INSTALLATION INSTRUCTIONS ENERGY MANAGEMENT CONTROLLER CS2000A2

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INSTALLATION INSTUTIONS ENEGY MANAGEMENT ONTOLLE Model Bard Manufacturing ompany, Inc. Bryan, Ohio 506 Since 9...Moving ahead just as planned. Manual : 00-D Supersedes: 00- File: Volume III Tab 9 Date: -07-07 Page of

Operation Overview The is an energy management controller that works in conjunction with a non-programmable HVA (air conditioner or heat pump) thermostat to optimize energy savings and occupant comfort. The s learning capability, occupancy detection, and self-adjusting time-base provides effective control of HVA systems without the need for user adjustments. There is no time clock to set or adjust as the controller automatically learns the occupancy pattern by observation and programs itself accordingly, and then automatically adapts to any schedule changes or unplanned occupancy. Simply stated, the gives authority to the room thermostat in advance of learned first arrival to precondition the space and also during occupied periods. During unoccupied periods, the monitors room temperature through its built-in thermistor and gives temporary authority back to the room thermostat long enough to maintain the selected set-back or set-up temperature condition selected within the. Additional control features of the include the ability to operate ventilation and lighting of the same conditioned space. Model General Specifications Inputs/Outputs Power Supply 0-0 VA or VD (<00ma) HVA elay (pilot) Form, VA, A Max. HVA Fan elay (pilot) Form, VA, A Max Vent elay (pilot) Form B, VA, A Max Area Occupied elay (pilot) Form, VA, A Max Installer Interface Function Selection 0 PIB DIP Switches Temperature Set Points 0 PIB DIP Switches Indication Single LED Physical haracteristics Operating Temperature 0 to F (-0 to 50) ase -piece, x 5.75 x in., high impact ABS, UL Listed olor White Terminals - AWG, # screw Mounting screws orner mounting bracket also supplied. Model Features Motion Sensor Internal long-range PI Temperature Sensor Internal thermistor Learning Daily and weekly schedule Optimal; Start-Up First morning wake-up HVA Systems Air conditioners and heat pumps Auxiliary Equipment ontrolled Lighting Access Mode Unlimited (motion sense only) Setback Temperature ange to F Setup Temperature ange to F Demand Delay andom time after start-up ecovery ates Economy or comfort Search Times 5, 0, 5 or 60 minutes (default 5) Adaptive Freeze Protection and F Temperature lamps 67 and 79F Short ycle Protection -minute off (minimum) HVA Problem Detection Temperature threshold omputer Watchdog Timer Auto restart HVA High-Temperature Shutdown F Manual Override esets after hours Power Fail Sense Detects A outage Learned Schedule etention 0 minutes minimum Maid ontrol nd set of temps for sleep Page of Installation and Location Selection One is typically used to control a single HVA unit conditioning a single space such as a classroom. The should be mounted about 7' from the floor and centrally located on the wall such that it can view the largest central core area of the space. Judgment is required to select the most suitable location. For essentially square classrooms, a corner installations will provide maximum coverage of the typical classroom (See Fig. A). An angled corner mounting bracket is included to aid in corner installations. The bracket can be installed on either side of the controller and is designed with an angle leg to fit into the corner to properly position the bracket. Fasten bracket to wall first, using field-supplied fasteners as desired, and then attach controller to bracket using supplied screws. See page for more details. For rectangular spaces, the controller should be mounted directly to the wall, and positioned in the center of the short wall (See Fig. B). If possible, give consideration to where the instructor s desk will be, although this can change from room to room and is dependent upon each individuals preference. overage zone details on page. Wiring onnections All wiring to the from the thermostat and HVA system should be 8-gauge suitable for any applicable codes. See the appropriate connection diagrams for the HVA equipment being controlled. Vent, HVA Fan, and Area Occupied control outputs are available in addition to the primary HVA output used to enable the room thermostat. This can be used as shown or ignored based on the installation requirements. Note : The HVA Fan output must be used to assure continuous fan (blower) operation during the occupied periods (in case someone switches Fan switch on thermostat to auto ). Note : If the Area Occupied output is to be used for lighting control a lighting control relay or contactor with N (normally closed) contacts sized to the lighting load must be used as shown on the connection diagrams. The Area Occupied relay output on board the is pilot duty only, and must be used to slave the field supplied lighting control device. Note : PEOND connections on not used. Note : switch # should always be in the right-hand position. Note 5: DOO +/- connections are not used for actual door switch. Jumper across the +/- terminals enables 5 and 60-minute search time periods. See Search Time under Function Switch Settings on Page.

