Features of Uni-Thermo
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2 Long-life. High reliability Uni-Thermo Peltier Device in the 1st Century CONTENTS Comparison with a Conventional Peltier Device. The Result of Operating Reliability Test Peltier Device Uni-Thermo Quality Chart Peltier Device Uni-Thermo UT-00CE-M Peltier Device Uni-Thermo UT-3030CE-M Peltier Device Uni-Thermo UT-4040CE-M Peltier Device Uni-Thermo UT-7070CE-M Cooling Unit Line Up Thermo Electric Peltier Controller Model TA-0 Thermo Electric Peltier Controller Model TA-30 Thermo Electric Peltier Controller Model TA-151 Features of Uni-Thermo * Succession in making a single crystal of this element. * Skeleton Structure. (Flexible Structure - relief of thermal distortion.-) * Precise Processing Technology Accumulated by Watch Precise Technique. 3 4~ ~ 11 1 ~ ~ ~ 17 Under these technologies, we provide an ideal electronic peltier cooling which has an excellent performance, reliability, environmental, compact, and superior in everything belonging to this device. 1. Superior cooling efficiency. (Max. temperature gap, Endothermic quantity.). High-speed respons. 3. High reliability, long-life. 4. High precision thickness control. 5. Utilization of large-sized (70x70 mm square) module. 6. Electric insulation can be selected according to application. 7. Made with Pb-free. e-catalog_contents_peltier08
3 Peltier Device Uni-Thermo Comparison with a Conventional Peltier Device Ordinary Peltier Device History 1834:Discovery of Peltier effect. Features of Materials 1954:Discovery of BiTe solid solution. Since 45 years, the forecast for the mass usage looks very hard. Uni-Thermo History 1994:Invention of monocrystal in needle configuration method. Features of Materials 1998:Development of Skeleton type devices. Since 000:Mass usage can be expected. Polycrystal in Ingot Configuration Diameter 30 mm Length 50 mm Monocrystal in needle configuration Sintering Body in Disk Configuration Diameter 60 mm Height 30 mm Diameter 1.8 mm Length 10 mm Shape of Materials Shape of Materials Rigid Body Structure Flexible Structure Copper electrode Alumina ceramics Copper electrode Separator (Glass epoxy) Insulating material N-Type BiTe P-Type BiTe N-Type BiTe P-Type BiTe Feature of Manufacturing Method and Device 1) 3 times cutting process. It waste much of materials. ) It is easy to be broken due to rigid body structure. 3) On-Off control (quick cooling) can not be operated. 4) The thermo transfer is slow due to the polycrystal and sintering body. 5) Coefficient of performance (COP) is not changed for 0 to 30 years due to the polycrystal and rigid body structure. Feature of Manufacturing Method and Device 1) Only 1 cutting processes, material is utilized in the maximum. ) The high reliability due to Relaxing flexible structure. 3) ON - OFF control is possible. 4) Quick response. (rapid cooling and heating performance.) 5) Coefficient of performance (COP) is improved 5% max superior than conventional peltier devices. 40 Kapton Peltier Module The Result of Operating Reliability Test 1 : Method of Testing Sample : 40 type Thermoelectric module with insulating cover by kapton film. (Kapton TM is polyimide film manufactured by) Test Equipment : Endurance Test Equipment Method of Testing : Divert an electric current to an order direction, a reverse direction to an element in turn, and cooling side temperature and radiation of heat side temperature go to a state of 5 C, 80 C and return. A drive electric current is a rating electric current. Figure-1. A Figure Of Principle For Testing Peltier Module Heat dissipation fin Fan Thermometry Plate Temperature 5 C Electric Current reversal 80 C Figure- A Temperature Profile Of Thermometry Plate 1 Cycle Control Equipment : Test Criterion