正式なモデル名: LDL100 COND CONDUCTIVITY HYG G1/2
IFM hygienic two-electrode conductivity sensor with integrated transmitter (electrode + signal processing unit). No separate transmitter required. Supports IO-Link plus 4~20 mA analogue output. Widely used for CIP cleaning and phase interface detection in food & 製薬産業.
✅ Core Measurement Specifications
Conductivity range: 100 ~ 15000 µS/cm, 解決 1 µS/cm
温度測定: -25 ~ +150 ℃, 内蔵温度補償
Conductivity accuracy: ±25 µS/cm within 10% of full scale; 温度精度: <±0.5 K at 20~50 ℃, <±1.5 K across full range
応答時間: <2 s (T09)
温度ドリフト: 0.2 %/K MW ±25 µS/cm
⚡ Electrical Parameters
供給: DC 18~30 V, 逆極性保護
出力: 4~20 mA analogue (selectable for conductivity or temperature) + IOリンク
マックス. load for analogue output: 500 おお
Power-on delay: 2 s
コネクタ: M12
保護クラス: IP69K (suitable for hygienic high-pressure washdown)
🛠 Mechanical & Wetted Materials
Process thread: G1/2 external tapered sealing thread
Wetted materials: 316Lステンレス (1.4404), PEEK; seal FKM; housing PEI
Wetted surface roughness: Ra ≤0.8 μm (hygienic finish)
重さ: 270.5 g
Installation note: の センサー 金属ハウジング + metal pipeline serve as the second electrode by principle. Direct installation on pure plastic pipe is strictly prohibited. Metal adapter sleeve must be fitted for plastic pipelines, otherwise measurement fails.
🧪 Operating Principle
Two-electrode conductivity method: The metal tip of the sensor acts as electrode 1. The sensor housing and metal pipeline together form electrode 2. Voltage is applied between electrodes, and medium current is measured to calculate conductivity.
特性: No fixed cell constant. Readings are affected by pipe inner diameter. CGA calibration gain must be configured after installation. CGA values vary with pipe size (1.5″ ≈96% / 2″≈97% / 3″≈100%).
🎯 Typical Application Scenarios
- CIP cleaning in food, 飲料および製薬産業: distinguish clean water, alkaline and acid liquid, identify phase transition and automatically determine cleaning endpoint
- Hygienic pipeline phase separation and tank media switch detection
- Monitoring of high-electrolyte media (Not suitable for low-conductivity ultra-pure water. Lower limit 100 µS/cm. Use LDL101 for ultra-pure water)
⚠️ Key Limitations & Model Selection Comparison
- Lower limit 100 µS/cm, cannot measure low-conductivity purified water; select LDL101 for purified / ultra-pure water
- Metal pipeline or metal liner required; plastic pipe not recommended
- Measurement is pipe-diameter dependent; on-site CGA calibration is mandatory
- LDL100: two-electrode hygienic type, G1/2, 100~15000 µS/cm; LDL2xx: inductive type (non-contact, anti-fouling)
📌 Accessories
Weld bosses, Varivent hygienic adapters E43306 / E43307 / E43310
Metal adapter E43313 (for plastic pipeline retrofit)
🧯 Troubleshooting
- Drifting / inaccurate readings: Verify metal pipeline; confirm CGA parameter matches pipe diameter; check electrode fouling after CIP
- 信号がありません: Check M12 pin assignment, DC18~30V supply and polarity; verify IO-Link master version
- Abnormal temperature: Temperature probe damage or medium temperature exceeding 150 ℃ upper limit
IFM LDL100 Field Application Cases
コアの位置決め: Hygienic two-electrode sensor, mainly for phase interface detection (not for ultra-pure water purity measurement). Range 100~15000 µS/cm, metal pipe installation. IOリンク + 4~20mA dual output, built-in temperature measurement, IP69K withstands high-temperature CIP flushing.
場合 1: Complete CIP System for Food Industry (Official IFM Reference Case)
業界: Dairy / beverage system integrator
プロセス: In-place pipeline CIP cleaning (Product → Water pre-rinse → Alkaline cleaning → Rinse → Acid cleaning → Final clean water)
目的: Phase transition detection, replacing fixed timer control
LDL100 detects sudden conductivity changes in real time: milk (high conductivity) → clean water (低い導電性) → alkaline solution (very high conductivity) to automatically determine phase switching points.
