Showing posts with label hottop roaster; coffee; artisan. Show all posts
Showing posts with label hottop roaster; coffee; artisan. Show all posts

Wednesday, 29 October 2025

Roasting Times & Temp settings for different Cultivars.

Coffee cultivars don’t come with fixed “roast settings,” 
They behave differently in the roaster because of variations in bean density, size, moisture, sugar content, and structure. Those differences influence how heat is absorbed and how quickly chemical reactions (like caramelization and Maillard reactions) occur.

Here’s how that plays out in practice:
🔥 1. Bean Size & Shape
💧 2. Moisture Content
🌱 3. Density & Bean Structure 
🌱 4. Processing Method
🍬 5. Sugar Content & Chemical Composition
⏱️ 6. Practical Roast Adjustments by Cultivar Type

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🔥 1. Bean Size & Shape

Size
Larger beans (e.g., Maragogipe):
+ this is arguably the most important consideration when Roasting.
+ Heat penetrates more slowly through to the centre of a larger bean
+ Thus there is a need for  longer roast times or more energy input (higher charge temps)
Smaller beans in comparison
+ Heat faster
+ Thus there is a risk of overdevelopment on the outside.

This runs contrary to many traditional roasting profiles that prioritize bean density over size.
Often, denser beans are smaller and one would think that more heat is required for such beans when the opposite is often the case. However, larger coffee beans are often associated with higher quality and some coffee-producing countries grade their beans by size. 
Eg: Colombian Supremo or the Kenyan AA grades fetch the highest prices.

Bean shape
Natural, round, single-seed peaberries tend to roll and move differently in a drum or fluid (air) roaster, 
often offering a more uniform heat transfer compared to traditional flat, twin beans.

So in conclusion, the size and shape of coffee beans depends on many factors such a level of ripeness, getting sufficient water during fruit expansion, the availability of nutrients, altitude, elevation above sea level, micro climates and growing temperatures.


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💧 2 . Moisture Content 

I think moisture is the second most impt consideration when deciding how to roast a bean.

Measuring water content in raw coffee beans is best achieved using specialized capacitance moisture meters (like DiFluid Omix, Roast Rite RM-800, or G-Won) for rapid, accurate, and non-destructive testing, targeting a moisture content of 10%–12%. Alternatively, the oven-drying method involves weighing beans, baking them at 105C for 24 hours, and calculating weight loss.
I use one of these testers:
https://www.youtube.com/watch?v=gOx6Eu_j8qI

Moisture content (ideally 10–12%) dictates the thermal energy needed during coffee roasting, impacting drying time, the rate of rise (RoR), and final flavor development. High moisture (>12%) requires more heat to evaporate water, delaying browning and increasing risk of grassy/uneven roasts, while low moisture (<10%) risks rapid, uneven roasting.

Key Effects of Moisture Content on Roasting:

Thermal Management & Energy: Beans with higher moisture require higher heat input (more gas/energy) in the initial drying phase to overcome the cooling effect of evaporating water.
Roast Timing & Rate (RoR): Drier beans reach higher temperatures more rapidly, often requiring lower charge temperatures to avoid burning. High-moisture beans require longer drying times to avoid underdevelopment.
Physical Changes: Moisture leaves the bean during roasting, causing shrinking and weight loss, which impacts flavor density.

Ideal Ranges & Risks:

10%–12% (Ideal): Provides balanced flavor development.
>12% (High Moisture): Can lead to uneven roasting, stalling (low ROR), and grassy or fermented flavors. If raw coffee was stored in a moist environment, mould can develop.
<10% (Low Moisture): Often found in old-crop coffee or coffee stored in a dry enviroment.
This can lead to brittleness and accelerated roasting, often leading to a "papery" or flat taste. 

Roaster Adjustments
Roasters typically increase charge temperature and heat application early for high-moisture coffees to ensure they transition through the yellowing/browning stage properly. Increased airflow is often necessary to remove the high humidity released in the early stages. 
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🌱 3. Density & Bean Structure 
High-density cultivars (often high-altitude Arabica coffee like Bourbon, Typica, Gesha):
+ Need higher charge temperatures
+ Can handle more heat early
+ Often require slightly longer roast times
+ Benefit from slower development to bring out complexity

Lower-density cultivars (including many Robusta coffee or low-altitude Arabicas):
+ Roast faster
+ Require lower starting temps
+ Can scorch if heat is too aggressive
+ Often shorter overall roast curves

👉 In short: 
denser beans = slower roast, hotter start; 
softer beans = quicker roast, "cooler" start.

