Q64TDV-GH Mitsubishi MELSEC-Q Series Temperature input
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Quick facts
| Availability | Confirmed on request |
| Category | Mitsubishi MELSEC-Q Series – Analog |
| Lifecycle | Active mature |
| Warranty | 12-month (new) · 3-month (used/refurbished) |
Shipping & availability
When can Q64TDV-GH be shipped?
Q64TDV-GH is sourced on request — request a quote and we'll confirm the exact availability and shipping timeline for this specific unit.
Can I pick up Q64TDV-GH in person?
Local pickup from our Groningen, Netherlands warehouse may be possible — contact us before ordering to check availability and arrange a collection time.
Is express delivery available?
Yes — mention it when you request a quote for Q64TDV-GH and we'll include express shipping options in our reply.
My factory is down and I need this urgently — can you help?
For a critical breakdown, contact us directly at +31 (0)50-7110348 or sales@partnerplc.com — we can look into same-day courier or dedicated taxi/hotshot delivery for Q64TDV-GH, subject to availability and destination.
The Mitsubishi Electric Q64TDV-GH is a temperature input in the MELSEC-Q Series. 4 channels, thermocouple (B, R, S, K, E, J, T, N), micro voltage (-100...100 mV), conversion speed: (sampling cycle x 3)/channel, 18-point terminal block, channel isolated. Mitsubishi Electric has announced its discontinuation (2029/09 To be end of order) — plan spares now; PartnerPLC also sources it on the surplus market after the end of order. Specifications and manuals below are Mitsubishi Electric's own data.
Specifications
Product
| Series | MELSEC-Q Series |
| Category | Temperature input |
| Type | Thermocouple input |
| Sales status | 2029/09 To be end of order (Mitsubishi Electric) |
| Outline | 4 channels, thermocouple (B, R, S, K, E, J, T, N), micro voltage (-100...100 mV), conversion speed: (sampling cycle x 3)/channel, 18-point terminal block, channel isolated |
Specifications
| Number of analog input points | 4 points (4 channels + cold junction compensation channels) |
| Number of channels | 4 channels |
| Digital output: Temperature measured value | 16-bit signed binary value (-2700...18200: value to the first decimal place × 10) |
| Digital output: Micro voltage conversion value | 16-bit signed binary value (-25000...25000) |
| Digital output: Scaling value | 16-bit signed binary value |
| Thermocouple compliance standards | JIS C1602-1995 |
| Micro voltage input: Input range | -100...+100 mV (input resistance 2 MΩ or more) |
| Micro voltage input: Accuracy | ±0.2 mV (at 25 ± 5 ˚C operating ambient temperature) ±0.8 mV (at 0...55 ˚C operating ambient temperature) |
| Micro voltage input: Resolution | 4 µV |
| Resolution | B: 0.7 ˚C R, S:0.8 ˚C K, T: 0.3 ˚C E: 0.2 ˚C J: 0.1 ˚C N: 0.4 ˚C |
| Accuracy: Thermocouple type: Measured temperature range | Accuracy (℃) = (Conversion accuracy) + (Temperature characteristics) Conversion accuracy (at operating ambient temperature 25±5 ゚C) Temperature characteristic (per operating ambient temperature variation of 1 ゚C) Maximum temperature error at ambient temperature 55゚C Effect per wiring resistance 1Ω |
| Accuracy: B: 0...600 ゚C | ― |
| Accuracy: B: 600...800 ゚C | Conversion accuracy: ±4.0 ˚C Temperature characteristics: ±0.4 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±14.0 ˚C Effect per wiring resistance: 0.011 ˚C/Ω |
| Accuracy: B: 800...1700 ゚C | Conversion accuracy: ±3.5 ˚C Temperature characteristics: ±0.4 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±13.5 ˚C Effect per wiring resistance: 0.010 ˚C/Ω |
| Accuracy: B: 1700...1820 ゚C | ― |
| Accuracy: R: -50...0 ゚C | ― |
| Accuracy: R: 0...300 ゚C | Conversion accuracy: ±4.0 ˚C Temperature characteristics: ±0.4 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±14.0 ˚C Effect per wiring resistance: 0.013 ˚C/Ω |
| Accuracy: R: 300...1600 ゚C | Conversion accuracy: ±3.5 ˚C Temperature characteristics: ±0.4 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±13.5 ˚C Effect per wiring resistance: 0.008 ˚C/Ω |
| Accuracy: R: 1600...1760 ゚C | ― |
| Accuracy: S: -50...0 ゚C | ― |
| Accuracy: S: 0...300 ゚C | Conversion accuracy: ±4.0 ˚C Temperature characteristics: ±0.4 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±14.0 ˚C Effect per wiring resistance: 0.013 ˚C/Ω |
| Accuracy: S: 300...1600 ゚C | Conversion accuracy: ±3.5 ˚C Temperature characteristics: ±0.4 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±13.5 ˚C Effect per wiring resistance: 0.008 ˚C/Ω |
| Accuracy: S: 1600...1760 ゚C | ― |
