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ADIN1101BCPZ-R7
Analog Devices
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1 | Robust, Industrial, Low Power 10BASE-T1L PHY , 50 MHz ,1.8V or 3.3V , −40°C to +85°C | Quad Flat No-Lead | ADIN1101BCPZ-R7 |
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ADM3054BRWZ-RL7
Analog Devices
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1 | 1/1 Transceiver, Isolated CANbus 16-SOIC . | Small Outline Packages | ADM3054BRWZ-RL7 |
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TPT1051Q-DF6R-S
3Peak Incorporated
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1 | Automotive Fault Protected High-Speed CAN FD Transceiver with Silent Mode | Small Outline No-lead | TPT1051Q-DF6R-S |
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TPT1042Q-DF6R-S
3Peak Incorporated
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1 | Automotive Fault Protected High-Speed CAN FD Transceiver with −40°Cto +125°C | Small Outline No-lead | TPT1042Q-DF6R-S |
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PM8800ATR
STMicroelectronics
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1 | Integrated IEEE 802.3af compliant PoE-PD interface and PWM controller with support of external source | Small Outline Packages | PM8800ATR |
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1894KI-32LFT
Renesas Electronics
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1 | The IDT1894-32 is a low-power, physical-layer device (PHY) that supports the ISO/IEC 10Base-T and 100Base-TX Carrier-Sense Multiple Access/Collision Detection (CSMA/CD) Ethernet standards, ISO/IEC 8802-3. The IDT1894-32 is intended for MII, Node applications that require the Auto-MDIX feature that automatically corrects crossover errors in plant wiring. The IDT1894-32 incorporates Digital-Signal Processing (DSP) control in its Physical-Medium Dependent (PMD) sub layer. As a result, it can transmit and recei | Quad Flat No-Lead | 1894KI-32LFT |
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TJA1466BHG/0J
NXP
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1 | CAN SIC transceiver with partial networking, watchdog, RESET pin, FAIL-SAFE/LIMP pin and GPIO pins [ASIL B, 1.8 V VIO]Package:DHVQFN18: DIL-compatible thermal enhanced very thin quad flatpack; no leads;18 terminals; body 3.0 x 4.5 x 0.85 mmProduct:NXP TJA1466 - CAN SIC Transceiver with Partial Networking and Advanced System Monitoring, CAN FD Data rates up to 8 Mbit/s | Other | TJA1466BHG/0J |
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NCV7344AMW0R2G
onsemi
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1 | Compliant with ISO 11898−2:2016; CAN FD timing specified up to 5 Mbps; VIO pin on NCV7344−3 Version Allowing Direct Interfacing with 3 V to 5 V Microcontrollers; Very Low Current Standby Mode with Wake−up via the Bus; Low Electromagnetic Emission (EME) and High Electromagnetic Immunity; Very Low EME without Common−mode (CM) Choke; No Disturbance of the Bus Lines with an Un−powered Node; Transmit Data (TxD) Dominant Timeout Function; Under All Supply Conditions the Chip Behaves Predictably; Very High ESD Rob | Small Outline No-lead | NCV7344AMW0R2G |
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1893CKLF
Renesas Electronics
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1 | The IDT1893C is a low-power, physical-layer device (PHY) that supports the ISO/IEC 10Base-T and 100Base-TX Carrier-Sense Multiple Access/Collision Detection (CSMA/CD) Ethernet standards, ISO/IEC 8802-3. The IDT1893C is intended for MII, Node applications that require the Auto-MDIX feature that automatically corrects crossover errors in plant wiring. The IDT1893C incorporates Digital-Signal Processing (DSP) control in its Physical-Medium Dependent (PMD) sub layer. As a result, it can transmit and receive da | Quad Flat No-Lead | 1893CKLF |
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NCN26000XMNTBG
onsemi
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1 | Supports IEEE802.3 CSMA/CD Collision Detection: - PLCA mode will default to CSMA/CD collision detection, if needed; Enhanced Noise Immunity Mode: - ENI extends the noise immunity to values well above the IEEE T1S standard - Allows the NCN26000 to withstand worst-case DPI and BCI immunity tests - Significantly improves the network reach when enabled, almost 2X better than competition - Unique to onsemi's 10BASE-T1S devices; Lowest Line Pin Capacitance: - Best-in-class line pin capacitance allows for the high | Quad Flat No-Lead | NCN26000XMNTBG |
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NCV7344AMW3R2G
onsemi
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1 | Compliant with ISO 11898−2:2016; CAN FD timing specified up to 5 Mbps; VIO pin on NCV7344−3 Version Allowing Direct Interfacing with 3 V to 5 V Microcontrollers; Very Low Current Standby Mode with Wake−up via the Bus; Low Electromagnetic Emission (EME) and High Electromagnetic Immunity; Very Low EME without Common−mode (CM) Choke; No Disturbance of the Bus Lines with an Un−powered Node; Transmit Data (TxD) Dominant Timeout Function; Under All Supply Conditions the Chip Behaves Predictably; Very High ESD Rob | Small Outline No-lead | NCV7344AMW3R2G |
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TPT1051VQ-SO1R-S
3Peak Incorporated
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1 | Automotive grade, High-Speed CAN Transceiver IC, Silent mode, 3.3V VIO, 8-SOP | Small Outline Packages | TPT1051VQ-SO1R-S |
