888089 Control cable Volvo.Penta
AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D1-13; D1-13B; D1-20, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D12D-A MH; D12D-B MH; D12D-C MH, D13B-E MH; D13B-E MH (FE); D13B-N MH, D16C-A MH; D16C-B MH; D16C-C MH, D16
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$198.16
26-10-2022
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Replacement For EZGO/CUSHMAN/TEXTRON 888089 Battery
Replacement For EZGO / CUSHMAN / TEXTRON 888089 || Unit per sale:1
Replacement For EZGO / CUSHMAN / TEXTRON 888089 || Unit per sale:1
$200.11
17-02-2023
-: -
Technical Precision Replacement for EZGO/Cushman/TEXTRON 888089 Battery
Replacement For EZGO / CUSHMAN / TEXTRON 888089 || Unit per sale:1
Replacement For EZGO / CUSHMAN / TEXTRON 888089 || Unit per sale:1
$8.19
05-03-2022
0.375[0.00] Pounds
-: -
South Main Hardware 888089 1-in Mounting Pad, 100-Pack Black, Speciality Cable Tie, 1", 100 Piece
Material: nylon 6/6, ul-94v2 certification and flammability || Temp range: -40 degrees to 85 degrees/-40 degrees to 185 degrees || Great for cable management and home organization || 1-inch x 1-inch w/center screw mount hole || Package includes 100 Mounting Pads
Material: nylon 6/6, ul-94v2 certification and flammability || Temp range: -40 degrees to 85 degrees/-40 degrees to 185 degrees || Great for cable management and home organization || 1-inch x 1-inch w/center screw mount hole || Package includes 100 Mounting Pads
Compatible models:
AD31D; AD31D-A; AD31XD
AD31L-A; AD31P-A; AD41L-A
AD41D; D41D; TAMD41D
D1-13; D1-13B; D1-20
D11A-A; D11A-B; D11A-C
D11B1-A MP; D11B2-A MP
D12D-A MH; D12D-B MH; D12D-C MH
D13B-E MH; D13B-E MH (FE); D13B-N MH
D16C-A MH; D16C-B MH; D16C-C MH
D16C-D MH
D2-55; D2-55B; D2-55C
D2-75; D2-75B; D2-75C
D3-110I-A; D3-110I-B; D3-110I-C
D4-180I-B; D4-180I-C; D4-180I-D
D4-180I-F; D4-225A-F; D4-225I-F
D5A-T; D5A-TA; D5A-B TA
D6-280A-A; D6-280A-B; D6-280A-C
D6-300A-F; D6-300D-F; D6-300I-F
D9A2A; D9A2A D9-425; D9A2A D9-500
HS25A; HS25A-B; HS25A-C
KAD32P; TAMD42WJ-A; KAD43P-A
KAD42B; KAMD42B; TAMD42B
KAD42P-A; KAMD42P-A; HS1A
MD2010-C; MD2010-D; MD2020-C
MD2010A; MD2020A; MD2030A
MD2010B; MD2020B; MD2030B
MD22A; MD22A-A; MD22L-A
MD22L; MD22P; MD22L-B
TAMD103A
TAMD122A; TMD122A; TAMD122P-A
TAMD162A; TAMD162B; TAMD162C
TAMD162C-C; TAMD163A-A; TAMD163P-A
TAMD165A; TAMD165C; TAMD165P
TAMD61A; TAMD62A
TAMD63L-A; TAMD63P-A
TAMD71A; TAMD72A
TAMD71B; TAMD73P-A; TAMD73WJ-A
TAMD72P-A; TAMD72WJ-A
TAMD74A; TAMD74A-A; TAMD74A-B
TMD102A; TAMD102A; TAMD102D
TMD121C; TAMD121C; TAMD121D
Volvo.Penta
Volvo Penta entire parts catalog list:
AD31L-A; AD31P-A; AD41L-A; AD41P-A; D41L-A; TAMD31L-A; TAMD31M-A; TAMD31P-A; TAMD31S-A; TAMD41H-A; TAMD41H-B; TAMD41P-A; TAMD41L-A; TAMD41M-A
AD41D; D41D; TAMD41D; TMD41D; HS1A
D1-13; D1-13B; D1-20; D1-20B; D1-30; D1-30B; D2-40; D2-40B; D1-13F; D1-20F; D1-30F; D2-40F
D11A-A; D11A-B; D11A-C; D11A-D MP; D11A-D (IPS); D11A-E; D11A-E MP; D11A-C MP; D11A-C (IPS)
D11B1-A MP; D11B2-A MP
D12D-A MH; D12D-B MH; D12D-C MH; D12D-E MH; D12D-G MH; D12C-A MP; D12D-A MP; D12D-B MP; D12D-C MP; D12D-D MP; D12D-E MP; D12D-F MP; D12D-G M
D13B-E MH; D13B-E MH (FE); D13B-N MH; D13B-N MH (FE)
D16C-A MH; D16C-B MH; D16C-C MH
D16C-D MH
D2-55; D2-55B; D2-55C; D2-55D; D2-55E; D2-55F
D2-75; D2-75B; D2-75C; D2-60F; D2-75F
D3-110I-A; D3-110I-B; D3-110I-C; D3-130A-A; D3-130I-A; D3-130A-B; D3-130I-B; D3-130A-C; D3-130I-C; D3-160A-A; D3-160I-A; D3-160A-B; D3-160I-
