ATHENA温控器
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lauda alpha恒温器说明书
1、温控器也被人们叫做温控开关。
2、它的使用还是比较简单的,跟空调遥控器使用是一样的原理,建议使用手动模式对它进行调控。
3、一般来说屏幕左侧就是温度的设置,右侧就是室内的温度。
4、当室内温度比设置温度更低时,阀门就会开启,更高时阀门会关闭。
温控器使用时应注意:1、由于加热时会存在冷热线相连的情况,不管你是焊接式连接还是,都要确保在高温条件下可靠,使用过大功率时不会造成风险。
2、因为电线老化,温控器电流等一些技术方面偏差导致,要知道温控器可以承载功率应该是20%。
3、电功率如果是在2816瓦以下,应该要使用温控器的电流是16安。
当它的电功率在2816到3520瓦之间,就应该使用20安的温控器。
比如说:16安电流它的额定电压为220V,如果从理论上来它的功率为2816瓦。
4、一般来说电温控器都是把它安装在墙体内的,正常情况下跟开关很类似,在安装时不能用东西把它遮盖住。
安装离地面距离在1.5米高度,旁边不能安装散热装置,同时还要防止阳光对它直晒,周边不能有散热制冷装置,也不适合安装在人员常停留的位置上。
INSTALLATION MANUAL EKRTWA4PW56101-11Contents1. Introduction (1)2. Installation of the EKRTWA (2)3. Setting up codes in the installer menu (5)4. T echnical characteristics (11)1.IntroductionThe room thermostat EKRTWA can be used to control the Daikin system (radiator heating and floor heating/cooling applications). It is typically connected to the Daikin unit. Refer to the "T ypical application examples" in the Installation manual of the Daikin unit.■In case of floor heating-only applications the room thermostat can also be connected to the individual motorized valve of the floor heating loop.■If a floor heating-only application is used in combination with fan coil units each fan coil unit should have its dedicated fan coil thermostat.2.Installation of the EKRTWAThe EKRTWA thermostat is wall-mounted, with supplied screws and plugs. Refer to figure 1.Cabling towards the Daikin system (field supply) should be foreseen in advance taking the suggestions for an ideal installation location into account. Refer to figure 2.1At the left of the thermostat, gently push the lid.2Remove the front cover by pulling it towards you.3Unscrew the screw of the cable holder in the bottom left corner of the back part of the thermostat and remove the transparent cable protection.4Remove the battery insulator.5Drill holes in the wall taking the dimensions of the thermostat into account and insert the supplied plugs in the holes.Refer to figure 3.24PW56101-14PW56101-136Pass the unit or motorized valve wiring through the back of the thermostat.7According your application, perform the wiring.For heating-only applications, wire connection to C is not to be installed.Use wire size 0.75~1.50 mm2/AWG18~16.7b When connected to the motorized valve, wire the motorized valve and the thermostat as shown below (for heating-only applications).The output relays (H and C) are voltage-free contacts. Refer to "T echnical characteristics" on page 11 for maximum load. 8Fasten the thermostat with the supplied screws.9Put the transparent cable protection back into place and fix the cable protection with the screw.10Close the thermostat cover.11Remove the protective film from the LCD.44PW56101-14PW56101-153.Setting up codes in the installer menuY ou can set up codes, starting from the time and date menu (in advanced mode).1Activate the advanced mode by pressing > during 5seconds in OFF mode (D ).2Navigate to the date and clock setting menu (G ) by pressing >.3Press > and keep it pressed while now pressing =during 10 seconds.y is displayed next to 4®.4Press < or > to consult the current settings of the codes.5T o modify codes, press +, - or =.The value is flashing when being modified.6Press + or - to increase or decrease the code value by 1 step.T o put a code back to its default value, press + and - at the same time.7Press = to save your selection.Y ou can exit this code menu by going to the "/" code and pressing =.3.1.Set-up for Fahrenheit degree typeRefer to the operation manual how to change parameter in user menu.64PW56101-14PW56101-173.4.Overview of all codesFollowing codes can be changed in the installer menu:84PW56101-14PW56101-19104PW56101-14PW56101-1114.Technical characteristicsT emperature read out Steps of 0.1°C/0.1°F Operating temperature0°C~50°C/32°F~122°FSetpoint temperature range 4°C~37°C in steps of 0.5°C/ 39.5°F~99°F in steps of 0.5°FElectrical protection Class II - IP30 (indoor use, polutiondegree 2)Feeding and autonomy 3 alkaline batteries AA.LR6 1.5 Vapproximately 2 years (depending onusage conditions)Output relays For United States of America andCanada:Maximum load 1 A - 24 VACFor other countries:Maximum load 5 A - 230 VAC Immunity against voltagesurgesCategory III (2.5 kV)T ype of automatic actionof the thermostat1CC o p y r i g h t ©D a i k i n4PW56101-1。
