DS26518GN+
Analog Devices Inc.
The DS26518 is an 8-port framer and line interface unit (LIU) combination for T1, E1, J1 applications. Each port is independently configurable, supporting both long-haul and short-haul lines. The DS26518 Single-Chip Transceiver (SCT) is software and pinout compatible with the 4-port DS26514. It is nearly software compatible with the DS26528 and its derivatives.ApplicationsChannel BanksChannel Service Units (CSUs)Data Service Units (DSUs)MuxesRoutersSwitchesT1/E1 Test Equipment
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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Analog Devices Inc | DS26518GN+ | 0 | $55.17 | $55.17 | |||||
element14 APAC | DS26518GN+ | 10 | 1 | * $89.63 | * $73.98 | * $73.98 | * $73.33 | * $73.00 | * $73.00 |
Farnell | DS26518GN+ | 10 | 1 | * $94.07 | * $78.75 | * $78.75 | * $78.75 | * $78.75 | * $78.75 |
Mouser Electronics | DS26518GN+ | 88 | 1 | $59.48 | $59.48 | $59.48 | $59.48 | $59.48 | $59.48 |
Newark | DS26518GN+ | 10 | 1 | $100.18 | $83.86 | $83.83 | $83.83 | $83.83 | $83.83 |
MAX16610GTB+T
Analog Devices Inc.
The MAX16610/MAX16610A ICs are highly integrated, scalable, controllers for a switched tank converter (STC) topology. The STC provides highly efficient zero-current switching (ZCS) voltage conversion from a 60V–40V input bus to an intermediate bus voltage. The intermediate bus voltage is unregulated and is approximately a quarter of the input voltage.The 4:1 STC topology has 10 FETs that need to be driven, with only 3 of the FETs connected to ground. The MAX16610/MAX16610A provide an extremely dense solution with integrated drivers and generation of floating supplies.An adaptation algorithm tunes the STC on-times to maintain ZCS, regardless of variations in and tolerances of the STC components (e.g., temperature coefficient, aging, and voltage derating). With the adaptation algorithm, a MAX16610/MAX16610A-controlled STC can use Class II capacitors in the resonant tanks to save on cost and improve efficiency compared to Class I capacitor designs.Multiple fault protection features prevent damage to the STC converter and downstream components.ApplicationsDDR MemoryHigh-Power VR13.HC CPUsMachine Learning ASICs and Accelerator CardsNetworking ASICs
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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Farnell | MAX16610GTB+T | 0 | 2500 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $24.85 |
Mouser Electronics | MAX16610GTB+T | 0 | 2500 | $23.59 |
MAX16972AGEEA/V+
Analog Devices Inc.
The MAX16972/MAX16972A provide high-ESD and short-circuit protection for the low-voltage internal USB data and USB power line in automotive radio, navigation, connectivity, and USB hub applications. The devices support both Hi-Speed USB (480Mbps) and full-speed USB (12Mbps) operation. In addition, the devices also include integrated circuitry to enable fast-charging for consumer devices adhering to either the Apple method or the Hi-Speed USB host-charger port-detection protocol and support USB On-The-Go (OTG). The short-circuit protection features include short-to-battery on the protected HVBUS, HVD+, and HVD- outputs, as well as short-to-HVBUS on the protected HVD+ and HVD- outputs. The devices are capable of a short-to-battery condition of up to +18V. Short-to-GND and overcurrent protection are also provided on the HVBUS output to protect the internal BUS power rail from overcurrent faults. Each device features high-ESD protection to ±15kV Air Gap method and ±8kV Contact method on all protected HVBUS, HVD+, and HVD- outputs. Each device features two low 4.0Ω on-resistance Hi-Speed USB switches, a current-limited low-voltage 31mΩ BUS switch, and provides an integrated high-voltage external power-switch controller. The BUS switch can start up into large capacitive noncompliant USB loads. The devices also feature an enable input, a fault output, integrated Apple iPhone®/iPad® fast-charging termination resistors, and an integrated host-charger port-detection circuit adhering to the USB 2.0 battery charging specification version 1.2. The devices are available in 16-pin QSOP and 16-pin (4mm × 4mm) TQFN packages and operate over the -40°C to +105°C temperature range. The MAX16972 and MAX16972A are drop-in compatible with MAX16970,MAX16971, MAX16970A, MAX16971A, MAX16917, MAX16919, and MAX16969 devices.ApplicationsAutomotive ConnectivityAutomotive Radio and NavigationTelematicsUSB Hub
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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Analog Devices Inc | MAX16972AGEEA/V+ | 0 | $1.44 | $1.44 | |||||
Farnell | MAX16972AGEEA/V+ | 0 | 200 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $2.14 | * $2.14 |
Mouser Electronics | MAX16972AGEEA/V+ | 0 | 1 | $5.04 | $2.83 | $2.83 | $2.31 | $1.87 | $1.87 |
MAX16972AGEEA/V+T
Analog Devices Inc.
