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NEXGEN ELECTROMECH — Your Trusted Partner for Premium Electrical & Industrial Solutions
Authorized Distributor of Fuji Electric, Baumer, R.STAHL, LAPP, Rishabh, GIC & Weidmuller
Home Products Fuji PLC Fuji Electric Programmable Controller MICREX-SX Series (SPH3300・SPH2200 )

Programmable Controller MICREX-SX Series (SPH3300・SPH2200 )

SPH3300 and SPH2200 are Fuji Electric's next-generation CPU modules in the MICREX-SX programmable controller series, built around a new computational engine that significantly speeds up instruction processing, communication, and application execution over their predecessors. SPH3300 is positioned as the CPU module for motion control (program memory 48-256 Kstep), while SPH2200 is built for monitoring and sequence control at a 48 Kstep capacity. Both are IEC 61131-3 compliant, run on the SX bus, and come standard with a logging function for troubleshooting and a model transition tool that migrates existing SPH2000/SPH3000(D)/SPH300 projects across without re-engineering system definitions or resource settings, turning what used to be a rebuild into a four-step wizard.

A New Computational Engine-Measurable Speed Gains

Fuji Electric benchmarked SPH3300 and SPH2200 directly against their predecessor CPUs, and the gains are substantial rather than incremental:

  • SPH3300 sequence instruction execution: ≥5 ns/instruction-1.8× faster than SPH3000(D) (≥9 ns) and 4× faster than SPH300 (≥20 ns).
  • SPH3300 applied instruction execution: ≥4.4 ns/instruction-1.8× faster than SPH3000(D) and 9× faster than SPH300.
  • SPH2200 sequence instruction execution: ≥12 ns/instruction-2.5× faster than SPH2000 (≥30 ns).
  • SPH2200 applied instruction execution: ≥11.2 ns/instruction-3.5× faster than SPH2000 (≥40 ns).
  • Sequence control task execution time: SPH3300 runs a representative sequence application roughly 2.7× faster than SPH3000 and roughly 6.5× faster than SPH300 across the full program memory range.
  • Motion control task cycle: for a 40 Kstep program with 10 axes under synchronization control, SPH3300 achieves a default 2 ms cycle (2× faster than SPH3000D's 4 ms default), with a 1 ms fixed cycle option available.

(Fuji Electric notes these are representative values from sample applications, not guaranteed performance, actual results depend on the specific application and memory usage.)

Full Motion Instruction Support Built In

  • Supports standard built-in motion function blocks (FBs) and 64-bit operation instructions, previously only available on SPH3000, Das native features, not an add-on.
  • SPH3300 controls up to 32 axes at a 2 ms cycle, approximately 2× the axis count of SPH3000 (16 axes/2 ms) and 4× that of SPH300 (8 axes/2 ms).
  • Ready-made FB types include PTP (point-to-point) positioning, 2-axis linear/circular interpolation, and flying shear control with main-axis speed control and interval synchronization, covering common packaging, cutting, and conveyance motion patterns without custom low-level code.

Faster Application Downloads

Communication performance improvements translate directly into shorter commissioning and update cycles:

  • SPH2200 (32 Kstep program): downloads in about 3.5 seconds, roughly 4× faster than SPH2000's 14.3 seconds.
  • SPH3300 (245 Kstep program): downloads in about 17.2 seconds, roughly 13× faster than SPH300's 219 seconds and well ahead of SPH3000(D)'s 44 seconds.

Standard Logging Function for Troubleshooting

  • Collects and saves CPU module data (temperature, pressure, distance/displacement, servo speed/torque, work ID/equipment ID, error alerts, and more) at any desired timing, without affecting scan time or machine operation.
  • Data is stored to SD card in chronological order and can be played back and analyzed later : including export to Excel or CSV for downstream data analysis : turning post-incident troubleshooting from guesswork into a data-driven review.
  • Waveform monitor displays the collected variable data on a time axis, connecting directly to servo systems, proximity switches, displacement sensors, and pressure sensors over the SX bus.
  • SX monitor goes a step further, replaying the actual user program logic around a trigger event (pre-trigger, at-trigger, and post-trigger cycles) so engineers can see exactly what the ladder logic was doing when a fault occurred. (SX monitor requires SX-Programmer Expert/D300win.)

Model Transition Function-Migration Without a Rebuild

A four-step, GUI-driven migration path is built into the programming software:

  1. From the "Project" menu, select Model Transition.
  2. Confirm the project name: overwrite the source project or save under a new name.
  3. Check the migration CPU and select which resources transfer (per-resource before/after CPU type is shown, and individual resources can be excluded).
  4. Execute: the tool produces a migrated project ready to download, without manually re-entering system definitions or resource settings.

