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Part Manufacturer Description Datasheet BUY
CONTROLSUITE Texas Instruments controlSUITE visit Texas Instruments
TRC1300D Texas Instruments Marcstar(TM) Remote Control Encoder /Decoders 14-SOIC visit Texas Instruments
TRC1315DR Texas Instruments RF, REMOTE CONTROL SUPPORT CIRCUIT, PDSO14, PLASTIC, SO-14 visit Texas Instruments
TRC1300N Texas Instruments Marcstar(TM) Remote Control Encoder /Decoders 16-PDIP visit Texas Instruments
TMS3637D Texas Instruments Remote-Control Transmitter/Receiver 8-SOIC visit Texas Instruments
TMS3637P Texas Instruments Remote-Control Transmitter/Receiver 8-PDIP visit Texas Instruments

Remote Control tx2 8 pin

Catalog Datasheet MFG & Type PDF Document Tags

rx2 REMOTE CONTROLLER toy car

Abstract: Remote Control tx2 EC HIGHLAND (SHENZHEN) ELECTRONICS CO., LTD TX2/RX2 REMOTE CONTROLLER WITH FIVE FUNCTIONS General Description The TX2/RX2 are a pair of CMOS LSIs designed for remote controlled car applications. TX2 Is the transmitter and RX2 is the receiver. They provide five function key to control forward , remote control distance. Major Core Features: ! Wide and low operating voltage range: 2.2V to , application. ! RX2 Provide two high effective amplifiers to enhance remote control distance. !
Highland Electronics
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remote control car circuit diagram

Abstract: remote control car ) of the remote controller car. APPLICATION * Remote control car etc. PIN ASSIGNMENTS (TOP VIEW , /SM-R2 SAMHOP Microelectronics Corp. REMOTE CONTROLLER WITH FIVE FUNCTION PIN DESCRIPTION , signal with carrier frequency Positive power supply Power control output pin The leftward function , pin 7 LEFT 8 RDB 9 LDB 10 BACKWARD 11 FORWARD Forward output pin , =17ms+(nW1)x1ms Page 5 V2.0 Mar 8,2002 SAMHOP Microelectronics Corp. SM-T2/SM-R2 REMOTE
SamHop Microelectronics
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Remote Control tx2 8 pin

Abstract: RC remote control toy plane TRC1300, TRC1315 MARCSTARTM I E/D REMOTE CONTROL ENCODER/DECODERS SLWS011D ­ AUGUST 1996 ­ , 12 11 10 9 8 N PACKAGE (TOP VIEW) VCC/CAP VCC TEST VRC/TX4 VRC/TX3 VRC/TX2 VRC/TX1 , 6 11 7 10 8 9 VCC/CAP VCC TEST VRC/TX4 VRC/TX3 NC VRC/TX2 VRC/TX1 NC ­ No internal connection description The TRC1300 and TRC1315 are remote control serial-data encoders and decoders, and are members of the MARCSTARTM (Multichannel Advanced Remote Control Serial
Texas Instruments
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Remote Control tx2 8 pin RC remote control toy plane Remote Control tx2 encoder/decoder Remote Control Toy tx2 circuit diagram of 8 channel long range RF based

Remote Control Toy tx2

Abstract: SLWS011D TRC1300, TRC1315 MARCSTAR I E/D REMOTE CONTROL ENCODER/DECODERS SLWS011D - AUGUST 1996 - REVISED , 9 8 VCC/CAP VCC TEST VRC/TX4 VRC/TX3 VRC/TX2 VRC/TX1 DIN/DOUT CONF PROG LED OSCC , description The TRC1300 and TRC1315 are remote control serial-data encoders and decoders, and are members of the MARCSTAR (Multichannel Advanced Remote Control Serial Transmitter and Receiver) family of remote , remote control system. The TRC1300 and TRC1315 are designed for use in high-volume remote control
Texas Instruments
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Remote Control Toy TRANSMITTER IC MS-001 Led tv diagram remote tx1