The MAX16972/MAX16972A provide high-ESD and short-circuit protection for the low-voltage internal USB data and USB power line in automotive radio, navigation, connectivity, and USB hub applications. The devices support both Hi-Speed USB (480Mbps) and full-speed USB (12Mbps) operation. In addition, the devices also include integrated circuitry to enable fast-charging for consumer devices adhering to either the Apple method or the Hi-Speed USB host-charger port-detection protocol and support USB On-The-Go (OTG). The short-circuit protection features include short-to-battery on the protected HVBUS, HVD+, and HVD- outputs, as well as short-to-HVBUS on the protected HVD+ and HVD- outputs. The devices are capable of a short-to-battery condition of up to +18V. Short-to-GND and overcurrent protection are also provided on the HVBUS output to protect the internal BUS power rail from overcurrent faults. Each device features high-ESD protection to ±15kV Air Gap method and ±8kV Contact method on all protected HVBUS, HVD+, and HVD- outputs. Each device features two low 4.0Ω on-resistance Hi-Speed USB switches, a current-limited low-voltage 31mΩ BUS switch, and provides an integrated high-voltage external power-switch controller. The BUS switch can start up into large capacitive noncompliant USB loads. The devices also feature an enable input, a fault output, integrated Apple iPhone®/iPad® fast-charging termination resistors, and an integrated host-charger port-detection circuit adhering to the USB 2.0 battery charging specification version 1.2. The devices are available in 16-pin QSOP and 16-pin (4mm × 4mm) TQFN packages and operate over the -40°C to +105°C temperature range. The MAX16972 and MAX16972A are drop-in compatible with MAX16970,MAX16971, MAX16970A, MAX16971A, MAX16917, MAX16919, and MAX16969 devices.ApplicationsAutomotive ConnectivityAutomotive Radio and NavigationTelematicsUSB Hub
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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Analog Devices Inc | MAX16972AGEEA/V+T | 0 | $1.63 | $1.63 | |||||
Farnell | MAX16972AGEEA/V+T | 0 | 2500 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $2.24 |
Mouser Electronics | MAX16972AGEEA/V+T | 0 | 2500 | $2.13 |
MAX16972AGEEB/V+
Analog Devices Inc.
