Cellwatch Battery Monitoring Systems

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Cellwatch Battery Monitoring Systems A battery can fail overnight leaving an entire power system without backup capability... So what did your batteries do today? If you want to know, read on... Cellwatch - We do it daily

NDSL - WHO WE ARE NDSL is a privately owned company with a globally based shareholding. With offices both in Raleigh, North Carolina and Oxford, England the company is comprised of a mixture of dedicated professionals who firmly believe that their product is the best and most advanced in the marketplace and who are genuinely interested in having the customer get the absolute best from it over it s lifetime. We are constantly striving to improve the product, the service given and the way we do business in the world. So far our philosophy has been successful with our courteous professionalism attracting strong and long lasting relationships with many large fortune 500 companies.

WHAT MAKES CELLWATCH SPECIAL? We do it daily With lead acid batteries capable of failing overnight, NDSL took the design decision early on that the Cellwatch system would use a non-intrusive measuring technique which was so easy on the batteries that it could measure ohmic value every single day. This means that the Cellwatch user becomes aware of a problem on the day it occurs and it does not leave him exposed to a battery failure for up to several weeks between measurements as with some systems. Multi-battery capability Cellwatch is the only system which can monitor different bloc voltages with the same system. Each DCM is capable of monitoring 2, 4, 6, 8 and 12 volt blocs. Less wiring Cellwatch s unique layout design minimises the wiring on the battery making it simple and quick to install on a battery (cheaper to install with less downtime) and subsequently making it more reliable in use. The fibre optics used allow Cellwatch unprecedented electrical noise immunity. Ancillary batteries too Cellwatch is the only battery monitoring system which is capable of monitoring other ancillary batteries such as the generator start batteries. This means that Cellwatch closes the loop on your battery monitoring requirements by offering a total monitoring solution, leaving no critical batteries in the power backup system unmonitored.

CELLWATCH WHAT IT SHOWS... Battery status at a glance Cellwatch gives the user a simple graphical representation of the battery with clear indications of a good or bad cell or bloc, including the cells on your generator batteries. Green is good, red is bad. Simple! Ohmic value history A cell or bloc s ohmic value can begin to rise rapidly (indicating a failing cell) and be twice it s normal value within days. At this point your battery may very likely be compromised. Cell/bloc ohmic values and inter-cell resistances across the strings This allows easy comparison of a string of cells or blocs within the battery. If a reading is higher than the others there is a problem. Cell voltage performance on load Cellwatch automatically monitors discharges and can track over 1900 readings a minute. This allows a very detailed map of individual cell or bloc performance on load.

...AND WHY IT SHOWS IT Battery pilot and battery ambient temperature over time Cellwatch does this to give the user an idea of how hot the batteries are getting. (Too hot and battery life is shortened. Too cold and performance is compromised) Individual cell/bloc history Cellwatch plots each individual cell or bloc history to give early warning or changes in battery condition allowing the user to be proactive in battery maintenance. Battery current over time Cellwatch does this to give the user an idea of how much current the batteries are taking during normal float charge. If this increases there could be a problem. Float voltage over time This gives the user an idea of how the cells are behaving and how well the charger / rectifier are working.

CELLWATCH SPECIFICATION Generator CAT5 ibmu (monitor/keyboard/mouse optional) RS 485 Generator Extender Kit Control Unit Fiber Optic Temperature Probes Temperature Probes Data Collection Module Battery Cell/Jar Features Measures ohmic value DAILY Modular format Uses optical fibre PC based central controller Permanent hard wired system Benefits Means zero days without a functional battery Easy installation and expandability Shorter downtime during installation Safe low-voltage topology (max 48v per DCM, isolated) Allows multi battery with differing voltage blocs or cells on the same system. Minimises wiring Minimises electrical noise and improves reliability Makes interfacing to a LAN or WAN very easy Email alerting capability (optional) Minimises the time of having people in the battery room Minimises arc flash risk Allows proper control and budgeting of the battery asset while maintaining 24x7 uptime