利点: Replace fixed timing; move to next phase only when conductivity meets rinse criteria. Reduces water, chemical and heat consumption, shortens CIP cycle, prevents residual chemical contamination of finished products. IO-Link uploads real-time conductivity and temperature for HMI monitoring and diagnostic.
Key point: Install on stainless steel hygienic pipeline, configure CGA diameter calibration factor during commissioning.
場合 2: Phase Separation & Product Recovery in Juice / Beverage Lines
業界: Fruit juice, concentrated beverage, plant-based drink
プロセス: Batch pipeline switching, separating product and rinse water
目的: Detect interface between product and water to reduce product loss
Significant conductivity difference between different media. LDL100 captures phase interface signal to trigger valve switching, fully divert product stream to storage tank and avoid discharging large amount of product to waste water; also verify rinse completeness.
利点: Hygienic Ra≤0.8 μm, withstand short-time CIP temperature up to 150 ℃, no separate transmitter required to save cabinet space.
制限: Only for metal pipelines; metal liner required for plastic pipe.
場合 3: CIP/SIP Endpoint Verification for Pharmaceutical Preparation Lines
業界: Biopharma, oral dosage (non ultra-pure water loop)
プロセス: CIP cleaning for preparation pipelines, rinse validation for acid/alkaline detergent
目的: Confirm complete removal of cleaning chemicals for GMP cleaning validation
LDL100 monitors rinse water conductivity. When conductivity drops below threshold, cleaning is deemed qualified. Conductivity and temperature history can be logged for GMP audit trail.
注記: Not for purified / ultra-pure water loop (<100 µS/cm), use LDL101 instead.
場合 4: Salinity & Ion Monitoring for Cooling / Process Circulating Water in Food Plants
業界: Food plant utility system
プロセス: Stainless steel cooling water circulation system
目的: Monitor ion / salt concentration of circulating water and provide early warning for scaling and corrosion risk
Rising ion concentration of circulating water increases conductivity. LDL100 outputs signal to trigger blowdown / water makeup, while acquiring medium temperature for compensation.
Suitable for medium-conductivity circulating water; not for ultra-pure water.
場合 5: Pipeline Media Switching for Sauce & Cheese Production
業界: Dairy, sauce (ketchup, salad dressing)
プロセス: Batch production, switching among product, rinse water and cleaning liquid inside pipeline
目的: Prevent cross-contamination between batches by automatic phase separation
Sauce conductivity is much higher than clean water. The sensor detects the interface and switches flow direction automatically to reduce cross-contamination between different products. It also monitors concentration range of acid/alkaline detergent during CIP.
In cheese factory CIP projects, LDL series verifies complete detergent flushing to guarantee milk product safety.
場合 6: Industrial Parts Cleaning Line (Hygienic Metal Cleaning Loop)
業界: Precision food machinery / pharmaceutical equipment parts cleaning
プロセス: Metal workpiece spray cleaning, alkaline wash → rinse
目的: Monitor outlet pipeline of cleaning tank to verify full alkaline rinse-out
High conductivity of waste cleaning liquid; conductivity drops after rinsing with clean water. LDL100 judges rinse endpoint. IO-Link supports remote parameter reading and fouling diagnosis.
❌ Unsuitable Scenarios (Model Selection Pitfalls)
- Ultra-pure water / purified water (conductivity <100 µS/cm, below measuring range; select LDL101)
- All-plastic pipeline (no metal as second electrode, measurement impossible; metal sleeve required)
- Heavy fouling / abrasive media (fouling changes electrode cell constant; LDL2xx inductive non-contact type recommended)
✅ General Commissioning Notes for All Cases
- インストール: Prefer rising pipe to maintain full pipe without air bubbles; mount at 45° for horizontal pipe
- CGA gain calibration must be performed and matched with pipe inner diameter
- Temperature compensation parameter T.cmp set according to ion characteristics of medium
- IO-Link accesses conductivity, medium temperature and sensor diagnostic data simultaneously
IFM LDL100 CIP PLC Control Logic with Phase Switch Threshold Examples
応用: CIP for dairy / beverage hygienic pipeline. LDL100 sensor, 出力: 4~20mA or IO-Link reading of conductivity (µS/cm) + medium temperature. PLC switches CIP sequence automatically based on conductivity threshold instead of fixed timer.
