A
Analog Devices Inc./Maxim Integrated
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Part | Spec A | Spec B | Spec C | Spec D | Description |
|---|---|---|---|---|---|
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Part | Spec A | Spec B | Spec C | Spec D | Description |
|---|---|---|---|---|---|
| Part | Category | Description |
|---|---|---|
Analog Devices Inc./Maxim Integrated LTC1879EGN#TRUnknown | Integrated Circuits (ICs) | IC REG BUCK ADJ 1.2A 16SSOP |
Analog Devices Inc./Maxim Integrated LTC2208CUP#TRUnknown | Integrated Circuits (ICs) | IC ADC 16BIT 130MSPS 64-QFN |
Analog Devices Inc./Maxim Integrated ADP2108ACBZ-1.1-R7Obsolete | Integrated Circuits (ICs) | IC REG BUCK 1.1V 600MA 5WLCSP |
Analog Devices Inc./Maxim Integrated EV1HMC832ALP6GObsolete | Development Boards Kits Programmers | EVAL BOARD FOR HMC832ALP6GE |
Analog Devices Inc./Maxim Integrated LTC488ISWUnknown | Integrated Circuits (ICs) | IC LINE RCVR RS485 QUAD 16-SOIC |
Analog Devices Inc./Maxim Integrated LTC6946IUFD-2Obsolete | Integrated Circuits (ICs) | IC CLK/FREQ SYNTH 28QFN |
Analog Devices Inc./Maxim Integrated MAX5556ESA+TObsolete | Integrated Circuits (ICs) | IC DAC/AUDIO 16BIT 50K 8SOIC |
Analog Devices Inc./Maxim Integrated EVAL-FLTR-LD-1RZUnknown | Unclassified | EVAL BRD FOR AD800 SERIES |
Analog Devices Inc./Maxim Integrated | Development Boards Kits Programmers | BOARD EVAL FOR AD9963 |
Analog Devices Inc./Maxim Integrated LTC1296CCSW#TRUnknown | Integrated Circuits (ICs) | IC DATA ACQ SYS 12BIT 5V 20SOIC |
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
LTC3261High Voltage, Low Quiescent Current Inverting Charge Pump | PMIC | 10 | Active | The LTC3261 is a high voltage inverting charge pump that operates over a wide 4.5V to 32V input range and is capable of delivering up to 100mA of output current.The charge pump employs either low quiescent current Burst Mode operation or low noise constant frequency mode. In Burst Mode operation the charge pump VOUTregulates to –0.94 • VINand the LTC3261 draws only 60μA of quiescent current. In constant frequency mode the charge pump produces an output equal to –VINand operates at a fixed 500kHz or to a programmed frequency between 50kHz to 500kHz using an external resistor. The LTC3261 is available in a thermally enhanced 12-pin MSOP package.ApplicationsBipolar/Inverting SuppliesIndustrial/Instrumentation Bias GeneratorsPortable Medical EquipmentPortable Instruments |
LTC3265Low Noise Dual Supply with Boost and Inverting Charge Pumps | PMIC | 16 | Active | The LTC3265 is a low noise dual polarity output power supply including a boost charge pump, an inverting charge pump and two low noise positive and negative LDO post regulators. The boost charge pump powers the positive LDO post regulator while the inverting charge pump powers the negative LDO regulator. Each LDO can provide up to 50mA of output current. The LDO output voltages can be adjusted using external resistor dividers.The charge pumps employ low quiescent current Burst Mode operation or low noise constant frequency mode. During Burst Mode operation, the boost charge pump regulates its output (VOUT+) to 0.94 • 2 • VIN_Pwhile the inverting charge pump regulates its output (VOUT–) to –0.94 • VIN_N. In Burst Mode operation the LTC3265 draws only 135μA of quiescent current with both LDOs on. In constant frequency mode, the boost and inverting charge pumps produce outputs equal to 2 • VIN_Pand –VIN_Nrespectively and operate at a fixed 500kHz or to a programmed value between 50kHz to 500kHz using an external resistor. The LTC3265 is available in low profile 3mm × 5mm × 0.75mm 18-lead DFN and thermally enhanced 20-lead TSSOP packages.ApplicationsLow Noise Bipolar/Inverting SuppliesIndustrial/Instrumentation Low Noise Bias Generators |
LTC3290High Voltage Boost Charge Pump | Integrated Circuits (ICs) | 8 | Active | The LTC3290 is a high voltage boost charge pump with a wide 4.5V to 55V input voltage range that can deliver up to 50mA of output current.When the VSETpin is grounded, the LTC3290 operates as a standard boost charge pump, boosting the VOUToutput to a maximum of the sum of the VINand VAUXinput supplies. An external resistor divider can be used on the VOUT, FB and GND pins to set the output voltage to any value between 1V and VIN+ VAUXwith hysteretic Burst Mode operation.Alternatively, the device can be configured in a VINtracking mode, in which the VOUTpin regulates at a fixed offset above the VINpin. The offset voltage is programmed with external resistors, one from the VOUTto the VSETpin and the other from the FB pin to GND. The maximum output voltage is limited to VIN+ VAUX.The LTC3290 is available in a thermally enhanced 10-pin MSOP package.ApplicationsHigh Efficiency General Purpose High Voltage Boost SuppliesHigh Side N-FET DriverIndustrial/Automotive Power SwitchingVINTracking Supply |
