metric 82
| Key | Name | Detail | Aliases |
|---|---|---|---|
TAKT_TIME |
Takt Time |
availableWorkTimePerShift / customerDemandPerShift
seconds
1 … 2592000
Synchronises pace of production to pace of sales.
|
takt, takt time, tact time, takt-time, customer takt, tak time |
AVAILABLE_WORK_TIME |
Available Working Time |
shiftLength - breakTime
seconds
1 … 86400
Shift length minus breaks, meetings and cleanup.
|
available time, available work time, working time, net available time, avail. time |
CUSTOMER_DEMAND_PER_SHIFT |
Customer Demand per Shift |
monthlyDemand / (workingDaysPerMonth * shiftsPerDay)
pieces
0.01 … 1000000
Denominator of takt time.
|
demand per shift, units per shift, customer requirement per shift |
DAILY_CUSTOMER_REQUIREMENT |
Daily Customer Requirement |
monthlyDemand / workingDaysPerMonth
pieces/day
0.01 … 1000000
Divisor that converts inventory quantity into days of supply.
|
daily requirement, daily demand, pieces per day, daily usage |
PITCH |
Pitch |
taktTime * packSize
seconds
1 … 604800
Consistent increment of work released and withdrawn at the pacemaker.
|
pitch, pitch increment, management time frame, paced withdrawal increment |
CYCLE_TIME |
Cycle Time |
seconds
0.1 … 86400
Time between one part coming off the process and the next.
|
c/t, ct, cycle time, cycle, machine cycle, operator cycle |
CHANGEOVER_TIME |
Changeover Time |
seconds
0 … 86400
Time to switch the process from one product type to another.
|
c/o, co, changeover, change over, setup time, set-up time |
UPTIME |
On-Demand Machine Uptime |
fraction
0 … 1
Fraction of time the machine runs when it is asked to run.
|
uptime, up time, reliability, availability, machine uptime |
EPE |
Every Part Every (EPE) |
interval
How frequently a process changes over to make all variations.
|
epe, every part every, e.p.e., every part every day, batch interval |
BATCH_SIZE |
Production Batch Size |
dailyCustomerRequirement * epeDays
pieces
0.01 … 1000000
Quantity produced between two changeovers.
|
batch size, lot size, run size, production batch |
OPERATOR_COUNT |
Number of Operators |
people
0 … 500
People required to run the process.
|
operators, number of operators, headcount, manning, no. of operators |
PRODUCT_VARIATIONS |
Number of Product Variations |
count
1 … 100000
How many part numbers this process must serve.
|
variations, part numbers, number of variants, skus, configurations |
PACK_SIZE |
Pack Size |
pieces
1 … 100000
Number of parts one finished-goods container holds.
|
pack size, packout quantity, container quantity, tray quantity, box quantity |
SCRAP_RATE |
Scrap Rate |
scrapPieces / totalPieces
fraction
0 … 1
Fraction of output that must be scrapped or reworked.
|
scrap rate, scrap, rework rate, reject rate, defect rate |
FIRST_TIME_THROUGH |
First Time Through |
1 - scrapRate
fraction
0 … 1
Fraction of parts that clear the process with no rework.
|
ftt, first time through, first pass yield, fpy, first-time quality |
STREAM_FIRST_TIME_THROUGH |
Stream First Time Through |
fraction
0 … 1
The share of parts crossing the whole stream with no rework anywhere, being the product of every process's first-time-through.
|
rolled throughput yield, rty, stream ftt, overall ftt, chained yield, end to end yield |
OVERALL_EQUIPMENT_EFFECTIVENESS |
Overall Equipment Effectiveness |
uptime * performanceFactor * (1 - scrapRate)
fraction
0 … 1
Good parts as a share of what the scheduled time could have produced: availability times performance times quality.
|
oee, overall equipment effectiveness, equipment effectiveness, plant effectiveness, overall effectiveness |
PERFORMANCE_FACTOR |
Performance Factor |
fraction
0 … 1
Parts produced against the target output for the time the plant ran — what short stops, idling and reduced speed cost once availability is accounted for.