Precondition: LDL100 CGA diameter calibration completed, pipeline full of liquid without air bubbles.
- Reference Thresholds (Field fine-tuning required based on actual medium)
| CIP Stage | 中くらい | Reference Conductivity Threshold | Action Logic |
| ステージ 0: 待機する | Clean water | <500 µS/cm | Wait for batch production finish and prepare for CIP |
| ステージ 1: Pre-rinse | Product residue + 水 | >1500 µS/cm | Continue rinsing with residue detected; switch to alkaline cleaning when conductivity ≤1500 µS/cm |
| ステージ 2: Alkaline cleaning | NaOH alkaline solution | 8000 ~ 12000 µS/cm | Confirm alkaline liquid arrival; maintain circulation / soak; switch to alkaline rinse when conductivity <6000 µS/cm (alkaline drained) |
| ステージ 3: Alkaline rinse | 水 + residual alkali | >800 µS/cm | Continue rinsing; switch to acid cleaning when conductivity ≤800 µS/cm (alkaline rinse passed) |
| ステージ 4: Acid cleaning | Nitric / phosphoric acid detergent | 5000 ~ 10000 µS/cm | Confirm acid arrival; circulate cleaning; switch to final rinse when conductivity <3000 µS/cm (acid drained) |
| ステージ 5: Final rinse | Clean rinse water | >200 µS/cm | Remove acid residue; CIP complete when conductivity stably ≤200 µS/cm and maintained for 5~10s delay |
備考:
Thresholds are for engineering reference only. Values vary with medium, concentration and temperature, must be calibrated on site.
Add delay filtering (5~10s stable judgement) to avoid false valve switching caused by instantaneous conductivity spikes from air bubbles.
- PLC Logic Framework (Ladder Diagram Concept)
- Signal Acquisition
IO-Link readout: LDL100 → Conductivity value (µS/cm), medium temperature, sensor status bit (故障 / ok)
4~20mA mode: AI module sampling, convert to conductivity; read temperature channel separately
- Fault Interlock
Sensor fault bit =1: suspend automatic CIP sequence, trigger HMI alarm, disable automatic phase transition
Medium temperature>150℃: overtemperature alarm (LDL100 upper limit 150℃)
- Process State Machine
State machine mode with sequential forward transition only, no skip allowed.
Transition condition for each stage: Conductivity threshold met + stable delay + sensor healthy
- HMI Functions
Real-time trend: 導電率 & temperature history curve for GMP audit trail
Parameter screen: Adjustable conductivity thresholds and delay time for each stage
Alarms: Conductivity out of range, sensor wire break, 過熱, CIP timeout
- Safety Backup
Max timer for each stage. 例えば, max alkaline cleaning duration 30 分. Force alarm and safety drain upon timeout regardless of conductivity value, preventing process lockup.
- Typical Interlock Logic Example (Stage Transition)
例: Pre-rinse → Alkaline cleaning
もし (Conductivity ≤1500 µS/cm) AND (Sensor_OK) AND (Stable for 10s) THEN
Close pre-rinse inlet valve
Open alkaline supply valve
Set CIP state to 【Alkaline Cleaning Stage】
END_IF
- LDL100-Specific Commissioning Notes
- Re-run CGA gain calibration every time pipe inner diameter changes, otherwise reading deviation causes wrong phase switch
- Air bubbles cause violent conductivity fluctuation. Install sensor at full-pipe location, avoid high points with air pockets
- Keep temperature compensation enabled for high-temperature CIP/SIP; LDL100 performs internal conductivity compensation
- Electrode fouling leads to reading drift. Program can add periodic maintenance reminder (triggered by accumulated CIP cycles)
- Optional Extended Logic
Log peak / minimum conductivity, duration of each stage into audit trail database (GMP pharmaceutical projects)
Automatic maintenance alert: Trigger probe cleaning prompt when baseline conductivity drifts beyond set percentage under identical medium
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