Enerac-700 Gas Analyzer |
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Key Features |
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Built in Printer |
2” Graphic Thermal Printer |
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4&8 Line Dual Display |
4 & 8 line 128 x 64 pixel dual display with backlight. This 4&8 line dual display allows one to see many param- eters at once or “zoomed in” closer look at a few specific parameters of interest. |
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Standard Probe & Hose |
9” L x 3/8” O.D. Inconel probe with 10’ Viton hose. The standard Inconel probe handles high temperature applications (2,000 deg. F) |
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Pitot Tube Probe |
18”L S-Type Pitot tube w/9’ (3/16” D) rubber tubing. This Pitot tube is a separate probe that is used in addition to the standard probe. |
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SEM Electrochemical Sensors |
The world’s most accurate electrochemical gas sensors only available through Enerac (the inventor!) These sophisticated electrochemical sensors bring more accuracy to your testing event (unlike standard electrochemical sensors found on competitor units etc) |
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True NOx Readings at Multiple Levels |
The Model 700 incorporates total NOx (NO + NO2), a sample conditioning system (cooler) for proper NO2 detection and measurement as well as a temperature controlled NO sensor only found at Enerac. |
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Thermoelectric Condenser / Peltier Cooler (Chiller) |
With the combination of the standard high quality viton hose (teflon available) and the standard advanced sample conditioning system (cooler), one can detect and meas- ure NO2 and or SO2 gases accurately! |
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NDIR Bench (Non Dispersive Infrared 3-Gas Sensor) Option |
This sensor option allows the unit to detect and measure the CO (in % volume), CO2 (as a direct measurement in % volume) and Hydrocarbons (CxHy).(meets EPA method 25B) |
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Control Key Pad |
Easy to Use Key Pad makes a task a Snap. If you want to Print, Store Data, Zero Cal, Turn the pump on and off (and other options)…Just Press the easy to read buttons etc. |
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Enercom Software |
With Enerac’s Free Enercom software, one can use this spreadsheet software “live” and see real time data collection. The data collection is arranged for easy understanding and reporting. |
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Specification |
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Dimenssions |
5.75”W x 9.75”H x 3.25” D |
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Weight |
6 lbs |
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Power |
4 D size NiMH rechargeable |
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And 120/240 VAC Adapter |
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Display |
4&8 Line 128 x 64 pixel Dual |
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Memory |
500 Internal Storage Buffers |
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Printer |
2” Graphic Thermal Printer |
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Sensor Specification |
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Communications : Serial ( RS 232 ) & USB ports, up to |
Range |
Resolution |
Accuracy |
Sensor Type |
115k Baud; Bluetooth |
0-150 °F |
1 degree F or C |
+/- 2 ° F M |
Type RTD |
Stack Temperature (net) |
0-2,000 °F (1,100 °C) |
1 degree F or C |
+/- 2 ° F M |
Type K thermocouple |
Oxygen (O₂) |
0-25% |
0.1 % |
+/- 0.2% M |
Electrochemical |
Carbon Monoxide (CO) |
0-1,500/4,500 ppm |
1 ppm |
+/- 1-2%M (< +/- 1%**) |
Dual Range SEM |
Nitric Oxide (NO) |
0-500/1,500 ppm |
0.1 ppm |
+/- 1-2%M (< +/- 1%**) |
Dual Range SEM |
Nitrogen Dioxide (NO₂) |
0-500/1,500 ppm |
0.1 ppm |
+/- 1-2%M (< +/- 1%**) |
Dual Range SEM |
Sulfur Dioxide (SO₂) |
0-1,500/4,500 ppm |
1 ppm |
+/- 1-2%M |
Dual Range SEM |
Combustibles |
0-5% |
0.1% |
+/- 2% (CH4) M |
Catalytic Sensor |
Stack Draft |
+10” to - 40” WC |
0.1 “ WC |
+/- 2% M |
Silicone Diaphragm |
Stack Velocity / Flow |
0-200 ft/sec (0-6,500 cfm) |
1 ft/sec |
Meets EPA Method 2 |
Type S pitot tube |
Hydrocarbons CxHy |
0-30,000 ppm |
1 ppm |
+/-3% M |
NDIR |
Carbon Monoxide (CO) |
0-15% |
0.01% |
+/-3% M |
NDIR |
Carbon Dioxide (CO₂) |
0-20% |
0.01% |
+/-3% M |
NDIR |
Computed Parameters |
Range |
Resolution |
Accuracy |
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Combustion Efficiency |
0-100% |
0.1% |
+/- 1% |
calculated |
Carbon Dioxide |
0-40% |
0.1% |
+/- 2% |
calculated |
Excess Air |
0-1000% |
1% |
+/- .2% |
calculated |
NOx (NO + NO₂) |
0-1,000 or 0-3,000 ppm |
0.1 ppm |
+/- 4% (<+/- 2%**) |
calculated |
Emissions Conversion Units |
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calculated |
(CO, NO, NO₂, SO₂) |
0-2,500 mg/m3 |
2 mg/m3 |
+/- 2% M (< +/- 1%**) |
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Milligrams / cubic meter |
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Pounds / million btu |
0-99.99 #/mbtu |
0.01 #/mbtu |
+/- 2% |
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Grams / brake-hp-hr |
0-99.99 g/bhp-hr |
0.01 g/bhp-hr |
+/- 2% |
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