tx3 remote toy

Abstract: tx2 ir rf 14pin TRC1300, TRC1315 MARCSTARTM I E/D REMOTE CONTROL ENCODER/DECODERS SLWS011D ­ AUGUST 1996 ­ , 12 11 10 9 8 N PACKAGE (TOP VIEW) VCC/CAP VCC TEST VRC/TX4 VRC/TX3 VRC/TX2 VRC/TX1 , 6 11 7 10 8 9 VCC/CAP VCC TEST VRC/TX4 VRC/TX3 NC VRC/TX2 VRC/TX1 NC ­ No internal connection description The TRC1300 and TRC1315 are remote control serial-data encoders and decoders, and are members of the MARCSTARTM (Multichannel Advanced Remote Control Serial
Texas Instruments
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tx3 remote toy tx2 ir rf 14pin LINEAR encoder TX4 Remote Control Toy plane TRANSMITTER IC 4 bit binary decoder
Abstract: TRC1300, TRC1315 MARCSTARâ"¢ I E/D REMOTE CONTROL ENCODER/DECODERS SLWS011D â' AUGUST 1996 â , PACKAGE (TOP VIEW) 14 13 12 11 10 9 8 VCC/CAP VCC TEST VRC/TX4 VRC/TX3 VRC/TX2 VRC/TX1 , 6 11 7 10 8 9 VCC/CAP VCC TEST VRC/TX4 VRC/TX3 NC VRC/TX2 VRC/TX1 NC â' No internal connection description The TRC1300 and TRC1315 are remote control serial-data encoders and decoders, and are members of the MARCSTARâ"¢ (Multichannel Advanced Remote Control Serial Texas Instruments
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TRC13

AMD Phenom II

Abstract: amd phenom PIN LAYOUT TX2A TX1A TX1B CM_TX1 PIN OUT OF THE DEVICE 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 , . This input pin contains an Internal 20K pull-up to VDD. 5 M1 I Mode Control ­ Mode Select , MODE DCE MODE M2 TYPE FUNCTION I Mode Control ­ Mode Select Input 2 This input pin , . This input pin contains an Internal 20K pull-up to VDD. 7 VSS 8 TX4D -6V Power: This , binary data stream from the Terminal Equipment via the TX4D (pin 8) input pin. The XRT4500 will convert
Exar
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AMD Phenom II amd phenom PIN LAYOUT rx2 G receiver ic remote control AMD Phenom 2 datasheet tx2b rx2b speed control diagram D03316P-473 EIA530A RS232 RS449

rx5a tx5a

Abstract: panasonic x7r and Transmitter 3 Mode Control ­ Mode Select Input 0 This input pin, along with M1 and M2 are used to , . 5 M1 I Mode Control ­ Mode Select Input 1 This input pin, along with M0 and M2 are used to , DESCRIPTIONS PIN # 6 Signal M2 DTE MODE DCE MODE TYPE FUNCTION I Mode Control ­ Mode Select , DTE Mode, then this input pin should be tied to the RTS output pin of the Terminal Equipment. 8 , Equipment via the TX4D (pin 8) input pin. The XRT4500 will convert this data into either the V.10, V.11 or V
Exar
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rx5a tx5a panasonic x7r TX5b rx5b tx67 EIA-530

RX5A

Abstract: RX2A 1, 2, 3 and Transmitter 3 Mode Control ­ Mode Select Input 0 This input pin, along with M1 and M2 , 20K pull-up to VDD. 5 M1 I Mode Control ­ Mode Select Input 1 This input pin, along with M0 and M2 are , , then this input pin should be tied to the RTS output pin of the Terminal Equipment. 8 TX4D 9 , Equipment via the TX4D (pin 8) input pin. The XRT4500 will convert this data into either the V.10, V.11 or V , TTL binary data stream from the Terminal Equipment via the TX4D (pin 8) input pin. The XRT4500 will
Exar
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RX5A RX2A 2.2 uf 16v electrolytic TX7/LOG RX5A dte60 SPR595D476X9025R2T-X PM105-470K PM105680 PCC104BCT-ND 1N5819

Remote Control tx2 8 pin

Abstract: CM_TX2 TX2B TX2A TX1A TX1B CM_TX1 PIN OUT OF THE DEVICE 1 2 3 4 5 6 7 8 9 10 11 12 , pin. This input pin contains an Internal 20Kâ"¦ pull-up to VDD. 5 M1 I Mode Control â , this pin. This input pin contains an Internal 20Kâ"¦ pull-up to VDD. 7 VSS 8 TX4D -6V , The XRT4500 accepts a TTL binary data stream from the Terminal Equipment via the TX4D (pin 8) input , XRT4500 accepts a TTL binary data stream from the Terminal Equipment via the TX4D (pin 8) input pin. The
Exar
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rx2 G receiver ic remote control

