Showing posts with label adjusting temperature. Show all posts
Showing posts with label adjusting temperature. Show all posts

Monday, June 10, 2013

Ariston Anode Rod and Ariston GLKIT

Spare parts are available for he Ariston electric mini-tank water heaters. These spare parts are user-replaceable.

For the Ariston Gl2.5 and the Ariston GL4 mini-tank water heaters you can replace just the sacrificial GL Anode Rod (#574305) or you can get the Ariston GLKIT for the GL2.5 and Gl4 models. This GL KIT includes the GL Anode Rod (#574305) as well as the GL heating element (#994103) and the GL gasket (#994147).

The GL Anode Rod and the GL KIT will also work for the Ariston GL2.5Ti and GL4Ti mini-tank electric water heaters as well as the now-obsolete Ariston models P10S and P15S.


Similarly, for the Ariston GL6+ mini-tank water heater you can replace just the sacrificial GL6+ Anode Rod (#570241) or you can get the Ariston GL6+KIT for the GL6+ model.

Tuesday, May 21, 2013

Replacing an Aquastar 125BL Low Pressure Unit with a Bosch 345ESR/450ESR


The older Bosch Aquastar model 125B LP L (Liquid Propane) or 125B NG L (Natural Gas) was 117,000 BTU and was a naturally drafting unit that was good for one major application at a time. The Aquastar 125BL unit was a low pressure unit design for non modulating applications for heating systems in conjunction with domestic hot water.  The Bosch 125BL had a standing pilot light and took it's combustion air from the room it was installed in.  The 125BL had to be vented with a 5" B-vent double wall venting going a minimum of 6' up through the roof vertical to a raincap.  The 125BL unit could have been vented out the sidewall also with the AQ1 powervent kit (now discontinued). The Bosch Aquastar 125BL unit is discontinued now and has not been made for over 8 years or so. The replacement model for the older Bosch Aquastar 125BL would be the Bosch 345ESR or 450ESR recirculating units.



Bosch 345ESR/450ESR

The gas tankless recirculating heaters, Bosch 345 ESR and the Bosch 450 ESR are temperature modulated and have electronic ignition. The ESR stands for Electronic ignition, Sealed combustion and Recirculating. These recirculating heaters are designed and approved for heating and recirculating potable water in conjunction with an indirect storage tank.  The Bosch 345ESR and the Bosch 450ESR would be able to replace the older Aquastar 125BL unit but there would have to be significant changes such as the venting is stainless steel, combustion air taken from outside using 3" PVC and that the gas line sizing would have to be appropriate.


The 345/450 ESR are not approved or designed for closed loop heating applications. The ESR units are not a tankless heater as they have no flow switch to respond to flow. Instead it’s a recirculating water heater designed for tank loading applications such as the older Aquastar 125BL units were designed for. When an AquaStat (not included) hooked up to a tank tells the ESR that water needs to be brought back up to temperature, the ESR will tell a circulator (not included) to turn on to create flow through the heater to reheat the water in the tank. Please refer to the installation and applications manual.  The basic setup for the indirect tank, aquastat, recirculation pump, check valves, etc. should be basically the same for the new ESR heaters.

The Bosch 345 ESR recirculating heater is a 95K BTU unit and can deliver 3.5 GPM at a 45 degree rise. Efficiency is 82%


The Bosch 450 ESR recirculating heater is a 120K BTU unit and can deliver 4.5 GPM at a 45 degree rise. Efficiency is 81%

The temperature control range for both heaters can be set anywhere from 115°F (45°C) - 190°F (90°C)

The 345/450 ESR comes with a standard ¾” pressure relief valve.

The 345/450 ESR has a special built-in freeze prevention cycle and is controlled by a sensor. Freeze protection is always assured by the operation of the appliance. If the primary NTC (temperature) sensor detects temperatures 9°F below the selected temperature, the appliance starts on minimum power until the sensor reads selected temperature. In the case of minimum set point temperature then it will start at 41°F. The use of non-potable additives like glycol is not approved.

The Bosch 345 ESR and the Bosch 450ESR must be installed indoors according to the provided installation manual. The 345/450 ESR is NOT approved for outdoor installations.

The Bosch 345/450 ESR recirculating heaters must be vented in accordance with the installation manual and require Category III 3” stainless steel sealed venting for the exhaust. These heaters are direct vent units and must be vented directly to the outside in accordance with the installation manual. These heaters cannot be combination vented with any other appliance. The intake should be taken from the outside and 3”PVC or other material can be used only for the intake air.

The Bosch 345/450 ESR recirculating heaters are gas specific so they cannot be converted from one gas type to another.



Saturday, September 17, 2011

Flow & Temperature Adjustment for Bosch 1600P




The new Bosch 1600P that comes in either natural gas or liquid propane has a control knob for adjusting the flow and a slide adjustment for adjusting the heat on the front of the heater.


The Bosch AquaStar 1600P is a 117,000 BTU Gas Tankless Water Heater. The control knob on the right is the Temperature Adjustment knob and is for adjusting the flow of water through the heater which has the ability to speed the flow of water up making it cooler or slowing it down and making it hotter. The slide control in the middle is for adjusting the temperature of of the water by adjusting the height of the flame. When the slide is positioned on the small flame symbol the burners will be low and when the slide is on the high flame symbol the burners will get higher and the temperature hotter.

Below is how turning the Temperature Adjustment knob effects the heater:


Knob PositionClockwiseCounter-clockwise
Degree Rise90° F45° F
Activation Rate0.5 GPM1.1 GPM
Max Flow Rate2.0 GPM3 .7 GPM


As the temperature adjustment knob is turned counter-clockwise, the output temperature will lower and the activation rate of the heater will be raised. Turning the knob clockwise will raise the temperature and lower the activation rate.

When sliding the slide adjustment to the left small flame will give lower flame and cooler temperatures and sliding the slide to the right will give hotter tenmperatures and a higher flame.

The Bosch 1600P has a gas control slide that modulates burner input in response to flow. Its purpose is to ensure that the hot water temperature will remain steady, although the water flow demand might vary.

Saturday, July 30, 2011

Use of Power & Temperature Control knobs for 1600H


The new Bosch 1600H that comes in either natural gas or liquid propane has 2 new control knobs for adjusting temperature and flow on the front of the heater as the older 125 series heaters only had 1 control knob to adjust flow.

The Bosch AquaStar 1600H has 2 control knobs on the front of the heater. The control knob on the left is the Power control knob and allows you to set the height of the burners for hotter temperatures or cooler temperatures. The control knob on the right is the Temperature Adjustment knob and is for adjusting the flow of water through the heater which has the ability to speed the flow of water up making it cooler or slowing it down and making it hotter.

Below is how turning the Temperature Adjustment knob effects the heater:

Knob Position Clockwise Counter-clockwise
Degree Rise 90° F 45° F
Activation Rate 0.5 GPM 1.1 GPM
Max Flow Rate 2.0 GPM 3 .7 GPM


As the temperature adjustment knob is turned counter-clockwise, the output temperature will lower and the activation rate of the heater will be raised. Turning the knob clockwise will raise the temperature and lower the activation rate.

When turning the left Power Control knob to the left will give more power and higher water temperatures. Turning the knob clockwise will give less power and cooler water temperatures.

The Bosch 1600H has a gas control that modulates burner input in response to flow. Its purpose is to ensure that the hot water temperature will remain steady, although the water flow demand might vary.