Internal Resistance max.10% 3 : Reliability Test Result At 478,000, cycles there is no resistance abnormality. Testing cycle frequency and resistance change are shown in the figure 3. For comparing, the Endurance test result of the other companies item of the same module size is shown in the figure 4. This item was broken in,900 cycles. Figure -3. TAISEI 40 Kapton Item Endurance Test Result Module resistance [ ] ,000 00, , , , ,000 The number of testing cycles [ Cycles ] Figure -4. Other Companies Item 40 Endurance Test Result 80C 5C Current Current Current Time Current Current Current Module resistance [ ] ,000 1,500,000,500 3,000 The number of testing cycles [ Cycles ] Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX e-hikaku_on-off_test06
4 Peltier Device Uni-Thermo Quality Chart UNITHERMO TM 70 SERIES Module Type 1. I max.. V max. 3. Δt max. 4. Q max. 5. Internal Resistance UT-7070KA-M 7.5 A 30.0 V (DC) 74.0 C (typ.) 15.0 W (typ.).90 Ω±10 % UT-7070AL-M 7.5 A 30.0 V (DC) 7.0 C (typ.) 13.0 W (typ.).90 Ω±10 % UT-7070CE-M 7.5 A 30.0 V (DC) 75.0 C (typ.) W (typ.).90 Ω±10 % Occurs at Q max. (Th=50 C) Th=5 C 6. Dimension 71.0 mm 7.0 mm 7.0 mm 73.0 mm 76. mm 76. mm Thickness 3.05±0.10 mm 5.07±0.10 mm 4.0±0.10 mm 7. Number of Thermocouple P/N Pair 8. Wire Length 15± mm 15± mm 15± mm From Edge of Separator 9. Weight 80.0 g±10 % 90.0 g±10 % 85.0 g±10 % 10. Bolting Torque 4~6 kgf (apply torque in 4~6 kgf (apply torque in 4~6 kgf (apply torque in Commendable Condition 11. Usable Temperature 150 C max. 150 C max. 150 C max. 1. Moisture Protection 13. Insulating Method Elastomer & Polyimide Film Elastomer Ceramics 14. Insulating Resistance DC500 V, 500 MΩ min. DC100 V, 50 MΩ min. 15. Appearance UNITHERMO TM 40 SERIES Module Type 1. I max.. V max. 3. Δt max. 4. Q max. 5. Internal Resistance UT-4040KA-M 7 A 19.0 V (DC) 74.0 C (typ.) 59.0 W (typ.) 1.90 Ω±10 % UT-4040AL-M 7.0 A 19.0 V (DC) 7.0 C (typ.) 6.0 W (typ.) 1.90 Ω±10 % UT-4040CE-M 7.0 A 19.0 V (DC) 75.0 C (typ.) 64.0 W (typ.) 1.90 Ω±10 % Occurs at Q max. (Th=50 C) Th=5 C 6. Dimension 45.0 mm 46.0 mm 47.0 mm 48.0 mm 50.8 mm 50.8 mm Thickness.58±0.10 mm 3.5±0.10 mm 3.73±0.10 mm 7. Number of Thermocouple P/N Pair 8. Wire Length 135± mm 135± mm 15± mm From Edge of Separator 9. Weight 19.5 g±10 % 6.0 g±10 % 3.0 g±10 % 10. Bolting Torque 4~6 kgf (apply torque in 4~6 kgf (apply torque in 4~6 kgf (apply torque in Commendable Condition 11. Usable Temperature 150 C max. 150 C max. 150 C max. 1. Moisture Protection 13. Insulating Method Elastomer & Polyimide Film Elastomer Ceramics 14. Insulating Resistance DC500 V, 500 MΩ min. DC100 V, 50 MΩ min. 15. Appearance e-ut_quality_chart01_5
5 Peltier Device Uni-Thermo Quality Chart UNITHERMO TM 30 SERIES Module Type 1. I max.. V max. 3. Δt max. 4. Q max. 5. Internal Resistance UT-3030KA-M 3.5 A 15.0 V (DC) 7.0 C (typ.) 5.0 W (typ.).75 Ω±10 % UT-3030AL-M 3.5 A 15.0 V (DC) 7.0 C (typ.) 5.0 W (typ.).75 Ω±10 % UT-3030CE-M 3.5 A 15.0 V (DC) 75.0 C (typ.) 7.0 W (typ.).75 Ω±10 % Occurs at Q max. (Th=50 C) Th=5 C 6. Dimension 8.0 mm 9.0 mm 30.0 mm 30.0 mm 30.0 mm 30.0 mm Thickness.58±0.10 mm 3.5±0.10 mm 3.8±0.10 mm 7. Number of Thermocouple P/N Pair 8. Wire Length 130± mm 130± mm 130± mm From Edge of Separator 9. Weight 8.6 g±10 % 11.9 g±10 % 9.0 g±10 % 10. Bolting Torque ~4 kgf (apply torque in ~4 kgf (apply torque in ~4 kgf (apply torque in Commendable Condition 11. Usable Temperature 150 C max. 150 C max. 150 C max. 1. Moisture Protection 13. Insulating Method Elastomer & Polyimide Film Elastomer Ceramics 14. Insulating Resistance DC500 V, 500 MΩ min. DC100 V, 50 MΩ min. 15. Appearance UNITHERMO TM 0 SERIES Module Type 1. I max.. V max. 3. Δt max. 4. Q max. 5. Internal Resistance UT-00KA-M 3. A 6. V (DC) 67.0 C (typ.) 13.0 W (typ.) 