INSTALLATION AND OPERATION MANUALANALOG ELECTRONIC CONTROLSVAV TERMINAL UNITSCTE-5100 Series Thermostats:The CTE-5100 series thermostats are designed to be used with the CSP-5002 controller actuator. CTE-5100’s are provided with limited and unlimited outputs. The limited output(s) is (are) used to provided minimum and maximum limits to a CSP-5002. The unlimited output(s) is (are) used to operate fan and heat sequences.Models are available for cooling, cooling with reheat, cooling / heating changeover and day/night or set-back applications. Temperature averaging and/or overrides may be accomplished. Consult Nailor control submittal for applicable thermostat model.Models:CTE-5101Single setpoint; Direct Acting Supply Voltage:16 Vdc (14 - 20 Vdc)CTE-5103Dual setpoint; Direct & Reverse Acting Output Range:0 to 10VdcCTE-5104Dual setpoint; Direct & Reverse Acting Connections:Wire clamp type: 14-22 AWGCTE-5105Dual setpoint; both Direct Acting Temperature Range:55O F - 85O F (13O C - 29O C)Thermostat Action:Proportional Band:CTE-5101Direct Acting (DA) T1/T3CTE-5101/3/52O F, (1.1O C) w/limits output (T1/T2)CTE-5103Direct Acting (DA) T1/T3, Reverse Acting (RA) T2/T44O F, (2.2O C) w/o limits output (T3/T4) CTE-5104Direct Acting (DA) T1/T3, Reverse Acting (RA) T2CTE-51042O F, (1.1O C) w/limits output (T1)CTE-5105Direct Acting (DA) T1/T2/T3/T42O F, (1.1O C) w/limits output (T2/T3)Base Material:Black ABS, UL Flame Class 94HBSize2 9/16" (65 mm) x 3 7/16" (87 mm)Table 1.Thermostat Specifications.Installation:Thermostats must be mounted horizontally,(or vertically by using an optional vertical scale plate), utilizing the HMO-5030/5031 backplates for mounting to a standard 2" x 4" electrical box, or the optional HMO-5023 drywall bracket for mounting to hollow walls. Thermostats should be mounted on a wall in an area not affected by sunlight or drafts, to sense the average room temperature.Electrical box mounting:Install the HMO-5030/5031 backplate to the electrical box using the two 6-32 screws, supplied with backplate – do not tighten. The backplate is provided with one slotted mounting hole for leveling. Level the backplate and tighten the two mounting screws. Pull thermostat wires through backplate and decorative trim plate. Connect thermostat wires to the thermostat according to the wiring diagram supplied with the unit. Position the trim between the back plate and the thermostat, secure the assembly with the two 6-32 x 2" self tapping screws supplied. Hollow wall mounting:Loosely mount the HMO-5023 bracket to the thermostat using the two 6-32 x 2" screws. Pull all thermostat wiring through the opening on the bracket. Connect thermostat wires to the thermostat according to the wiring diagram supplied with the unit. Center and align the thermostat while tightening the mounting screws.Thermostat510151035104Terminals DescriptionTerminals5105V1X X X Velocity input for readout, connect to “out” on CSP-5002T3X X X Upper setpoint output w/o limits (0 -10 Vdc)R1X X X T1 override, connect to "-" if unused. Voltage applied subtracts from T1 T1X X X Upper setpoint output w/limits. Adjustable at pot.on front of thermostat +X X X16 Vdc power supply input12V X X X12 Vdc power outputA X X X Temperature averaging input-X X X Ground referenceT2X X Lower setpoint, output w/limits. * Adjustable at pot. on front of thermostat R2X X T2 override connect to "-" if unused **T4X Lower setpoint output w/o limits (0 -10 Vdc)V2X Velocity input for readout* Except 5104; T2 lower setpoint output is w/o limits.** R2 is auxiliary limit trigger on model 5104. Voltage above 1 Vdc @ R2 indexes T1 to the auxiliary flow limit. Install jumper R2-T2 for automatic indexing of aux. flow setting.Table 2.Thermostat Wiring Terminals and Description.Figure 1. Thermostat Detail Maintenance:No routine maintenance is required. Each component’s design and material selection assures dependable long-term reliability and performance. Careful installation will also enhance long term reliability and performance.CSP-5002 DAMPER CONTROLLER/ACTUATORAll Nailor standard right hand (and optional left hand) terminal units have a 1/2" (13), diameter drive shaft and a clockwise to close damper rotation (Dual Duct Left Hand Deck CCW to close). Full damper shaft rotation is 45 or 90 degrees depending on model. The CSP-5002should be mounted on the damper drive shaft so the actuator will stall at either end of the stroke to ensure tight shut-offs and full rotation.Ensure the two jumpers are set for the correct damper rotation.The CSP-5002 has a tri-color LED that indicates the current action of the damper: RED – Closing, GREEN – Opening, WHITE – Satisfied.The CSP-5002 provides pressure independent VAV control for terminal unit primary valves. Primary air volume is monitored by the use of a multi-point flow sensor located in the inlet duct. Differential pressure is measured by an onboard platinum transducer. The changes in the inlet static pressure will vary the position of the inlet damper. Flow limit adjustments are made using a digital DC voltmeter at the thermostat.The CSP-5002 is factory calibrated with VNOM adjustment centered for the enclosed voltage - airflow charts. Do not adjust. Dampers are always shipped in the full open position.