General classification of bean density for different cultivars

A. Strictly High Grown (SHG): Above 1500m (5,000+ ft)
Strictly High Grown (SHG) or Strictly Hard Bean (SHB) coffee refers to (mainly) Arabica beans grown above 1,200–1,500 meters (4,000–5,000+ feet).
These denser, slower-developed beans have higher acidity and complex flavors. 
Besides SHG/SHB, look for terms like Altura (Mexico) or High Grown (Colombia)

Top examples include :
Ethiopia:
Yirgacheffe (1,700–2,200m): Known for, bright acidity, tea-like body, and floral or citrus notes.
Guji Wamena (over 2,300 MASL) 
Kenya AA (1,700–2,000m): Grown on high plateaus, known for intense, bright fruit acidity and rich body.
Guatemala SHB (Antigua/Coban) (1,400–1,700m+): Often grown in volcanic soil, producing rich, complex cups with hints of chocolate or smoke.
Costa Rica Tarrazú (1,500–2,000m): Highly sought after for its crisp, clean, and bright flavor profiles.
Tanzania Peaberry (Mt. Kilimanjaro): Known for its intense, wine-like acidity and bright flavors.
Colombia Supremo (up to 2,000m): Known for a well-balanced profile and high altitude acidity.
Papua New Guinea "Mile High" (1,500m+): Often features fruity, tea-like notes

B. High altitude (≈1200–1500 m):
Cooler climate - Slow maturation → tighter cell structure
Smaller, harder beans
Brighter acidity
High flavour complexity - Floral/fruit 

Eg: Ethiopia, Kenya, Central American, Guatemala, Peruvian, Colombian .

Examples of high-density cultivars (often high-altitude adapted) include
Typica
Bourbon
SL28 / SL34 (Kenya)
Geisha

C. Medium (900m–1200m [3,000–4,000 ft])
More acidic than lower elevation coffees.
More nuttiness.
Such beans offer a balanced, easy-drinking profile that acts as a bridge between low-altitude earthy flavors and high-altitude bright acidity. 
This elevation range is highly regarded for producing balanced, dense beans, particularly in South America and parts of Asia.

Regions:
India: mostly in the southern states of Karnataka, Kerala, and Tamil Nadu. High-density shade-grown methods often cause beans to mature slowly, mimicking higher elevation profiles.
Brazil (Alta Mogiana Region): Red Catuai varieties from this area are commonly grown at 900–1200 meters, known for natural fermentation processes that produce notes of chocolate, almonds, and hazelnut.
Vietnam (Son La Province): Arabica trees grown in this northwest region at 900m–1200m thrive due to cold, rainy conditions.
Jamacia: Authentic Jamaica Blue Mountain (JBM) coffee is grown at high altitudes between 3,000 and 5,500 feet (900 to 1,700 metres) above sea level in the Blue Mountains. This specific, misty, and steep environment creates a slow maturation process—up to 10 months—which results in a mild, sweet, and complex flavor profile.

Other Examples: Mexico (Altura), Costa Rica, Java, and Sumatra often produce coffee in this range, delivering nutty, creamy, or earthy profiles.

D. Low Altitude (below 900m - [3000ft]):
Warmer temperatures - faster-growing - less dense.
lower acidity, earthy flavors,
These coffees are often described as having  and a more simple, soft profile compared to high-altitude beans.
Robusta coffees grow abundantly at 600-2,500 feet elevation. 
Unlike Arabica plants, Robusta can handle higher temperatures and pests. 
However, the coffee tastes harsher and more bitter. 

Examples include: 
Brazil: Much of Brazil's high-volume, lower-altitude coffee is popular for its balanced and nutty profile.
(while most Brazilians may be soft beans, some are as dense as Ethiopians).
Santos : (Sao Paulo/Minas Gerais, Brazil). Often grown around 900m or slightly below, typically sweet and smooth.
Hawaiian (Kona): (Arabica), grown between 600-3,200 feet elevation has unique growing conditions, 
with coffee planted along volcanic slopes.
Liberica: A species that grows in hot and wet conditions, commonly found in low-altitude regions of Southeast Asia.
Vietnam: A major producer of Robusta, which often grows in warm, humid conditions below 900m.
Sumatra/Indonesia: Known for wet-hulled robusta that provides an earthy, intense, and low-acid experience.
Jamacia: (not to be confused with J Blue Mountain)
Jamaica High Mountain: 1,500 to 3,000 feet (460m–910m).
Jamaica Supreme/Low Mountain: Below 1,500 feet (460m).

Lower-density cultivars / hybrids
Catuaí
Caturra
Castillo
Catimor hybrids

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4. Processing Method


Even within the same cultivar:
Washed coffees → cleaner, more predictable → tolerate higher initial heat
Natural / honey processed → more sugars → need gentler heat ramps to avoid scorching
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Washed (or wet-processed) coffee is generally the easiest to roast for beginners because the beans are clean of fruit pulp, resulting in a more uniform, predictable, and less smoky roasting process. Their consistent density makes it easier to achieve an even color throughout the batch compared to natural or honey processed coffees, which can scorch easily. 