Abstract: rx2/tx2 input pin contains an Internal 20K pull-up to VDD. 5 M1 I Mode Control ­ Mode Select Input 1 , TYPE FUNCTION I Mode Control ­ Mode Select Input 2 This input pin, along with M0 and M1 are used , Equipment via the TX4D (pin 8) input pin. The XRT4500 will convert this data into either the V.10, V.11 or , TX4D (pin 8) input pin. The XRT4500 will convert this data into either the V.10, V.11 or V.28 modes , pin. 14 GND Analog GND ­ For Transmitters 4, 5, 6, 7, and 8. 6 xr XRT4500
Exar
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rx2/tx2 TR6-A LOG RX2 connector iso 2593 TX4B RX4B

TX6-RX6

Abstract: LOG RX2 TX2A TX1A TX1B CM_TX1 PIN OUT OF THE DEVICE 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 , Transmitter 3 4 M0 I Mode Control ­ Mode Select Input 0 This input pin, along with M1 and M2 are , Internal 20K pull-up to VDD. 5 M1 I Mode Control ­ Mode Select Input 1 This input pin, along , MODE M2 TYPE FUNCTION I Mode Control ­ Mode Select Input 2 This input pin, along with M0 and , Equipment via the TX4D (pin 8) input pin. The XRT4500 will convert this data into either the V.10, V.11 or
Exar
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TX6-RX6 TX4-RX4 EIA-449 datasheet of TX2B RX2B log tx2 log TX6

rx2a tx2a

Abstract: panasonic x7r and Transmitter 3 Mode Control ­ Mode Select Input 0 This input pin, along with M1 and M2 are used to , . 5 M1 I Mode Control ­ Mode Select Input 1 This input pin, along with M0 and M2 are used to , DESCRIPTIONS PIN # 6 Signal M2 DTE MODE DCE MODE TYPE FUNCTION I Mode Control ­ Mode Select , DTE Mode, then this input pin should be tied to the RTS output pin of the Terminal Equipment. 8 , Equipment via the TX4D (pin 8) input pin. The XRT4500 will convert this data into either the V.10, V.11 or V
Exar
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rx2a tx2a rx1a

XTAL 32.768MHz

Abstract: 32.768Mhz crystal = PINN pin 1, 4, 7, 8, 11, 14 should be tied to GND LED single fiber mode MODE 4 LED Duplex , January 1999. I*PIN (High) = 2.0 / Rtset Control of LED current During the transmit cycle, the LED , 0 1 0 XTAL/32 XTAL/64 XTAL/32 XTAL/64 4 4 8 8 Tx2 Tx2 Tx1 Tx2 1 1 1 1 0 , single-optical fiber. The designer can share the available bandwidth over 1 to 8 main channels by selecting the , padding capacitors. The input pin, SCEXT should be connected to GND. The crystal specification should be
Semtech
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ACS406CS XTAL 32.768MHz 32.768Mhz crystal 8B10B ACS4060 ACS9010

JEDEC Package Code MS-026-AED

Abstract: SiI150ACT100 77 11 HSYNC 65 66 VSYNC DIO8 IVCC EVEN 8-bits BLUE DIO12 Tx2- GPI PLL , control signals can be valid either on the falling or the rising edge of IDCK as selected by the EDGE pin , VCC GND IVCC AVCC AGND PVCC1 PVCC2 PGND1 Pin # 8,30,56,88 7,31,57,67,79,89 17,66,81,98 , to market and lower in cost. · · · · · · SiI 150A Pin Diagram CONFIG. PINS RESERVED , TX1- TX1+ AVCC TX2- TX2+ AGND DIO23 DIO22 DIO21 PD 26 27 28 29
Silicon Image
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JEDEC Package Code MS-026-AED SiI150ACT100 SiI-AN-0007 JEDEC MS-026 footprint 32 pin SiI-AN-0007-A I150ACT100 I/DS-0006-C

