Questions

Short explanations for every efficiency metric used in daily score, trip score, and charging score.

Devices

Garmin as a Tesla key
How do I turn my watch into a key for the car?

Open the Wristla app on the watch and go to Settings → Tesla keys → + Pair car. From there just follow the prompts on the watch and on the car's touchscreen — the first pairing asks for one tap of your key card on the console, which is how the car learns to trust the watch. Before you start: the watch has to be paired to your Wristla account and linked to that car, and you have to be next to the car — the key is added over Bluetooth, not through the cloud. Once paired, the car recognises the watch as you walk up: it unlocks and lets you drive without a phone and without internet. Keep the Wristla app open on the watch while you use the key — Connect IQ gives no app Bluetooth in the background.

Watch a short video

Driver Rating

Driver Rating
What does my Rating reflect?

Your Rating is a single 0–100 summary of how you drive. It looks at four things: Efficiency — how economically you drive every day (smooth inputs, sensible speeds, good use of regen). Safety — how often telemetry sees hard braking, hard acceleration, sharp cornering or extended speeding. Experience — how many kilometres you have driven with Wristla. Tenure — how long you have been tracked here. Recent driving matters more than history from a year ago, so a bad week gradually fades while steady form lifts the number. Safety needs a few days of data to learn your baseline — until then you will see a progress bar instead of a score, and the Rating is computed from the other three parts.

Best band: 80+ — consistent calm driving with a solid history.
Watch band: 50–79 — still settling in as safety data comes in or driving has been mixed.
Heavy band: below 50 — short history and/or repeated hard-brake or speeding incidents.

Family & Drivers

Driver detection
How does Wristla guess which family member drove?

When a Tesla has more than one driver in your Wristla family, every closed trip shows a "probably {name} ({percent}%)" hint on the trip card. The numbers always sum to 100% across the family. Confidence below 85% is shown as a hint — you can confirm or correct it from the trip card and the fix instantly recomputes both drivers' efficiency for that day. Charging events inherit the prediction from the most recent trip on the same car when the charge starts within 30 minutes of parking. If the charge starts later — for example a scheduled overnight charge — no automatic guess is made and you can pick the driver manually.

High confidence (85%+): the auto-attribution is reliable.
Medium confidence (50-85%): the predicted driver is the most likely match. Confirm if it matters.
Low confidence (under 50%): two drivers look similar to the system. Manually picking the driver helps it learn faster.

Dashboard Metrics

Green streak
What is the green streak counter?

Green streak counts how many days in a row your overall daily efficiency score landed in the green zone (75/100 or above). A long streak shows consistently efficient driving habits. The counter resets to zero on any day that scores yellow or red, or on a day with no driving data.

Streak grows every consecutive green day.
Any yellow or red day resets the streak to zero.
A reset is not a penalty — it just means the next green day starts a new streak.
Vs norm today
How does the daily 'vs norm' comparison work?

This metric compares today's actual energy use (kWh) against a baseline for the same driving conditions. Initially Wristla uses a fixed industry baseline. Once you've accumulated enough driving days, the baseline switches to your own personal rolling average, adjusted for driving context (city/highway/mixed) and temperature. A positive percent means you used less energy than your norm — a negative means more.

Best band: positive percent — you beat your personal (or fixed) baseline today.
Watch band: near zero — close to your usual consumption.
Heavy band: negative percent — higher consumption than your norm.
Estimated savings
How are estimated savings calculated?

When your actual energy consumption is lower than the baseline (personal or fixed), the difference in kWh is your estimated savings. The daily number shows today's savings, and the weekly number sums up the last 7 days. Negative deltas (days where you used more than baseline) are counted as zero savings — they do not reduce the weekly total.

Any positive savings is good — you drove more efficiently than baseline.
Zero savings means you matched baseline exactly or consumed slightly more.
Not applicable — the savings counter does not go negative.
Trend
How is the efficiency trend calculated?

Trend compares your recent driving (last week) against your longer-term average (last month). If recent driving is meaningfully more efficient, the trend is Improving. If meaningfully less efficient, Declining. Otherwise Stable. The signal becomes more reliable after a few weeks of driving data.

