1Number of Terminals: 8Operating Mode: ENHANCEMENT MODEOperating Temperature-Max: 150 °CPackage Body Material: PLASTIC/EPOXYPackage Shape: RECTANGULARPackage Style: SMALL OUTLINEPeak Reflow Temperature (Cel): 260Polarity/Channel Type: N-CHANNELPower Dissipation-Max (Abs): 5 WQualification Status: Not QualifiedSubcategory: FET General Purpose PowersSurface Mount: YESTerminal Finish: Matte Tin (Sn)Terminal Form: GULL WINGTerminal Position: DUALTime Trans MOSFET N-CH 25V 12.7A 8-Pin SOIC N T/R Shunlongwei Inspected Every SI4116DY Before Ship, All SI4116DY with 6 months warranty. Part Number Manufacturer Packaging Descript Qty MAX5063AASA+MaximHalf Bridge Based MOSFET Driver, 2A, BICMOS, PDSO8, SOIC-8 2498 PCSLTC2054IS5AnalogOperational Amplifier, 1 Func, 3uV Offset-Max, CMOS, PDSO5 4437 PCS170M3514Eaton Corporation Electric Fuse, 160A, 700VAC, 200000A (IR), Inline/holder, 4123 PCSNTCG104BH152KT1TDKSMD 90090 PCSTS942IDTSTSOP-8Ultra-micropower amplifier with CMOS inputs 28896 PCSSP3220ECSIPEXTSOPLine Transceiver, 1 Func, 1 Driver, 1 Rcvr, PDSO16, SSOP-16 41080 PCSM62366GPRENESASSSOPD/A Converter, 1 Func, Serial Input Loading, PDSO20, 20P2E-A 53879 PCSMAX698CPA+MAXIMDIP-8 688 PCSDN32CH432G50BTKYOCERASMD 9090 PCSCLAA101NA0ACWCPTMcd, B/R 10.1 inch, Resolution 1024 250 PCS
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This is the prototype leg microcontroller board. Center is a Microchip dsPIC33EP512GP502 microcontroller. Unfortunately, the only 28-pin PIC microcontroller with built-in CAN is 16-bit so it has no C++ compiler, which means I can't reuse much of my codebase! Upper right is an SN74HC126 Quad Tri-State Buffer which enables the Dynamixel serial line to operate half-duplex. Bottom right is a 2FC256 I2C EEPROM for configuration, and an MCP2551 CAN Transceiver. Connectors on the left, top to bottom, are power, IR Proximity, kill switch, Load Cell Amplifier, ICSP debug, and serial logging port. Connectors on the right, top to bottom, are Dynamixel x 2, Rotary Encoder, CAN x 2. Also on the board are 5v and 3.3v regulators, and a MOSFET switch for Dynamixel power.
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