This compressor has been replaced by the Tecumseh AE4470Z, HBP – R404A, 220-240V/50Hz supercharger/compressor Tecumseh CAE9470Z Ö ltyp (POE), HBP – R404A, Voltage 220-240V/1/50Hz, Starting current LRA 20A, Motor type CSR, Cap. Connections OD: 3/8“ x 1/4“ m measured for condensation temperature 54,5° C, suction gas temperature 46° C, measuring conditions: CECOMAF
Refrigerants: R134a, Compressor power supply [V]: 220/1/50 220/1/60
Product details
Gross weight
10.6 Kg
Net weight
10.6 Kg
Gross weight
10.6 Kg
Net weight
10.6 Kg
Auxiliary winding resistance (start winding) for single-phase compressors [Ohm]
11.9
Auxiliary winding resistance (start winding) for single-phase compressors alt [Ohm]
11.9
Brand technique
Reciprocating compressor
Capacity control
Fixed speed
Colour
Black
Compressor power supply [V]
220/1/50 220/1/60
Configuration code
Single
Cut in current HST [A]
10.9 A
Cut in current LST [A]
15.1 A
Description
FR10G
Discharge connection angle [°]
25 °
Discharge connection comments
Al-cap
Discharge connection diameter [mm]
6.2 mm
Discharge connection material
Cu-plated steel
Economizer
No
Family
FR
Free gas volume [cm3]
1350 cm³
Frequency [Hz]
50/60
Height from baseplate [mm]
191 mm
High value of nominal voltage at 50Hz [V]
230 V
High value of nominal voltage at 60Hz [V]
230 V
High value of voltage range at 50Hz [V]
254 V
High value of voltage range at 60Hz [V]
254 V
In scope of WEEE and contain batteries
No
Length [mm]
243 mm
Liquid injection
No
Low value of nominal voltage at 50Hz [V]
220 V
Low value of nominal voltage at 60Hz [V]
220 V
Low value of voltage range at 50Hz [V]
198 V
Low value of voltage range at 60Hz [V]
198 V
LRA HST 60Hz [A]
10.9 A
LRA HST [A]
10.9 A
LRA LST [A]
10.5 A
Main winding resistance for single-phase compressors [Ohm]
7.1
Model number
FR10G
Motor type
CSIR RSIR
No. of phases (compressor)
1
No. of phases (fan)
1
Oil cooler connection comments
Rubber cap
Oil cooler connection diameter [mm]
6.2 mm
Oil cooler connection material
Copper
Oil quantity [cm3]
450 cm³
Oil type
POE
Packing format
Industrial pack
Phase
1
Process connection angle [°]
30 °
Process connection comments
Al-cap
Process connection diameter [mm]
6.2 mm
Process connection material
Cu-plated steel
Product group
Hermetic compressors
Product Name Description
Reciprocating compressor FR
Refrigerant charge [kg] [Max]
0.9 kg
RLA
2.20 A
Rotational speed at 50Hz [rpm]
2900 rpm
Rotational speed at 60Hz [rpm]
3500 rpm
Suction connection angle [°]
30 °
Suction connection diameter [mm]
8.2 mm
Suction connection material
Cu-plated steel
Swept volume [cm3]
9.05 cm³
Technology
Reciprocating
Total height [mm]
196 mm
Type
FR10
Voltage 50Hz [V]
220 V
Voltage 50Hz [V] [Max]
240 V
Voltage 60Hz [V]
220 V
Voltage 60Hz [V] [Max]
240 V
Width [mm]
156 mm
Winding temperature short term [°C] [Max]
135 °C
Winding temperature stat [°C] [Max]
125 °C
Auxiliary winding resistance (start winding) for single-phase compressors [Ohm]
11.9
Auxiliary winding resistance (start winding) for single-phase compressors alt [Ohm]
11.9
Brand technique
Reciprocating compressor
Capacity control
Fixed speed
Colour
Black
Compressor power supply [V]
220/1/50 220/1/60
Configuration code
Single
Cut in current HST [A]
10.9 A
Cut in current LST [A]
15.1 A
Description
FR10G
Discharge connection angle [°]
25 °
Discharge connection comments
Al-cap
Discharge connection diameter [mm]
6.2 mm
Discharge connection material
Cu-plated steel
Economizer
No
Family
FR
Free gas volume [cm3]
1350 cm³
Frequency [Hz]
50/60
Height from baseplate [mm]
191 mm
High value of nominal voltage at 50Hz [V]
230 V
High value of nominal voltage at 60Hz [V]
230 V
High value of voltage range at 50Hz [V]
254 V
High value of voltage range at 60Hz [V]
254 V
In scope of WEEE and contain batteries
No
Length [mm]
243 mm
Liquid injection
No
Low value of nominal voltage at 50Hz [V]
220 V
Low value of nominal voltage at 60Hz [V]
220 V
Low value of voltage range at 50Hz [V]
198 V
Low value of voltage range at 60Hz [V]