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NCV7351FD13R2G
onsemi
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1 | High Speed (up to 1 Mbps); Compatible with the ISO 11898−2 Standard; VIO Pin on NCV7351D13 Version Allowing Direct Interfacing with 3V to 5V Microcontrollers; EN Pin on NCV7351D1E Version Allowing Switching the transceiver to a Very Low Current OFF Mode; Excellent Electromagnetic Susceptibility (EMS) Level Over Full Frequency Range. Very Low Electromagnetic Emissions (EME) Low EME also Without Common Mode (CM) Choke; Bus Pins Protected Against >15 kV System ESD Pulses; Transmit Data (TxD) Dominant Time−out | Small Outline Packages | NCV7351FD13R2G |
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ADIN1110CCPZ
Analog Devices
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1 | Robust, Industrial, Low Power 10BASE-T1L Ethernet MAC-PHY | Quad Flat No-Lead | ADIN1110CCPZ |
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TPT1051VQ-DF6R-S
3Peak Incorporated
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1 | Automotive Fault Protected High-Speed CAN FD Transceiver with Silent Mode | Small Outline No-lead | TPT1051VQ-DF6R-S |
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MAX13021ASA/V+T
Analog Devices
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1 | LIN Transceivers +/-60V Fault-Protected LIN Transceiver | Small Outline Packages | MAX13021ASA/V+T |
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HD1-6409/883
Renesas Electronics
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1 | The HD-6409/883 Manchester Encoder-Decoder (MED) is a High-Speed, low power device manufactured using self-aligned silicon gate technology. The device is intended for use in serial data communication, and can be operated in either of two modes. In the converter mode, the MED converts Nonreturn-to-Zero code (NRZ) into Manchester code and decodes Manchester code into Nonreturn-to-Zero code. For serial data communication, Manchester code does not have some of the deficiencies inherent in Nonreturn-to-Zero code | Ceramic Dual-In-Line Packages | HD1-6409/883 |
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MAX14883EASA+
Analog Devices
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1 | MAXIM INTEGRATED PRODUCTS - MAX14883EASA+ - CAN TRANSCEIVER, 1MBPS, SOIC-8 | Small Outline Packages | MAX14883EASA+ |
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TJA1044GT
NXP
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1 | CAN Interface IC TJA1044GT/SO8///REEL 13 Q1/T1 *STANDARD MARK SMD | Small Outline Packages | TJA1044GT |
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MAX33042EAKA+T
Analog Devices
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1 | +5V, 4Mbps CAN Transceiver with ±40V Fault Protection, ±25V CMR, and ±40kV ESD in 8-Pin SOT24 | SOT23 (8-Pin) | MAX33042EAKA+T |
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NCV7446MW0R2G
onsemi
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1 | Compatible with the ISO 11898−2:2016; CAN FD timing specified up to 5 Mbps; Very low current standby mode with wake−up via the bus; Low Electromagnetic Emission (EME) and high Electromagnetic Immunity; No disturbance of the bus lines with an un−powered node; Transmit data (TxD) dominant timeout function; Under all supply conditions the chip behaves predictably; Very high ESD robustness of bus pins; Thermal protection; Bus pins short circuit proof to supply voltage and ground; Bus pins protected against tran | Small Outline No-lead | NCV7446MW0R2G |
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ADIN2111CCPZ
Analog Devices
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1 | Low Complexity, 2-Port Ethernet Switch with Integrated 10BASE-T1L PHYs | Quad Flat No-Lead | ADIN2111CCPZ |
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ADIN2111BCPZ
Analog Devices
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1 | Ethernet Switch IEEE 802.3, 10 Base-T PHY Serial, SPI Interface 48-LFCSP (7x7) , -40°C ~ 85°C (TA) | Quad Flat No-Lead | ADIN2111BCPZ |
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1893BFLFT
Renesas Electronics
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1 | The IDT1893BF is a low-power, physical-layer device (PHY) that supports the ISO/IEC 10Base-T and 100Base-TX Carrier-Sense Multiple Access/Collision Detection (CSMA/CD) Ethernet standards, ISO/IEC 8802-3. The IDT1893BF is intended for MII, Node applications that require the Auto-MDIX feature that automatically corrects crossover errors in plant wiring. The IDT1893BF incorporates Digital-Signal Processing (DSP) control in its Physical-Medium Dependent (PMD) sub layer. As a result, it can transmit and receiv | Small Outline Packages | 1893BFLFT |
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1893BFLF
Renesas Electronics
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1 | The IDT1893BF is a low-power, physical-layer device (PHY) that supports the ISO/IEC 10Base-T and 100Base-TX Carrier-Sense Multiple Access/Collision Detection (CSMA/CD) Ethernet standards, ISO/IEC 8802-3. The IDT1893BF is intended for MII, Node applications that require the Auto-MDIX feature that automatically corrects crossover errors in plant wiring. The IDT1893BF incorporates Digital-Signal Processing (DSP) control in its Physical-Medium Dependent (PMD) sub layer. As a result, it can transmit and receiv | Small Outline Packages | 1893BFLF |
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