Showing posts with label HARLEY DAVIDSON ENGINE. Show all posts
Showing posts with label HARLEY DAVIDSON ENGINE. Show all posts

The DYNA 4000 Super Pro high performance electronic ignition system represents a new level of sophistication in high energy ignition technology. Specifically designed to meet the needs of the serious racer, the DYNA 4000 Super Pro significantly increases spark energy and also includes built in launch and over rev rpm limiters. The DYNA 4000 Super Pro uses advanced microprocessor technology to provide extremely accurate control over the entire ignition process. This allows the DYNA 4000 Super Pro to maximize spark energy and control rev limiting with far greater precision than has previously been available.

Dyna 4000 Super Pro Features:
High energy drag race ignition
Built in two stage rev limiter
Smoothest launch rev limiter available
Built in timing LED
Shift kill input
Tach output
Dual output model for single plug heads
Quad output model for dual plug heads
Runs in single fire or dual fire
Uses dual sensor Dyna trigger for individual cylinder timing

Dyna 4000 Remote Display Features:
NEW 4000 SP accessory
Handle bar mount digital display
Allows starting line adjustment of rev limit settings
Real time RPM display allows testing of all rpm based accessories
Test mode allows ignition and accessory test with engine off
Clutch switch status indicator

Dyna 4000 Super Pro Applications:Part No. Item Price
DPK4-HD1DF Harley single plug, dual fire Kit
Includes: 4000 SP module #DP4000-HD1S, Coil 1ea #DC9-1, Spark plug wires #DW800/2 $499.99
DPK4-HD1SF Harley single plug, single fire Kit
Includes: 4000 SP module #DP4000-HD1S, Coil 1ea #DC9-4, Spark plug wires #DW800/2 $599.99
DPK4-HD2DF Harley dual plug, dual fire Kit
Includes: 4000 SP module #DP4000-HD2S, Coil 1ea #DC9-2, Spark plug wires #DW800 $629.99
DPK4-HD2SF Harley dual plug, single fire Kit
Includes: 4000 SP module #DP4000-HD2S, Coil 2ea #DC9-4, Spark plug wires #DW800 $759.99
DPK4-HDTF Harley Top Fuel (dual plug, dual fire) Kit
Includes: 4000 SP module #DP4000-HDTF, Coil 1ea #DC9-2, Spark plug wires #DW800 $629.99
DPK4-1 4 Cyl single plug Kit
Includes: 4000 SP module #DP4000-1S, Coil 1ea #DC9-2, Spark plug wires #DW800 $639.99
DPK4-2 4 Cyl dual plug Kit
Includes: 4000 SP module #DP4000-2S, Coils 2ea #DC9-2, Spark plug wires 2ea #DW800 $829.99
DPK4-1-SC 4 Cyl single plug Kit (For Slider Clutch Applications)
Includes: 4000 SP module #DP4000-1S-SC, Coil 1ea #DC9-2, Spark plug wires #DW800 $639.99
DPK4-2S-SC 4 Cyl dual plug Kit (For Slider Clutch Applications)
Includes: 4000 SP module #DP4000-2S-SC, Coils 2ea #DC9-2, Spark plug wires 2ea #DW800 $829.99
DP4000-HD1S Harley Davidson, Module Only, Single Plug $399.99
DP4000-HD2S Harley Davidson, Module Only, Dual Plug $408.99
DP4000-HDTF Harley Davidson, Top Fuel Module Only $408.99
DP4000-1S 4 Cyl, Module Only, Single Plug $399.99
DP4000-2S 4 Cyl, Module Only, Dual Plug $408.99
DP4000-1S-5C 4 Cyl, Module Only, Single Plug (Slider Clutch Application) $399.99
DP4000-2S-5C 4 Cyl, Module Only, Dual Plug (Slider Clutch Application) $408.99
DRD-1 DYNA 4000 SP Remote Display (works with all Harley or 4 Cyl 4000 SP modules except DP4000-HDTF) $399.99

NOTE (Harley): If the customer needs a trigger assembly, part #DCT-HD trigger must also be ordered.