Why Washed Coffee is Easiest to Roast:
Lower Chaff/Sugar: With pulp removed, there is less sticky chaff and sugar to burn, reducing smoke and uneven development.
Consistency: The drying process is more uniform, which means heat is absorbed evenly by the beans.
Visual Control: Because of their uniformity, it is easier to see the color change and identify the first crack during the roast. 

Key Considerations for Beginners:
Air Roasters/Popcorn Poppers: These provide even heat and better consistency.
Natural Process: While often sweeter, natural processed beans are more porous and irregular, making them prone to faster, less uniform roasting and more smoke.
(I particularly like Costa Rician washed coffees... really uniform )
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🍬 5 . Sugar Content & Chemical Composition

Different cultivars have different sugar levels and precursor compounds, 
which affect how they develop flavor:

High-sugar cultivars (e.g., Gesha, Bourbon):
+ Need careful heat control to avoid burning sugars
+ Often benefit from longer Maillard phase
+ Lower end temps can preserve floral/fruit notes
Lower-sugar cultivars:
+ Reach desired roast level more quickly
+ May need slightly higher end temps to build body

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⏱️ 6. Practical Roast Adjustments by Cultivar Type

Here’s a simplified comparison:


| Cultivar Type                                    | Charge Temp  | Roast Time  | Heat Application            |
| ----------------------------------                | -----------         | ----------         | --------------------------- |
| High-density Arabica (e.g., Gesha)  | Higher            | Longer         | Strong early, gradual taper |
| Classic Arabica (Typica/Bourbon)   | Medium-high  | Medium        | Balanced curve              |
| Low-density / Robusta                     | Lower             | Shorter         | Gentle, careful heat        |

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🎯 Key Takeaways
There’s no universal temperature/time for a cultivar.
Roasters adjust based on how the bean responds, not just its name.
The biggest drivers are:
Density (altitude-related)
Sugar content
Processing method


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Below are example roast curves for three distinct profiles:
1. a high-density Gesha coffee, 
2. a classic Bourbon coffee, 
3. a lower-density Robusta coffee.

These assume a drum roaster (like a Probat or Diedrich), batch size ~70–80% capacity.

☕ 1. Gesha (High Density, High Sugar, Delicate)

Target: Light - medium roast (filter/espresso, highlight florals for filter)
+ Charge temp: ~205–210°C (commercial roaster)
   Charge temp: ~195–200°C (Home drum roaster)
+ Turning point: ~1:30 at ~95–100°C
+ Dry end (yellow): 4:30–5:30
+ First crack: 8:30–9:30 at ~196–200°C
+ Drop: 9:45–10:30
+ End temp: ~200–203°C
+ If you want to develop further drop @ 10.00-11.00 (202-205C)

How it behaves:
+ Dense → absorbs heat slowly at first
+ Needs strong early heat, then gentle decline
+ Long Maillard phase = better aromatics
  Gradually reduce heat → extend this phase for complexity.
+ Development phase:
  Very controlled, gentle → avoid muting florals

Key adjustments:
+ Avoid rushing post–first crack (can mute florals)
+ Keep development time short (~10–12%)

===================================================================

☕ 2. Bourbon (Balanced, Medium Density)

Target: Medium roast (balanced sweetness + body)
+ Charge temp: ~200–205°C
+ Turning point: ~1:30–1:45
+ Dry end: 4:00–4:30
+ First crack: 8:00–9:00
+ Drop: 10:30–11:30
+ End temp: ~205–210°C

How it behaves:
+ More forgiving than Gesha
+ Even heat transfer
+ Sugars caramelize more easily

Key adjustments:
+ Balanced heat curve (not too aggressive early)
+ Development time ~15–18% for body + sweetness

===============================================================

☕ 3. Robusta (Low Density, High Caffeine, Tougher Structure)

Target: Medium-dark to dark (reduce harshness)
+ Charge temp: ~190–195°C (Commercial roaster)
   Charge temp: ~185–195°C (Home Drum roaster)
+ Turning point: ~1:00–1:30
+ Dry end: 3:30–5:00
+ First crack: 7:00–8:30
+ Drop: 10:00–12:00
+ End temp: ~210–218°C

How it behaves:
+ Lower density → heats quickly
+ Can scorch easily if overheated early
+ Less sugar → needs deeper development

Key adjustments:
+ Gentler initial heat
+ Longer development phase (~20%+)
+ Often pushed closer to second crack for smoothness

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🧠 What’s Really Happening
Gesha: You’re protecting fragile aromatics → precision + restraint
Bourbon: You’re balancing sugar + body → classic curve
Robusta: You’re taming bitterness → deeper, slower finish

Cultivars mainly influence how quickly and evenly heat moves through the bean.

Saturday, 18 October 2025

Timing the Drying phase

 Drying time in coffee roasting—the phase from charge to the yellowing/browning point (typically 100–160°C / 212–320°F)—is determined by the need to evaporate 10–12% moisture from the green beans. This stage usually lasts 4–7 minutes. 