1.40 Ω±10 % UT-00AL-M 3. A 6. V (DC) 67.0 C (typ.) 13.0 W (typ.) 1.40 Ω±10 % UT-00CE-M 3. A 6. V (DC) 70.0 C (typ.) 13.0 W (typ.) 1.40 Ω±10 % Occurs at Q max. (Th=50 C) Th=5 C 6. Dimension 1.0 mm 1.0 mm.0 mm.0 mm.0 mm.0 mm Thickness.58±0.10 mm 3.5±0.10 mm 3.8±0.10 mm 7. Number of Thermocouple P/N Pair 8. Wire Length 130± mm 130± mm 130± mm From Edge of Separator 9. Weight 5.6 g±10 % 7.3 g±10 % 8.0 g±10 % 10. Bolting Torque ~4 kgf (apply torque in ~4 kgf (apply torque in ~4 kgf (apply torque in Commendable Condition 11. Usable Temperature 150 C max. 150 C max. 150 C max. 1. Moisture Protection 13. Insulating Method Elastomer & Polyimide Film Elastomer Ceramics 14. Insulating Resistance DC500 V, 500 MΩ min. DC100 V, 50 MΩ min. 15. Appearance e-ut_quality_chart0_6
6 Peltier Device Uni-Thermo Style UT-00CE-M Dimensional Outlines Unit : mm (The edge of separator to the tip) Cooling Side Ceramic Plate Requirements Max. Current Max. Working V. Max. Temperature Difference Max. Endothermic Quantity Internal Resistance Electrode Terminal Size Number of Elements Lead Wire Length Weight Tightening Strength (Recommend) Working Temp. Range Moisture Protection Insulation Method Insulation Resistance 3. A 6. V (DC) 70.0 C (typ.) 13.0 W (typ.) % Lead Wire (Red :, Black :) [mm] P / N Pair 49 Elements 130 mm 8.0 g10 % ~ 4 kgf Equal Load 150 C max. Ceramics - Remarks Max. Endothermic Quantity at 50 C Th=5 C From Edge of Separator Commendable Condition Typical Performance Electric Current vs Endothermic Quantity ( Th=50C ) Endothermic Quantity [ W ] Endothermic Quantity (Parameter Tg) Tg [C] Current [ A ] Note: The upper data shows the characteristics up to 4.0A. * of products are subject to change without notice. * The values are subject to the measurement results available in our internal measurement instrument and equipment. Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX e-ut-00ce-m_05
7 Peltier Device Uni-Thermo Style UT-3030CE-M Dimensional Outlines Unit : mm (The edge of separator to the tip) Cooling Side Ceramic Plate Requirements Max. Current Max. Working V. Max. Temperature Difference Max. Endothermic Quantity Internal Resistance Electrode Terminal Size Number of Elements Lead Wire Length Weight Tightening Strength (Recommend) Working Temp. Range Moisture Protection Insulation Method Insulation Resistance 3.5 A 15.0 V (DC) 75.0 C (typ.) 7.0 W (typ.) % Lead Wire (Red :, Black :) [mm] P / N Pair 97 Elements 130 mm 9.0 g10 % ~ 4 kgf Equal Load 150 C max. Ceramics - Remarks Max. Endothermic Quantity at 50 C Th=5 C From Edge of Separator Commendable Condition Typical Performance Electric Current vs Endothermic Quantity ( Th=50C ) Endothermic Quantity [ W ] Endothermic Quantity (Parameter Tg) Tg [C] Current [ A ] Note: The upper data shows the characteristics up to 4.0A. * of products are subject to change without notice. * The values are subject to the measurement results available in our internal measurement instrument and equipment. Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX e-ut-3030ce-m_05
8 Peltier Device Uni-Thermo Style UT-4040CE-M Dimensional Outlines Unit : mm (The edge of separator to the tip) Cooling Side Ceramic Plate Requirements Max. Current Max. Working V. Max. Temperature Difference Max. Endothermic Quantity Internal Resistance Electrode Terminal Size Number of Elements Lead Wire Length Weight Tightening Strength (Recommend) Working Temp. Range Moisture Protection Insulation Method Insulation Resistance 7.0 A 19.0 V (DC) 75.0 C (typ.) 64.0 W (typ.) % Lead Wire (Red :, Black :) [mm] P / N Pair 17 Elements 15 mm 3.0 g10 % 4 ~ 6 kgf Equal Load 150 C max. Ceramics - Remarks Max. Endothermic Quantity at 50 C Th=5 C From Edge of Separator Commendable Condition Typical Performance Electric Current vs Endothermic Quantity( Th=50C ) Endothermic Quantity [ W ] Endothermic Quantity (Parameter Tg) Tg [C] Current [ A ] Note: The upper data shows the characteristics up to 6.0A. * of products are subject to change without notice. * The values are subject to the measurement results available in our internal measurement instrument and equipment. Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX e-ut-4040ce-m_07