Improving: recent driving is noticeably more efficient than your longer-term average.
Stable: recent efficiency is in line with your longer-term pattern.
Declining: recent driving is using more energy than your longer-term average.
Calibration
What do the calibration progress bars mean?

Wristla learns your personal driving profile over time. The 7-day bar fills one segment per day of driving data — once full, the system has enough context for a basic personal baseline. The 30-day bar tracks the full calibration window: once complete, comparisons use your own rolling average by driving context and temperature, instead of fixed industry averages. Each segment represents one day of valid driving. The system keeps updating as you drive, always using the most recent month.

Fully calibrated: the full window is filled. Comparisons are personalized.
Partially calibrated: a personal baseline is available but still learning.
Calibrating: too few days yet. The system uses fixed industry baselines until enough data is collected.

Pace of Aging

Pace of Aging
What is Pace of Aging and how is it calculated?

Pace of Aging shows how fast your car is aging relative to normal, based on 5 health components measured over a 30-day rolling window. A pace of 1.0x means normal aging rate. Below 1.0x (e.g. 0.7x) means the car is aging slower — you are taking good care of it. Above 1.0x (e.g. 1.3x) means faster aging from harsh usage. The score combines battery health, driving style, charging habits, efficiency, and climate stress into a single pace number.

Pace 0.9x or below: car is aging slower than average — excellent care.
Pace 0.9x to 1.1x: normal aging rate — standard usage patterns.
Pace above 1.1x: car is aging faster than average — consider adjusting habits.
Battery Health
How is battery health measured, and what does "X% retained" mean?

"X% retained" estimates how much of your pack's original usable capacity is still available. When enough recent charging sessions are available, Wristla measures this directly from real charging data — comparing energy delivered against the change in battery level. When that's not yet possible, it falls back to Tesla's calibrated rated range. Expected retention depends on pack chemistry and age: NCA/NMC packs (Long Range, Performance) typically lose around 5% in the first year and roughly 1-1.5% per year after; LFP packs (Standard Range RWD) age more slowly. A reading meaningfully below expected often means the BMS estimate is stale — a single charge to 100% can refresh it. Persistent low readings after a calibration charge may indicate real wear from heavy fast-charging, frequent 100%/0% cycling, or extreme temperatures.

Retention at or above expected for the car's age and battery chemistry.
Retention slightly below expected. Often this is just a stale BMS calibration — a charge to 100% can refresh it.
Retention well below expected and stable across the window. If it persists after a 100% charge, may indicate real battery stress from heavy fast-charging, frequent 100%/0% cycling, or extreme temperatures.
Driving Style (Aging)
How does driving style affect car aging?

This component reflects your acceleration, braking, and max speed habits over the last 30 days of driving. Aggressive driving accelerates wear on tires, brakes, suspension, and the battery pack.

Calm driving: smooth acceleration, gentle braking, moderate speeds.
Moderate: occasional hard inputs or higher speeds.
Assertive: frequent hard acceleration, heavy braking, or sustained high speeds.
Charging Habits (Aging)
How do charging habits affect car aging?

Two factors shape this score: how often you use DC fast charging (Supercharger) versus AC home charging, and the average battery level at end of charge. Frequent fast charging and routinely charging to 100% accelerate battery degradation. The ideal pattern is mostly home/AC charging to 80% or less.

Mostly home charging, average end charge at or below 80%.
Mixed charging types, occasional charges above 80%.
Heavy Supercharger use and/or routinely charging to 90-100%.
Efficiency (Aging)
How does the efficiency component work in aging?

This is simply the rolling 30-day average of your daily efficiency score. Higher efficiency generally correlates with gentler use of the drivetrain, better tire maintenance, and appropriate climate management — all of which reduce wear.

Average daily efficiency score above 75/100.
Average between 40 and 75 — room for improvement.
Average below 40 — driving patterns may be accelerating wear.
Climate Stress (Aging)
How does climate stress affect car aging?

Extreme temperatures (below -5C or above 40C) stress the battery pack and other components. This metric tracks how many of the last 30 days involved extreme temperature driving, and whether you used battery preconditioning before trips. Using preconditioning in cold weather significantly reduces thermal stress on the pack.