EEPROM X2444

Abstract: P89027 level control In 9 TX1 Transmitter level control In 8 TX2 Transmitter level control In 5 TX3 , >vss tx2 c 5 a01 c 6 23 3x1 a01 c 6 tx1 c 7 8 P89027 22 21 3 nc 3 agnd avccc tx1 c 7 8 tx0c 9 20 , . This signal should follow the ring cadence. REMLB A logic Low on this pin initiates a remote loopback , Set of Control Signals for Telephone Line Control â  Telephone Line Audio Monitor Output â  Billing Delay Timer â  Auxiliary Relay Control Output â  Automatic Modem Type Recognition â  Low
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OCR Scan
EEPROM X2444 N89026 FB902 N89027 x2444 x2444 Application Note

DFP 20 PIN to VGA diagram

Abstract: HSYNC, VSYNC, DE, input, output DFP) SiI140/SiI140A Pin Diagram Functional Block Diagram PGND PVCC AGND Swing Control EXT_SWING PLL TXC- TXC+ AVCC TX0- TX0+ AGND TX1- TX1+ AVCC TX2 , 11 CEDGE SiI140/SiI140A 10 64-Pin TQFP 8 CTL3 42 7 CTL2 D18 43 6 , CONTROL 40 D13 D21 D[15:8] PLL_SYNC VCC 9 GND 8-bit Channel 2 Data 38 39 , Pin Diagram 12 DE 1 In HSYNC VSYNC CTL1 CTL2 CTL3 2 3 6 7 8 In In In In
Silicon Image
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DFP 20 PIN to VGA diagram HSYNC, VSYNC, DE, input, output laptop lcd cable 30 pin diagram SiI100 SiI140 PanelLink Transmitter I140/S I140A I/DS-0003-D

SiI160

Abstract: SiI160CT100 GND ODD 8-bits GREEN 24 VSYNC DIO15 ODD 8-bits BLUE Swing Control EXT_SWING , PVCC1 PVCC2 PGND1 Pin # 8,30,56,88 7,31,57,67,79,89 17,66,81,98 36,38,44 33,37,41,47 18 85 , is quicker to market and lower in cost. · · · · · · · SiI 160 Pin Diagram CONFIG. PINS , - TX0+ AGND TX1- TX1+ AVCC TX2- TX2+ AGND DIO23 DIO22 PD 26 27 28 , ODD 8-bits RED Scaleable Bandwidth: 25-165 MHz (VGA to UXGA) Low Power: 3.3V core operation High
Silicon Image
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SiI160 SiI160CT100 Silicon Image 680 dfp 26 pin HSYNC, VSYNC, DE I160CT100 I-DS-0008-C

SiI150A

Abstract: HSYNC, VSYNC, DE, input, output Swing Control EXT_SWING EVEN 8-bits RED Subject to Change without Notice Silicon Image , PVCC1 PVCC2 PGND1 Pin # 8,30,56,88 7,31,57,67,79,89 17,66,81,98 36,38,44 33,37,41,47 18 85 , that is quicker to market and lower in cost. · · · · · · · SiI150/SiI150A Pin Diagram , AVCC TX0- TX0+ AGND TX1- TX1+ AVCC TX2- TX2+ AGND DIO23 DIO22 DIO21 , DIFFERENTIAL SIGNAL ODD 8-bits RED Scaleable Bandwidth: 25-112 MHz (VGA to SXGA) Low Power: 3.3V core
Silicon Image
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SiI150A I150A I150/S I/DS-0006-B

JEDEC Package Code MS-026-AED

Abstract: SiI160CT100 Encoder 2 Tx2+ Tx2 Tx2- TxC+ PLL TxC TxC- EVEN 8-bits GREEN 100 1 DIE14 75 , -bits BLUE Swing Control EXT_SWING EVEN 8-bits RED Subject to Change without Notice Silicon , Pin # 8,30,56,88 7,31,57,67,79,89 17,66,81,98 36,38,44 33,37,41,47 18 85 19 Type Power , is quicker to market and lower in cost. · · · · · · SiI 160 Pin Diagram CONFIG. PINS , - TX0+ AGND TX1- TX1+ AVCC TX2- TX2+ AGND DIO23 DIO22 PD 26 27 28
Silicon Image
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SILICON IMAGE APPLICATION NOTES I-DS-0008-D
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