9 Peltier Device Uni-Thermo Style UT-7070CE-M Dimensional Outlines Unit : mm (The edge of separator to the tip) Cooling Side Ceramic Plate Requirements Max. Current Max. Working V. Max. Temperature Difference Max. Endothermic Quantity Internal Resistance Electrode Terminal Size Number of Elements Lead Wire Length Weight Tightening Strength (Recommend) Working Temp. Range Moisture Protection Insulation Method Insulation Resistance 7.5 A 30.0 V (DC) 75.0 C (typ.) W (typ.) % Lead Wire (Red :, Black :) [mm] P / N Pair 41 Elements 15 mm 85.0 g10 % 4 ~ 6 kgf Equal Load 150 C max. Ceramics - Remarks Max. Endothermic Quantity at 50 C Th=5 C From Edge of Separator Commendable Condition Typical Performance Electric Current vs Endothermic Quantity( Th=50C ) Endothermic Quantity (Parameter Tg) Endothermic Quantity [ W ] Tg [C] Current [ A ] Note: The upper data shows the characteristics up to 8.0A. * of products are subject to change without notice. * The values are subject to the measurement results available in our internal measurement instrument and equipment. Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX e-ut-7070ce-m_05
10 Cooling Unit Line Up Cooling Unit It is possible to comply with the unit composition, peltier device, heat-sink and fan. In the table below. it shows the module or jacket* 1 matching with heat sink and fan and it shows the reach temp to the cooling face. It raises up the max. efficiency ratio in the limited dimension that our customer has designed. * 1 Please refer to the jacket types available. Module Type UT-7070J-HS UT-7040WJ-HS100 UT-4040J-HS100 Cooling Capacity (at 5 C) Endothermic Quantity [ W ] Temperature Difference [ C ] 80 (Typ.) 50 (Typ.) 35 (Typ.) 60 (Typ.) 35 (Typ.) 48 (Typ.) Rated Voltage Peltie Fan DC4V DC4V DC4V DC4V DC1V DC1V Rated Current (at 5 C) DC [ A ] Starting Current (at 5 C) DC [ A ] max Dimension of Cooling Plate [ mm ] Working Temp. Range 0 ~ 70 C 0 ~ 70 C 0 ~ 70 C Working Humidity Range 85%RH max. 85%RH max. 85%RH max. Max. Allowable working Temp. of Cooling Plate 10 C 10 C 10 C Noise [ db ] Overall size [ mm ] (135) (88) (8) Weight [ g ], TA-151 TA-151 TA-151 TA-150C TA-150C TA-150C Corresponding Controller TA-150 TA-150 TA-150 TA-300 TA-300 TA-300 Appearance Jacket Types It is easy to be installed to the heat sink and to be provided with a jacket specs to increase the life strength of a peltier. It is possible to be installed a cooling unit. Approx. Dimensions Types 70 standard 40 standard 30 standard Size [mm] 1010(17.3) (15.8) 8080(15.8) Remarks Thickness is changed by dielectric form. * of products are subject to change without notice. * The values are subject to the measurement results available in our internal measurement instrument and equipment. e-cooling_unit-p10_10
11 Cooling Unit Line Up References for Installed Basic Module In the cooling unit or jacket, the module in a skeleton type for both sides (ref. right photo.) is provided and it performs high cooling efficiency and superior reliability. Use for 70 UT-4040TJ-HS 65 (Typ.) 45 (Typ.) UT-3030J-HS80 18 (Typ.) 48 (Typ.) UT-300WJ-HS100 8 (Typ.) 60 (Typ.) UT-00J-HS40 8 (Typ.) 43 (Typ.) DC4V DC1V DC1V DC5V DC4V DC1V DC1V DC5V ~ 70 C ~ 70 C ~ 70 C ~ 70 C Use for 40 85%RH max. 85%RH max. 85%RH max. 85%RH max. 10 C 10 C 10 C 10 C (8) (8) (84) (60.5) TA-151 TA-150C TA-151 TA-30 TA-151 TA-30 TA-0 Use for 30 TA-150 TA-150C TA-150C TA-300 TA-150 TA-150 TA-300 TA-300 Use for 0 Special shape element Will correspond to the custom shape. Example L e f t : UT-3006CE-M Center : UT-006CE-M Right: UT-1010CU-M * of products are subject to change without notice. * The values are subject to the measurement results available in our internal measurement instrument and equipment. Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX e-cooling_unit-p11_04