(WHERE APPLICABLE)ACESS DOOR GEAR DISENGAGEMENT BUTTONP PORTS 3/16" (5) DIA. (2)Figure 2. CSP-5002 Controller / ActuatorPOWER REQUIREMENTS:Controller / actuator / thermostat is 7VA plus any output loads for fan relays, heating contactors and control valves (assume 10 VA each).Always switch control voltage off prior to disconnecting any wires from the controller.ANALOG CONTROL CALIBRATION CHARTS VOLTAGE VS. AIRFLOWWhen field adjustment or field calibration of the CTE-5100 series thermostats is necessary, desired limit control can be calculated using the tables in Figure 3 and the following formulas, or the charts presented in Figures 4 through 8.Formulas:CFM = K (VDC - Offset)VDC = (CFM/K) + Offset Follow the individual calibration procedure for the thermostat model(s) as required.Inlet sizeK factorOffset14 x 10417- 0.1424 x 161250- 0.07Inlet sizeK factorOffset4 in. Round 33+ 0.445 in. Round 55+ 0.026 in. Round 75+ 0.087 in. Round 115- 0.198 in. Round 143+ 0.329 in. Round 175+ 0.1010 in. Round 233+ 0.0912 in. Round 357- 0.0414 in. Round 500- 0.0716 in. Round625- 0.25Inlet sizeK factorOffset12 in. Oval 333- 0.2214 in. Oval 417- 0.4716 in. Oval 588+ 0.0518 in. Oval759- 0.27Figure 3.Diamond Flow Sensor K Factors.2.03.04.05.06.07.01.0V O L T S , D C100200300400600500AIRFLOW,CFMFigure 4.Inlet Sizes 4, 5, 6 Round2.03.04.05.06.07.08.01.0V O L T S , D C100200300400600500800700900110010001200140013001500AIRFLOW,CFMFigure 5.Inlet Sizes 7, 8, 9, 10 Round2.03.04.05.06.07.01.0V O L T S , D C5001500100025002000300040003500AIRFLOW,CFMFigure 6.Inlet Sizes 12, 14, 16 Round. 14 x 10 Rectangular02.03.04.05.06.07.01.0V O L T S , D C5001500100025002000300040003500AIRFLOW,CFMFigure 7.Inlet Sizes 12, 14, 16 Oval (Single Duct Only)02.03.04.05.06.07.01.0V O L T S , D C500150010002500200030004000350045005500500060006500700080007500AIRFLOW,CFMFigure 8.Inlet Size 18 Oval. 24 x 16 RectangularCALIBRATION PROCEDURE FOR AIR VOLUME ADJUSTMENTS MADE AT THERMOSTATThermostats are factory calibrated when minimum and maximum airflow limits are provided. Field calibrations are as follows:Minimum and maximum setpoints (air volume limits), are set at the thermostat. Check the CSP-5002 controller to ensure that the minimum and maximum potentiometers are dialed completely out (min. CCW, max. CW), so that the thermostat signal is not restricted.A – Required Tools:1. Small flat blade screwdriver 1/8" / 3 mm 3. Hex Wrench 1/16" / 2mm for the cover screws2. Digital voltmeter w/DC range to hundredths 4. A test lead (HSO-5001) is recommended for meter readingsB – Remove Thermostat Cover:Thermostat cover is removed by turning the two set screws CW, (which are located on the short sides of the thermostat). Remove cover and setpoint slider stops if installed.Figure 9.Thermostat scaleplate detail.CTE – 5101 SINGLE SETPOINT THERMOSTAT(DA T1 with limits, T3 without limits)1. Ambient temperature at the thermostat must be between 55O F – 85O F (13O C – 29O C).2.Adjust the setpoint slider all the way to the right for minimum cooling. Connect voltmeter to the cooling (right side) voltmeter taps. The center and right tap provide the VDC readings (min/max airflow). The center and left tap provide the actual air volume (live velocity)reading when thermostat V1, is connected to the controller OUT terminal.3.Read the VDC across the taps. Adjust the MIN INCR potentiometer to the VDC equal to the desired air volume as shown on the chart.NOTE: The minimum setpoint must be set first. Adjustment of the minimum potentiometer directly affects the maximum setpoint.4.Adjust the setpoint slider all the way to the left for maximum cooling.5.Read the VDC across the taps. Adjust the MAX INCR potentiometer to the VDC equal to the desired air volume as shown on the chart.NOTE: The maximum setpoint must be set last. Adjustment of the minimum potentiometer directly affects the maximum setpoint.6.Return the setpoint slider to the desired setpoint. Install the optional