LTC3300High Efficiency Bidirectional Multicell Battery Balancer | PMIC | 8 | Active | The LTC3300-2 is a fault-protected controller IC for transformer-based bidirectional active balancing of multi-cell battery stacks. All associated gate drive circuitry, precision current sensing, fault detection circuitry and a robust serial interface with built-in watchdog timer are integrated.Each LTC3300-2 can balance up to 6 series-connected battery cells with an input common mode voltage up to 36V. Charge from any selected cell can be transferred at high efficiency to or from 12 or more adjacent cells. Each LTC3300-2 has an individually addressable serial interface, allowing up to 32 LTC3300-2 devices to interface to one control processor.Fault protection features include readback capability, cyclic redundancy check (CRC) error detection, maximum on-time volt-second clamps, and overvoltage shutoffs.The related LTC3300-1 offers a serial interface that allows the serial ports of multiple LTC3300-1 devices to be daisy-chained without opto-couplers or isolators.FeaturesLTC3300-1SPI-compatible serial interface in which each chip in the stack communicates bidirectionally to the chips of the same type above and below it via currents. There is no limit to the stack height. Large common mode voltage differences are handled by each LTC3300-1. The microprocessor in the BMS system communicates ONLY with the bottom chip in the stack and subsequently all of the chips use the same fixed internal address.LTC3300-2SPI-compatible serial interface in which each chip has a unique 5-bit pin-strapped address. The microprocessor in the BMS system communicates directly with every chip in the stack with common mode voltage differences handled by digital isolators or optocouplers. Because of the 5-bit address, the stack height is limited to 32 LTC3300-2 ICs or 192 cells (~800V). There are 5 pins which have a different assignment, all of them serial interface related.ApplicationsElectric Vehicles/Plug-in HEVsHigh Power UPS/Grid Energy Storage SystemsGeneral Purpose Multicell Battery Stacks |
LTC3300-1High Efficiency Bidirectional Multicell Battery Balancer | Battery Management | 3 | Active | The LTC3300-1 is a fault-protected controller IC for transformer-based bidirectional active balancing of multicell battery stacks. All associated gate drive circuitry, precision current sensing, fault detection circuitry and a robust serial interface with built-in watchdog timer are integrated.Each LTC3300-1 can balance up to 6 series-connected battery cells with an input common mode voltage up to 36V. Charge from any selected cell can be transferred at high efficiency to or from 12 or more adjacent cells. A unique level-shifting SPI-compatible serial interface enables multiple LTC3300-1 devices to be connected in series, without opto-couplers or isolators, allowing for balancing of every cell in a long string of series-connected batteries.When multiple LTC3300-1 devices are connected in series they can operate simultaneously, permitting all cells in the stack to be balanced concurrently and independently. Fault protection features include readback capability, cyclic redundancy check (CRC) error detection, maximum on-time volt-second clamps, and overvoltage shutoffs.FeaturesLTC3300-1SPI-compatible serial interface in which each chip in the stack communicates bidirectionally to the chips of the same type above and below it via currents. There is no limit to the stack height. Large common mode voltage differences are handled by each LTC3300-1. The microprocessor in the BMS system communicates ONLY with the bottom chip in the stack and subsequently all of the chips use the same fixed internal address.LTC3300-2SPI-compatible serial interface in which each chip has a unique 5-bit pin-strapped address. The microprocessor in the BMS system communicates directly with every chip in the stack with common mode voltage differences handled by digital isolators or opto-couplers. Because of the 5-bit address, the stack height is limited to 32 LTC3300-2 ICs or 192 cells (~800V). There are 5 pins which have a different assignment, all of them serial interface related.ApplicationsElectric Vehicles/Plug-in HEVsHigh Power UPS/Grid Energy Storage SystemsGeneral Purpose Multicell Battery Stacks |
