Select an emulator card, in-circuit pod, and chassis with or without the optional trace card to configure your emulator.
Or, we would be happy to configure an emulator for your project. Email your target processor part number & clock speed
2.1- MHz maximum E-Clock, 4-kiloframe, 2 level trigger, real-time The trace buffer shows history of execution. There are two condition registers for triggering or filtering on address or data values, cycle type or external inputs. There is also time stamping with prescaler, loop event counter and program performance analysis.
3.3- MHz maximum E-Clock, 4-kiloframe, 2 level trigger, real-time The trace buffer shows history of execution. There are two condition registers for triggering or filtering on address or data values, cycle type or external inputs. There is also time stamping with prescaler, loop event counter and program performance analysis.
2.1- MHz maximum E-Clock, 16-kiloframe, 2 level trigger, real-time The trace buffer shows history of execution. There are two condition registers for triggering or filtering on address or data values, cycle type or external inputs. There is also time stamping with prescaler, loop event counter and program performance analysis.
3.3- MHz maximum E-Clock, 16-kiloframe, 2 level trigger, real-time The trace buffer shows history of execution. There are two condition registers for triggering or filtering on address or data values, cycle type or external inputs. There is also time stamping with prescaler, loop event counter and program performance analysis.
4.0- MHz maximum E-Clock, 16-kiloframe, 2 level trigger, real-time The trace buffer shows history of execution. There are two condition registers for triggering or filtering on address or data values, cycle type or external inputs. There is also time stamping with prescaler, loop event counter and program performance analysis.
2.1 MHz maximum E-Clock Real-time trace, 256K-Frame FIFO record. There are up to 8 levels of trigger registers for triggering or filtering on address or data values, cycle type or external inputs. There is also a loop event counter and program performance analysis, plus 32-bit time stamping with 16-bit prescaler, state and counter functions, filter delay, search, Shadow RAM for real-time variable display in binary to graphic format, 1MB Code Coverage memory.
4.0 MHz maximum E-Clock Real-time trace, 256K-Frame FIFO record. There are up to 8 levels of trigger registers for triggering or filtering on address or data values, cycle type or external inputs. There is also a loop event counter and program performance analysis, plus 32-bit time stamping with 16-bit prescaler, state and counter functions, filter delay, search, Shadow RAM for real-time variable display in binary to graphic format, 1MB Code Coverage memory.
A 2.1-MHz pod including a 48-pin DIP adapter for single-chip mode. Supports 68HC11A0, 68HC11A1, 68HC11A7, 68HC11A8, 68HC11E0, 68HC11E1, 68HC811E2, 68HC11E8, 68HC11E9, 68HC711E9, 68HC11E20 and 68HC711E20
A 3.0-MHz pod including a 48-pin DIP adapter for single-chip mode. Supports 68HC11A0, 68HC11A1, 68HC11A7, 68HC11A8, 68HC11E0, 68HC11E1, 68HC811E2, 68HC11E8, 68HC11E9, 68HC711E9, 68HC11E20 and 68HC711E20
68HC11A and E series 2.1- MHz maximum E-Clock in-circuit pod for single chip mode only. Supports 68HC11A0, 68HC11A1, 68HC11A7, 68HC11A8, 68HC11E0, 68HC11E1, 68HC811E2, 68HC11E8, 68HC11E9, 68HC711E9, 68HC11E20 and 68HC711E20
The 68HC11A1 PLCC chip is in a socket. The optional ZIF programming adapter, EMUL68-PC/PLCC52ZIF-PLCC52, is recommended for easy
removal when frequently programming '711E9 PLCC parts in the pod.
68HC11 A and E series 3.0- MHz maximum E-Clock in-circuit pod for single chip mode only.
The 68HC11A1 PLCC chip on this pod is in a socket. The optional ZIF programming adapter, EMUL68-PC/PLCC52ZIF-PLCC52, is recommended for easy
removal when frequently programming '711E9 PLCC parts in the pod.