Few extreme temperature days and regular preconditioning use.
Some extreme days, partial preconditioning coverage.
Frequent extreme temperature driving without preconditioning.

Trip & Daily Efficiency

Driving style
How is driving style calculated and why does it affect efficiency?

Driving style combines hard acceleration, hard braking, time spent at very high speed, and sharp high-speed cornering into a single 0-100 signal for the trip. Lower scores mean smoother inputs. Smoother driving usually reduces avoidable tire, inverter, and aerodynamic losses, so it often improves trip efficiency and energy versus norm.

Best band: calm, smooth inputs across the trip.
Watch band: occasional hard inputs or higher-speed spikes.
Heavy band: repeated hard inputs or too much high-speed driving.
Vs norm
How does Vs norm work, and what does short trip mean?

Vs norm compares measured trip energy with the expected baseline for a trip of similar distance and driving context. On very short trips the energy delta can still be measurable, but the distance is too short for a reliable percent-vs-norm comparison. In that case the UI shows Short trip and keeps the kWh delta only.

Best band: positive percent means the trip used less energy than its baseline.
Watch band: near 0% means the trip stayed close to baseline.
Heavy band: negative percent means the trip used more energy than its baseline.
Acceleration
Why does acceleration affect efficiency?

Hard acceleration pulls high pack power and increases inverter, tire, and aero losses. Smooth launches usually cost less energy.

Best band: average acceleration power below 30 kW.
Watch band: 30-60 kW means occasional power spikes.
Heavy band: above 60 kW usually costs range quickly.
Max speed
Why does top speed matter so much?

Aerodynamic drag rises rapidly with speed, so short bursts at high speed can cost disproportionately more energy.

Best band: under 110 km/h.
Watch band: 110-140 km/h.
Heavy band: above 140 km/h.
Average speed
Why is average speed scored separately from max speed?

Average speed is scored against the trip context: city, mixed, or highway driving. Each context has its own efficient band, so city trips are not judged like highway cruising.

Best band: roughly 60-90 km/h.
Watch band: 40-60 km/h or 90-120 km/h.
Heavy band: below 20-40 km/h stop-go traffic or above 120 km/h sustained cruising.
Regen ratio
What does regen ratio mean?

It shows how much energy was recovered through regenerative braking and returned to the battery. Higher recovery means less energy was wasted on friction braking.

Best band: recovered over 25% of driving energy.
Watch band: recovered 15-25% of driving energy.
Heavy band: recovered under 15% — mostly friction braking.
Braking
Why do hard brakes hurt efficiency?

Late or aggressive braking usually means momentum was wasted instead of carried forward or recovered smoothly through regen.

Best band: almost no hard-brake events per trip.
Watch band: a few hard brakes.
Heavy band: frequent hard braking.
Preconditioning
Why does preconditioning matter?

Heating or preparing the battery and cabin before driving or charging avoids expensive warm-up after the trip or charge has already started.

Best band: detected before trip or charge.
Watch band: not detected, but conditions were mild.
Heavy band: not detected in colder conditions where warm-up costs more.
Tire pressure
Why is tire pressure part of efficiency?

Low pressure increases rolling resistance, so the car needs more energy to maintain the same speed.

Best band: roughly 2.8 bar and above.
Watch band: around 2.6-2.8 bar.
Heavy band: clearly below the efficient range.

Charging Efficiency

Charge target
Why is end SOC scored?

For daily use, charging above roughly 80% without a trip-planner reason usually adds unnecessary time and battery stress.

Best band: finished at or below 80%, or above 80% with trip planner context.
Watch band: slightly above 80% without trip planner.
Heavy band: far above 80% without trip planner.
Cold pack start
What is a cold pack start?

If battery heating continues after charging starts, the pack likely was not ready yet and some energy was spent warming it during the session.

Best band: no cold pack start detected.
Watch band: not applicable.
Heavy band: heating continued after charging began.
Trip planner
Why does trip planner context matter for charging?

Charging above daily targets is more justified when Tesla navigation expects a longer drive or Supercharger stop soon after.

Best band: trip planner context detected when needed.
Watch band: not needed for this charge.
Heavy band: above-80% charge without trip planner context.
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