FUNTION SWITH SETTINGS The Energy Monitor ontroller operation is governed by the settings of the 0 function switches as shown below:. Learn (LN) Left = Anticipate (Factory default setting). learns occupancy schedule for each day of week ight = Non-Anticipate. operates on occupancy only.. Pre-Purge () Left = Activate Vent and HVA Fan output upon first arrival (Factory default setting). ight = Pre-purge for hour. Vent and HVA Fan outputs are turned On for hour in advance of learned arrival time.. Mode Left = DO NOT USE. ight = Unlimited (Factory default setting). ontrol is based upon motion sense only.. ate Left = Economy. Maximum energy savings, no wait after recovery before returning to setback/setup settings if occupancy doesn t occur on schedule, lower heat strip usage. ight = omfort. (Factory default setting). Maximum comfort level, 0-minute wait after recovery before returning to setback/setup settings if occupancy doesn t occur on schedule, higher heat strip usage. 5. Search Time Two factors affect the timing sequence:. Position of Time Switch #5. With or without jumper across Door +/- terminals Time Switch Position Door Jumper Time Minutes Left No 5 ight No 0 Left Yes 5 (Default) ight Yes 60 6. Left = Do not use. ight = equired setting (Factory default setting). 7. Stage Left = HVA (Thermostat) control (Factory default setting). ight = Do not use. 8. Aux Left = Area occupied output used for lighting control (Factory default setting). ight = Do not use. 9. DMD Left = 00% duty cycle (Factory default setting). ight = Do not use. 0. DMD Left = 00% duty cycle (Factory default setting). ight = 80% duty cycle 5 minutes On, minutes Off. FUNTION SWITH SETTINGS Basic Temperature Settings. Setting of the temperature switches determines the set-up and set-back temperatures that the controls to during unoccupied periods. A minimum of two () switches must be On ----- one for setup and one for set-back. Factory default settings are and F, and offer a reasonable compromise between energy savings and comfort. Adaptive Freeze Protection. Adaptive freeze protection functions automatically if either the F or F settings are selected for set-back. This feature checks for excessive heat loss during very cold outdoor conditions by measuring the rate at which the temperature falls during the HVA unit s off cycle. Excessive heat loss triggers the to temporarily select the next higher setback temperature (up to F). This feature protects piping from freezing in excessively cold weather. The set-back control automatically returns to the selected value when the rate of fall returns to normal. Temperature lamp. The employs temperature -limiting logic that prevents wasteful energy use and misoperation of the HVA equipment. This waste occurs when personnel set the room thermostat too hot in winter or too cold in summer. The temperature clamp feature operates only when the area is occupied and the room temperature exceeds 79F in winter or falls below 67F in summer. Under normal circumstances the limit action never engages. Temperature clamp is automatic and not switch selectable. s software automatically determines the climatic season during unoccupied periods by measuring the room temperature fall or rise. This measurement occurs whenever the turns off the HVA unit. The season test determines whether the upper or lower clamp functions, and cancels the function when season determination may be uncertain which can occur during mild weather conditions. oom temperatures above 79F or below 67F enable the limit action. When the limit operates the HVA unit operation stops, allowing the room temperature to drift freely. The calculates the direction and magnitude of the drift and verifies the season. The temperature limit remains in effect once the proper season is confirmed. Function and Temperature Switches Map MIS-06 A Shaded Positions Are Factory Defaults Page of

