ชื่อผลิตภัณฑ์แบบเต็ม: ออมรอน SYSMAC CQM1 Series PLC AC หน่วยจ่ายไฟ
สถานะ: ยกเลิก (มีนาคม 2019). No genuine new stock available from manufacturer, and no official direct replacement model. Supplies on the market are mainly used dismantled units and refurbished parts.
Compatible Host: CQM1 / CQM1H series compact modular บมจ. ติดตั้งราง DIN, installed at the far left of the rack to supply power to ซีพียู and I/O modules.
- ข้อมูลจำเพาะทางไฟฟ้าหลัก
| รายการ | พารามิเตอร์ |
| แรงดันไฟฟ้าอินพุตที่กำหนด | 100~240V AC, 50/60เฮิรตซ์ |
| ช่วงแรงดันไฟฟ้าปฏิบัติการ | 85~265V AC (Wide-range input) |
| Internal Output | 5ในดีซี: 3.6ก (18ว). No built-in 24V DC sensor power supply (differentiated from PA206/PA216) |
| การติดตั้ง | รางปีกนก, assembled on the left side of CQM1 rack |
| ตัวบ่งชี้ | POWER (Power Run LED); lights up under normal power; extinguishes on power loss or overload |
| การป้องกัน | กระแสเกิน, การป้องกันแรงดันไฟฟ้าเกิน; cuts off 5V output upon fault to protect CPU and I/O modules |
Comparison with power supplies in the same series
CQM1-PA203: 5V@3.6A, low capacity, no 24V DC output
CQM1-PA206: 5V@6A, with 0.5A 24VDC auxiliary output
CQM1-PA216: Higher power AC power supply
CQM1-PD026: DC input power supply unit
- คำจำกัดความของรหัสโมเดล
CQM1: รหัสซีรีส์ (SYSMAC CQM1 compact PLC)
ป้า: Power AC, AC input power supply unit
203: Specification revision code, denotes wide-range AC input with 5V 3.6A power rating
- System Selection Guidelines
- Total 5V current consumption of all modules (ซีพียู + ฉัน/โอ + special modules) must be ≤3.6A. Excessive load will cause frequent power dropout and power supply damage. Sum the 5V power consumption of each unit during selection.
- Modules are powered via backplane bus. External 5V cannot feed the backplane. Power can only be supplied by this power unit.
- No 24V sensor power terminals. Sensors on site require an independent external 24V power supply.
- การแก้ไขปัญหา (Key Points for Used Units)
The most common failure mode of CQM1-PA203 is aging and bulging of internal electrolytic capacitors, a typical defect for this legacy power supply.
Symptoms: POWER LED does not light up after power-on; LED flashes or restarts repeatedly seconds after energization; voltage drops under load while voltage is normal at no load, power fails once CPU is fitted.
การตรวจสอบ: Disconnect all CPU/I/O modules, power up independently and measure backplane 5V output. If 5V is normal at no load but voltage collapses under load, capacitor aging is highly likely.
Acceptance checklist for second-hand units: Inspect PCB for swollen capacitors, burn marks and terminal corrosion; perform full-load aging test.
- ตัวเลือกการทดแทน (System Retrofit)
No pin-compatible new unit from OEM. Two available solutions:
- Refurbishment / Second-hand Replacement: Retain existing CQM1 platform. Purchase used CQM1-PA203, replace capacitors and run load test. Suitable for short-term equipment life extension.
- Full Machine Upgrade: Migrate the entire PLC system to CJ2M series (CJ2M-CPU + CJ2M power supply). Program migration is required; racks and all modules need replacement. This is a project-level modification for long-term stable operation.
- สถานการณ์การใช้งาน
Legacy machine tools, เครื่องจักรบรรจุภัณฑ์, textile equipment and old production lines equipped with OMRON CQM1/CQM1H compact PLC.
CQM1 → CJ2M Full System Migration: Hardware List & Program Migration Checklist
Reference OMRON official manual P087-E1-03 (CQM1(ชม) to CJ2M)
สถานที่ตั้งหลัก: CQM1 rack, backplane and power supply (CQM1-PA203) must be discarded and cannot be reused. CJ2M adopts CJ series backplane-less snap-together module architecture.
