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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 |
|---|---|---|---|---|
| Sensors, Transducers | 1 | Obsolete | ||
| Oscillators | 1 | Obsolete | ||
| Data Acquisition | 3 | Active | ||
DS8007Automotive Grade Multiprotocol Dual Smart Card Interface | Evaluation and Demonstration Boards and Kits | 3 | Active | The DS8007A multiprotocol dual smart card interface is an automotive grade, low-cost, dual smart card reader interface supporting all ISO 7816, EMV™, and GSM11-11 requirements. Through its 8-bit parallel bus and dedicated address selects (AD3–AD0), the DS8007A can easily and directly connect to the nonmultiplexed byte-wide bus of a Maxim secure microcontroller. Optionally, the parallel bus can be multiplexed to allow direct access to the multiplexed bus of an 80C51-compatible microcontroller through MOVX memory addressing.One integrated UART is multiplexed among the interfaces to allow high-speed automatic smart card processing with each card-possessing, independent, variable, baud-rate capability. The card interface is controlled by internal sequencers that support automatic activation and deactivation sequencing, handling all actions required for T = 0, T = 1, and synchronous protocols. Emergency deactivation is also supported in case of supply dropout. A third card is supported through the auxiliary I/O. The same set of I/O can optionally be used as additional serial interface for the UART.The DS8007A provides all electrical signals necessary to interface with two smart cards. The integrated voltage converter ensures full cross-compatibility between 1.8V/3V/5V cards and a 1.8V/3V/5V environment, and allows operation within a 2.7V to 6V supply voltage range. The standard DS8007 revision is available for nonautomotive applications.ApplicationsAccess ControlBanking Applications (Point-of-Sale Terminals, Debit/Credit Payment Terminals, PIN Pads, Automated Teller Machines)Pay TelevisionTelecommunications |
DS8007AAutomotive Grade Multiprotocol Dual Smart Card Interface | Interface | 1 | Active | The DS8007A multiprotocol dual smart card interface is an automotive grade, low-cost, dual smart card reader interface supporting all ISO 7816, EMV™, and GSM11-11 requirements. Through its 8-bit parallel bus and dedicated address selects (AD3–AD0), the DS8007A can easily and directly connect to the nonmultiplexed byte-wide bus of a Maxim secure microcontroller. Optionally, the parallel bus can be multiplexed to allow direct access to the multiplexed bus of an 80C51-compatible microcontroller through MOVX memory addressing.One integrated UART is multiplexed among the interfaces to allow high-speed automatic smart card processing with each card-possessing, independent, variable, baud-rate capability. The card interface is controlled by internal sequencers that support automatic activation and deactivation sequencing, handling all actions required for T = 0, T = 1, and synchronous protocols. Emergency deactivation is also supported in case of supply dropout. A third card is supported through the auxiliary I/O. The same set of I/O can optionally be used as additional serial interface for the UART.The DS8007A provides all electrical signals necessary to interface with two smart cards. The integrated voltage converter ensures full cross-compatibility between 1.8V/3V/5V cards and a 1.8V/3V/5V environment, and allows operation within a 2.7V to 6V supply voltage range. The standard DS8007 revision is available for nonautomotive applications.ApplicationsAccess ControlBanking Applications (Point-of-Sale Terminals, Debit/Credit Payment Terminals, PIN Pads, Automated Teller Machines)Pay TelevisionTelecommunications |
DS8023Smart Card Interface | Evaluation and Demonstration Boards and Kits | 5 | Active | The DS8023 smart card interface IC is a low-cost, low-power, analog front-end for a smart card reader designed for all ISO 7816, EMV*, and GSM11-11 applications. The DS8023 supports 5V, 3V, and 1.8V smart cards, and provides an option for ultra-low stop-mode power consumption. The DS8023 is available in 28-pin TSSOP and SO packages, and can often be used as a replacement for the TDA8024 with little or no application changes.The DS8023 is designed to interface between a system microcontroller and the smart card interface, providing all power supply, protection, and level shifting required for IC card applications.ApplicationsAccess ControlAutomated Teller MachinesBanking ApplicationsDebit/Credit Payment TerminalsPay/Premium TelevisionPIN PadsPOS TerminalsSet-Top Box Conditional AccessTelecommunications |
| Interface | 6 | Active | ||
| Development Boards, Kits, Programmers | 2 | Obsolete | ||
| Microcontrollers | 14 | Active | ||
DS80C320High-Speed/Low-Power Microcontrollers | Microcontrollers | 35 | Active | The DS80C320/DS80C323 are fast 80C31/80C32-compatible microcontrollers. Wasted clock and memory cycles have been removed using a redesigned processor core. As a result, every 8051 instruction is executed between 1.5 and 3 times faster than the original for the same crystal speed. Typical applications see a speed improvement of 2.5 times using the same code and same crystal. The DS80C320 offers a maximum crystal rate of 33MHz, resulting in apparent execution speeds of 82.5MHz (approximately 2.5X).The DS80C320/DS80C323 are pin compatible with all three packages of the standard 80C32 and offer the same timer/counters, serial port, and I/O ports. In short, the devices are extremely familiar to 8051users, but provide the speed of a 16-bit processor.The DS80C320 provides several extras in addition to greater speed. These include a second full hardware serial port, seven additional interrupts, programmable watchdog timer, power-fail interrupt and reset. The device also provides dual data pointers (DPTRs) to speed block data memory moves. It can also adjust the speed of off-chip data memory access to between two and nine machine cycles for flexibility in selecting memory and peripherals.The DS80C320 operating voltage ranges from 4.25V to 5.5V, making it ideal as a high-performance upgrade to existing 5V systems. For applications in which power consumption is critical, the DS80C323 offers the same feature set as the DS80C320, but with 2.7V to 5.5V operation.Designers must have two documents to fully use all the features of this device: this data sheet and theHigh-Speed Microcontroller User's Guide, available on our website at www.maximintegrated.com/microcontrollers. Data sheets contain pin descriptions, feature overviews, and electrical specifications, whereas our user's guides contain detailed information about device features and operation. |