|
performance factor, performance rate, speed factor, performance efficiency |
SHIFTS_PER_DAY |
Shifts per Day |
count
1 … 3
Operating pattern that scales available time.
|
shifts, shifts per day, shift pattern, no. of shifts |
WORKING_DAYS_PER_MONTH |
Working Days per Month |
days
1 … 31
Converts monthly demand into a daily rate.
|
working days, days per month, operating days |
PROCESS_CAPACITY |
Process Capacity |
(availableWorkTimePerShift / cycleTime) * uptime
pieces/shift
0 … 10000000
Output achievable with no changeovers.
|
capacity, process capacity, demonstrated capacity, effective capacity |
TOTAL_WORK_CONTENT |
Total Work Content |
seconds
0 … 2592000
Sum of operator work across the cell — numerator for manning.
|
work content, total work content, total cycle time, total manual time |
OPERATORS_REQUIRED |
Operators Required at Takt |
totalWorkContent / taktTime
people
0 … 500
Continuous-flow manning implied by work content and takt.
|
operators required, required manning, theoretical operators, manpower requirement |
OPERATOR_UTILIZATION |
Operator Utilisation |
workContentPerOperator / taktTime
fraction
0 … 1.5
Loading of one operator against takt; > 1 means the cell cannot hold pace.
|
utilisation, utilization, operator loading, operator balance |
LINE_BALANCE_RATE |
Line Balance Rate |
totalWorkContent / (operatorCount * bottleneckCycleTime)
fraction
0 … 1
How evenly work is distributed across operators.
|
line balance, balance rate, balance efficiency |
CHANGEOVERS_PER_DAY |
Changeovers Available per Day |
min(max(availableTimePerDay - runTimePerDay, 0) / changeoverTime, productVariations)
count
0 … 500
Sets the smallest practical batch size at a fabrication process.
|
changeovers per day, number of changeovers, setups per day |
CHANGEOVERS_REQUIRED_PER_DAY |
Changeovers Required per Day |
productVariations / epeDays
count
0 … 100
What the current batch policy actually demands of the process each day.
|
changeovers required, setups required per day, required changeovers |
CHANGEOVER_ALLOWANCE |
Changeover Time Allowance |
(changeoverTime * changeoversRequiredPerDay) / availableTimePerDay
fraction
0 … 1
Typical target is ~10% of available time spent changing over.
|
changeover allowance, setup allowance, changeover budget |
TAKT_CYCLE_GAP |
Takt-to-Cycle Gap |
taktTime - cycleTime
seconds
-2592000 … 2592000
A large positive gap signals hidden downtime being compensated for.
|
takt gap, takt to cycle gap, cycle time gap |
INVENTORY_QUANTITY |
Inventory Quantity |
pieces
0 … 100000000
Observed accumulation at a triangle — where flow has stopped.
|
inventory, observed inventory, wip, stock, inventory count |
INVENTORY_DAYS |
Inventory Days of Supply |
inventoryQuantity / dailyCustomerRequirement
days
0 … 365
Lead time contributed by one inventory triangle.
|
days of inventory, inventory days, days of supply, days on hand |
PRODUCTION_LEAD_TIME |
Production Lead Time |
sumInventoryDays + sumProcessLeadTimeDays
days
0 … 3650
Time one part takes from raw material arrival to customer shipment.
|
lead time, production lead time, plt, door-to-door lead time, total lead time |
PROCESSING_TIME |
Processing Time |
sumCycleTimes
seconds
0 … 1000000
Sum of value-adding times — the shocking comparison against lead time.
|
processing time, value added time, value-added time, va time, touch time |
VALUE_ADDED_RATIO |
Value-Added Ratio |
processingTimeSeconds / productionLeadTimeSeconds
fraction
0 … 1
Fraction of elapsed time that actually adds value.