Control Unit Operating Specifications Ambient Operating Temp Storage Temperature Power Supply Power Supply Range Power Supply Frequency Power Supply Rating 0C to 50C / 32F to 122F 10C to 80C / 50F to 176F Manually switchable 110 VAC or 230 VAC 80 VAC to 135 VAC 160 VAC to 270 VAC 50 Hz to 60 Hz Max 5VA (15mA quiescent current) Communications RS485 Interface Input and Output with optional jumper for termination Max Range 2000 ft (619 m) Total bus length Fibre Optic Range 150ft (50 m) CU to DCM, DCM to DCM Max CUs per RS485 bus 31 Alarm Outputs Output Relays Contact Rating Electrical Isolation Service Life Protection Sensing Inputs Insulation Resistance 4 relays, single contact, volts free 30 vdc @ 8 amps max 1500 vac 50 million operations, typical Short circuit proof 600 vdc Sensing Inputs Temperature sensor Solid state probe Resolution 0.05C Accuracy +/-1C Range 2C to 80C / 35F to 176F Mounting 5/16 (8mm) Current Sensor Solid state, ferrite core clamp Sensitivity 1mV/1A Resolution 0.5A (optional 1.25A) Useful range +/- 25 to 1000A (optional 50 to 2500A) Physical Characteristics Dimensions (H x W x D) 4 3 4 x 11 7 / 8 x 11 3 / 4 Enclosure material Steel with powder coating Color Pebble Gray Battery Monitoring Unit (ibmu) Computer Characteristics Operating System Software Hard Drive Microsoft Windows XP Professional Cellwatch Applications 60Gb Physical Characteristics Dimensions (H x W x D) 3 1 / 2 (2U) x 19 x 21 89mm (2U) x 445mm x 534mm Enclosure Material Steel with powder coating Color Black Mounting 19 rack with optional wall mount kit Data Collection Module (DCM) Voltage Measuring Characteristics Voltage measuring range 0 to 60 volts Resolution 15mV Accuracy 2 volts nominal source +/-1.0% 6 volts nominal source +/-0.5% 12 volts nominal source +/-0.25% Protection Transient suppression Short Circuit Reverse Polarity Protection Up to 600V, 1 Kw at 100uS pulses non repetitive 5 amp max with in line fuses fitted Any combination in any connection order, for any period of time within the rated voltage Ohmic value measuring Characteristics Ohmic value measuring range 0.25 to 25.9 mohms Resolution 10 uohms Temp coefficient of reading 3 uohms/c (-5C to 80C / 23F to 176F at nominal 1 uohm) Max DCMs per Control Unit 254 Fibre Optic Loop Fibre Optic Range Min 6 (150 mm) Max 150 ft (50 m) Input Cable Lengths Min 4 (100 mm) Max 16ft 6 (5 m) Max variation between cables on one unit 6ft 6 (2 m) Temperatures Operating temperature Storage temperature Power supply nominal Power supply voltage Operating current Quiescent Current During ohmic test 0C to 35C / 32F to 95F 0C to 80C / 32F to 176F 4 x 2v cells up to 4 x 12v blocs Min 7 vdc Max 60vdc 25 ma Additional 0.0027A/hr Physical Characteristics Dimensions (H x W x D) 2 17 / 32 x 4 5 / 8 x 1 27 / 32 46mm x 64mm x 117mm Mounting pads 2 3M Dual Lock Enclosure Material Flame retardant ABS Color Black Generator Extender Kit Operating Voltage 12 Volts Operating temperature 0C to 35C / 32F to 95F Storage temperature 0C to 80C / 32F to 176F Communications Proprietary over CAT5 cable Max range 4000 ft (1219 m) Fibre Optic Range 150 ft (50 m) remote to DCM, DCM to remote Dimensions (H x W x D) Remote 2 5 / 8 x 4 5 / 16 x 1 65 mm x 110mm x 26mm Master 2 7 / 16 x 4 3 / 4 x 1 3 / 16 62 mm x 122mm x 30mm The Control Unit and DCM are fully compliant with CE and UL regulations for EMC. See manual for details.