198 V
LRA HST 60Hz [A]
10.9 A
LRA HST [A]
10.9 A
LRA LST [A]
10.5 A
Main winding resistance for single-phase compressors [Ohm]
7.1
Model number
FR10G
Motor type
CSIR RSIR
No. of phases (compressor)
1
No. of phases (fan)
1
Oil cooler connection comments
Rubber cap
Oil cooler connection diameter [mm]
6.2 mm
Oil cooler connection material
Copper
Oil quantity [cm3]
450 cm³
Oil type
POE
Packing format
Industrial pack
Phase
1
Process connection angle [°]
30 °
Process connection comments
Al-cap
Process connection diameter [mm]
6.2 mm
Process connection material
Cu-plated steel
Product group
Hermetic compressors
Product Name Description
Reciprocating compressor FR
Refrigerant charge [kg] [Max]
0.9 kg
RLA
2.20 A
Rotational speed at 50Hz [rpm]
2900 rpm
Rotational speed at 60Hz [rpm]
3500 rpm
Suction connection angle [°]
30 °
Suction connection diameter [mm]
8.2 mm
Suction connection material
Cu-plated steel
Swept volume [cm3]
9.05 cm³
Technology
Reciprocating
Total height [mm]
196 mm
Type
FR10
Voltage 50Hz [V]
220 V
Voltage 50Hz [V] [Max]
240 V
Voltage 60Hz [V]
220 V
Voltage 60Hz [V] [Max]
240 V
Width [mm]
156 mm
Winding temperature short term [°C] [Max]
135 °C
Winding temperature stat [°C] [Max]
125 °C
Mbsm.pro, Beko, Tee, Compressor, Turk, VNTZ165M, VNTZ 165 M, VNTZ165MT / VNTZ165M, R600A, lbp, Inverter, variable speed, blcd, 165 kcal, 195 w
written by Lilianne | 19 January 2024
The VNTZ 165 M is a refrigerator compressor. It is manufactured by Arcelik, a Turkish company that produces home appliances. The VNTZ 165 M is used in a variety of refrigerators, including Beko, Blomberg, and Grundig brands.
VNTZ 165 M compressor
The VNTZ 165 M is a reciprocating compressor, which means that it uses a piston to compress the refrigerant gas. It is a variable-speed compressor, which means that it can adjust its speed to match the cooling demand of the refrigerator. This can help to save energy.
The VNTZ 165 M uses R600a refrigerant, which is also known as isobutane. R600a is a natural refrigerant that is more environmentally friendly than some other refrigerants.
Here are some of the specifications of the VNTZ 165 M compressor:
Cooling capacity: 165 kcal *1.163=195 watts
Refrigerant: R600a
Voltage: 220-240 V
Frequency: 50 Hz/ 3PH
Current: 1.79 A in 4500 rpm
Oil type: POE
Replacement in other type examples, no inverter if you change all technologies
Replacement Compressor Model
Manufacturer
Type
Cooling Capacity (Watts)
Refrigerant
Voltage
Frequency
Current
Oil Type
EMBRACO EMYE75CLC
Embraco
Reciprocating
147
R600a
220-240V
50Hz
1.55A
POE
ACC GVY75AA
ACC
Rotary
155
R600a
220-240V
50Hz
1.65A
POE
DANFOSS SC15CL
Danfoss
Scroll
154
R600a
220-240V
50Hz
1.65A
POE
Replacement in other type examples, inverter Compressor
Replacement Compressor Model
Manufacturer
Type
Cooling Capacity (Watts)
Refrigerant
Voltage
Frequency
Current Range
Oil Type
EMBRACO NJ5220GK
Embraco
Inverter
154 – 215
R600a
220-240V
50Hz
1.1-1.95A
POE
ACC HVY75AA
ACC
Inverter
140 – 190
R600a
220-240V
50Hz
1.0-1.65A
POE
DANFOSS TL5G
Danfoss
Inverter
145 – 204
R600a
220-240V
50Hz
1.1-1.85A
POE
Mbsm.pro, 3A Adjustable voltage regulator circuit from 12 v to 5 v DC
written by rober us | 19 January 2024
1. Switching Regulator with Adjustable Output:
High Efficiency: Ideal for high-current applications due to their efficient power conversion, reducing heat generation.
Wide Input Voltage Range: Often handle a broad range of input voltages.
Compact Size: Typically smaller than linear regulators with similar current ratings.
Adjustability: Some switching regulator ICs offer built-in adjustable output voltage control.
Examples of Switching Regulator ICs with Adjustable Output:
LM2596
LM2576
MP1584
2. Linear Regulator with External Pass Transistor and Adjustable Control:
Simpler Design: Uses a linear regulator IC, an external power transistor, and adjustable control components.
Less Efficient: Dissipates excess power as heat, requiring adequate heatsinking.