The MAX16972/MAX16972A provide high-ESD and short-circuit protection for the low-voltage internal USB data and USB power line in automotive radio, navigation, connectivity, and USB hub applications. The devices support both Hi-Speed USB (480Mbps) and full-speed USB (12Mbps) operation. In addition, the devices also include integrated circuitry to enable fast-charging for consumer devices adhering to either the Apple method or the Hi-Speed USB host-charger port-detection protocol and support USB On-The-Go (OTG). The short-circuit protection features include short-to-battery on the protected HVBUS, HVD+, and HVD- outputs, as well as short-to-HVBUS on the protected HVD+ and HVD- outputs. The devices are capable of a short-to-battery condition of up to +18V. Short-to-GND and overcurrent protection are also provided on the HVBUS output to protect the internal BUS power rail from overcurrent faults. Each device features high-ESD protection to ±15kV Air Gap method and ±8kV Contact method on all protected HVBUS, HVD+, and HVD- outputs. Each device features two low 4.0Ω on-resistance Hi-Speed USB switches, a current-limited low-voltage 31mΩ BUS switch, and provides an integrated high-voltage external power-switch controller. The BUS switch can start up into large capacitive noncompliant USB loads. The devices also feature an enable input, a fault output, integrated Apple iPhone®/iPad® fast-charging termination resistors, and an integrated host-charger port-detection circuit adhering to the USB 2.0 battery charging specification version 1.2. The devices are available in 16-pin QSOP and 16-pin (4mm × 4mm) TQFN packages and operate over the -40°C to +105°C temperature range. The MAX16972 and MAX16972A are drop-in compatible with MAX16970,MAX16971, MAX16970A, MAX16971A, MAX16917, MAX16919, and MAX16969 devices.ApplicationsAutomotive ConnectivityAutomotive Radio and NavigationTelematicsUSB Hub
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
---|---|---|---|---|---|---|---|---|---|
Analog Devices Inc | MAX16972AGEEB/V+ | 0 | $1.44 | $1.44 | |||||
Farnell | MAX16972AGEEB/V+ | 0 | 200 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $2.14 | * $2.14 |
Mouser Electronics | MAX16972AGEEB/V+ | 0 | 1 | $4.04 | $2.27 | $2.27 | $1.87 | $1.87 | $1.87 |
MAX16972GEEA/V+T
Analog Devices Inc.
The MAX16972/MAX16972A provide high-ESD and short-circuit protection for the low-voltage internal USB data and USB power line in automotive radio, navigation, connectivity, and USB hub applications. The devices support both Hi-Speed USB (480Mbps) and full-speed USB (12Mbps) operation. In addition, the devices also include integrated circuitry to enable fast-charging for consumer devices adhering to either the Apple method or the Hi-Speed USB host-charger port-detection protocol and support USB On-The-Go (OTG). The short-circuit protection features include short-to-battery on the protected HVBUS, HVD+, and HVD- outputs, as well as short-to-HVBUS on the protected HVD+ and HVD- outputs. The devices are capable of a short-to-battery condition of up to +18V. Short-to-GND and overcurrent protection are also provided on the HVBUS output to protect the internal BUS power rail from overcurrent faults. Each device features high-ESD protection to ±15kV Air Gap method and ±8kV Contact method on all protected HVBUS, HVD+, and HVD- outputs. Each device features two low 4.0Ω on-resistance Hi-Speed USB switches, a current-limited low-voltage 31mΩ BUS switch, and provides an integrated high-voltage external power-switch controller. The BUS switch can start up into large capacitive noncompliant USB loads. The devices also feature an enable input, a fault output, integrated Apple iPhone®/iPad® fast-charging termination resistors, and an integrated host-charger port-detection circuit adhering to the USB 2.0 battery charging specification version 1.2. The devices are available in 16-pin QSOP and 16-pin (4mm × 4mm) TQFN packages and operate over the -40°C to +105°C temperature range. The MAX16972 and MAX16972A are drop-in compatible with MAX16970,MAX16971, MAX16970A, MAX16971A, MAX16917, MAX16919, and MAX16969 devices.ApplicationsAutomotive ConnectivityAutomotive Radio and NavigationTelematicsUSB Hub
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
---|---|---|---|---|---|---|---|---|---|
Farnell | MAX16972GEEA/V+T | 0 | 2500 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $2.24 |
Mouser Electronics | MAX16972GEEA/V+T | 0 | 2500 | $2.13 |
MAX20047AFPA/V+
Analog Devices Inc.