Key factors influencing this duration include:
1. Bean Physical Properties
Density: Denser beans (e.g., high-altitude, strictly hard bean) are harder for heat to penetrate and require more energy and longer drying times.
Moisture Content: Higher moisture content requires a longer drying phase to evaporate water without creating uneven moisture pockets, which can lead to burnt exteriors and raw interiors.
Processing Method: Natural process beans often have higher sugar content and can dry faster, sometimes needing lower initial heat to avoid scorching compared to washed beans. 

2. Roaster Technology and Control
Roaster Type: Fluid-bed (air) roasters often dry faster than drum roasters due to more efficient convective heat transfer.
Batch Size: Larger batches hold more total moisture and have higher thermal mass, requiring more energy and longer time to heat evenly.
Charge Temperature: The initial temperature of the roaster affects how fast the beans turn color. A higher charge temperature generally results in a shorter drying phase, while a lower charge temp extends it.
Airflow Settings: Higher airflow increases the rate of evaporation, speeding up the drying phase. 

3. Environmental and External Factors
Ambient Temperature: A colder roasting environment will increase heat loss from the machine, requiring more time to reach the yellowing point.
Humidity: Higher humidity in the air can slow down the roasting process by making it harder for the beans' moisture to escape. 

Optimal Drying Strategy
Avoid Rushing: Rushing the drying phase can lead to uneven, underdeveloped, or "baked" coffee.
The "Yellowing" Target: A common goal is to reach the yellow/tan color shift around the 5-minute mark.
Aroma Cues: The stage ends when the aroma changes from a grassy/hay-like smell to a sweeter, bread-like aroma.

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Typically I like to see a ROR of about 18-25
It will be higher at the beginning as you are introducing more heat very quickly

Typically the time from "charge" to "dry end" = 50% of the total roast time

Browning = 30%
Development = 20%

These ratios though not exact give you a good idea if your roast is progressing in a timely manner


Wednesday, 10 September 2025

Hottop roaster - auto mode - Colombia Huila - Dark & medium roast

Colombia Huila -  alte1400 - 1800
This is a Huila Specialty Coffee Powerhouse region.

The department of Huila in southern Colombia is widely regarded as one of the country's premier coffee-growing regions and is often considered the heart of Colombia's specialty coffee movement. Many of the single-origin Colombian coffees found in specialty cafés around the world come from Huila.

More about Colombian coffee:

Why Huila is so well suited to coffee

Several factors combine to create exceptional growing conditions:

  • High elevation: Most coffee is grown between about 1,400 and 2,100 meters above sea level. Higher elevations slow cherry maturation, allowing more sugars and complex flavors to develop.
  • Volcanic soils: The region benefits from fertile volcanic soils that support healthy coffee plants and contribute to cup complexity.
  • Andean geography: Huila sits where Andean mountain ranges converge, creating numerous microclimates. Two farms only a few kilometers apart may produce noticeably different flavor profiles.
  • Consistent rainfall and temperature variation: Warm days and cool nights help cherries mature gradually and evenly. 

Common tasting notes include:

  • Red fruits (raspberry, plum, cherry)
  • Stone fruits (peach, apricot, nectarine)
  • Caramel and brown sugar
  • Citrus brightness
  • Chocolate or cocoa finish
  • Medium body with clean sweetness

The hallmark is often a combination of bright acidity and pronounced sweetness.

Farming structure

Unlike large plantation systems found in some coffee-producing countries, Huila is dominated by smallholder farmers. Many farms are only a few hectares in size and are family-operated. This small-farm structure has encouraged careful cultivation and a strong focus on quality rather than volume.

Popular varieties grown in Huila include:

  • Caturra
  • Castillo
  • Typica
  • Pink Bourbon
  • Yellow Colombia

Many producers also experiment with exotic varieties and innovative processing methods.

Specialty coffee reputation

Huila has become synonymous with high-end Colombian coffee. The region regularly produces coffees that perform well in quality competitions and attract premium prices in international specialty markets. It is frequently cited as Colombia's most celebrated specialty coffee origin.

Notable coffee-producing municipalities include:

  • Pitalito
  • Acevedo
  • San Agustín
  • Garzón

Pitalito, in particular, is known for a strong concentration of specialty-focused producers.

Current challenges

Like much of Colombia's coffee sector, Huila faces challenges from:

  • Climate change and shifting weather patterns
  • Labor shortages during harvest periods
  • Rising production costs
  • Increased disease and pest pressure in some areas

Many growers are adapting by moving production to higher elevations, focusing on specialty-grade coffee, and adopting new farming practices.

In one sentence

If you see a coffee labeled "Huila, Colombia," you can generally expect a high-altitude washed Arabica with vibrant fruit character, caramel-like sweetness, and the kind of complexity that has made Huila one of the most respected coffee origins in the world.
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the hot top roaster
Auto mode
200g in
165.5g out

% water loss 17.25% loss
 thus dark roast

When doing a auto roast on the hot-top when you turn it on, it goes into a pre-heat or cool down cycle.
(depending if you are doing a first roast when the machine is cold, or doing a 2nd /3rd roast then the machine is already hot).