NOTE (4 Cyl): If the customer needs a trigger plate assembly, a Dyna Crank trigger for the engine of interest must be ordered. All crank trigger kits include a trigger plate and a Dyna 4000 rotor

Posted by doudie Thursday, November 22, 2007 0 comments


The Dyna 2000 Digital Ignition System for Harley-Davidson Motorcycles, which has become the standard for performance and versatility in the Harley aftermarket, has been enhanced to include even more features. These new modules include expanded advance curve functionality with the option to use vacuum advance compensation via a V.O.E.S. switch. The new modules also include a special Retard Mode for use with turbocharged and nitrous bikes.

The Dyna 2000 allows selection between four different advance curves. The new modules offer a quick curve which simulates a mechanical advancer for hot rod motors. There are also four independent rev limiter settings from 6000 to 7500 rpm. The new Retard Mode allows selection of ignition retard of 5, 7, or 10 degrees upon activation of retard input.

Dyna 2000 ignition modules use the stock factory pick-up and simply plug into the existing factory wiring harness on 1991 and later bikes. An extension harness is available for installing the Dyna 2000 on 1990 and earlier bikes.

The Dyna Twin Fire Ignition Coil has all the features people have come to expect from a Dyna coil; high voltage (greater than 30,000 volts) with fast rise times, and high energy. The Dyna Twin Fire Coil is the new standard for performance and packaging efficiency for single fire ignition installations on Harley-Davidson Motorcycles. The Twin Fire coil incorporates two individual Performance Ignition Coils into one easy to mount package. This solves the problem of trying to mount two ignition coils on Harleys when installing single fire ignition systems. The Twin Fire Coil is only slightly larger than the stock Harley coil and uses the stock mounting bracket.


DYNA 2000 Ignition Kits
Part No. Item Price
SFK-1P Sportsters, FLH to 93, FXR to 95 $399.99
SFK-3P All 94-later Sportsters FLH, 95-later FXR $399.99

DYNA 2000 Ignition Modules
Please note: All Dyna 2000 kits for Harley Davidson have been updated with the new programmable Dyna 2000P module.
Part No. Item Price
DD2000-HD1EP Digital HD single/dual fire - programmable $249.99
DD2000-HD1E8P Digital HD single/dual fire, 8 pin - programmable $249.99
DD2000-HD2EP Digital HD dual fire - programmable $199.99
DD2000-HD2E8P Digital HD dual fire 8 pin - programmable $199.99
1009001 Extension Harness $39.00
1009002 7 to 8 pin adapter $69.99


DYNA 2000 Programming Kits Part No. Item Price
DIPK-2 (7 Pin) Programming Kit for DD2000-HD1EP & HD2EP & SFK-1P Ignition $99.99
DIPK-3 (8 Pin) Programming Kit for DD2000-HD1E8P & HD12E8P & SFK-3P Ignition $99.99

Posted by doudie 0 comments


The Dyna S High Performance Ignition System, designed for Harleys, is a complete self-contained electronic ignition system built with the latest state-of-the-art engineering. This is the same ignition used by top racers over the past 2 decades. The Dyna S is completely housed behind the ignition cover and uses a magnetic rotor with the original spark advancer, so the factory advance curve is maintained.

Dyna high tech coils for Harley-Davidson Big Twins and Sportsters are American made, top quality performance coils . Tested and proven on street, racing, and touring motorcycles for over fourteen years. Dyna coils produce spark voltages in excess of 30,000 volts and spark energies second to none. All Dyna Coils are guaranteed against defects in materials and workmanship.


IF PEAK PERFORMANCE IS YOUR GOAL, INSTALL A GENUINE DYNA S HIGH PERFORMANCE IGNITION SYSTEM. Part No. Item Price
DS6-1 1970 & later (dual fire) Ignition $124.99
DS6-2 1970 & later (single fire) Ignition $149.99
DSK6-1 1970 & later (dual fire) Ignition & Coil Kit $189.99
DSK6-2 1970 & later (single fire) Ignition & Coil Kit $279.99

Posted by doudie 0 comments


The 2Ki not only adds to, but extends many features of the best selling Dyna 2000 module out of sight in a completely new design that fits under the cam cover.