The MAX20047 is an automotive-grade, low-cost, small-footprint dual-port charger IC designed for automotive charging applications. It combines a fully synchronous 6A step-down buck converter with integrated high-side and low-side FETs capable of operating with input voltages from 3.5V to 36V and delivering 5.2V output voltage. The IC features integrated iPod®/iPhone®1.0A and iPad® 2.1A dedicated charging modes.The IC delivers up to 3A of charging current with 93% efficiency per port through integrated switches with programmable current limit and thermal foldback control. The buck converter switching frequency is programmable from 0.4MHz to 2.2MHz. Short-to-ground protection and overcurrent protection are also provided on the protected HVBUS outputs to protect the internal BUS power rail from an overcurrent fault. The MAX20047 offers short-to-battery up to +18V and can also be ordered with spread-spectrum operation to reduce EMI. iPod, iPhone, and iPad are registered trademarks of Apple Inc.. Design Solution: Beat the Heat: Build a Compact, Multi-StandardDual USB Charger ›ApplicationsAutomotive Cigarette Lighter AdaptersPower Supply for Linear ChargersUSB Dedicated Charging Ports (DCP)
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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element14 APAC | MAX20047AFPA/V+ | 979 | 1 | * $4.96 | * $3.97 | * $3.81 | * $3.65 | * $3.46 | * $3.46 |
Farnell | MAX20047AFPA/V+ | 979 | 1 | * $4.51 | * $3.69 | * $3.49 | * $3.31 | * $3.17 | * $3.17 |
Mouser Electronics | MAX20047AFPA/V+ | 636 | 1 | $4.77 | $3.78 | $3.78 | $3.51 | $2.54 | $2.33 |
MAX16972GTEA/V+
Analog Devices Inc.
The MAX16972/MAX16972A provide high-ESD and short-circuit protection for the low-voltage internal USB data and USB power line in automotive radio, navigation, connectivity, and USB hub applications. The devices support both Hi-Speed USB (480Mbps) and full-speed USB (12Mbps) operation. In addition, the devices also include integrated circuitry to enable fast-charging for consumer devices adhering to either the Apple method or the Hi-Speed USB host-charger port-detection protocol and support USB On-The-Go (OTG). The short-circuit protection features include short-to-battery on the protected HVBUS, HVD+, and HVD- outputs, as well as short-to-HVBUS on the protected HVD+ and HVD- outputs. The devices are capable of a short-to-battery condition of up to +18V. Short-to-GND and overcurrent protection are also provided on the HVBUS output to protect the internal BUS power rail from overcurrent faults. Each device features high-ESD protection to ±15kV Air Gap method and ±8kV Contact method on all protected HVBUS, HVD+, and HVD- outputs. Each device features two low 4.0Ω on-resistance Hi-Speed USB switches, a current-limited low-voltage 31mΩ BUS switch, and provides an integrated high-voltage external power-switch controller. The BUS switch can start up into large capacitive noncompliant USB loads. The devices also feature an enable input, a fault output, integrated Apple iPhone®/iPad® fast-charging termination resistors, and an integrated host-charger port-detection circuit adhering to the USB 2.0 battery charging specification version 1.2. The devices are available in 16-pin QSOP and 16-pin (4mm × 4mm) TQFN packages and operate over the -40°C to +105°C temperature range. The MAX16972 and MAX16972A are drop-in compatible with MAX16970,MAX16971, MAX16970A, MAX16971A, MAX16917, MAX16919, and MAX16969 devices.ApplicationsAutomotive ConnectivityAutomotive Radio and NavigationTelematicsUSB Hub
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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Farnell | MAX16972GTEA/V+ | 0 | 225 | * $0.00 | * $0.00 | * $0.00 | * $0.00 | * $2.40 | * $2.40 |
Mouser Electronics | MAX16972GTEA/V+ | 0 | 1 | $5.04 | $3.29 | $2.41 | $2.19 | $1.87 | $1.87 |
DS2478ATB/VY+T
Analog Devices Inc.