| Accuracy: K: -270...-200 ゚C | ― |
| Accuracy: K: -200...0 ゚C | Conversion accuracy: ±2.0 ˚C Temperature characteristics: ±0.25 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±8.25 ˚C Effect per wiring resistance: 0.005 ˚C/Ω |
| Accuracy: K: 0...200 ゚C | Conversion accuracy: ±1.5 ˚C Temperature characteristics: ±0.25 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±7.75 ˚C Effect per wiring resistance: 0.002 ˚C/Ω |
| Accuracy: K: 200...1200 ゚C | Conversion accuracy: ±2.0 ˚C Temperature characteristics: ±0.25 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±8.25 ˚C Effect per wiring resistance: 0.002 ˚C/Ω |
| Accuracy: K: 1200...1370 ゚C | ― |
| Accuracy: E: -270...-200 ゚C | ― |
| Accuracy: E: -200...200 ゚C | Conversion accuracy: ±1.5 ˚C Temperature characteristics: ±0.15 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±5.25 ˚C Effect per wiring resistance: 0.003 ˚C/Ω |
| Accuracy: E: 200...900 ゚C | Conversion accuracy: ±2.0 ˚C Temperature characteristics: ±0.15 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±5.75 ˚C Effect per wiring resistance: 0.001 ˚C/Ω |
| Accuracy: E: 900...1000 ゚C | ― |
| Accuracy: J: -210...-40 ゚C | ― |
| Accuracy: J: -40...200 ゚C | Conversion accuracy: ±1.5 ˚C Temperature characteristics: ±0.15 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±5.25 ˚C Effect per wiring resistance: 0.002 ˚C/Ω |
| Accuracy: J: 200...750 ゚C | Conversion accuracy: ±2.0 ˚C Temperature characteristics: ±0.15 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±5.75 ˚C Effect per wiring resistance: 0.002 ˚C/Ω |
| Accuracy: J: 750...1200 ゚C | ― |
| Accuracy: T: -270...-200 ゚C | ― |
| Accuracy: T: -200...0 ゚C | Conversion accuracy: ±2.0 ˚C Temperature characteristics: ±0.1 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±4.5 ˚C Effect per wiring resistance: 0.004 ˚C/Ω |
| Accuracy: T: 0...350 ゚C | Conversion accuracy: ±1.5 ˚C Temperature characteristics: ±0.1 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±4.0 ˚C Effect per wiring resistance: 0.002 ˚C/Ω |
| Accuracy: T: 350...400 ゚C | ― |
| Accuracy: N: -270...-200 ゚C | ― |
| Accuracy: N: -200...0 ゚C | Conversion accuracy: ±2.5 ˚C Temperature characteristics: ±0.25 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±8.75 ˚C Effect per wiring resistance: 0.007 ˚C/Ω |
| Accuracy: N: 0...200 ゚C | Conversion accuracy: ±2.0 ˚C Temperature characteristics: ±0.25 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±8.25 ˚C Effect per wiring resistance: 0.003 ˚C/Ω |
| Accuracy: N: 200...1250 ゚C | Conversion accuracy: ±2.5 ˚C Temperature characteristics: ±0.25 ˚C Maximum temperature error at ambient temperature 55 ゚C: ±8.75 ˚C Effect per wiring resistance: 0.002 ˚C/Ω |
| Accuracy: N: 1250...1300 ゚C | ― |
| Accuracy: Cold junction compensation accuracy | ±1.0 ˚C |
| Sampling cycle | 20 ms/1 channel |
| Conversion speed | Sampling period × 3 |
| Absolute maximum input | ±5 V |
| Disconnection detection | Available (each channel independent) |
| Isolation method | Between thermocouple input/micro voltage input and programmable controller power supply: Transformer Between thermocouple input/micro voltage input channels: Transformer Between cold junction temperature compensation channel (Pt100) and programmable controller power supply: Non-isolation |
| Dielectric withstand voltage | Between thermocouple input/micro voltage input and programmable controller power supply, between thermocouple input/micro voltage input channels: 1780 V AC rms/3 cycles (altitude 2000 m) |
| Insulation resistance | Between thermocouple input/micro voltage input and programmable controller power supply: 500 V DC, 100 MΩ or higher Between thermocouple input/micro voltage input channels: 500 V DC, 10 MΩ or higher |
| External interface | 18-point terminal block (M3 screw) |
| Number of occupied I/O points | 16 points (I/O assignment: Intelligent 16 points) |
| Internal current consumption (5 V DC) | 0.50 A |
| External dimensions: Height | 98 mm |
| External dimensions: Width | 27.4 mm |
| External dimensions: Depth | 112 mm |
| Weight | 0.25 kg |
Specifications
| General specifications | Refer to the general specifications of the CPU module. |
Downloads & documentation
Official documents from Mitsubishi Electric (Factory Automation), downloaded directly from the manufacturer.
Data sheets & manuals
| Thermocouple Input Module Channel Isolated Thermocouple/Micro Voltage Input Module User's Manual (SH-080141-P) | PDF · 6.59MB |
| Before Using the Product (BCN-P5803) | PDF · 0.14MB |
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