The roaster needs to reach a heat of 75C .
then it starts beeping

 Load the beans.
Set the final temp.
default is 209C I think this is too hot.
I like to start with a end temp of 202C if I've never roasted these beans before, then adjust future roasts from there.














These are the final beans




Tuesday, 9 September 2025

HotTop Roaster 1 - Peruvian Ceja de Selva AAA.

My first attempts using the Hottop roaster.
This is the 2K+ version.


These do produce a bit of smoke, so I'm doing the roasting on my outside balcony.


I'll roast 3 x 200g batches of a Peruvian Ceja de Selva AAA.

Peru “Ceja de Selva” coffee (the “eyebrow of the jungle”).

Peru coffee regions

Ceja de Selva is one of Peru’s most important (and underrated) coffee regions. The name literally means “eyebrow of the jungle”—a strip of land where the Andes mountains meet the Amazon rainforest.

Grown at over 1,800 metres.
Comes from an estate at the base of the Andes.
This washed (but not overly polished) coffee produces great body with a long mid-palate profile. 
Great as a single origin espresso .



What makes this region special?
Altitude: ~1,200–2,100 m
Climate: warm days, cool nights, high rainfall
Environment: lush, biodiverse, often shade-grown

This combination slows down how coffee cherries ripen, which is key for developing sweetness and complexity



Typical cup characteristics:
Sweetness: caramel, cocoa, sometimes molasses
Fruit notes: red apple, citrus, pear, or stone fruit
Body: medium, smooth, often creamy
Acidity: balanced (not sharp, not flat)
Finish: clean, slightly chocolatey

Some roasts can show brighter notes like lemon or grape early, then settle into chocolate and nutty tones at the end.

Ceja de Selva coffee is strongly associated with:
Organic farming (often no synthetic chemicals)
Smallholder farms & cooperatives
Hand-picked cherries
Washed processing (clean, clear flavours)

These practices contribute to both ethical sourcing and a clean cup profile.

How it compares to other coffees
Compared to Ethiopian coffee → less floral, more chocolatey
Compared to Colombian coffee → similar balance, but often softer and sweeter
Compared to Brazilian coffee → lighter body, more subtle fruit



Bottom line
Peru’s Ceja de Selva coffee is all about balance + drinkability + sustainability. It won’t punch you in the face with acidity or wild flavours—instead, it gives you a smooth, layered cup that keeps you coming back.

My first roast:
Target temp was 206C

200g
I used  the Auto mode on the Hottop.
Still learning Artisan

2nd roast
200g
Target temp 199C

3rd roast

200g
Getting used to using Artisan
Still in auto-mode
Target temp 199C


Fan speed:
initial : 5
My plan was to slowly reduce heat from 100% to 80% by first crack.

So I started with 600g raw coffee and ended with 517.3 g
That's a 13.8% water loss... just into the medium roast level.




Travel links

Peru
   -  Cusco
   -  Inca Trail
   -  Machu Picchu
   -  Lake Titicaca
   -  Nazcar Peru - Chauchilla Cemetery
   -  Arequipa - NYE celebrations 2011
   -  Acclimatizing to high altitudes

Monday, 1 September 2025

Hottop roaster - auto roast -Indian Monsooned Malaabar AA

 Hottop roaster - auto roast -Indian Monsooned Malaabar AA

This is a washed bean



Indian Monsooned Malabar is one of the World's Most Unusual Coffees.

Monsooned Malabar is not so much a single coffee-growing region as it is a special processing style associated with coffee grown in southwestern India and then exposed to seasonal monsoon winds along the Malabar Coast.

The coffee is one of the most distinctive origins in the world because its flavor is shaped as much by climate and post-harvest treatment as by where it is grown.

Where does it come from?

Most Monsooned Malabar coffee is grown in the Indian states of:

  • Karnataka (the largest source)
  • Kerala
  • Tamil Nadu

The plantations are typically located in the lush hills of the Western Ghats, often at elevations of about 900–1,500 meters.

Unlike Huila, Colombia, where high elevation and acidity are major selling points, 
Indian coffees generally emphasize body, spice notes, and earthier characteristics.

What does "monsooned" mean?

Historically, coffee exported from India to Europe traveled by sailing ship for months.

During the voyage:

  • Humid sea air and monsoon moisture entered the cargo holds.
  • Beans absorbed moisture and swelled.
  • Their color changed from green to pale gold.
  • Acidity decreased dramatically.

European buyers became accustomed to this flavor profile.

When modern shipping eliminated the long sea voyage, Indian producers developed a process to recreate those conditions.

Today, coffee is spread in open-sided warehouses on the Malabar coast during the monsoon season (typically June–September). The beans are repeatedly turned and exposed to moisture-laden winds for several weeks.