Learning Schedule The has an enhanced learning program that works as follows:. There is no time clock to set or day of the week to adjust as the learns by observation of actual events, and an internal timer keeps track of time on a -hour basis.. Learning starts to occur after initial installation and checkout, and after there has been a minimum of 7 hours unoccupied period registered.. The next morning arrival time is recorded as Day, and the following 6 days are established to have the same arrival time as Day. This is called morning synchronization.. Day will start to precondition based upon the amount of time it took for Day to recover from the set-back or set-up condition the has been configured for, and then will begin to adjust automatically if actual recovery times start to change. 5. Days to 7 will follow the same strategy as Day. 6. Whenever the unoccupied days of the weekend occur during the first week of operation, there will be recovery in anticipation of arrival. When no one arrives within the selected search time of the anticipated schedule the will shift to unoccupied status and wait until the next day. 7. Days 8 to fine-tune the occupancy pattern by averaging Day to Day 8, Day to Day 9, etc. 8. For the unoccupied weekend days after weeks of no one arriving, the logic will determine those are the weekend days and will stay in set-back or set-up condition throughout the entire period. 9. Sensing the room being occupied and enabling the room thermostat to take command and condition the room accordingly accommodates irregular or unplanned events such as a parent-teacher conference in the evening or other special meetings, or an occasional weekend work session by the teacher. After occupants depart and the search time lapses, the places the HVA system back into unoccupied mode. 0. Should an evening or weekend occasion turn into a regularly scheduled event that occurs weekly, after the -week learning period, the will add it to the schedule and operating routine. If any of those usage patterns then change and no one arrives, the will go to unoccupied status after the selected search time of the learned arrival pattern, and after weeks of seeing the same pattern will eliminate it from the schedule.. Holidays, weather delays, and other activities such as field trips that cause the classroom to be empty will cause the to switch to unoccupied status after the selected search time after scheduled first arrival for that day. Should classroom become occupied later on the restores authority to the wall thermostat for occupied control.. When extended periods of non-activity occur such as long holiday breaks or summer recess, the uses the logic as explained above to place the HVA systems in continuous set-back/ set-up mode, and then responds and quickly relearns the usage pattern as it happens. Testing and Operating Hints. ed LED indicator gives helpful status information: a. Lights momentarily after motion detection (sample rate is every seconds) b. Improper temperature switch settings - continuous slow flash c. Manual override - fast flashes d. Incorrect switch (mode) setting - continuous On e. Out-of-range temperature - continuous On. heck placement of controller by walking around in the classroom to determine occupancy indicator (red LED) lights up in the majority of the classroom.. eposition if necessary. has approximately a 5 parabolic view from centerline (can sense a -foot tall person @ 7 feet away from when positioned 7 feet above the floor. See pages &.. A -hour set-up/set-back operation for testing is allowed after power-up. Normal operation begins only after morning synchronization. 5. has power backup circuit that will retain learned program for 0 minutes during power loss. After 0 minutes, controller must relearn schedule. 6. Manual override has -hour operation before automatic reset. Lockout timer circuit inhibits HVA operation for minutes if V power to is interrupted (requires minutes for HVA output to be switched after power up). Troubleshooting Hints. Night set-back/set-up may not engage during mild weather.. and wall thermostat must be installed in the space that is being controlled.. Temperature clamp may infrequently inhibit operation while performing season check.. s motion sensor field of view must cover the key occupancy/traffic pattern. 5. Inverted case cover blocks motion sensor view. Note: this is sometimes inverted intentionally for test purposes ---- be sure not to damage or misalign the LED. Page of

WIING DIAGAM AI ONDITIONE ONNETION TEMPEATUE/HUMIDITY ONTOLLE BAD P/N 0-060 THEMOSTAT TH50D5 BAD P/N 0-0 NOTE: MUST BE ONFIGUED FO HEAT/OOL G Y W/E G Y W W W Y Y L YO/D BLUE ED 6 YELLOW 5 0-08 H600A0 HUMIDITY ONTOLLE 0-07 H00-0--0 DEHUMIDSTAT IF VENT PAKAGE IS INSTALLED, THE "G" WIE MUST BE ONNETED TO ASSUE ONTINUOUS BLOWE DUING OUPIED PEIODS WHEN VENT SYSTEM IS "ON". THE "G" WIE MUST ALSO BE ONNETED FO PE-PUGE OPEATION (SEE STEP, FUNTION SWITH SETTINGS). BAD VENTILATION PAKAGE () NOTE: IF FATOY INSTALLED DISONNET AND TAPE ED AND OANGE WIES O B/W WEV O V G Y W W N NO N VENT HVA FAN Y PW N F UNIT V TEMINALS HUMIDITY ONTOLLE ONNETIONS USED ONLY FO DEHUMIDIFIATION IUIT THAT MUST BE FATOY INSTALLED IN AI ONDITIONE FATOY JUMPE - SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL AEA OUP. EM PW PEOND DOO NO N NO N HVA LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS OVEIDE ( HS) ENEGY MONITO NEEDED WHEN S OF ELETI HEAT AE EQUIED. EQUIED FO OOLING UNITS O UNITS WITH EONOMIZES. JUMPE IS FATOY INSTALLED. LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09-9 I Page 5 of