LTC3300-2Addressable High Efficiency Bidirectional Multicell Battery Balancer | Battery Management | 5 | Active | The LTC3300-2 is a fault-protected controller IC for transformer-based bidirectional active balancing of multi-cell battery stacks. All associated gate drive circuitry, precision current sensing, fault detection circuitry and a robust serial interface with built-in watchdog timer are integrated.Each LTC3300-2 can balance up to 6 series-connected battery cells with an input common mode voltage up to 36V. Charge from any selected cell can be transferred at high efficiency to or from 12 or more adjacent cells. Each LTC3300-2 has an individually addressable serial interface, allowing up to 32 LTC3300-2 devices to interface to one control processor.Fault protection features include readback capability, cyclic redundancy check (CRC) error detection, maximum on-time volt-second clamps, and overvoltage shutoffs.The related LTC3300-1 offers a serial interface that allows the serial ports of multiple LTC3300-1 devices to be daisy-chained without opto-couplers or isolators.FeaturesLTC3300-1SPI-compatible serial interface in which each chip in the stack communicates bidirectionally to the chips of the same type above and below it via currents. There is no limit to the stack height. Large common mode voltage differences are handled by each LTC3300-1. The microprocessor in the BMS system communicates ONLY with the bottom chip in the stack and subsequently all of the chips use the same fixed internal address.LTC3300-2SPI-compatible serial interface in which each chip has a unique 5-bit pin-strapped address. The microprocessor in the BMS system communicates directly with every chip in the stack with common mode voltage differences handled by digital isolators or optocouplers. Because of the 5-bit address, the stack height is limited to 32 LTC3300-2 ICs or 192 cells (~800V). There are 5 pins which have a different assignment, all of them serial interface related.ApplicationsElectric Vehicles/Plug-in HEVsHigh Power UPS/Grid Energy Storage SystemsGeneral Purpose Multicell Battery Stacks |
| Voltage Regulators - DC DC Switching Regulators | 5 | Active | ||
LTC33035V, 4A Synchronous Step-Down Regulator in 2mm × 2mm FCQFN | Voltage Regulators - DC DC Switching Regulators | 3 | Active | The LTC3303 is a very small, high efficiency, low noise, monolithic synchronous 4A step-down DC/DC converter operating from a 2.25V to 5.5V input supply. Using constant frequency, peak current mode control, this regulator achieves fast transient response with small external components.The LTC3303 operates in forced continuous or pulse-skipping mode for low noise, or in low-ripple Burst Mode operation for high efficiency at light loads, ideal for battery- powered systems. The IC regulates output voltages as low as 500mV. The adjustable version operates from 500mV to VINwith two additional external resistors. Other features include output overvoltage protection, short-circuit protection, thermal shutdown, clock synchronization, and up to 100% duty cycle operation for low dropout.The device is available in a low profile 2mm × 2mm FCQFN package with exposed pad and side wettable flanks.APPLICATIONSOptical Networking, Servers, TelecomAutomotive, Industrial, CommunicationsDistributed DC Power Systems (POL)FPGA, ASIC, μP Core Supplies |
LTC33045V, 6A Synchronous Step-Down Regulator in 2mm × 2mm FCQFN | Voltage Regulators - DC DC Switching Regulators | 2 | Active | The LTC3304 is a very small, high efficiency, low noise, monolithic synchronous 6A step-down DC/DC converter operating from a 2.25V to 5.5V input supply. Using constant frequency, peak current mode control, this regulator achieves fast transient response with small external components.The LTC3304 operates in forced continuous or pulse-skipping mode for low noise, or in low-ripple Burst Mode operation for high efficiency at light loads, ideal for battery-powered systems. The IC regulates output voltages as low as 500mV. The adjustable version operates from 500mV to VINwith two additional external resistors. Other features include output overvoltage protection, short-circuit protection, thermal shutdown, clock synchronization, and up to 100% duty cycle operation for low dropout.The LTC3304 is available in a low profile 2mm × 2mm FCQFN package with exposed pad and side wettable flanks.APPLICATIONSOptical Networking, Servers, TelecomAutomotive, Industrial, CommunicationsDistributed DC Power Systems (POL)FPGA, ASIC, μP Core Supplies |
LTC3305Lead Acid Battery Balancer | PMIC | 7 | Active | The LTC3305 balances up to 4 lead-acid batteries connected in series. It is intended to be used in conjunction with a separate pre-existing battery charger as part of a high performance battery system. All voltage monitoring, gate drive, and fault detection circuitry is integrated.The LTC3305 employs an auxiliary battery or an alternative storage cell to transfer charge to or from each individual battery in the stack. A mode pin provides two operating modes, timer mode and continuous mode. In timer mode, once the balancing operation is completed, the LTC3305 goes into a low power state for a programmed time and then periodically rebalances the batteries. In continuous mode, the balancing operation continues even after the batteries are balanced to their programmed termination voltage.The LTC3305 is available in a thermally enhanced 38-lead TSSOP package.ApplicationsTelecom Backup SystemsHome Battery Powered Backup SystemsIndustrial Electric VehiclesEnergy Storage Systems (ESS)Medical Equipment |