The Dyna 2KiP (Programmable) is the newest addition to the successful line of Dyna 2000 ignition systems. All features of the 2Ki switches are also included.


Features:
Single Fire operation down to zero rpm for easier cranking and kicking.
Will operate in all combinations of single fire or dual fire with single plug or dual plug heads.
(when used with appropriate coils)
8 advance curves to cover a broad range of engine builds and riding styles.
Engine over rev protection adjustable from 6000 to 7500 rpm.
Adjustable timing retard for nitrous and turbo applications.
VOES indicator. Allows you to tell at a glance the status of the VOES switch. Also indicates when retard mode is active. Great for diagnosing faulty vacuum switches or operation of retard controllers.
Built in Tach Driver. Delivers stable tach signal even during rev limiting or can be used to activate shift lights, auto shifters, and other accessories.
Easy static timing with built in timing indicator. No timing light required.
Intelligent over current / short circuit protection. Every time power to the ignition is switched on, the 2Ki will check to see if the coil is shorted, mis-wired, or the wrong type. If an error is detected, the 2Ki will imediately switch off and issue a warning by rapidly flashing the status indicator. Besides protecting the unit, this also prevents the costly failure of an improperly matched coil going bad one hour into your ride. After starting, the 2Ki countinuously monitors the coil and wiring status.
Active Dwell Control. Continually adjusts coil current to maintain maximum spark energy all the way to redline while eliminating coil stress caused by overcharging at idle. High efficiency design reduces battery draw for easier cold wheather starting and lower charging system load.
Ruggedized output - cannot be damaged by broken or disconnected spark plug wires.
Over voltage protected against momentary spikes (both positive and negative going) as well as surges caused by faulty voltage regulators or quick charge battery boosters.
Harness constructed with TXL cross linked polyethylene automotive wire for exceptional resistance to abrasion, heat, and chemical attack. High temp glass braid jacket further increases the toughness of the harness and provides a tight, clean appearance. Wire colors closely match the factory harness for error free installation.
Manufactured with premium quality components specifically qualified for operation in a high temperature / high vibration environment. A one piece aluminum housing and thermally conductive epoxy encapsulation provide superior heat dissapation and outstanding resistance to shock, vibration, and moisture.
Advanced microprocessor technology.
Quartz crystal accuracy.
Intelligent overvoltage/overcurrent protection.
Adjustable retard timing.
Short circuit protection.

All of our 2Ki ignitions are also PC Programmable:

EIGHT POINT FULLY DEFINABLE WIDE OPEN THROTTLE CURVE
EIGHT POINT FULLY DEFINABLE PART THROTTLE CURVE
REV LIMIT PROGRAMMABLE IN 50 RPM STEPS
PROGRAMMABLE DEAD CRANKING REVS 0-10
PROGRAMMABLE REAR CYLINDER OFFSET, TOTAL OF +/- 10 DEGREES

Data Recording:

TOTAL ENGINE HOURS
TIME AT WIDE OPEN THROTTLE
NUMBER OF ENGINE STARTS (TWO MINUTES RUNNING COUNTS AS ONE)
LONGEST TIME OPERATING AT WIDE OPEN THROTTLE
MAXIMUM RPM
SECONDS NEAR REV LIMIT
STATISTICAL ANALYSIS OF TIME AT RPM

Part No. Item
(NOTE: These ignitions come with switches
and are also programmable) Price
D2Ki-1P 1970-98 Carbureted Models single plug/single fire kit $249.99
D2Ki-2P 1970-98 Carbureted Models sgl plug/sgl fire kit, Module & pair DC3-1 Coils $399.99
D2Ki-3P 1970-98 Carbureted Models dual plug/sgl fire kit, Module & pair DC1-1 Coils $399.99
D2Ki-4P 1970-98 Carbureted Models dual plug/dual fire kit, Module & pair DC2-1 Coils $399.99
D2Ki-5P 1970-98 Carbureted Models sgl plug/sgl fire, Module & DC6-5 Twin Fire (miniature) Coil $399.99
DIPK-1 Programming Kit $99.99