12 THERMO ELECTRIC PELTIER CONTROLLER Features Downsizing High Precision Peltier Controller Temperature Control 1 C External Dimension W 100D 65H 35 mm (Except for the protrusions) High Cost Performance by Simple Basic Function Input Volt 5 V Output Current 5 A max. Temp. Control Range 0 C ~ 110 C Simple Method of Handling The method of Temperature and parameters are very simple and easy. PC Communication function loaded Temperature setting and supervision are possible from PC by communication function. Please consult for needs of a substrate. Model TA-0 Temperature Range Temperature Setting Temperature Indication Indicator, Function Control Method P Range I Range Peltier Drive Method Temp. Sensor Safety Function Input / Output Connector Recommended Sensor Power Supplies Electric Current Peltier Drive Capability Communication Working Environment Working Temp. Range Working Humidity Range Outer Dimensions Weight 0 C ~ 110 C Possible in increments of 1 C Possible in increments of 1 C Red LED in heating, Green LED in cooling PI control 0.1 to 99.9 C 1 to 1999 sec. PWM drive Thermistor At braking a sensor, the power is off. P connector for Power Supplies, 4P connector for Peltier, FAN P connector for thermistor, 3P terminal for RS-3C thermistor : 10 kω at5 C tolerance:1 %, B constant:3435 K1 % (Temperature precision depends on sensor precision.if you use a sensor other than the above standard, Accurate display and control are impossible.) Supplied from outside (DC 5 V) DC5 V 0.08 A (Controller Unit) DC5 V 5 A (at Maximum) RS-3C Inside area 10 C ~ 40 C 85 % max. (No evidence of dew) W 100 D 65 H 35 mm (Except projection) 100 g (for the main unit only) * of products are subject to change without notice. TAISEI Co.,Ltd. e-peltier_cont_ta-0_p1_01
13 Thermoelectric Peltier Controller Model TA-0 Connect Diagram Power Supplies DC5 V CN 1. for Power Supplies: P PC, Sequencer CN4:3P CN. for Peltier:4P CN. for FAN:4P CN 3. for Sensor(Thermistor):P RS-3C Caution 1) Please use DC 5 V power supply.power supply is supplied to this unit, Peltier, DC fan. Please use power supply and electric wire with sufficient power capacity. If you add a voltage outside the specified range, it will be damaged. ) Please use the same power supply for Peltier element and DC fan. Matching Connector Housing and Contact For RS-3C For Thermistor (Matching Contact H3P-SHF-AA HP-SHF-AA SHF-001T-0.8BS ) For Peltier,FAN For Power Supplies (Matching Contact VHR-4N VHR-N SVH-1T-P1.1 ) External connection connector and pin assign CN 4. for RS-3C:3P pin 1 TXD RXD 3 GND CN. for Peltier, DC FAN pin 1 Peltier +V Peltier -V 3 FAN +V 4 FAN -V CN 1. for Power Supplies pin 1 +V 0V CN 3.(TH) for Thermistor: P 1 Thermistor (Please refer to the recommended sensor in the specification column for recommended Thermistor.) Connection between CN 4 and RS-3C (Please use a cross cable for the RS-3C cable.) Connect the VPE-0-5V and PC with the following cables. 1 3 To CN 4 (H3P-SHF-AA+SHF Contact) D-sub 9 pin male D-sub 9 pin Cross Cable D-sub 9 pin female D-sub 9 pin female To PC Manufacturing Division e-peltier_cont_ta-0_p_ , Arakawa-Niegawa, Chichibu-shi, TEL FAX