D4-180I-B; D4-180I-C; D4-180I-D; D4-180I-E; D4-210A-A; D4-225A-B; D4-210I-A; D4-210I-B; D4-225I-B; D4-225A-C; D4-225A-D; D4-225I-C; D4-225I-
D4-180I-F; D4-225A-F; D4-225I-F; D4-260A-F; D4-260D-F; D4-260I-F; D4-300A-F; D4-300D-F; D4-300I-F
D5A-T; D5A-TA; D5A-B TA; D7A-T; D7A-TA; D7A-B TA; D7C-TA; D7C-B TA
D6-280A-A; D6-280A-B; D6-280A-C; D6-280A-D; D6-280A-E; D6-280I-A; D6-280I-B; D6-280I-C; D6-280I-D; D6-280I-E; D6-310I-A; D6-310A-A; D6-310A-
D6-300A-F; D6-300D-F; D6-300I-F; D6-330A-F; D6-330D-F; D6-330I-F; D6-370A-F; D6-370D-F; D6-370I-F; D6-400A-F; D6-435D-F; D6-435I-F; D6-435I-
D9A2A; D9A2A D9-425; D9A2A D9-500; D9A2A D9-500 (R4); D9A2A D9-575; D9A2B D9-425; D9A2B D9-500 (R5); D9A2B D9-575; D9A2C D9-425; D9A2D D9
HS25A; HS25A-B; HS25A-C; HS25AE-A; HS45A; HS45AE; HS63A-A; HS63AE-A; HS63IV-A; HS63IVE-A; HS63IVE-D; HS80AE; HS80AE-B; HS80VE; HS85AE-A; HS85IV
KAD32P; TAMD42WJ-A; KAD43P-A; KAMD43P; KAMD43P-A; KAMD43P-B; KAD44P; KAD44P-B; KAD44P-C; KAMD44P-A; KAMD44P-C; KAD300-A; KAMD300-A; HS1A; HS1E
KAD42B; KAMD42B; TAMD42B
KAD42P-A; KAMD42P-A; HS1A
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
MD22A; MD22A-A; MD22L-A; TMD22A; TMD22-A; MS2B-A; MS2B-R; MS2A-E; MS2B-L; MS2L-E; 120S-E; MD22; MD22L
MD22L; MD22P; MD22L-B; MD22P-B; TMD22-B; TMD22P-C; TAMD22P-B; HS25A; HS25A-B; 120S-E; MS2A-E; MS2L-E; MS2B-L; TMD22B
TAMD103A
TAMD122A; TMD122A; TAMD122P-A; TAMD122P-B; TAMD122P-C; TMD122A/C; TAMD122AF
TAMD162A; TAMD162B; TAMD162C; TAMD162C-B
TAMD162C-C; TAMD163A-A; TAMD163P-A
TAMD165A; TAMD165C; TAMD165P; TAMD165A-A; TAMD165C-A; TAMD165P-A
TAMD61A; TAMD62A
TAMD63L-A; TAMD63P-A
TAMD71A; TAMD72A
TAMD71B; TAMD73P-A; TAMD73WJ-A
TAMD72P-A; TAMD72WJ-A
TAMD74A; TAMD74A-A; TAMD74A-B; TAMD74C-A; TAMD74C-B; TAMD74L-A; TAMD74L-B; TAMD74P-A; TAMD74P-B; TAMD75P-A
TMD102A; TAMD102A; TAMD102D
TMD121C; TAMD121C; TAMD121D; TAMD122C; TAMD122D
Information:
Power
P = IEwhere P = power in wattsI = current in amperesE = voltage in voltsThis equation for power may also be transposed to: From Ohm's law it is known that E = IR. If this expression for voltage is substituted in the power law, we can derive the additional equation: P = I2RIf we use the equation for current from Ohm's law, I = E/R, the equation for power becomes: *See "Ugly's Electrical Reference" (SEBD0983) for additional information.Resistance
Series Circuits RT = R1 + R2 + R3 + ... RN where RN = resistance in the individual resistorsRT = total resistance in circuitReactance
XL = 2 π f Lwhere XL = inductive reactance in ohms f = frequency in hertzL = inductance in henriesπ = 3.1416 where XC = capacitive reactance in ohms f = frequency in hertzC = capacitance in faradsπ = 3.1416Impedance
where Z = impedance in ohms R = resistance in ohmsXL = inductive reactance in ohmsXC = capacitive reactance in ohmsNote that the impendance will vary with frequency, since both XC and XL are frequency dependent. In practical AC power circuits, XC is often small and can be neglected. In that case, the formula above simplifies to: Transformer Voltage Conversion
where VS = secondary voltage VP = primary voltageNS = number of secondary turnsNP = number of primary turnsPower Factor