setpoint stops if required and replace thermostat cover.CTE - 5103 DUAL SETPOINT THERMOSTAT (Heat / Cool Changeover)(DA T1/T3. RA T2/T4. T1, T2 with limits, T3, T4 without limits)Cooling side of thermostat1.Follow steps 1 through 5 for the CTE-5101 thermostat. Note: Be sure to adjust the cooling setpoint slider all the way to the left for maximum cooling. (The heating setpoint sider will have to be adjustable all the way to the left also).Heating side of thermostat1.Ambient temperature at the thermostat must be between 55O F - 85O F (13O C - 29O C).2.Adjust the heating setpoint slider all the way to the left for minimum heating. Connect voltmeter to the heating (left side) voltmeter taps.The center and right tap provides the VDC readings (min/max airflow).3.Read the VDC across the taps. Adjust the MIN INCR potentiometer to the VDC equal to the desired air volume as shown on the chart.NOTE: The minimum setpoint must be set first. Adjustment of the minimum potentiometer directly affects the maximum setpoint.4.Adjust the heating slider all the way to the right for maximum heating.5.Read the VDC across the taps. Adjust the MAX INCR potentiometer to the VDC equal to the desired air volume as shown on the provided chart.NOTE: The minimum setpoint must be set first. Adjustment of the minimum potentiometer directly affects the maximum setpoint.6.Return both setpoint sliders to the desired setpoints. Install the optional setpoint stops if required and replace thermostat cover.SCALE PLATE (°F OR °C)METER TAPCTE – 5104 DUAL SETPOINT THERMOSTAT(DA T1/T3. RA T2. T1 with limits, T2, T3 without limits)Cooling side of the thermostat1.Follow steps 1 through 5 for the CTE-5101 single setpoint thermostat. Note: Be sure to adjust the cooling setpoint slider all the way to the left for maximum cooling. (the heating setpoint slider will have to be adjustable all the way to the left also).Adjustment of the Auxiliary Setpoint - Higher reheat minimum (if required).2.Read the VDC across the meter taps on the heating (left) side of the thermostat. With the left hand slider in the full heat position,completely to the right, adust the MAX/AUX INCR potentiometer to the VDC equal to the desired air volume as shown on the chart. If a higher Aux Min is not required, dial fully CCW.3.Return both setpoint sliders to the desired setpoints. Install the optional setpoint stops if required and replace thermostat cover.CTE – 5105 DAY / NIGHT THERMOSTAT (Night Temperature Set Back)(DA T1/T2/T3/T4. T1/T2 with limits, T3/T4 without limits)Day side of thermostat1.Follow steps 1 through 5 for the CTE-5101 thermostat.Note: Be sure to adjust the day setpoint slider all the way to the left for maximum cooling. The night setpoint slider will have to be adjusted all the way to the left also.2.Return both setpoint sliders to the desired setpoints. Install the optional setpoint stops if required and replace thermostat cover.Night side of thermostat1.Follow steps 1 through 5 for the CTE-501 thermostat.Note: Be sure to adjust the night setpoint slider all the way to the right for minimum cooling. The day setpoint slider will have to be adjusted all the way to the right also.2.Return both setpoint sliders to their desired setpoints. Install the optional setpoint stops if required and replace thermostat cover.Figure 10.Thermostat action schematics.-2F Dir. Act. S.P . +2F -2F Dir. Act. S.P .+2F(Night) (Day)-2F Rev. Act. S.P .+2F -2F Dir. Act. S.P .+2F(Heating) (Cooling)CTE-5105 Thermostat-2F Rev. Act S.P. Dir. Act. S.P. +2F(Heating) (Cooling)CTE-5104 Thermostat V D C O u t p u t-2F S.P . +2FCTE-5101 Thermostat V D C O u t p u tCTE-5103 ThermostatV D C O u t p u tV D C O u t p u tGENERAL INFORMATION FOR ALL TERMINAL UNITSCheckout ProcedureThe CSP-5002 actuator will take up to 2.5 minutes for a 45 degree stroke damper and up to 5.0 minutes for a 90 degree stroke damper to cycle from its minimum to its maximum setting and vice versa. It is important therefore when verifying minimum and maximum flow limits, by moving the slider(s) right or left as previously described, to wait sufficient time to ensure the actuator has moved to its correct position and that the live velocity read-out (if used) has settled.Live Supply Volume ReadoutA voltage output corresponding to actual primary air volume may be monitored at the room thermostat to assist in balancing and troubleshooting. The output signal is the same as the airflow volume vs. DC voltage calibration curve. The test lead (HSO-5001) is connected