|
value added ratio, va ratio, value added percentage, flow efficiency, process cycle efficiency |
INVENTORY_TURNS |
Inventory Turns |
workingDaysPerYear / productionLeadTime
turns/year
0 … 3650
Financial mirror of production lead time.
|
inventory turns, turns, stock turns, turnover |
PROCESS_LEAD_TIME |
Lead Time Through a Process |
wipInProcess * cycleTime
seconds
0 … 10000000
Little's Law inside one process box.
|
process lead time, throughput time, dock to dock time |
SUPERMARKET_SIZE |
Supermarket Size |
dailyCustomerRequirement * replenishmentDays * safetyFactor
pieces
0 … 10000000
Controlled inventory sized to cover replenishment plus a hedge.
|
supermarket size, market size, kanban quantity, store size |
KANBAN_CARD_COUNT |
Number of Kanban Cards |
supermarketSize / containerQuantity
count
1 … 100000
Cards in circulation cap the WIP of a pull loop.
|
kanban count, number of kanban, card count |
FIFO_LANE_CAPACITY |
FIFO Lane Capacity |
pieces
1 … 1000000
Hard cap that stops the upstream process from overproducing.
|
fifo capacity, fifo lane size, max quantity, conwip limit |
SAFETY_STOCK |
Safety Stock |
dailyCustomerRequirement * coverDays
pieces
0 … 10000000
Temporary hedge against downtime or demand spikes.
|
safety stock, buffer stock, buffer, hedge inventory |
REPLENISHMENT_LEAD_TIME |
Replenishment Lead Time |
days
0 … 365
How long a pull loop takes to put parts back in the supermarket.
|
replenishment time, replenishment lead time, supplier lead time, refill time |
SHIPMENT_FREQUENCY |
Shipment Frequency |
per week
0.1 … 100
More frequent delivery is the cheapest inventory reduction available.
|
shipment frequency, delivery frequency, shipments per week, delivery cadence |
ORDER_TO_DELIVERY_LEAD_TIME |
Order-to-Delivery Lead Time |
pacemakerDownstreamLeadTime
days
0 … 365
Only processes from the pacemaker downstream count toward the quote.
|
order to delivery, quoted lead time, customer lead time, otd lead time |
LEVELLING_INTERVAL |
Levelling Interval |
pitch
seconds
1 … 604800
Column width of the load-levelling box.
|
levelling interval, leveling interval, heijunka interval, mix interval |
MIX_RATIO |
Production Mix Ratio |
variantDemand / totalDemand
ratio
0 … 1
Drives the repeating sequence loaded into the heijunka box.
|
mix ratio, product mix, model mix, split |
SCHEDULE_POINTS |
Number of Scheduling Points |
count
1 … 50
A lean future state schedules exactly one point: the pacemaker.
|
scheduling points, schedule points, number of schedules |
PUSH_LINK_COUNT |
Push Link Count |
count
0 … 100
Every push arrow is an isolated island — future state should drive it to zero.
|
push links, push arrows, number of push connections |
ISOLATED_ISLAND_COUNT |
Isolated Island Count |
count
0 … 100
Processes producing to their own schedule rather than a customer.
|
isolated islands, islands, disconnected processes |
DISTANCE_TRAVELLED |
Distance Travelled |
metres
0 … 1000000
Transport waste made visible: metres one part travels across the stream.
|
distance travelled, distance traveled, travel distance, material travel, material movement, transport distance |
FLOOR_SPACE |
Floor Space |
square metres
0 … 1000000
Space released is a headline benefit of removing inventory.
|
floor space, space, square metres, footprint |
ON_TIME_DELIVERY |
On-Time Delivery |
onTimeShipments / totalShipments
fraction
0 … 1
Customer-facing outcome measure.
|
otd, on time delivery, delivery performance, schedule attainment |
TAKT_ATTAINMENT |
Takt Attainment at Pacemaker |
pitchesAchieved / pitchesPlanned
fraction
0 … 1
The single best lean measure: is the takt-based target hit every day?