Posted by doudie 0 comments


The new Dyna Fuel Injection Controller is a plug in module that offers 3 user selectable base fuel curves that are designed to improve engine operation and can be modified to suit a wide variety of modifications. These adjustments are made via 3 potentiometers that adjust the fuel curve in the proper ranges for the application. Fuel mixture can be enriched or leaned as required. The Dyna FI Controller uses the factory connectors for easy installation and there is no PC required for tuning or adjusting the fuel curves. There are no modifications to the stock ECU and removing the Dyna FI controller returns the vehicle to the factory configuration.

Part No. Item Comments Price
DFCH-1 1997-1998 Harley-Davidson Touring Models with Evo Engine $249.00
DFCH-2 1999-2001 Harley-Davidson Twin Cam Touring Models $249.00
DFCH-3 2002-2005 Harley-Davidson Twin Cam Touring Models $249.00
DFCH-4 2001-2005 Harley-Davidson Softail and Dyna Models $249.00
DFCH-5 2002-2005 Harley-Davidson V-Rod Models $249.00
DFCH-6 2006 Twin Cam touring Models $249.00
DFCH-7 2006 Softail Models $249.00
DFCH-8 2006 Dyna Models $259.00

Posted by doudie 0 comments


The Harley-Davidson Twin Cam 88 engine was released for the 1999 model year in September of 1998. Although this engine was a successor to the Evolution engine ("Evo"), it shares a number of characteristics with nearly all previous Harley-Davidson engines including the evo. It has two cyclinders in a V-twin configuration at 45 degrees. It's air cooled. It controls valve timing with push-rods. The crankshaft has a single pin with a tongue and fork arrangement for the connection rods. These are sandwiched between a pair of flywheels.

88B Engine

The Twin Cam wasn't initially used in the Softail model family before the year 2000. This was due to the chassis' design and issues with increased vibration. The increase in vibration was a result of the direct mounting of the engine to the frame. Dyna models are "rubber mounted" and therefore do not suffer the same vibration problems. Harley then solved the issue by making a redesigned version of the Twin Cam, the Twin Cam 88B, which is essentially the same as the original Twin Cam, but with a different engine block design and twin chain-driven counter-balancers, which had caused some controversy among Harley veterans, claiming that the "Harley vibes" were a part of their motorcycles. This engine is currently used on all softail models.

The Twin Cam generated considerably more power and torque than the Evolution Engine. All components were also built to tougher standards. Upgrading to 1550 cc became the norm among most enthusiasts.

When the Twin Cam engine was released, Harley-Davidson put much emphasis on the supposedly stronger case and bottom end. They claimed the older Big Twin design, with the cam bearing positioned directly above the main bearing on the right side of the engine, precluded increasing main bearing size to optimal and created structural weakness in the right side case because of the small space between the two bearings. However, after market companies have successfully used the old design in engines displacing 144 cubic inches (2360 cc) and more, producing well over 120 foot pounds (163 Nm) of torque and 120 horsepower (89 kW) without case failure, casting doubt on Harley-Davidson's claims.

When the Evolution Big Twin engine was released, Harley-Davidson did not protect its design elements as thoroughly as they have with the Twin Cam. In fact, H-D relied on the third-party firms to add value to their products and broaden their appeal. Since the Evo's release in 1984, though, the company has moved to catalogue thousands of accessories, including engine upgrades. The company moved to the Twin Cam not because the Evo had reached its power limits as a design, but because H-D could not prevent other manufacturers from making virtual clones of the design [citation needed]. With the Twin Cam, H-D was able to preempt cloning via the U.S. Patent Office, thereby making it a lot more difficult and expensive for the after market to compete with the Motor Co. in the development and sale of upgrades or complete motors.