to the innermost meter taps on the thermostat scaleplate (see Figure 9).Supply Air Temperature SensingA duct mounted temperature sensor (thermistor) is used to measure primary air temperature in control sequences involving automatic changeover (ACO) or morning warm-up (MWU). The probe is attached to the inlet collar and wired to the low voltage controls enclosure. To ensure proper operation for auto changeover, a minimum flow setting should be used for both heating and cooling modes. This allows airflow to constantly pass over the duct temperature sensor.Proportional Reheat ControlHot water valves and SCR controllers with a 0 -10 Vdc control signal (10mA max,) are wired (+) to terminal ‘T2’ on the thermostat and (-) to the grounded side of the low voltage control circuit. T2 is an output with limits and it must therefore be ensured that the thermostat limits are dialed out (max. pot. fully CW and min. pot fully CCW) for unrestricted operation.FAN POWERED TERMINAL UNITSNight Shut DownUnits ordered with optional Night Shut Down (NSD) sequences employ an airflow switch to sense when primary air has been shut down. When the airflow switch opens the fan and optional heat are shut down. Upon the primary air starting, the airflow switch will close and return the unit to normal operation.Night Temperature SetbackUnits ordered with optional Night Temperature Setback (NTSB) sequences employ an airflow switch to sense when the primary air (central air handler) has been shut down. When the airflow switch opens, a lower night time temperature setpoint is initiated. The unit fan and optional supplementary heat will cycle intermittently to maintain night setpoint temperature. Upon start up of the central air handler, the unit will return to daytime operation. Amount of setback is either fixed or adjustable dependent on control sequence. Refer to control submittal. Night CycleOn series units with optional night cycle sequences, an airflow switch de-energizes unit fan upon loss of primary (central system) air. Upon a call for heat, the thermostat will override the airflow switch and cycle the unit fan followed by any supplementary heat intermittently to maintain day setpoint temperature.On parallel units, basic control sequences cycle the fan and supplementary heat intermittently as standard in response to thermostat demand. This will therefore still occur at night when the central air has been shutdown.Checkout Procedure (Day / Occupied Mode)Series Fan Powered Terminal Units: The fan should be energized regardless of slider(s) position. Dependent on control sequence ordered, thermostat may have one or two sliders. Consult control sequence submittal / wiring diagram and thermostat calibration procedure.Parallel Fan Powered Terminal Units: Fan will only cycle upon a call for heat. Move single slider (or both if a separate heating or night slider is present) full right to energize fan. Dependent on control sequence ordered, thermostat may have one or two sliders. Consult control sequence submittal / wiring diagram and thermostat calibration procedure.Checkout Procedure (Night / Unoccupied Mode)Move thermostat slider(s) full right to energize fan and supplementary heat.TROUBLESHOOTING PROCEDURENote: Turn off power before making any wiring changes to the unit.1. Verify 24 Vac at CSP-5002 controller / actuator terminals "~" (phase) and "-"(ground). Tolerance +20 / -15% (20.4-28.8 Vac). When using a common transformer for more than one CSP-5002, polarity should be observed.2. Check correct field wiring from thermostat to terminal block in unit low voltage enclosure. Refer to Nailor control wiring diagram inside controls enclosure. Ensure all wiring connections are tight and secure.3. Check tubing from unit inlet flow sensor to the controller / actuator is correct and no leaks. "Hi" side of sensor to "H" on controller / actuator and "Lo" side of sensor to "L" on controller / actuator.4. Verify 16 Vdc at CSP-5002 terminals "16 VDC" and "-". Tolerance is 15 to 17 Vdc power supply to thermostat. If not correct, disconnect thermostat and recheck. If still incorrect, replace CSP-5002 controller / actuator.5. Check requested minimum and maximum flow settings on terminals "IN" and "-". Refer to Vdc vs. Airflow setting charts at back of this document. If reading is not what is desired, refer to thermostat calibration procedure.6. Check actual airflow (live velocity readout) voltage on terminal "OUT" and "-" (0 – 10 Vdc). Use calibration charts provided.7. Check for damper