14 THERMO ELECTRIC PELTIER CONTROLLER Features Downsizing High Precision Peltier Controller Temperature Control 1 C External Dimension W 100D 65H 35 mm (Except for the protrusions) High Cost Performance by Simple Basic Function Input Volt 8 V ~ 1 V Output Current 5 A max. Temp. Control Range 0 C ~ 110 C Simple Method of Handling The method of Temperature and parameters are very simple and easy. PC Communication function loaded Temperature setting and supervision are possible from PC by communication function. Please consult for needs of a substrate. Model TA-30 Temperature Range Temperature Setting Temperature Indication Indicator, Function Control Method P Range I Range Peltier Drive Method Temp. Sensor Safety Function Input / Output Connector Recommended Sensor Power Supplies Electric Current Peltier Drive Capability Communication Working Environment Working Temp. Range Working Humidity Range Outer Dimensions Weight 0 C ~ 110 C Possible in increments of 1 C Possible in increments of 1 C Red LED in heating, Green LED in cooling PI control 0.1 to 99.9 C 1 to 1999 sec. PWM drive Thermistor At braking a sensor, the power is off. P connector for Power Supplies, 4P connector for Peltier, FAN P connector for thermistor, 3P terminal for RS-3C thermistor : 10 kω at5 C tolerance:1 %, B constant:3435 K1 % (Temperature precision depends on sensor precision.if you use a sensor other than the above standard, Accurate display and control are impossible.) Supplied from outside (DC 8 V ~ 1 V) DC1 V 0.05 A (Controller Unit) DC1 V 5 A (at Maximum) RS-3C Inside area 10 C ~ 40 C 85 % max. (No evidence of dew) W 100 D 65 H 35 mm (Except projection) 100 g (for the main unit only) * of products are subject to change without notice. TAISEI Co.,Ltd. e-peltier_cont_ta-30_p1_01
15 Thermoelectric Peltier Controller Model TA-30 Connect Diagram Power Supplies DC8 V ~ 1 V CN 1. for Power Supplies: P PC, Sequencer CN4:3P CN. for Peltier:4P CN. for FAN:4P CN 3. for Sensor(Thermistor):P RS-3C Caution 1) Please use DC 8 V ~ 1 V power supply.power supply is supplied to this unit, Peltier, DC fan. Please use power supply and electric wire with sufficient power capacity. If you add a voltage outside the specified range, it will be damaged. ) Please use the same power supply for Peltier element and DC fan. Matching Connector Housing and Contact For RS-3C For Thermistor (Matching Contact H3P-SHF-AA HP-SHF-AA SHF-001T-0.8BS ) For Peltier,FAN For Power Supplies (Matching Contact VHR-4N VHR-N SVH-1T-P1.1 ) External connection connector and pin assign CN 4. for RS-3C:3P pin 1 TXD RXD 3 GND CN. for Peltier, DC FAN pin 1 Peltier +V Peltier -V 3 FAN +V 4 FAN -V CN 1. for Power Supplies pin 1 +V 0V CN 3.(TH) for Thermistor: P 1 Thermistor (Please refer to the recommended sensor in the specification column for recommended Thermistor.) Connection between CN 4 and RS-3C (Please use a cross cable for the RS-3C cable.) Connect the VPE-0 and PC with the following cables. 1 3 To CN 4 (H3P-SHF-AA+SHF Contact) D-sub 9 pin male D-sub 9 pin Cross Cable D-sub 9 pin female D-sub 9 pin female To PC Manufacturing Division e-peltier_cont_ta-30_p_ , Arakawa-Niegawa, Chichibu-shi, TEL FAX
16 THERMO ELECTRIC PELTIER CONTROLLER Features Downsizing High Precision Peltier Controller Temperature Control 0.1 C External Dimension W 10D 100H 44 mm (Except for the protrusions) High Cost Performance by Simple Basic Function Input Volt 8 V ~ 4 V Output Current 8 A max. Temp. Control Range 80 C ~ 150 C Simple Method of Handling The method of Temperature and parameters are very simple and easy. PC Communication function loaded Temperature setting and supervision are possible from PC by communication function. Please consult for needs of a substrate. Model TA-151 Temperature Range Temperature Setting Temperature Indication Indicator, Function Control Method P Range I Range Peltier Drive Method Temp. Sensor Safety Function Auxiliary Input / Output Signal Input / Output Connector Recommended Sensor Peltier Power Supply Peltier Drive Capability Input Power Supply Electric Current Communication Working Environment Working Temp. Range Working Humidity Range Outer Dimensions Weight 80 C ~ 150 C Possible in increments of 0.1 C Possible in increments of 0.1 C Red LED in heating, Green LED in cooling, Red LED in alarming PI control 0.1 to 99.9 C 1 to 1999 sec. PWM drive Pt100 At braking a sensor, the power is off. At alarm a Heatsink, the power is off. Temperature control start input, Spare input: 3, Alarm contact output (B contact), Setting temperature reaching contact output (A contact) P connector for Power Supplies, 4P connector for Peltier, FAN 3P connector for Pt100 Sensor, P connector for HeatsinkSensor, USB connector, connector for RS-485 Pt100 : in conformity with New JIS standard C (Temperature precision depends on sensor precision.if you use a sensor other than the above standard, Accurate display and control are impossible.) The same voltage as the input power supply. DC 4 V 8 A (at Maximum) DC 8 V ~ 4 V 5 % 0. A (Controller Unit) USB(micro B), RS-485 Inside area 10 C ~ 40 C 85 % max. (No evidence of dew) W 10 D 100 H 44 mm (Except projection) 85 g (for the main unit only) * of products are subject to change without notice. TAISEI Co.,Ltd. e-peltier_cont_ta-151_p1_01
17 Thermoelectric Peltier Controller Model TA-151 Connect Diagram Power Supplies DC8 V ~ 4 V :Temperature reached output 1: Alarm output External input ~ 4:option 1: External control start Peltier FAN Sensor For Heatsink alarm PC, Sequencer For spare thermistor USB, RS-485 Caution 1) Please use DC8 V ~ 4 V power supply. Power supply is supplied to this unit, Peltier, DC fan. Please use power supply and electric wire with sufficient power capacity. If you add a voltage outside the specified range, it will be damaged. ) Please use the same power supply for Peltier element and DC fan. Matching Connector Housing and Contact For Power Supplies For Peltier,FAN (Matching Contact VHR-N VHR-4N SVH-1T-P1.1 ) For Sensor For HeatsinkALM For Spare Thermistor (Matching Contact H3P-SHF-AA HP-SHF-AA HP-SHF-AA SHF-001T-0.8BS ) Left side external connection connector and pin assign Communication with PC / Sequencer You can communicate with either USB or RS-485. USB connector Please use the micro B connector on the controller side. External control input / output External input pin 1 IN1 IN 3 IN3 4 IN4 5 COM External contact output pin 1 [ 1 ] 3 4 [ ] RS-485 pin 1 A(+) B(-) 3 G Terminating resistance ON / OFF SW On termination, please turn it on. IN1 : External control ON / OFF IN : spare IN3 : spare IN4 : spare COM : or *The input power source polarity can be either or. [1] : Alarm contact output [] : Setting temperature arrival output (within ± 3 C) Use relay : G6K-P (OMRON made) Maximum opening and closing ability (Resistive load) : AC15 V 0.3 A, DC30 V 1 A, No exchange Used terminal block : XW4B Socket (OMRON made) The wiring material is AWG 8 to AWG 16, The peeling length of the wire is about 7 mm. Right side external connection connector and pin assign DCIN : for Power Supplies pin 1 +V 0V SENS : For sensor input pin 1 A B 3 B HEATSINK : For HeatsinkALM pin 1 TH 1 TH TH1 : For spare thermistor pin 1 TH TH UNIT : for Peltier, DC FAN pin 1 Peltier +V Peltier -V 3 FAN +V 4 FAN -V Pt100 Ω Thermistor Thermistor (Please refer to the recommended sensor in the specification column for recommended Pt100 Ω.) Manufacturing Division e-peltier_cont_ta-151_p_ , Arakawa-Niegawa, Chichibu-shi, TEL FAX
18 Peltier Device TAISEI Co., Ltd. Manufacturing Division 43-3, Arakawa-Niegawa, Chichibu-shi, TEL FAX of products are subject to change without notice
Features of Uni-Thermo
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