WIING DIAGAM WH, SH HEAT PUMP ONNETION TEMPEATUE/HUMIDITY ONTOLLE BAD P/N 0-060 THEMOSTAT TH50D5 BAD P/N 0-0 IF VENT PAKAGE IS INSTALLED, THE "G" WIE MUST BE ONNETED TO ASSUE ONTINUOUS BLOWE DUING OUPIED PEIODS WHEN VENT SYSTEM IS "ON". THE "G" WIE MUST ALSO BE ONNETED FO PE-PUGE OPEATION (SEE STEP, FUNTION SWITH SETTINGS). BAD VENTILATION PAKAGE () NOTE: IF FATOY INSTALLED DISONNET AND TAPE ED AND OANGE WIES O B/W WEV O V 0 G G Y Y G Y Y O/B O/B B N NO N VENT HVA FAN W W W/E Aux E L W E L PW L YO/D BLUE ED N 6 YELLOW 5 0-08 H600A0 HUMIDITY ONTOLLE 0-07 H00-0--0 DEHUMIDSTAT W UNIT V TEMINALS HUMIDITY ONTOLLE ONNETIONS USED ONLY FO DEHUMIDIFIATION IUIT THAT MUST BE FATOY INSTALLED IN HEAT PUMP FATOY JUMPE - SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL AEA OUP. EM PW PEOND DOO NO N NO N HVA LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS OVEIDE ( HS) ENEGY MONITO JUMPE IS FATOY INSTALLED. LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09-0 J Page 6 of

WIING DIAGAM QA, QH, QW SEIES ONNETION FO USE WITH "A" O "G" LIMATE ONTOL OPTION VENT PAKAGE NOTE: IF FATOY INSTALLED ALL WIES AE FATOY ONNETED T EV O V EMOVE JUMPE FO POPE S000 OPEATION O DH G B W W W E Y Y L UNIT LOW VOLTAGE TEMINAL BLOK N NO N VENT HVA FAN PW N FATOY JUMPE - SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS AEA OUP. EM NO N PW PEOND DOO NO N HVA OVEIDE ( HS) ENEGY MONITO LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09- H Page 7 of

WIING DIAGAM QH, QW SEIES HEAT PUMP ONNETION FO USE WITH "X" LIMATE ONTOL OPTION THEMOSTAT TH50D5 BAD P/N 0-0 c G Y O/B Aux E L IF VENT PAKAGE IS INSTALLED, THE "G" WIE MUST BE ONNETED TO ASSUE ONTINUOUS BLOWE DUING OUPIED PEIODS WHEN VENT SYSTEM IS "ON". THE "G" WIE MUST ALSO BE ONNETED FO PE-PUGE OPEATION (SEE STEP, FUNTION SWITH SETTINGS). VENT PAKAGE NOTE: IF FATOY INSTALLED ALL WIES AE FATOY ONNETED EV O V O T G Y Y N NO N VENT HVA FAN B W W PW W E L DH N UNIT FATOY JUMPE SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS AEA OUP. NO N EM PW PEOND DOO NO N HVA MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS JUMPE IS FATOY INSTALLED. OVEIDE ( HS) ENEGY MONITO LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09- H Page 8 of

WIING DIAGAM 5 QA SEIES AI ONDITIONE ONNETION FO USE WITH "X" LIMATE ONTOL OPTION NOTE: MUST BE ONFIGUED FO HEAT/OOL THEMOSTAT TH50D5 BAD P/N 0-0 IF VENT PAKAGE IS INSTALLED, THE "G" WIE MUST BE ONNETED TO ASSUE ONTINUOUS BLOWE DUING OUPIED PEIODS WHEN VENT SYSTEM IS "ON". THE "G" WIE MUST ALSO BE ONNETED FO PE-PUGE OPEATION (SEE STEP, FUNTION SWITH SETTINGS). VENT PAKAGE NOTE: IF FATOY INSTALLED ALL WIES AE FATOY ONNETED EV O V T F G Y W G Y W N NO N VENT HVA FAN W Y W Y PW N UNIT FATOY JUMPE - SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS AEA OUP. NO N EM PW PEOND DOO NO N HVA OVEIDE ( HS) ENEGY MONITO NEEDED WHEN S OF ELETI HEAT AE EQUIED. JUMPE IS FATOY INSTALLED. EQUIED FO OOLING UNITS O UNITS WITH EONOMIZES. LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09- I Page 9 of