movement and correct rotation.a) Review "requested flow" and actual flow" above to determine if unit should be satisfied (within 50 fpm +/- 0.20 Vdc) or driving damper open or closed.b) If damper is not moving, verify damper is not stuck at end of travel and has free movement. Use manual release clutch on CSP-5002.Check CW / CCW rotation jumpers for proper operation. Ensure damper actuator connection is correct and damper can travel fully open to fully closed within limits of the actuator stroke. Check actuator coupling to damper shaft setscrews are tight.c) Change "requested flow" to make unit drive opposite direction (verifying correct damper movement). This can be accomplished by moving thermostat setpoint sliders or:i) To manually open damper, remove wire from terminal "IN" and jumper terminal "IN" to 16Vdc". This will tell unit to control at full airflow and the green LED should turn on, driving damper fully open.ii) To manually close damper, remove wire from terminal "IN" and jumper terminal "IN" to "-" terminal. This will tell unit to control at zero airflow and the red LED should be on, driving damper fully closed.Warning:Never jumper terminal "16 Vdc" to "-", as this will cause short and possibly damage the power supply.REE – 5002 Relay Module Fan with 2 Stage ReheatThe REE-5002 is used in all parallel flow terminal units, and specific series flow terminal units with the night cycle or setback options. The relay cycles the fan and activates up to 2 stages of heat in response to a direct acting 0 -10 Vdc thermostat output. The fan start point is adjustable from 3-8 Vdc which equates to -0.8 to +1.2O F,(-0.4 to +0.7O C), around setpoint. The factory setting is 4 Vdc (-0.4F below cooling setpoint / min. primary airflow setting). To field adjust, read the Vdc across terminals "X" and "-". Adjust the potentiometer to Vdc desired setpoint. The two stages of heat are sequenced to energize after the fan is activated when the desired room temperature continues to decrease.CSP-5001CONTROLLER-ACUATORFigure 11.Ree-5002 Relay Module. Fan with 2 stage reheat.THERMOSTAT SIGNAL (T3)(1 VDC SWITCHING DIFFERENTIAL)S TA GE SFAN 1 1 3 8 VOLTS 2DESCRIPTIONVENDOR PART NO.NAILOR PART NO.KMC Controller / Actuator CSP-5002V3004(Kreuter)Controller / Actuator CSP-4606V3005Controller / ActuatorCSP-4616V3006In-line filter for CSP-4XXXHFO-0034V3007KMC (Kreuter) Room Thermostat and accessories:CTE-5100 Series - (0 -10 Vdc):DA clg. (base only)CTE-5101V3030DA clg. / RA htg. (base only)CTE-5103V3031DA clg./RA reheat (base only)CTE-5104V3032DA / DA (Day / Night) (base only)CTE-5105V3033Accessories for CTE-5100 Series:Thermostat Cover - light almondHPO-1511V1060- WhiteHPO-1512V1061Backplate mounting kit(for mounting to a 2 x 4 handy box) - light alomdHMO-5024V1062- WhiteHMO-5026V1063Mounting Strap kit (for mounting on holllow wall)HMO-5023V1064Horizontal Scale Plate - O FHPO-0060-10V1069- O CHPO-0060-11V1070Miscellaneous:KMC Electric reheat relay module, 3 stage REE-5001V3050KMC Wet heat time prop. relay module DA/NC valve REE-5106V3053RA/NO valve REE-5123V3054KMC Fan/elec. heat relay module, 2 stage REE-5002V3055KMC Fan/wet heat time prop. relay moduleDA/NC valve REE-5017V3056RA/NO valveREE-5024V3057KMC Constant volume relay module REE-1004V3058KMC Heat / Cool changeover moduleREE-1005V3059KMCDuct temp. changeover sensor (for use with REE-1005)STE-1002V3060Airflow Switch FS-BO-182V3061DPDT Relay 24V.9100-233Q323V3062Transformers (foot mount):120to 24 V. 40 VA -VH1-669120to 24 V. 50 VA -VH1-692208/240to 24 V. 40 VA -VH1-670208/240to 24 V. 50 VA -VH1-685277to 24 V. 40 VA -VH1-675277to 24 V. 50 VA -VH1-674277to 24 V. 75 VA -VH1-677480to 24 V. 50 VA -VH1-686208/240/480to 24 V. 40 VA -VH1-671120/208/240/480to 24 V. 75 VA -VH1-68924to 24 V. 40 VA-VH1-673COMPONENTS, ACCESSORIES, REPLACEMENT PARTSCalgary, Canada Tel: 403-279-8619Fax: 403-279-5035Houston, TexasTel: 281-590-1172Fax: 281-590-3086Las Vegas, Nevada Tel: 702-648-5400Fax: 702-638-0400Toronto, Canada Tel: 416-744-3300Fax: 416-744-3360。
标题:Strix温控器工作原理解析导言:Strix温控器是一种广泛应用于电热水壶、咖啡机等家电产品中的温度控制设备。
本文将深入解析Strix温控器的工作原理,帮助读者更好地理解其功能与优势。
一、概述Strix温控器是一种基于温度反馈的自动控制装置。
它通过监测设备内部温度并根据设定参数进行调节,实现对加热过程的精确控制。
其主要结构由传感器、控制电路和输出装置组成。
二、传感器Strix温控器中常用的传感器包括温度敏感电阻(RTD)和热敏电阻(PTC)。
这些传感器能够感知设备内部的温度变化,并将其转化为电信号。
传感器的精确性和稳定性对于温控器的性能至关重要。
三、控制电路Strix温控器的控制电路是整个系统的核心部分。
它接收传感器传来的温度信号,并与设定参数进行比较。
根据比较结果,控制电路将相应的控制信号发送给输出装置,以调节加热元件的工作状态。
四、输出装置Strix温控器常用的输出装置是继电器。
当控制电路发出控制信号时,继电器会根据信号的类型(如加热、停止加热)切换相应的电路通断状态。
这样,加热元件就能按照设定的温度范围进行工作。