|
takt attainment, pitch attainment, production target achieved |
EXPEDITE_RATE |
Expedite Rate |
expeditedOrders / totalOrders
fraction
0 … 1
Symptom of releasing too much work too early.
|
expedite rate, expediting, hot orders, rush rate |
OVERPRODUCTION_INDEX |
Overproduction Index |
producedQuantity / consumedQuantity
ratio
0 … 100
Direct measure of the most significant source of waste.
|
overproduction index, overproduction ratio |
SHIFT_SCHEDULE_QUANTITY |
Shift Schedule Quantity |
monthlyDemand / (workingDaysPerMonth * shiftsPerDay)
pieces
0.01 … 1000000
N — the units the shift is asked to finish. Sets both pace and manning.
|
shift schedule, shift schedule quantity, units per shift scheduled, shift quantity, build quantity |
MINIMUM_OPERATORS |
Minimum Operators for the Schedule |
ceil(totalWorkContent / taktTime)
people
0 … 500
n = ⌈Σtₑ/c⌉. Below this the shift schedule cannot be met at all.
|
minimum operators, operators needed, minimum manning, number of operators needed, theoretical minimum operators |
AVERAGE_OPERATOR_TIME |
Average Operator Time |
totalWorkContent / operatorCount
seconds
0 … 2592000
c̄ — the work each operator would carry if it divided evenly. The target a balance aims at.
|
average operator time, average operation time, average station time, mean operator time |
EFFECTIVE_CYCLE_TIME |
Effective Cycle Time |
seconds
0.1 … 2592000
c* = max(cᵢ) — the pace the line actually runs at.
|
effective cycle time, actual cycle time, line cycle time, achieved cycle time |
BALANCE_DELAY |
Balance Delay |
fraction
0 … 1
d — the share of paid time the line stands idle because work was assigned unevenly.
|
balance delay, idle time fraction, balance loss, line idle time, balancing loss |
IDLE_TIME_PER_UNIT |
Idle Time per Unit |
seconds
0 … 2592000
Balance delay expressed as labour seconds thrown away on every unit built.
|
idle time per unit, idle time, lost time per unit, balance loss per unit |
WORK_ELEMENT_COUNT |
Work Element Count |
count
0 … 100000
Nₑ — how finely the work is described. Too few elements and no balance is reachable.
|
work elements, work element count, number of elements, element count, task count |
WORK_ELEMENT_TIME |
Work Element Time |
seconds
0 … 86400
tₑ — the standard time of one task, the grain a line can be rebalanced at.
|
element time, work element time, standard time, task time, standard element time |
STATION_COUNT |
Station Count |
count
0 … 1000
Places on the line. Never more than the operator count, and fewer when a station is doubly manned.
|
stations, station count, number of stations, workstations |
PARALLEL_STATION_COUNT |
Parallel Stations |
count
1 … 100
Copies of one station working alternate units, so a task longer than takt stops setting the pace.
|
parallel stations, parallel station, duplicate stations, parallel work places, parallel lines |
UNIT_SPACE |
Unit Space |
metres
0 … 1000
w — centre-to-centre distance between consecutive units, which fixes conveyor speed and line length.
|
unit space, pitch distance, space per unit, unit spacing |
CONVEYOR_SPEED |
Conveyor Speed |
unitSpace / effectiveCycleTime
metres per second
0 … 10
v = w/c* — how fast the line must move to deliver a unit every effective cycle.
|
conveyor speed, line speed, belt speed, chain speed |
LINE_LENGTH |
Line Length |
stationCount * unitSpace
metres
0 … 10000
Floor the line needs once the stations and unit space are fixed.
|
line length, length of line, conveyor length, assembly line length |
SIMILARITY_INDEX |
Similarity Index |
fraction
0 … 1
How much work content the variants share — the test of whether they are one product family.
|
similarity index, model similarity, commonality index, shared element ratio |
COMPLETE_AND_ACCURATE |
Percent Complete and Accurate |
completeAccurate
fraction
0 … 1
Share of incoming work this process can start without sending it back.