In mathematical terms, the power factor is equal to the cosine of the angle by which the current leads or lags the voltage. If the current lags the voltage in an inductive circuit by 60 degrees, the power factor will be 0.5, the value of the cosine function at 60 degrees. If the phase of the current in a load leads the phase of the voltage, the load is said to have a leading power factor; if it lags, a lagging power factor. If the voltage and current are in phase, the circuit has a unity power factor.Equation Summary Diagram
Three Phase Connection Systems:
Electrical Enclosure Protection = IEC
The degrees of protection provided within an electrical enclosure is expressed in terms of the letters IP followed by two numerals. Mechanical protection against impact damage is defined by an optional third numeral. Example: An IP55 enclosure protects its contents against dust and spray from water jets.Reference: DIN 40050 of July 1980, IEC 144 of 1963, IEC 529 of 1976, NF C 20-010 of April 1977Electrical Enclosure Protection - NEMA
Electrical Tables
Table 1 Electrical Formulae Table 2 KV A of AC Circuits Table 3 Copper Wire Characteristics Table 4 Single-Phase AC Motors Full Load Currents in Amperes Table 5 Three-Phase AC Motors - 80% Power Factor Full Load Current in Amperes - Induction-Type, Squirrel Cage and Wound Rotor Table 6 Direct Current Motors Full Load Current in Amperes Table 7 Conduit Sizes for Conductors Table 8 Allowable Current-Carrying Capacities of Insulated Copper Conductors Table 9 Code Letters Usually Applied to Ratings of Motors Normally Started on Full Voltage Table 10 Identifying Code Letters on AC Motors Table 11 Conversion - Heat and Energy Table 12 Approximate Efficiencies - Squirrel Cage Induction Motor Table 13 - Approximate Electric Motor Efficiency to Use in Calculating Input Table 14 Reduced Voltage Starters
P = IEwhere P = power in wattsI = current in amperesE = voltage in voltsThis equation for power may also be transposed to: From Ohm's law it is known that E = IR. If this expression for voltage is substituted in the power law, we can derive the additional equation: P = I2RIf we use the equation for current from Ohm's law, I = E/R, the equation for power becomes: *See "Ugly's Electrical Reference" (SEBD0983) for additional information.Resistance
Series Circuits RT = R1 + R2 + R3 + ... RN where RN = resistance in the individual resistorsRT = total resistance in circuitReactance
XL = 2 π f Lwhere XL = inductive reactance in ohms f = frequency in hertzL = inductance in henriesπ = 3.1416 where XC = capacitive reactance in ohms f = frequency in hertzC = capacitance in faradsπ = 3.1416Impedance
where Z = impedance in ohms R = resistance in ohmsXL = inductive reactance in ohmsXC = capacitive reactance in ohmsNote that the impendance will vary with frequency, since both XC and XL are frequency dependent. In practical AC power circuits, XC is often small and can be neglected. In that case, the formula above simplifies to: Transformer Voltage Conversion
where VS = secondary voltage VP = primary voltageNS = number of secondary turnsNP = number of primary turnsPower Factor
In mathematical terms, the power factor is equal to the cosine of the angle by which the current leads or lags the voltage. If the current lags the voltage in an inductive circuit by 60 degrees, the power factor will be 0.5, the value of the cosine function at 60 degrees. If the phase of the current in a load leads the phase of the voltage, the load is said to have a leading power factor; if it lags, a lagging power factor. If the voltage and current are in phase, the circuit has a unity power factor.Equation Summary Diagram