- Hardware Selection List (By Module Category)
1.1 CPU Selection (Match Original CQM1 Program Capacity & จุด I/O)
| รุ่นดั้งเดิม | Recommended CJ2M CPU | หมายเหตุ |
| CQM1-CPU11/21 (5เค สเต็ป) | CJ2M-CPU11 | 5เค สเต็ป, ประเภทพื้นฐาน, USB+RS232 |
| CQM1-CPU41/42 (10เค สเต็ป) | CJ2M-CPU12 | 10เค สเต็ป |
| CQM1-CPU51/61 (20เค สเต็ป) | CJ2M-CPU13 | 20เค สเต็ป |
| จำเป็นต้องใช้อีเทอร์เน็ต | CJ2M-CPU31/32/33 | อีเธอร์เน็ต/IP ในตัว |
บันทึกแล้ว: CJ1W-BAT01 battery (for D/HR memory retention); end plate CJ1W-TER01 (must be installed at the rightmost of rack, otherwise error occurs)
1.2 CJ Series Power Supply (Replaces CQM1-PA203)
CJ1W-PA202: AC100-240V, 5V 5A (ใช้กันมากที่สุด)
CJ1W-PA205R: Wide AC input, 5V 10A for high-power systems
Mounting sequence: Power supply → CPU → I/O / Special modules → End plate
1.3 I/O Module Replacement (CQM1 Modules Cannot Plug into CJ Rack)
| Old CQM1 Module | CJ Series Equivalent | หมายเหตุ |
| CQM1-ID212 16-point DC Input | CJ1W-ID211 | 16-จุดอินพุต DC24V |
| CQM1-OD212 16-point Transistor Output | CJ1W-OD211 | 16-point transistor output |
| CQM1-OC222 16-point Relay Output | CJ1W-OC211 | เอาท์พุทรีเลย์ |
Fast Wiring Option: CJ1W-AT4xx terminal adapter. Mount original CQM1 terminal block directly onto CJ1W I/O modules, no need to re-crimp field cables. Disadvantage: increased module depth; reserve space inside DIN cabinet.
1.4 โมดูลพิเศษ / Bus Module Replacement (Critical Pitfalls)
- Analog modules (CQM1-MAD01/MAD02 etc.) → CJ1W-MAD42, CJ1W-DA041; Unit number needs re-dip switch setting, CIO channel addresses will change.
- CQM1-B7A Remote I/O: B7A protocol not compatible with CJ2M. Master station and all remote slaves must be replaced with CompoNet (CJ1W-CRM21). All remote cables need rework; heavy workload.
- โมดูลการสื่อสาร: CQM1-SCB41 → CJ1W-SCU21-V1 serial module; DeviceNet CQM1-DRM21 → CJ1W-DRM21.
1.5 แร็ค & DIN Rail Accessories
CJ series uses no backplane; modules snap together directly.
สูงสุด 10 units for single CPU rack; expansion racks use CJ1W-IC101 (CPU rack side) + CJ1W-II101 (expansion side). ขึ้นไป 3 expansion racks.
1.6 Hardware Test Tool List
CX-โปรแกรมเมอร์ (V9.5+ recommended), สายโปรแกรม USB (CJ2M with built-in USB port)
มัลติมิเตอร์, 24แหล่งจ่ายไฟวี, terminal jumpers, เครื่องพิมพ์ฉลาก
PC with backup of original program
- Program Migration Checklist (CX-Programmer Migration Workflow)
Core note: CX-P can auto-convert most ladder logic, but address mapping, some instructions and flags may fail. Converted project cannot be downloaded directly for production.
✅ Phase 1: Pre-migration Preparation (Before Shutdown)
- Upload complete CQM1 program, I/O comments, initial values of D/HR memory and PLC system settings online; keep two separate backups.
- Record original system information:
Slot position of each module, unit number (DIP switch settings of special modules)
CIO channel assignment (ป้อนข้อมูล, เอาท์พุท, channels allocated to special modules)
พารามิเตอร์การสื่อสาร: อนุกรม / DeviceNet baud rate, station number
Interrupt program, เคาน์เตอร์ความเร็วสูง, pulse output parameters
Current values of D, ทรัพยากรบุคคล, AR, TIM/CNT in original PLC
- List special instructions, พีไอดี, high-speed counter and interrupt instructions used in original program.
- Export I/O address table and create old-to-new address comparison sheet (most critical document).
✅ Phase 2: CX-P Model Conversion Procedure
- Open CQM1 project in CX-P → PLC → Change Model, select corresponding CJ2M CPU model.
- Software auto-converts instructions; check conversion errors and warnings in output window.