Posted by doudie Saturday, November 17, 2007 0 comments


Flathead engine

Flathead engine or Sidevalve engine (sometimes called a flatty) refers to an internal combustion engine with valves placed in the engine block beside the piston, instead of in the cylinder head, as in an overhead valve engine. The design was common on early engine designs, but has since fallen from use.

Advantages

Generally the flathead uses a small chamber on one side of the cylinder to carry the valves. This has a number of advantages, primarily making the cylinder head much simpler. It also means a valve can be operated by pushing directly up on it, as opposed to needing some sort of mechanical arrangement to push it down or to drive overhead cams, as on a "valve-in-head" engine. It may also lead to slightly easier cooling, as valve and pushrods are out of the way of the cylinder, making a cooling jacket simpler to construct (but see below). The line of intakes along the side of the engine leads to the alternate name L-block (or L-head), due to the cylinders having the shape of an upside-down L. This configuration is also known as sidevalve.


Disadvantages

On the downside, the flathead also requires the airflow to make at least a 90-degree turn to enter the cylinder, which makes it less efficient, colloquially called poorer "breathing". Breathing was not greatly important for early production cars because engines could not run long and reliably at high speed, and all engines had poor combustion anyway, so this was a minor concern given the benefits in simplicity. The maximum compression ratio is also low at only about 7:1, further reducing efficiency (although it means the engine can run on low-octane fuel).

A more serious concern is exhaust, which often follows a more complicated path to leave the engine. This virtually guarantees the engine will overheat under sustained heavy use. It is sometimes possible to arrange the engine layout so the exhaust will be taken through a second set of similar chambers moved to the other side of the cylinder, in which case the layout is referred to as a T-block.

History and applications

Although flathead in-line 4 and 6 cylinder engines were frequently used for automobiles, tractors, etc., the best known flathead automotive engine is the early 20th century Ford V-8, which has both sets of valves (intake and exhaust) located on the inside of the "Vee," and which are all operated by a single camshaft located above the crankshaft.

Due to the heating and efficiency problems, flathead engines fell from "high power" uses such as aircraft engines fairly quickly, prior to World War I, though they were the basis of many early racing engines, including famous names such as Ardun (Zora Arkus-Duntov) and Frontenac (Louis Chevrolet). However they lived on for some time in the automotive world and were used on the Jeep for instance. Flatheads are no longer in common use for automobiles, although they are still used for some small-engine applications like lawnmowers. Because of their design, the size of valves and the compression ratio are limited, which in turn reduces available power and economy.

Harley-Davidson motorcycle flathead engines

The flathead engine saw service in Harley-Davidson motorcycles beginning with the "sport" model opposed twin produced from 1919-1923, and continuing in 1924 with single cylinder export 350cc and 500cc singles and continued in the Servicars until the 1970s. In the domestic U.S. market, the DL model, 1929-36, started Harley's side valve tradition in the 45 cubic inch displacement. The DLs featured a total loss oiling system (oil's always clean!), and were succeeded in 1937 by the WL, which had recirculating oil. The WL went on to serve in WWII as the U.S. and Canadian Army's primary two wheeled mount and subsequently as a civilian middleweight through 1952. The engine continued virtually unchanged with the GA designation in the three wheeled Servicar until production ceased in 1976.

In 1952, the W series was supplanted by the K series flatheads, designed to compete with British sporting motorcycles of the time, as the American motorcycle Association allowed the 750cc sidevalvers to compete against 500cc overhead-valve bikes. The K models featured unit construction engine and transmission cases, right side foot shift and left side foot brake, and evolved from 45 cubic inches to 55 cubic inches over the short life of the retail market run. The K series was replaced by the overhead valve Sportster series in the retail market in 1957. However, racing versions of the K model continued to be produced in very limited numbers for some time after, winning both roadraces and dirt track through 1969, when the American Motorcycle Association decided to change the rules and make the venerable flatheads uncompetitive. The K racers were replaced first by the iron XR 750cc overhead valve engine, and two years later by the alloy head XR, which continues in service in flat track racing to this day.