Three Phase Connection Systems:
Electrical Enclosure Protection = IEC
The degrees of protection provided within an electrical enclosure is expressed in terms of the letters IP followed by two numerals. Mechanical protection against impact damage is defined by an optional third numeral. Example: An IP55 enclosure protects its contents against dust and spray from water jets.Reference: DIN 40050 of July 1980, IEC 144 of 1963, IEC 529 of 1976, NF C 20-010 of April 1977Electrical Enclosure Protection - NEMA
Electrical Tables
Table 1 Electrical Formulae Table 2 KV A of AC Circuits Table 3 Copper Wire Characteristics Table 4 Single-Phase AC Motors Full Load Currents in Amperes Table 5 Three-Phase AC Motors - 80% Power Factor Full Load Current in Amperes - Induction-Type, Squirrel Cage and Wound Rotor Table 6 Direct Current Motors Full Load Current in Amperes Table 7 Conduit Sizes for Conductors Table 8 Allowable Current-Carrying Capacities of Insulated Copper Conductors Table 9 Code Letters Usually Applied to Ratings of Motors Normally Started on Full Voltage Table 10 Identifying Code Letters on AC Motors Table 11 Conversion - Heat and Energy Table 12 Approximate Efficiencies - Squirrel Cage Induction Motor Table 13 - Approximate Electric Motor Efficiency to Use in Calculating Input Table 14 Reduced Voltage Starters
Parts control Volvo Penta:
1140186
1140186 Control cable
2001; 2001B; 2001AG, 230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQ125B, AQ131A; AQ131B; AQ131C, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171C
888082
888082 Control cable
AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D1-13; D1-13B; D1-20, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D12D-A MH; D12D-B MH; D12D-C MH, D13B-E MH; D13B-E MH (FE); D13B-N MH, D16C-A MH; D16C-B MH; D16C-C MH, D16
888090
888090 Control cable
AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D1-13; D1-13B; D1-20, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D12D-A MH; D12D-B MH; D12D-C MH, D13B-E MH; D13B-E MH (FE); D13B-N MH, D16C-A MH; D16C-B MH; D16C-C MH, D16
1140115
1140115 Control cable
2001; 2001B; 2001AG, 230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D1-13; D1-13B; D1-20, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D12D-A M
844213
844213 Control wheel
AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD41D; D41D; TAMD41D, KAD42A; KAMD42A; HS1A, KAD42B; KAMD42B; TAMD42B, MD31A; TMD31A; TMD31B, MD31A; TMD31B; TAMD31B, MD40A; TMD40A; TMD40B, TD30A; TD31ACE; TD40A, TMD41A; TMD41B; D41A, TMD41B; D41B; TAM
1140134
1140134 Control cable
AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D1-13; D1-13B; D1-20, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D12D-A MH; D12D-B MH; D12D-C MH, D13B-E MH; D13B-E MH (FE); D13B-N MH, D16C-A MH; D16C-B MH; D16C-C MH, D16
3855650
3855650 Control panel
AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, DP-C1; DP-D1; DP-S, DP-E; SP-E; TSK DP-E, DP-G; TSK DP-G, DPX-A; TSK DPX-A, DPX-R; DPX-R 1.47; DPX-R 1.51, DPX-S; DPX-S1; DPX-S 1.59, KAD42B; KAMD42B; TAMD42B, KAD42P-A; KAMD42P
873226
873226 Control unit
230A; 230B; 250A, 430; 430A; 430B, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, DP-C1; DP-D1; DP-S, DP-E; SP-E; TSK DP-E, DP-G; TSK DP-G, KAD42A; KAMD42A; HS1A, KAD42B; KAMD42B; TAMD42B, KAD42P-A; KAMD42P-A; HS1A