Applications

  • Printing and web-handling machinery: SPH3300 over the SX bus drives multiple servo axes and position sensors along a print/laminate line, with analog signal feedback for tension or registration control.
  • Equipment monitoring systems: SPH3300 and SPH2200 report into an operation-room HMI over Ethernet while separately managing plant equipment (servo systems, inverters, UPSs, motors, distribution panels, ultrasonic flowmeters, differential pressure/pressure transmitters) via SX bus or T-link.
  • High-speed motion applications: packaging lines (PTP positioning), converting/cutting operations (2-axis linear interpolation), and flying shear / rotary cutting (main-axis speed control with interval synchronization).
  • Retrofits of SPH2000, SPH3000(D), and SPH300 installations: the model transition function and documented replacement mapping make SPH2200/SPH3300 the direct upgrade path without a system redesign.
Spec SPH3300 SPH2200
Program Memory 48 / 96 / 128 / 256 Kstep (NP1PU-048EN / 096EN / 128EN / 256EN) 48 Kstep (NP1PM-048EN / 048RN)
Basic Instruction (LD BOOL) ≥ 5 ns/instruction ≥ 12 ns/instruction
Applied Instruction (MOVE WORD) ≥ 4.4 ns/instruction ≥ 11.2 ns/instruction
CPU 32-bit RISC processor 32-bit RISC processor
I/O Points 8,192 points 8,192 points
Programming Languages IL, ST, LD, FBD, SFC (IEC 61131-3) IL, ST, LD, FBD, SFC (IEC 61131-3)
I/O Connection Direct SX bus, remote I/O (T-link, OPCN-1, etc.) Direct SX bus, remote I/O (T-link, OPCN-1, etc.)
Multi-CPU Up to 8 units per configuration Up to 8 units per configuration
Motion Control Up to 32-axis, SX bus, min. 1 ms cycle Up to 32-axis, SX bus, min. 1 ms cycle
User ROM Interface SD / SDHC memory card SD / SDHC memory card
USB miniB connector (programming tool only) Not equipped (NP1PM-048EN/RN)
Calendar Up to 31 Dec 2069, battery-backed Up to 31 Dec 2069, battery-backed
Redundant System Not supported Not supported
Security Password-protected download/upload/reference/clear Password-protected download/upload/reference/clear
Applicable Standard IEC 61131 IEC 61131

Migration uses the built-in model transition function (SX-Programmer Expert D300win V3.7.4+, or SX-Programmer Standard V3.1.3+), refer to the full lineup table for SPH300 mappings and exact ordering codes.

FAQ

Frequently Asked Questions

Find answers to common questions about our products and solutions.

SPH3300 and SPH2200 are Fuji Electric's current-generation CPU modules for the MICREX-SX programmable controller platform. SPH3300 is built for motion control (up to 256 Kstep), while SPH2200 targets monitoring and sequence control at 48 Kstep. Both use a new computational engine that Fuji Electric benchmarks as several times faster than the CPUs they replace.

Based on Fuji Electric's own benchmarks, SPH3300 executes sequence instructions up to 4× faster than SPH300 and 1.8× faster than SPH3000(D), and applied instructions up to 9× faster than SPH300. SPH2200 executes sequence instructions 2.5× faster and applied instructions 3.5× faster than SPH2000. Full sequence-control application execution is roughly 2.7:6.5× faster on SPH3300, depending on the comparison model, and application downloads are 4:13× faster than the older lineup.

Yes. A built-in model transition function in the programming software migrates an existing project to SPH2200 or SPH3300 in four steps, select "Model Transition" from the Project menu, confirm the project name, choose which resources to migrate, and execute, without needing to manually re-enter system definitions or resource settings.

SPH3300 supports up to 32 axes at a 2 ms cycle over the SX bus, about 2× the axis count of SPH3000 (16 axes/2 ms) and 4× that of SPH300 (8 axes/2 ms). Built-in motion function blocks cover PTP positioning, 2-axis linear/circular interpolation, and flying shear control.

It can collect CPU module data such as temperature, pressure, distance/displacement, servo speed/torque, work or equipment ID, and error alerts at any timing the user sets, without affecting scan time. Data is stored to SD card in chronological order and can be played back through loader software or exported to Excel/CSV for further analysis.

The waveform monitor displays logged variable values on a time axis : useful for reviewing sensor trends. The SX monitor goes further, replaying the actual user program (ladder logic) around a trigger event so engineers can see what the program was doing before, during, and after a fault. SX monitor is only available with SX-Programmer Expert (D300win).

It depends on the model. NP1PM-048EN includes Ethernet (100BASE-TX/10BASE-T); NP1PM-048RN does not. Both support USB 2.0 for loader/programming tool connection.

Both carry CE and UL certification. UKCA marking applies as noted, and support for maritime classification standards (LR, NK) is scheduled to begin in May 2025. Note that CE certification covers the SX Series module alone, the final integrated product should be verified separately.

Looking for a MICREX-SX SPH3300 or SPH2200 programmable controller distributor or dealer in West Bengal? NEXGEN Electromech can help you select the right CPU module, memory capacity, and migration path based on your existing PLC, I/O count, and motion control requirements.

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Programmable Controller MICREX-SX Series (SPH3300・SPH2200 )

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