3580337 Volvo.Penta Piston ring kit


3580337 Piston ring kit Volvo.Penta MD2010-C; MD2010-D; MD2020-C, MD2010A; MD2020A; MD2030A, MD2010B; MD2020B; MD2030B Piston
3580337 Piston ring kit Volvo Penta
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$146.23

11-11-2024

US: Super Brakes
Brake X Front and Rear Brake Pads and Rotors Kit with brake caliper compression tool replacement for 2012-2017 Hyundai Accent | ARES Semi Coated Rotors and Alpha Ceramic Brake Pads
Brake X Get The Right Fit: The front and rear replacement brakes and rotors kit are built for 2012 2013 2014 2015 2016 2017 Accent ( Rear Disc Models ONLY ) (Front Rotor Size: 256mm ||| Rear Rotor Size: 262mm) || 12 Piece Brake Kit Replacement with Caliper piston compressor tool: Our replacement brake kit comes with 4 heavy duty brake rotors for the front and back along with 8 automotive replacement brake pads that are built to exceed OEM Specification using quality materials for performance and long term use. || Quality That Matters: Our rotors and brake pads kit with brake pad spreader are engineered in Canada for the toughest environments with exact or more vane counts to meet OEM Specifications. They are backed by our satisfaction guarantee for any manufacturing defects so you know we have your back as you make every turns. || Semi GEOMET Protected: Our front and rear automotive replacement brake kits are made using heavy duty G3000 grade cast iron with a GEOMET coating at the hat and the edge of the rotors to offer just the right balance of performance, quality, durability and affordability. It?€?s resistant to rust and corrosion, built to exceed OEM specifications, and can be installed without any modifications. || No Noise And Low Dust: We use a ceramic formula for our brake pads, they are shimmed, chamfered and slotted to ensure smoother, quieter braking and reduce braking noise. Our automotive replacement brake rotors are double disc smoothened and mill balanced to help prevent cracking and build up. The Brake X rotors and brakes are engineered to elevate your driving experience.
Number on catalog scheme: 22
 

Volvo Penta entire parts catalog list:

MD2010-C; MD2010-D; MD2020-C; MD2020-D; MD2030-C; MD2030-D; MD2040-C; MD2040-D; 120S-D; 120S-E
MD2010A; MD2020A; MD2030A; MD2040A; MS2B-R; MS2A-D; MS2A-E; MS2L-D; MS2L-E; 120S-D; 120S-E; MD2010; MD2030; MD2040; MD2020
MD2010B; MD2020B; MD2030B; MD2040B; MS2L-D; MS2A-D; 120S-D; MS2B-R; MS2A-E; MS2L-E

Information:


Table 1
Diagnostic Codes Table
CDL Code and Description Conditions which Generate the Code System Response
1491-3 Right Turbo Turbine Inlet Temperature Sensor voltage above normal The ECM detects a duty cycle that is greater than 96 percent for 10 seconds. The code is logged.
If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
1491-4 Right Turbo Turbine Inlet Temperature Sensor voltage below normal The ECM detects a duty cycle that is less than 4 percent for 10 seconds.
1491-8 Right Turbo Turbine Inlet Temperature Sensor abnormal frequency, pulse width, or period The ECM detects a sensor frequency that is greater than 600 Hz or less than 400 Hz.
1492-3 Left Turbo Turbine Inlet Temperature Sensor voltage above normal The ECM detects a duty cycle that is greater than 96 percent for 10 seconds. The code is logged.
If the signal from the other exhaust temperature sensor is OK, the signal from that sensor is used. If the signal from the other exhaust temperature sensor is not OK, a default value of 0 °C (32 °F) is used.
1492-4 Left Turbo Turbine Inlet Temperature Sensor voltage below normal The ECM detects a duty cycle that is less than 4 percent for 10 seconds.
1492-8 Left Turbo Turbine Inlet Temperature Sensor abnormal frequency, pulse width, or period The ECM detects a sensor frequency that is greater than 600 Hz or less than 400 Hz. System OperationUse this procedure to troubleshoot any suspect problems with the sensor for the left turbocharger turbine inlet temperature or the right turbocharger turbine inlet temperature.The Pulse Width Modulated Sensor (PWM) provides a signal to the ECM. The PWM signal is used to represent certain engine operating conditions. The sensors receive 8.0 0.4 VDC from a regulated power supply.The ECM performs an automatic calibration of these sensors whenever the ECM is powered and the engine has been off for at least 5 seconds.The ECM provides short circuit protection for the internal power supply. A short circuit to the battery will not damage the internal power supply.The following components can cause problems with the power supply:
Electrical connector or wiring
Sensor
ECMThe most likely cause of a problem is a problem with an electrical connector or wiring. The least likely cause is a problem with the ECM.
Illustration 1 g02604056
Schematic of the PWM sensors for the sensor signal circuit
Illustration 2 g01534075
Location of the PWM sensors (top side engine view)
(1) Sensor for the right turbocharger turbine inlet temperature
(2) Sensor for the left turbocharger turbine inlet temperature
(3) Right rail connector
(4) Left rail connector
(5) J1/P1 ECM connector
(6) J2/P2 ECM connector
Illustration 3 g01279964
Terminal locations at the P1 ECM connector that are for the sensors for the turbocharger turbine inlet temperature
(P1-5) Digital return
(P1-18) Digital return
Illustration 4 g01279871
Terminal locations at the P2 ECM connector that are for the sensors for the turbocharger turbine inlet temperature
(P2-29) Digital supply
(P2-65) Left turbocharger turbine inlet temperature
(P2-73) Right turbocharger turbine inlet temperature
(P2-92) Digital return
Illustration 5 g01826777
Terminal locations at the left rail connector that are for the sensors for the turbocharger turbine inlet temperature
(Terminal 49) Left turbocharger turbine inlet temperature
(Terminal 63) Digital supply
(Terminal 69) Digital return
Illustration 6 g01534394
Terminal locations at the right rail connector that are for the sensors for the turbocharger turbine inlet temperature
(Terminal 49) Right turbocharger turbine inlet temperature
(Terminal 63) Digital supply
(Terminal 69) Digital return
Illustration 7 g01240891
Sensor connector
(Terminal 1) Sensor supply
(Terminal 2) Sensor return
(Terminal 3) Signal
Table 2
Troubleshooting Test Steps Values Results
1. Check for an "Active" Diagnostic Codes
A. Connect Caterpillar Electronic Technician (ET) to the service tool connector.
B. Monitor the diagnostic codes on Cat ET. Check and record any diagnostic codes.
Note: Wait at least 30 seconds in order for the diagnostic codes to become active.
C. Determine if a diagnostic code has occurred several times.
Note: A diagnostic code that is logged several times is an indication of an intermittent problem. Most intermittent problems are the result of a bad connection between a socket and a pin in a connector. There could also be a bad connection between a wire and a terminal.
D. Look for one or more of the following diagnostic codes that are active or logged:
- 1491-03
- 1491-04
- 1491-08
- 1492-03
- 1492-04
- 1492-08


Parts piston Volvo Penta:

876692
 
876692 Piston kit
MD2010-C; MD2010-D; MD2020-C, MD2010A; MD2020A; MD2030A, MD2010B; MD2020B; MD2030B
876696
 
876696 Piston kit
MD2010-C; MD2010-D; MD2020-C, MD2010A; MD2020A; MD2030A, MD2010B; MD2020B; MD2030B
876814
 
876814 Piston kit
MD2010-C; MD2010-D; MD2020-C, MD2010A; MD2020A; MD2030A, MD2010B; MD2020B; MD2030B
876817
 
876817 Piston kit
MD2010-C; MD2010-D; MD2020-C, MD2010A; MD2020A; MD2030A, MD2010B; MD2020B; MD2030B
3580548
 
3580548 Piston kit
MD2010A; MD2020A; MD2030A
7746800_013
 
7746800_013 Piston kit
MD2010A; MD2020A; MD2030A
7746800_014
 
7746800_014 Piston kit
MD2010A; MD2020A; MD2030A
7746410_017
 
7746410_017 Piston kit
MD2010B; MD2020B; MD2030B
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