How does it taste?

Monsooned Malabar is famous for having:

  • Very low acidity
  • Heavy, creamy body
  • Earthy character
  • Woody and spicy notes
  • Nutty flavors
  • Tobacco and leather nuances
  • Mild sweetness

Many coffee drinkers describe it as smooth and mellow rather than bright or fruity.

CharacteristicHuila, ColombiaMonsooned Malabar, India
ElevationHigh mountain farmsModerate mountain farms
ProcessingUsually washedUnique monsooning process
AcidityBright, livelyVery low
Fruit notesStrong (berry, citrus, stone fruit)Minimal
BodyMediumHeavy
SweetnessCaramel, fruit sweetnessMild, earthy sweetness
Typical useSpecialty single-origin coffeeSingle-origin and espresso blends


If Huila is known for clarity, fruit, and brightness, Monsooned Malabar is known for body, smoothness, and earthy depth.

Why roasters like it

Many espresso roasters use Monsooned Malabar in blends because it can:

  • Add body and crema
  • Reduce sharp acidity
  • Contribute spicy and earthy complexity

It's often blended with East African or Latin American coffees to create a more balanced espresso profile.

Is it Arabica or Robusta?

Most premium Monsooned Malabar is Arabica, though India also produces substantial quantities of Robusta. Some monsooned coffees on the market may contain Robusta or be offered as separate monsooned Robusta lots.

Why it's unique

Very few coffees in the world are defined by a weather-driven post-harvest process. While Huila's character comes primarily from terroir (altitude, soil, climate, and variety), Monsooned Malabar's signature flavor comes largely from the deliberate exposure of coffee beans to the humid monsoon environment after harvest.

As a result, a cup of Monsooned Malabar can taste almost the opposite of a classic Colombian Huila: less fruity and acidic, but richer, softer, and more savory.

-------------------

Hottop auto mode
Method 1
200g - start
202C - final temp

start weight 200g
end weight: 172g
% water loss- 14% 
 thus : medium-dark
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Hottop auto mode
Method 2
200g - start
204C - final temp

start weight 200g
end weight: 171.1
First c - 180C
% water loss : 14.45%
 thus : medium-dark

Love this level.







- Indian coffee

Tuesday, 15 July 2025

Hottop custom profile 2 & 3

 The Hottop 2K+ behaves much closer to a small commercial drum than most home roasters, but with lower thermal mass and slower recovery, so the key is anticipation and smooth adjustments.

Important quirks:
Heat changes have a delay (~20–40 sec)
Too much fan early = heat loss + stalled roast
Easy to crash RoR after first crack if you overcorrect

🧠 Hottop-specific roasting mindset

This matters more than the numbers:

Think in momentum, not temperature
Make changes before you need them (due to lag)
Avoid big jumps in P or F
Aim for a smooth declining energy curve

-------------------

☕ Gesha Profile (Hottop 2K+)

(Dense, high-altitude, delicate)

🎯 Goal:
Longer roast, smooth declining heat, preserve florals
🔥 Step-by-step profile
Preheat Empty drum to ~165–170°C (IBTS or bean probe equivalent)

Charge (0:00)
Drop beans (~250g batch ideal)
Power: 100 / Fan: 0 / Drum: default

Drying phase (0:00–5:00)
Keep Power: 100
At ~3:30 → F: 1–2 (light airflow)
Target: Yellow at ~5:00

Maillard phase (5:00–8:30)
5:00 → P: 80 / F: 2
6:30 → P: 70 / F: 3
👉 You’re gradually reducing energy while increasing airflow

First crack (~8:30–9:30)
Just before FC (~8:00): P: 60 / F: 3–4
At first crack: P: 50 / F: 4–5

Development (post-FC)
60–90 sec development
Keep airflow higher to clear chaff/smoke

Drop:
~10:00–11:00
Light–medium (end temp ~202–205°C equivalent)

⚠️ Watch for:
RoR crash after FC → don’t drop power too fast
Too much fan early → stalls before yellow





















📊 Target RoR Landmarks

| Time | Stage         | Target RoR (°C/min) | What you're doing         |
| ---- | ------------- | ------------------- | ------------------------- |
| 1:30 | Turning point | 20–25               | Max power pushing heat in |
| 3:00 | Early drying  | 18–20               | Still strong momentum     |
| 5:00 | Yellow        | 14–16               | Start tapering heat       |
| 7:00 | Mid-Maillard  | 10–12               |  decline                  |
| 8:30 | First crack   | 7–9                 |  control                  |
| Drop | ~10:30        | 4–6                 | Gentle finish             |

🎮 How this maps to Hottop controls
0:00–3:00 (P100, F0)
→ Build that high initial RoR (~20+)
3:30–6:00 (step P down gradually)
→ Prevent RoR from staying too high
Before first crack
→ You must already be declining to ~8–10 RoR
(If not → you’ll get a spike/flick)
Post first crack
→ Small power reductions only
→ Use fan to control, not kill heat

