Features: • IN-SYSTEM PROGRAMMABLE (ISP™) ANALOG CIRCUIT - Four Instrument Amplifier Gain/Attenuation Stages - Signal Summation (Up to 4 Inputs) - Precision Active Filtering (10kHz to 100kHz) - No External Components Needed for Configuration - Non-Volatile E2CMOS® Cells (10,000 Cyc...
ispPAC10: Features: • IN-SYSTEM PROGRAMMABLE (ISP™) ANALOG CIRCUIT - Four Instrument Amplifier Gain/Attenuation Stages - Signal Summation (Up to 4 Inputs) - Precision Active Filtering (10kHz to 10...
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Supply Voltage VS ................................................ -0.5 to +7V
Logic and Analog Input Voltage Applied ..................... 0 to VS
Logic and Analog Output Short Circuit Duration ..... Indefinite
Lead Temperature (Soldering, 10 sec.) ...................... 260°C
Ambient Temperature with Power Applied ... ....-55 to 125°C
Storage Temperature ....................................... -65 to 150°C
Note: Stresses above those listed may cause permanent damage to the device. These are stress only ratings and functional operation of the device at these or at any other conditions above those indicated in the operational sections of this specification is not implied.
The ispPAC10 is a member of the Lattice family of In- System Programmable analog circuits, digitally configured via nonvolatile E2CMOS technology.
Analog function modules, called PACblocks™, replace traditional analog components such as op amps and active filters, eliminating the need for most external resistors and capacitors. With no requirement for external configuration components, ispPAC10 expedites the design process, simplifying prototype circuit implementation and change, while providing high performance and integrated functionality.
Designers configure the ispPAC10 and verify its performance using PAC-Designer®, an easy-to-use, Microsoft Windows® compatible development tool. Device programming is supported using PC parallel port I/O operations. A library of configurations is included with basic solutions and examples of advanced circuit techniques.
The ispPAC10 is configured through its IEEE Standard 1149.1 (JTAG) compliant serial port. The flexible In- System Programming capability enables programming, verification and reconfiguration if desired, directly on the printed circuit board.