The DS2478 is a DeepCover® secure ECDSA and HMAC SHA-256 coprocessor companion to the DS28E40 or DS28C40. The coprocessor can compute any required HMACs or ECDSA signatures to do any operation on the DS28E40 or DS28C40. The DS2478 provides a core set of cryptographic tools derived from integrated asymmetric (ECC P-256) and symmetric (SHA-256) security functions. In addition to the security services provided by the hardware implemented crypto engines, the device integrates a FIPS/NIST true random number generator (TRNG), 6Kb of secured one-time-programmable (OTP) memory, one configurable GPIO, and a unique 64-bit ROM identification number (ROM ID).The ECC public/private key capabilities operate from the NIST-defined P-256 curve and include FIPS 186-compliant ECDSA signature generation and verification to support a bidirectional asymmetric key authentication model. The SHA-256 secret-key capabilities are compliant with FIPS 180 and are flexibly used in conjunction with ECDSA operations or independently for multiple HMAC functions.The GPIO pin can be operated under command control and include configurability supporting authenticated and nonauthenticated operation including an ECDSA-based crypto-robust mode to support secure-boot of a host processor. This secure-boot method can also be used to enable the coprocessor functions.DeepCover embedded security solutions cloak sensitive data under multiple layers of advanced security to provide the most secure key storage possible. To protect against device-level security attacks, invasive and noninvasive countermeasures are implemented, including an active die shield, encrypted storage of keys, and algorithmic methods.ApplicationsAutomotive Secure AuthenticationIdentification and Calibration Automotive of Parts/Tools/AccessoriesIoT Node Crypto-ProtectionSecure Authentication of Accessories and PeripheralsSecure Boot or Download of Firmware and/or System ParametersSecure Storage of Cryptographic Keys for a Host Controller
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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Analog Devices Inc | DS2478ATB/VY+T | 0 | $1.40 | $1.40 | |||||
Mouser Electronics | DS2478ATB/VY+T | 0 | 1 | $3.72 | $3.34 | $3.34 | $2.74 | $1.96 | $1.81 |
DS28C39Q+U
Analog Devices Inc.
The DS28C39 is an ECDSA public-key-based bidirectional secure authenticator that incorporates Maxim’s patented ChipDNA™ feature, a physically unclonable function (PUF) to provide a cost-effective solution with the ultimate protection against security attacks. Using the random variation of semiconductor device characteristics that naturally occur during wafer fabrication, the ChipDNA circuit generates a unique output value that is repeatable over time, temperature, and operating voltage. Attempts to probe or observe ChipDNA operation modifies the underlying circuit characteristics, preventing discovery of the unique value used by the chip cryptographic functions. The DS28C39 utilizes the ChipDNA output as key content to cryptographically secure all device stored data and as the private key for the ECDSA signing operation. With ChipDNA capability, the device provides a core set of cryptographic tools derived from integrated blocks including an asymmetric (ECC-P256) hardware engine, a FIPS/NIST-compliant true random number generator (TRNG), 2Kb of secured EEPROM, a decrement-only counter and a unique 64-bit ROM identification number (ROM ID). The ECC public/ private key capabilities operate from the NIST-defined P-256 curve to provide a FIPS 186-compliant ECDSA signature generation function. The unique ROM ID is used as a fundamental input parameter for cryptographic operations and serves as an electronic serial number within the application. Lastly, the DS28C39 supports I2C communication at the 100kHz standard mode.ApplicationsAuthentication of Medical Sensors and ToolsSecure Management of Limited Use ConsumablesIoT Node AuthenticationPeripheral AuthenticationReference Design License ManagementPrinter Cartridge Identification and Authentication
Distributor | SKU | Stock | MOQ | 1 | 10 | 50 | 100 | 1,000 | 10,000 |
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element14 APAC | DS28C39Q+U | 996 | 1 | * $2.10 | * $1.78 | * $1.68 | * $1.58 | * $1.56 | * $1.56 |
Farnell | DS28C39Q+U | 996 | 1 | * $3.84 | * $2.55 | * $2.32 | * $1.95 | * $1.87 | * $1.87 |
Mouser Electronics | DS28C39Q+U | 366 | 1 | $2.08 | $1.78 | $1.78 | $1.58 | $1.49 | $1.38 |