五、工作原理Strix温控器的工作原理可简单概括为以下几个步骤:1. 传感器感知设备内部温度,并将其转化为电信号。
2. 控制电路接收传感器信号,并与设定参数进行比较。
3. 根据比较结果,控制电路发出相应的控制信号。
4. 输出装置(继电器)根据控制信号切换电路通断状态,控制加热元件的工作状态。
5. 温控器不断重复上述步骤,以保持设备内部温度在设定范围内稳定。
六、优势与应用Strix温控器具有以下优势:1. 精确控温:通过传感器的准确温度反馈和控制电路的精确调节,Strix温控器能够实现对设备内部温度的精确控制,提高用户体验。
2. 安全可靠:Strix温控器采用高品质的传感器和控制电路,能够确保设备在加热过程中的稳定性和安全性。
3. 广泛应用:Strix温控器被广泛应用于电热水壶、咖啡机等家电产品中,保证其加热过程的高效与安全。
新亚洲na337温控器说明书
以下是新亚洲 NA337 温控器说明书的正文和拓展信息:
正文:
尊敬的用户:
感谢您选择新亚洲 NA337 温控器,以下是使用说明书,希望对您有所帮助。
1. 使用前请先仔细阅读说明书,了解 NA337 温控器的功能和操作方法。
2. 安装前请确保电源电压和电流符合 NA337 温控器的要求,并选择合适的电源插头和电源线。
3. 使用时,请按照正确的顺序操作,避免误操作导致事故发生。
4. 在操作 NA337 温控器时,请仔细阅读屏幕上的显示信息和菜单选项,并根据需要进行操作。
5. 如果在使用中发现任何问题或需要帮助,请及时联系新亚洲客服中心,我们将竭诚为您服务。
拓展信息:
NA337 温控器是新亚洲公司生产的一种温度控制器,主要用于工业、家居、汽车等领域,其功能主要包括温度控制、温度报警、温度记录等。
NA337 温控器具有高精度、高可靠性、高稳定性等特点,可以满足用户对各种温度控制的需求。
此外,新亚洲公司还提供了丰富的 NA337 温控器选型资料和技术支持,用户可以通过电话、邮件或在线客服等方式与公司客服人员联系,获得专业的帮助和支持。
HeatersSizing and SelectionW hen temperatures dip belowthe minimally acceptable rangesfor electronics,our electric heaterscan raise the temperature insideenclosures to appropriate levels.Heaters are designed to protectsensitive mechanical,electrical,andelectronic equipment from theharmful effects of condensation andcorrosion.T wo styles offer heatingpowers from 10 watts to 800 watts.The graphs represent a painted steelenclosure mounted in a calm air,buildinginterior.The lowest temperature differentialbetween room temperature and enclosureinterior must be 10°F+ to prevent humidityand condensation.For outdoor applications,double the heating power requirement.Example:Which electricheater wouldmost efficientlymaintain a 60°Ftemperature inan uninsulated24x24x10enclosure thatis exposed to atemperature notless than 30°F?Step 1Calculate the total enclosure surface area.Area (ft2) = 2[(AxB)+(AxC)+(BxC)] ÷144,where “A”,“B”,“C” are the dimensions ofthe enclosure.In our example,Area = 2[(24x24)+(24x10)+(24x10)]÷144Step 2Using the graphs,draw a vertical line throughthe enclosure surface area and determine thetemperature rise given by each heater.For enclosures exposed to windy conditions,heaters should be oversized by approximately 50%.Step 3Select the electric heater that achieves thedesired temperature rise.In our example,thedesired temperature rise is 30°F (60°F - 30°F).The 200 watt heater should be selectedsince its temperature rise (35°F) exceedsthe requirement.■Electric Heaters (for 100-800 Watt Heating Applications)Example:For a paintedsteel enclosurewith an exposedsurface area of4ft2containingelectrical compo-nents that use 20watts,determinewhich semicon-ductor heaterwill provide a 40°F rise over the outsideambient temperature.Step 1Plot your application using the graph above.•Find surface area (4 sq.ft.) on thevertical scale•Draw a horizontal line across to theintersection point with the diagonal linerepresenting ∆T = 40°F•Extend a vertical line down to the horizontalscale to determine your total heating powerrequired (W = 45 watts)Step 2From the total watts required,subtractthe 20 watts from pre-existing componentsto arrive at the minimum heater power of25 watts.The 30 watt D-AH301 heater shouldbe selected in this case since it is the nearestsize that exceeds the requirement.■Semiconductor Control Panel Heaters (for 10-50 Watt Heating Applications)87541410-1Heating Power in Watts (W)Temperature RiseAbove Ambient in (”F)(Uninsulated Enclosure)EnclosureSurfaceAreainSq.Ft.87541410-2Enclosure Surface Area in Sq. Ft.Enclosure Surface Area in Sq. Ft.TemperatureRiseAboveAmbientin”FTemperatureRiseAboveAmbientin”FHeater Selection GraphInsulated EnclosuresHeater Selection GraphUninsulated Enclosures。
P-63Digital Controllers U J or K ThermocoupleU Accuracy: ±0.5% FSU 1° ResolutionU AdjustableProportional Band U Single and Dual Setpoint ModelsU Relay, Triac, or 4 to 20 mA OutputU 1⁄4 DIN Metal CaseU Full Plug-In ConstructionThe OMEGA ®4000A Series digitalcontroller distinguishes itself by features, construction, and operation one would expect to find only in controllers costing much, much more. Bright, easy-to-read LED digits yield an unambiguous temperature indication which is not achievable with an analog controller. The standard unit includes adjustable proportional band, manual reset, plus a metal case with full plug-in construction, allowing front removal of the entire control unit without disturbing the case and its rear wiring. Series 4000A controllers are available in single and dual setpoint models with relay outputs as a standard. Triac, DC pulse or 4 to 20 mA optional outputs are offered