WIING DIAGAM 6 WG SEIES GAS ELETI ONNETION DIAGAM TEMPEATUE/HUMIDITY ONTOLLE BAD P/N 0-060 THEMOSTAT TH50D5 BAD P/N 0-0 NOTE: MUST BE ONFIGUED FO HEAT/OOL G G Y W/E Y L Y W W Y YO/D BLUE ED 6 YELLOW 5 0-08 H600A0 HUMIDITY ONTOLLE 0-07 H00-0--0 DEHUMIDSTAT IF VENT PAKAGE IS INSTALLED, THE "G" WIE MUST BE ONNETED TO ASSUE ONTINUOUS BLOWE DUING OUPIED PEIODS WHEN VENT SYSTEM IS "ON". THE "G" WIE MUST ALSO BE ONNETED FO PE-PUGE OPEATION (SEE STEP, FUNTION SWITH SETTINGS). BAD VENTILATION PAKAGE () NOTE: IF FATOY INSTALLED ALL WIES AE FATOY ONNETED DISONNET AND TAPE OFF BLUE WIE WGEV O WGV BL O G Y W W N NO N VENT HVA FAN Y PW Y N E F UNIT V TEMINALS HUMIDITY ONTOLLE ONNETIONS USED ONLY FO DEHUMIDIFIATION IUIT THAT MUST BE FATOY INSTALLED IN AI ONDITIONE FATOY JUMPE - SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS AEA OUP. NO N EM PW PEOND DOO NO N HVA MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS TAPE OFF BLUE LEAD OVEIDE ( HS) ENEGY MONITO JUMPE IS FATOY INSTALLED. EQUIED FO OOLING UNITS O UNITS WITH EONOMIZES. LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09-5 E Page 0 of

WIING DIAGAM 7 H HEAT PUMP ONNETION TEMPEATUE/HUMIDITY ONTOLLE BAD P/N 0-060 HEV B/W O P Y G Y Y O/B W W/E A L YO/D BLUE ED YELLOW 0-08 H600A0 HUMIDITY ONTOLLE 0-07 6 5 H00-0--0 DEHUMIDSTAT IF VENT PAKAGE IS INSTALLED, THE "G" WIE MUST BE ONNETED TO ASSUE ONTINUOUS BLOWE DUING 0 G Y Y B W W OUPIED PEIODS WHEN VENT SYSTEM IS "ON". THE "G" WIE MUST ALSO BE ONNETED FO PE-PUGE OPEATION (SEE STEP, FUNTION SWITH SETTINGS). E L DH UNIT V TEMINALS HUMIDITY ONTOLLE ONNETIONS USED ONLY FO DEHUMIDIFIE BAD VENTILATION PAKAGE () NOTE: IF FATOY INSTALLED ALL WIES AE ONNETED AT FATOY HV O N NO N PW N VENT HVA FAN FATOY JUMPE - SEE SEAH TIME DETAIL ON PAGE LIGHTING ONTOL LIGHTING ONTOL ELAY NOMALLY LOSED ONTATS MANUAL SWITH EMOTE DETETO () NOMALLY ONTATS AEA OUP. NO N EM PW PEOND DOO NO N HVA OVEIDE ( HS) ENEGY MONITO JUMPE IS FATOY INSTALLED. LIGHTING ONTOL IUIT IS AND FIELD SUPPLIED. LIGHTING ONTOL ELAY EQUIES NOMALLY LOSED ONTATS AND MUST BE SIZED AODING TO ONTOLLED LOAD. 09- Page of

OVEAGE AEAS OF FIG. A FIG. B Distance from S000 (ft.) 0 0 0 SENSITIVITY LEGEND HIGHE LOWE NOTE: SENSITIVITY ANGES AE APPOXIMATE Distance from S000 (ft.) 0 0 0 SENSITIVITY LEGEND HIGHE LOWE NOTE: SENSITIVITY ANGES AE APPOXIMATE 0 S000 S000 0 0 0 0 0 0 0 0 0 0 Distance from S000 (ft.) MIS-95 Distance from S000 (ft.) MIS-96 Height from floor (ft.) 0 8 6 0 NO SENSE Side View Of Detection Zone S000 MOUNTED 7' FOM FLOO FT. 0 0 0 0 0 Distance from S000 (ft.) NO SENSE Note : overage ranges are approximate and these diagrams are intended to show general characteristics of the detection zones. Actual detection area can vary from device to device and room to room. Note : Do not hang, place or stack any objects between the sensor/controller and the activity area of the room as they can block the sensor from detecting room occupancy and activity. Note : To avoid possible false detections: a. Do not hang any mobiles or other objects from the ceiling within 5 feet of the installation position of the controller. b. The bottom of any mobiles or other objects hanging from the ceiling must be at least foot above the installation height of the controller. MIS-97 Energy ontroller orner Mounting Bracket MIS-56 Page of