- สำคัญ: Memory Map Correction (CQM1 vs CJ2M Memory Differences)
CQM1: Fixed CIO allocation; CJ2M: Basic I/O units auto assigned CIO 0000~0159CH; Special I/O units: 2000~2959CH, 10CH per unit; CPU bus units 1500~1899CH, 25CH per unit. Allocation rules differ.
Manually reassign CIO to match original CQM1 channel mapping, otherwise all I/O will be misaligned.
AR area (auxiliary relay) address definitions differ. AR flags are a frequent source of faults.
- Item-by-item instruction verification (failed conversion or behaviour-changed instructions)
Operation operands of some BCD/BIN conversion instructions are changed;
Interrupt instructions: Legacy CQM1 interrupt instructions must be rewritten in CJ2M using MSKS / MSKR / CLI / EI / จาก;
PID instruction parameter structure differs;
Carry and zero flags (P_Flag) behave differently after execution of certain instructions, causing hidden logic faults without compile errors.
- Data memory migration:
After model conversion, D and HR values are not inherited automatically. Manually copy initial values between CQM1 memory window and CJ2M memory window. Verify preset values of TIM/CNT.
- PLC System Settings:
Cycle time, interrupt response, serial parameters, battery detection, power-up mode;
CJ2M system setting pages are completely different from CQM1; old settings cannot be reused.
✅ Phase 3: Compilation, Simulation & Offline Debugging
- Full compilation, clear all Errors; Evaluate all Warnings one by one, do not ignore.
- Offline simulation: Force I/O status to test logic branches, ตัวจับเวลา, counters and alarm logic.
- ตรวจสอบ: Old/new I/O address table, special module channels, communication addresses.
- Document update: Update program comments, electrical drawings and I/O table.
✅ Phase 4: Hardware Power-up & Online Debugging (Step-by-Step Safe Procedure)
- Power off and assemble full CJ2M hardware. Verify module order, DIP switch settings and end plate installation.
- No-load power-up (disconnect field actuator outputs):
Check power supply and CPU RUN LED; confirm no I/O or unit errors;
Download program + PLC settings + D area initial values;
Force input points and check CIO input status; force outputs and measure terminals.
- Power on with sensors: Verify all DI input signals.
- Single-point test of DO outputs without load.
- Single-point test of special modules: อนาล็อก, เคาน์เตอร์ความเร็วสูง, เอาท์พุทพัลส์.
- การทดสอบการสื่อสาร: พอร์ตอนุกรม, bus and HMI/host computer communication.
- Full machine no-load sequence test, monitor scan cycle time.
⚠️ CJ2M executes instructions faster, scan cycle is shorter, which may trigger timing-dependent issues on original CQM1 logic (เช่น. latch and delay logic). Timing validation is required; add software delay if necessary.
✅ Phase 5: Load Trial Run & การยอมรับ
- Loaded jogging and single-cycle operation;
- Continuous trial run, monitor alarms, memory and CPU error logs;
- Back up final CJ2M program and memory image; update equipment files;
- Prepare rollback plan (retain original CQM1 system as emergency backup).
- Migration Risk Checklist (Critical Pitfalls)
- ❗ Different CIO allocation mechanism: I/O address misalignment even if compilation passes, leading to unintended machine movement.
- ❗ Behaviour difference of flags (P_On, P_Off, P_CY, P_EQ), hidden logic bugs hard to detect via simulation.
- ❗ CQM1-B7A remote I/O cannot be reused; จำเป็นต้องเปลี่ยนใหม่ทั้งหมด.
- ❗ Shorter scan cycle introduces timing issues; many legacy logics rely on slower scan speed of old PLC.
- ❗ Memory loss on battery replacement for CJ2M: D area data will be lost when replacing battery with power off. Complete data backup is mandatory.
- ❗ Space interference with CJ1W-AT4xx adapter; CPU USB port may be blocked. Verify cabinet depth in advance.
- Deliverable List After Migration Completion
- Full CJ2M CX-P project (with comments and I/O table)
- Old-to-new I/O address comparison sheet
- D/HR memory initial value backup file
- Updated hardware wiring diagram with CJ module terminals
- Module DIP switch table and communication parameter document
- Test log and trial run report
- Troubleshooting manual
- Comparison of Optional Simplified Solutions
ตัวเลือก ก (Full migration to CJ2M): Long-term stable solution. ต้นทุนที่สูงขึ้น, longer downtime and heavy program modification.
ตัวเลือก ข (Only repair CQM1-PA203 power supply, keep original PLC system): Low cost for rapid life extension. However CPU and other modules remain aged, only suitable for short-term transition.
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