on the first point at no additional cost. Models 4001A and 4002A lend themselves to a broad spectrum of control applications: single point control, dual setpoint control, and single point control with either high- or low-limit alarm. Truly a quality-built controller at a remarkably low price.Specifications Thermocouple Input Thermocouples: Types J and KMaximu Thermocouple Lead Resistance: 100 Ω for rated accuracyCold-Junction Compensation: Automatic—electric Thermocouple Break Protection: Built-in, upscale on open sensor Calibration Accuracy: Type J: ±0.4% of span over10 to 90% of rangeType K: ±0.5% of span over10 to 90% of rangeCommon Mode Rejection: Maximumerror +1° with series mode signal of 100 mV peak-to-peak at 60 Hz Control Output 1st Setpoint: Relay (Standard Model): SPDT relay 7 A resistive @ 120 Vac, 5 A resistive @ 240 Vac Option “T” (Triac): Solid state plug-in triac rated 1 A holding and 10 A in-rush Option “F” (Current Proportional): 4 to 20 mAdc into 1000 Ω maximum Option “DC” (DC Pulse): 20 Vdc 2nd Setpoint: Relay (On/Off Only): SPDT, rated 3 A @ 120 Vac Adjustments Proportional Band (gain): Up to 5% of span, or on/off; selectable Manual Reset (off-set): Adjustable Cycle Time: Automatically adjusts with load requirement to give least wear with minimum ripple (selectable minimum total time: 0.5, 1, 1.5, 5, 10, 15 sec)Display and Indications Temperature: Filtered LED, 3 or 31⁄2 digits, 2 readings per second update; readability is 1°C for 1°F Setpoint: By spring loaded switch, first or second setpoint is displayed in place of temperature; setpoint adjusted by 25 turn potentiometer; 1°F or °C setability Outputs: LED indication for both first and second setpoints; LED are “on” when output drive signal present; “on/off” indication on relay and triac model; proportional intensity for option “F”Temperature Overrange: Red LED indication Setpoint Resolution: 1°C or 1°F Repeatability: ±0.1% to ±0.2% of span Adjustment: By 25 turn potentiometer; see “setpoint” under “display and indicators” section Power: 120/240 Vac (10%, -15%, 50/60 Hz); power consumption <5 W Environmental and Physical Operating Temperature: -1 to 54°C (30 to 130°F)Weight: 24 oz (2 lb)1⁄4 DIN Case: Metal, full plug-in with screw terminal on rear; adjustable brackets for panel mounting; panel cutout is 92 x 92 mm (3.622 x 3.622")4000A SeriesOrdering Examples: 4001AJF, digital controller.OCW-3, OMEGACARE SM extends standard 2-year warranty to a total of 5 years.4001AJF shown smaller than actual size.OMEGACARE SM extended warranty program is available for models shown on this page. Ask your sales representative for full details when placing an order. OMEGACARE SM covers parts, labor and equivalent loaners.。
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凯雪冷藏微电脑温控器使用教程凯雪冷藏微电脑温控器是一款专门用于冷藏设备的温度控制设备。
它采用了最新的微电脑技术,可以实现对冷藏设备内部温度的精准控制。
对于需要控制温度的冷藏设备来说,凯雪冷藏微电脑温控器是一个非常实用的设备。
下面,我们来介绍一下凯雪冷藏微电脑温控器的使用方法。
一、准备工作我们需要准备好以下设备:1. 凯雪冷藏微电脑温控器2. 冷藏设备3. 电源线4. 温度传感器5. 冷凝器6. 电子扩展板在准备好以上设备之后,我们就可以开始接线并进行设置了。
二、接线设置1. 将电源线插入温控器的电源接口,并将其插入电源插座。
2. 将温度传感器插入温控器的温度传感器接口,注意要将传感器的头部置于冷藏设备内部。
3. 将冷凝器插入温控器的冷凝器接口,并将其连接到冷藏设备上。
4. 如果需要使用电子扩展板,则需要将其插入温控器的扩展板接口。
5. 检查以上连接是否牢固,无误后即可开始进行温度控制的设置。
三、温度控制设置1. 按下温控器上的SET键,进入温度控制设置界面。
2. 使用上下键选择需要控制的温度范围,并按下SET键进行确定。
3. 设置完成后,按下ESC键退出设置界面。
四、使用注意事项1. 在使用凯雪冷藏微电脑温控器时,需要注意合理设置温度范围,以免温度过高或过低对冷藏设备产生影响。
2. 在连接设备时,需要仔细检查接线是否正确,以免产生不必要的损坏或安全隐患。
3. 在使用电子扩展板时,需要注意其功率是否符合要求,以免对设备产生损坏。
4. 定期对设备进行维护和清洁,以保证其正常使用。
以上就是凯雪冷藏微电脑温控器的使用教程。
希望对大家有所帮助。
美国ATHENA温控器
美国ATHENA温控器适用于电压110V-240VA,可以由面板切换自动、手动或自动微调,从而确保控制温度的精确。
ATHENA温度控制器可以自动调整功率输出方式,防止瞬间启动加热烧毁设备,带有电热开路侦测显示功能,可由按键盘切换手动设定功率输出百分比。
上海秋腾贸易有限公司代里销售ATHENA定时器、ATHENA温度控制器、ATHENA计数器等全系列产品。
Athena Controls –an industry-leading manufacturer of digital and analog temperature and process control instrumentation since 1965. We hope you find our web site user-friendly and helpful in identifying the custom modular temperature/process control boards, power controllers, staging controllers, hot runner controllers, digital controllers, analog controllers, and temperature sensors designed to meet today’s demanding temperature and process control applications. We also invite your questions and input regarding your current application needs to ensure selection of the right temperature or process controller for your specific needs.
ATHENA现货、ATHENA价格、ATHENA厂家、ATHENA代理、ATHENA经销、ATHENA 型号
ATHENA spot, ATHENA price, ATHENA manufacturers, ATHENA agent, ATHENA distribution, ATHENA model
ATHENA timer, ATHENA temperature controller, ATHENA counter。