==================================

☕ Robusta Profile (Hottop 2K+)

(Lower density, harsher compounds)

🎯 Goal:
More development, smoother body, reduce harshness

🔥 Step-by-step profile

Preheat:

Slightly lower: ~160–165°C
Charge (0:00)
P: 90 / F: 0

👉 Less aggressive than Gesha

Drying phase (0:00–4:30)
Keep P: 90
At ~3:00 → F: 1–2

Target:
Yellow at ~4:30–5:00

Maillard phase (4:30–7:30)
4:30 → P: 80 / F: 2
6:00 → P: 70 / F: 3

👉 Keep momentum—don’t let it drag

First crack (~7:30–8:30)
Before FC:
P: 65 / F: 3–4
At FC:
P: 60 / F: 4–5
Development (key difference)
Longer: 90–120 sec
Slightly higher end temp (~210–215°C equivalent)

Drop:

~9:30–10:30
Medium to medium-dark

⚠️ Watch for:
Too light → rubbery / harsh
Too much early heat → tipping/scorching

⚖️ Key Differences on Hottop
| Variable     | Gesha          | Robusta               |
| ------------ | -------------- | --------------------- |
| Charge heat  | Higher         | Slightly lower        |
| Early power  | Max (100)      | Slightly reduced (90) |
| Roast length | Longer         | Shorter               |
| Development  | Short          | Longer                |
| Fan usage    | Later, careful | Earlier, more freedom |

📊 Target RoR Landmarks
| Time | Stage         | Target RoR (°C/min) | What you're doing            |
| ---- | ------------- | ------------------- | ---------------------------- |
| 1:20 | Turning point | 18–20               | Moderate शुरुआत              |
| 3:00 | Early drying  | 16–18               | Stable ऊर्जा                 |
| 5:00 | Yellow        | 13–15               | Controlled गति               |
| 6:30 | Mid-Maillard  | 11–13               | Maintain momentum            |
| 8:00 | First crack   | 8–10                | Slightly stronger than Gesha |
| Drop | ~10:00        | 5–7                 | More developed finish        |

🎮 Control translation
Start slightly gentler (P90 vs P100)
→ Avoid harshness
Keep RoR from dropping too fast mid-roast
→ Robusta hates “stalling”
Post first crack:
→ Hold a bit more energy than Gesha
→ Longer development = smoother cup





















📈 What makes this curve “Robusta-specific”
🔶 RoR (key difference)
Starts lower (~24 vs ~28)
Declines more gently
Stays slightly higher at first crack

👉 This reflects:

Less aggressive early heat
More sustained energy through the middle
Stronger finish for development


Wednesday, 18 June 2025

Hottop custom profile 1

 link

https://prima-coffee.com/learn/article/roasting-guides/learning-how-to-roast-coffee-at-home-with-a-hottop/learn-roast-hottop?srsltid=AfmBOoq5-F_9DM9fULPJnW5eNpwpYzFbjd4Vyd2Rv1JhwY5P1ypGGidp

also watch
https://youtu.be/EpUMeD681gU?si=Y0t_er-Oajd5P5yJ
roast rebels

1.
Start preheating the roaster, and weigh out 200g of green coffee. 
Be aware that as you are waiting for the correct preheat temperature, 
the roaster will beep quite loudly at 167 F and start its own countdown timer
 (this is the Hottop’s suggested drop temp).

2.

Once the roaster reaches 380 degrees Fahrenheit, open the lid on top of the roaster and add the 200g batch. Replace the lid, start your timer, and turn off the heat of your roaster for 1 minute. If you are wanting to keep track of the heat as I did, every 30 seconds, be sure to start this process now.

3.
At 1:00, crank the heat back up to 100%. You’ll leave this here until the Hottop shows 320 F, so take a minute here to collect your bearings. Depending on your coffee, it’ll take about five minutes to reach 320 F. As you wait, take notes as to how your coffee is developing. You’ll be able to notice a nice grassy smell and that your coffee becomes even greener, before starting to yellow.

4
At 320 F, decrease the heat to 90% (down 1 notch) and increase the fan to 25%. At this point, you should really be smelling that grassy smell and seeing your coffee beans turn yellow. Once you finish this step, you’re going to want to pay very close attention, as the remainder of the roast is pretty involved and quick.

5
At 340 F, decrease the heat to 80% and increase the fan to 50%. You should hit 340 F around a minute after Step 4, and you’ll start seeing your coffee begin to become a very light shade of brown.

Step 6

At 360 F, decrease the heat to 70% and leave the fan at 50%. You should hit 360 F about 1:30-2:00 minutes after Step 5. At this point, your coffee will still be a light shade of brown, but you’ll be able to watch it slowly become more and more brown. You’ll notice now that things are picking up even quicker.