Components:
Linear Regulator IC: Provides basic voltage regulation, but with a limited current output.
Power Transistor: Handles high current flow.
Heatsink: Dissipates heat from the transistor.
Adjustable Resistors: Allow for fine-tuning of the output voltage.
Additional Considerations:
Heat Dissipation: Both switching and linear regulators with high currents generate heat. Provide sufficient heatsinking.
Input Voltage Range: Ensure the regulator can handle your input voltage range.
Desired Adjustment Range: Choose a regulator that offers the level of output voltage adjustability you need.
Safety Features: Consider regulators with overcurrent protection, thermal protection, and short-circuit protection.
Specific Circuit Design and Component Selection:
Depend on your exact current, voltage, and adjustability requirements.
Consult datasheets and application notes for the chosen regulator ICs for detailed guidance.
Mbsm.pro, Conversion circuit, from 220 v to 12 v / 1 A, to operate a, DC12V, fan, in the refrigerator
written by rober us | 19 January 2024
1. AC-DC Adapter:
Convenient and compact: Pre-built, plug-and-play solution.
Power rating: Choose an adapter with a power rating sufficient for your fan’s wattage.
Image:
2. Transformer and Rectifier Circuit:
Step-down transformer: Reduces 220V AC to a lower AC voltage (e.g., 12V AC).
Rectifier circuit: Converts AC to DC.
Capacitor: Smoothes out voltage fluctuations.
Image:
3. Switching Power Supply (SMPS):
High efficiency: Typically over 80%, reducing energy waste.
Smaller size: Compared to linear power supplies.
Available as pre-built modules or DIY kits:
Image:
Key Considerations:
Fan’s power requirements: Ensure the converter can supply the necessary current.
Safety: Implement proper insulation and grounding for AC connections.
Heat dissipation: Consider heat sinks for transformers or power supplies, especially for high-power fans.
Placement: Avoid placing the converter in areas with high moisture or condensation.
Professional installation: Recommended for those unfamiliar with electrical work.
Additional Tips:
Fuse: Add a fuse to the circuit for added protection against short circuits.
Switch: Include a switch to easily turn the fan on and off.
LED indicator: Add a LED indicator to show when the converter is powered on.
7805 Voltage Regulator IC: This three-pin integrated circuit (IC) is the heart of the circuit. It regulates the voltage to a constant 5 volts at its output, even if the input voltage varies.
Input Capacitor (Cin): This capacitor helps to filter out any unwanted ripple or noise from the input voltage, providing a smoother input to the regulator.
Output Capacitor (Cout): This capacitor helps to smooth out any voltage fluctuations at the output, ensuring a stable 5 volts for the connected circuitry.
Heatsink (optional): If the regulator is expected to handle significant current, a heatsink may be necessary to dissipate heat and prevent overheating.
Connections:
Input Pin (VIN): Connect this pin to the unregulated DC input voltage source.
Ground Pin (GND): Connect this pin to the ground of both the input and output circuits.
Output Pin (VOUT): Connect this pin to the load or circuitry that requires a regulated 5 volts.
Key Points:
Input Voltage Range: The 7805 can handle input voltages ranging from 7 to 35 volts.
Output Voltage: The fixed output voltage is 5 volts.
Maximum Output Current: The 7805 can provide up to 1 amp of output current.
Heat Management: If using high input voltages or driving high currents, a heatsink is essential for proper heat dissipation.
Common Applications:
Powering microcontrollers, sensors, and other low-power electronics
Providing a stable voltage reference for circuits
Creating a 5-volt power supply for DIY projects
Used in various electronic devices like computers, audio equipment, and industrial machinery
Input Amperage:
Not fixed: The 7805’s input amperage is not a fixed value, but rather depends on the demands of the connected load.
Regulates voltage, not current: The regulator’s primary function is to maintain a constant 5-volt output, but it adjusts the input current as needed to achieve this.
Simplified Equation: Input Amperage ≈ Output Amperage ≈ Load Current (approximately, as there’s some internal power consumption)
Output Amperage:
Maximum Output Current: The 7805 can provide a maximum output current of 1 amp.
Heat Considerations: If the load requires close to 1 amp, a heatsink is crucial to prevent overheating and potential damage.
Key Points:
Input Current Matches Load Demand: The 7805’s input current will automatically adjust to match the current required by the load.
Maximum Output Current 1 Amp: The regulator can deliver up to 1 amp of current at its output.
Heatsink for Higher Currents: If using the regulator near its maximum output current, a heatsink is essential for proper heat dissipation.
Additional Considerations:
Efficiency: The 7805 is a linear regulator, so it does dissipate some power as heat, especially at higher input voltages and currents.
Power Dissipation: Consider the power dissipation (input voltage – output voltage) * output current to determine if a heatsink is necessary.
Alternatives: For higher efficiency or higher output currents, consider switching regulators.