In 1930, the 74 cubic inch VL flathead replaced the JD, which featured intake over exhaust (IoE) valve configuration. The VL had a single downtube frame and total loss oiling, culminating in an 80 cubic inch version in 1936. In 1937, the engine was given the U designation and went into the same frame and running gear configuration as the overhead valve Knucklehead, which originated in 1936. The U continued to be produced, in varying configurations as both a 74 cubic inch and 80 cubic inch motor through 1948. By that time, the first year of the Panhead, it had been thoroughly superseded and outsold in the marketplace by the superior performance of the overhead valve model big twins.

Posted by doudie 0 comments


The classic Harley-Davidson engines are two-cylinder, V-twin engines with the pistons mounted in a 45° "V". The crankshaft has a single pin, and both pistons are connected to this pin through their connecting rods.

This design causes the pistons to fire at uneven intervals, the consequence of an engineering tradeoff to create a large, powerful engine in a small space. This design choice is entirely vestigial from an engineering standpoint, but has been sustained because of the strong connection between the distinctive sound and the Harley-Davidson brand. This design, which is covered under several United States patents, gives the Harley-Davidson V-twin its unique choppy "potato-potato" sound. To simplify the engine and reduce costs, the V-twin ignition was designed to operate with a single set of points and no distributor, which is known as a dual fire ignition system, causing both spark plugs to fire regardless of which cylinder was on its compression stroke, with the other spark plug firing on its cylinder's exhaust stroke, effectively "wasting a spark." The exhaust note is basically a throaty growling sound with some popping.

The 45 degree design of the engine thus creates a plug firing sequencing as such: The first cylinder fires, the second (rear) cylinder fires 315° later, then there is a 405° gap until the first cylinder fires again, giving the engine its unique sound.

Harley Davidson has used various ignition systems throughout its history - be it the early points/condenser system, (Big Twin up to 1978 and Sportsters 1970 to 1978), magneto ignition system used on 1958 to 1969 Sportsters, early electronic with centrifugal mechanical advance weights, (all models 1978 and a half to 1979), or the late electronic with transistorized ignition control module, more familiarly known as the black box or the brain, (all models 1980 to present).

With the implementation of Electronic Fuel Injection (EFI), Harley Davidson uses a single fire ignition system on the models equipped with EFI, which now includes 100% of their product line with the introduction of the 2007 models.

In 1991, Harley-Davidson began to participate in the Sound Quality Working Group, founded by Orfield Labs, Bruel and Kjaer, TEAC, Yamaha, Sennheiser, SMS and Cortex. This was the nation's first group to share research on psychological acoustics. Later this year, Harley-Davidison participated in a series of sound quality studies at Orfield Labs, based on recordings taken at the Talladega Superspeedway, with the objective to lower the sound level for EU standards while analytically capturing the "Harley Sound."[citation needed] This research resulted in the bikes that were introduced in compliance with EU standards for 1998.

On 1 February 1994, the company filed a trademark application for the distinctive sound of a Harley-Davidson motorcycle engine: "The mark consists of the exhaust sound of applicant's motorcycles, produced by V-twin, common crankpin motorcycle engines when the goods are in use". Nine of Harley-Davidson's competitors filed comments opposing the application, arguing that cruiser-style motorcycles of various brands use a single-crankpin V-twin engine which produce a similar sound. These objections were followed by litigation. After six years, Harley-Davidson withdrew their trademark application.

Interestingly, when Honda first began making a motorcycle with a 45° V-2 design, the Honda Shadow, it used a more advanced engineering approach with an offset crank design which allows for even firing pulses and higher horsepower because of the reduced vibrational stresses on the engine. However, because potential buyers complained that the Shadow did not 'sound like a Harley,' Honda in 1995 introduced the Shadow American Classic Edition (or ACE) which had a single crank-pin design, reduced horsepower and a much more Harley-like sound.

Posted by doudie Friday, November 16, 2007 0 comments

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