7

At 370 F, decrease the heat to 50% and increase the fan to 75%. This step usually happens in less than one minute of Step 6. It is typically during this step that you are going to hear the infamous First Crack, the moment when the internal structure is breaking down and releasing an even greater amount of steam, giving off a stronger, sweet aroma. Take note of when first crack begins, because you are going to drop the beans 1 minute and 30 seconds afterward. There are typically a few lone beans that crack before first crack is really underway, so wait until you hear multiple beans popping at the same time. (Also, be prepared for your Hottop to beep at you around 374 F. This is a safety feature to make sure that you are present. Simply press ENTER and be one your way. If you are roasting darker, this happens again at 395 F, and it will automatically eject at 428 F.)

8
At 380 F, decrease the heat to 30% and increase the fan to 100%. You’ll typically be at or near the end of first crack at this point

9
When your beans have roasted for about 1 minute and 30 seconds after First Crack (around 385 F), hit eject to drop the beans into the cooling tray. The built-in cooling process lasts 5 minutes (ending with a beeping sound for the last 10 seconds)

Example Roast Profile
380 F Charge 200g
~ Heat off for 1 minute, then full heat until 320 F
320 F Heat = 90%; Fan = 25%
340 F Heat = 80%; Fan = 50%
360 F Heat = 70%
370 F Heat = 50%; Fan = 75%
380 F Heat = 30%; Fan = 100%
~385 F Drop 1 minute and 30 seconds after First Crack

Friday, 16 May 2025

Choosing the right coffee Charge temp (& turning point).

Choosing the right coffee charge temperature involves balancing batch size, bean density, and roast level to hit a turning point around 45–90 seconds. 
It's the stored energy in the roaster that kicks things off.
A higher charge (>200C) suits denser beans, 
while lower charges (roughly 160C-180C) prevent scorching of low-altitude beans.
Decaf would call for a noticably larger batch size or lower charge temp.

The average charge temperature for a Hottop roaster typically ranges from 300°F to 375°F (149-190c) as measured by the Bean Temperature (BT) probe. While the manufacturer's automatic default is low (around 167°F or 75°C), experienced users often charge higher for better energy management, often around 350°F

Key Factors for Setting Charge Temperature:
+Bean Density: 
  High-density/high-altitude beans generally require a higher charge temperature
  to penetrate the bean core. 
   Lower density beans are prone to more roast defects (you need to be more gentle with the heat).
+Bean size & shape
   bigger beans take longer to roast.
   round or small beans move differently in the roaster - roasting more evenly and quickly.
+ moisture content
    Beans with a higher moisture content take longer to dry.
+Type of bean processing.
   Natural or honey processed usually have more sugars on the outside, so roast faster or scorch 
   if you are not careful.
   Washed coffees tend to roast more evenly.
 +Batch Size: Larger batches necessitate a higher charge temperature to provide 
  enough energy to the larger mass.
+Roast Level: Light roasts, which need a faster, shorter development time, often benefit 
  from a higher charge. 
  Espresso or darker roasts can start at a slightly lower charge to manage the heat needed
  for a longer roast.
+Roaster Environment: Ensure the machine is properly heat-soaked, usually with
  the environment temperature significantly higher than the drum temperature.
+Turning Point Indicator: The Turning Point (TP) is when the bean temperature 
   rises after being cooled by the charge

TP too fast (<45s): Charge temperature is too high.
TP too slow (>90s): Charge temperature is too low.
TP just right = 60 s (general rule of thumb)

Fine-Tuning Tips:
If your coffee tastes like it has "roastiness" or you observe scorching/tipping, decrease your charge temperature.
If your roast takes too long to dry (before the yellowing stage), increase the charge.
Naturals often perform better at a slightly lower charge to avoid over-roasting the exterior, while washed coffees can handle more heat.

Exhaust temperature
This is very impt as it indicates how much energy you have in the roaster & can be used to soak the beans. It will tell you if you have enough momentium in the roaster.
The Exhaust temp should be higher than the bean temp.
If the exhaust temp if aways higher than the bean temp then you will always have a positive ROR.
Towards the end of the roast, the two temps will meet .
The Exhaust temp is influenced by the drum speed and energy changes.
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HotTop roaster settings
+Optimal Range: 300°F–350°F (149°C–177°C) is commonly cited for a good balance,
   avoiding scorching while ensuring enough energy for the roast.
+Higher Density Beans: Use higher charge temperatures (approx. 375°F or 190°C) to 
  ensure enough energy enters the bean.
+Lower Density/Softer Beans: Use lower charge temperatures (approx. 325°F or 163°C) 
  to avoid scorching.
+Batch Size: For a 250g charge, 350°F is a common starting point. If reducing batch size 
  to 175g, some users increase charge temperatures to 390°F–410°F to maintain heat.
+Roast Style: Espresso roasts often use higher charge temperatures for more heat, 
  while lighter filter roasts might use slightly lower, faster-acting profiles



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