|
%c&a, c&a, complete and accurate, percent complete and accurate |
ROLLED_COMPLETE_AND_ACCURATE |
Rolled Percent Complete and Accurate |
rolledCompleteAccurate
fraction
0 … 1
Product of every process's %C&A — the share of work that crosses the stream without a single information loop-back.
|
rolled %c&a, rolled c&a, end to end c&a, stream c&a |
WALK_TIME |
Operator Walk Time |
walkTimeSeconds
seconds
0 … 600
Seconds the operator spends walking per unit in the cell.
|
walk time, walking time, operator walk, walk seconds |
WALK_SHARE_OF_CYCLE |
Walk Share of Cycle |
walkTimeSeconds / cycleTime
fraction
0 … 1
How much of the operator cycle is walking rather than work — the figure a U-cell is meant to shrink.
|
walk share, walking fraction, walk percent of cycle |
AUTOMATIC_CYCLE_TIME |
Automatic Cycle Time |
automaticCycleSeconds
seconds
0 … 86400
Unattended machine time after load. Compared with operator work it says whether the operator waits on the machine or works in-cycle.
|
automatic cycle, machine auto time, auto cycle time |
STANDARD_WIP |
Standard WIP |
standardWipPieces
pieces
0 … 10000
The allowed pieces in the cell. A map that cannot state this cannot claim one-piece flow.
|
standard wip, swip, standard in-process stock |
MEAN_TIME_TO_REPAIR |
Mean time to recover |
mttrSeconds
seconds
0 … 86400
How long a stoppage lasts, as distinct from how often one happens. Uptime gives the frequency; this gives the duration, and it is the duration that decides whether a boundary can be coupled and how deep a lane has to be.
|
mean time to repair, mttr, mean time to recover, mean repair time |
DEMAND_COVERAGE_RATIO |
Demand coverage |
((availableTimePerDay / cycleTime) * uptime) / dailyCustomerRequirement
ratio
0 … 100000
What a process can deliver in a day once its own losses are taken out, set against what the day asks of it. A cycle time inside takt is not capacity, and a process below one here cannot be buffered into adequacy: the shortfall recurs every day the buffer is drawn from.
|
demand coverage, coverage ratio, capacity against demand |
CHANGEOVERS_PER_SHIFT |
Changeovers per Shift |
changeoversPerShift
count
0 … 200
How often the process actually stops to change over in a shift — the load SMED has to buy down.
|
changeovers per shift, setups per shift, die changes per shift |
POKA_YOKE_COUNT |
Poka-Yoke Devices |
pokaYokeCount
count
0 … 50
How many source-inspection devices sit on the process. Zero with a scrap rate is a finding, not a style choice.
|
poka yoke count, mistake proofing devices, error proofing count |
INTERNAL_SETUP_TIME |
Internal Setup Time |
internalSetupSeconds
seconds
0 … 86400
The part of the changeover the machine is stopped for. This — not the total setup — is what limits batch size and EPE.
|
internal setup, internal setup time, inside setup time, machine-stopped setup |
EXTERNAL_SETUP_TIME |
External Setup Time |
externalSetupSeconds
seconds
0 … 86400
Setup work already done while the machine still runs. Stating it is how a plant proves stage 1 of SMED actually happened.
|
external setup, external setup time, outside setup time, off-line setup |
INTERNAL_SETUP_SHARE |
Internal Share of Setup |
internalSetupSeconds / (internalSetupSeconds + externalSetupSeconds)
fraction
0 … 1
How much of the whole setup still stops the machine. SMED stage 2 is the business of driving this down.
|
internal setup share, internal share of setup, stopped share of changeover |
ACTIVITY_RATIO |
Activity Ratio |
valueAddedTimeSeconds / productionLeadTimeSeconds
fraction
0 … 1
Process time over lead time, as Martin and Osterling print it on the map header.
|
activity ratio, activity rate, process time over lead time |