Server definition
- Hash
- sha256:e89151b44a5644f0cb5bb4b891c2d3dbbfc5a0b757ff92ac37b194d73cc2eb17
- What it is
- What a remote MCP server returned when asked what it offers: 9 tools
The blob, as servednamed by its sha256
{
"instructions": null,
"tools": [
{
"description": "Calculate the recommended battery bank size based on daily energy consumption. Accounts for days of autonomy (how many days without charging) and depth of discharge. Returns required capacity, number of batteries, and wiring configuration.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"dailyConsumptionWh": {
"description": "Daily energy consumption in watt-hours (from calculate_power_budget)",
"type": "number"
},
"daysOfAutonomy": {
"default": 2,
"description": "Days the system should run without any charging (default: 2)",
"type": "number"
},
"depthOfDischargePercent": {
"default": 80,
"description": "Usable percentage of battery capacity. LiFePO4: 80-90%, AGM: 50%, Gel: 50% (default: 80)",
"type": "number"
},
"singleBatteryAh": {
"description": "Capacity of a single battery in amp-hours (e.g. 100, 200)",
"type": "number"
},
"singleBatteryVoltage": {
"description": "Voltage of a single battery (e.g. 12.8 for LiFePO4, 12 for lead-acid)",
"type": "number"
},
"systemVoltage": {
"description": "Target system voltage in volts (e.g. 12, 24, 48)",
"type": "number"
}
},
"required": [
"dailyConsumptionWh",
"systemVoltage",
"singleBatteryAh",
"singleBatteryVoltage"
],
"type": "object"
},
"name": "calculate_battery_bank",
"outputSchema": null
},
{
"description": "Determine how to arrange batteries in series and/or parallel to achieve a target voltage and capacity. Returns the number of batteries needed, the wiring configuration (e.g. 2S3P), and step-by-step wiring instructions.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"singleBatteryAh": {
"description": "Capacity of one battery in amp-hours",
"type": "number"
},
"singleBatteryVoltage": {
"description": "Nominal voltage of one battery (e.g. 12.8 for LiFePO4, 12 for lead-acid, 3.2 for LiFePO4 cells)",
"type": "number"
},
"targetCapacityAh": {
"description": "Desired total capacity in amp-hours",
"type": "number"
},
"targetVoltage": {
"description": "Desired system voltage (e.g. 12, 24, 48)",
"type": "number"
}
},
"required": [
"targetVoltage",
"targetCapacityAh",
"singleBatteryVoltage",
"singleBatteryAh"
],
"type": "object"
},
"name": "calculate_battery_config",
"outputSchema": null
},
{
"description": "Estimate how long it takes to charge a battery bank from a given state of charge to a target level. Accounts for the bulk charging phase (constant current, up to ~80% SoC) and the slower absorption phase (tapering current, 80-100% SoC). Works for any charging source: solar, shore power, alternator.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"batteryCapacityAh": {
"description": "Total battery bank capacity in amp-hours",
"type": "number"
},
"batteryVoltage": {
"description": "Battery bank voltage (e.g. 12, 24, 48)",
"type": "number"
},
"chargeCurrentAmps": {
"description": "Maximum charge current in amps (if limited by the charger or battery BMS). If omitted, calculated from power and voltage.",
"type": "number"
},
"chargePowerWatts": {
"description": "Charger output power in watts",
"type": "number"
},
"currentStateOfChargePercent": {
"description": "Current state of charge in percent (e.g. 20 for 20%)",
"type": "number"
},
"targetStateOfChargePercent": {
"default": 100,
"description": "Target state of charge in percent (default: 100)",
"type": "number"
}
},
"required": [
"batteryCapacityAh",
"batteryVoltage",
"currentStateOfChargePercent",
"chargePowerWatts"
],
"type": "object"
},
"name": "calculate_charging_time",
"outputSchema": null
},
{
"description": "Calculate the recommended inverter size for running AC loads from a DC battery system. Accounts for continuous power, startup surge power (motors typically surge 2-3x), and includes a 25% headroom for the continuous rating. Returns the recommended inverter wattage and the DC current draw at system voltage.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"loads": {
"description": "List of AC loads that will run through the inverter",
"items": {
"additionalProperties": false,
"properties": {
"continuousWatts": {
"description": "Continuous power draw in watts",
"type": "number"
},
"name": {
"description": "Name of the AC load (e.g. \"Microwave\", \"Coffee Machine\")",
"type": "string"
},
"quantity": {
"default": 1,
"description": "Number of identical units (default: 1)",
"type": "number"
},
"surgeWatts": {
"description": "Startup surge power in watts (for motors, compressors). If omitted, assumed equal to continuous watts.",
"type": "number"
}
},
"required": [
"name",
"continuousWatts"
],
"type": "object"
},
"type": "array"
},
"systemVoltage": {
"description": "DC system voltage (e.g. 12, 24, 48)",
"type": "number"
}
},
"required": [
"systemVoltage",
"loads"
],
"type": "object"
},
"name": "calculate_inverter_size",
"outputSchema": null
},
{
"description": "Calculate total daily energy consumption from a list of electrical loads. Each load specifies its power draw, how many hours per day it runs, and quantity. Returns total daily energy (Wh and Ah), peak power draw, and average power. This is typically the first step in sizing a battery bank and solar system.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"loads": {
"description": "List of electrical loads to include in the budget",
"items": {
"additionalProperties": false,
"properties": {
"hoursPerDay": {
"description": "Average hours of use per day",
"type": "number"
},
"name": {
"description": "Name of the load (e.g. \"LED Lights\")",
"type": "string"
},
"powerWatts": {
"description": "Power consumption of a single unit in watts",
"type": "number"
},
"quantity": {
"default": 1,
"description": "Number of identical units (default: 1)",
"type": "number"
}
},
"required": [
"name",
"powerWatts",
"hoursPerDay"
],
"type": "object"
},
"type": "array"
},
"systemVoltage": {
"description": "System voltage in volts (e.g. 12, 24, 48)",
"type": "number"
}
},
"required": [
"systemVoltage",
"loads"
],
"type": "object"
},
"name": "calculate_power_budget",
"outputSchema": null
},
{
"description": "Calculate the required solar panel wattage to cover daily energy consumption. Accounts for peak sun hours at the location and system efficiency losses (MPPT conversion, wiring, temperature derating). Returns required wattage and common panel configurations.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"dailyConsumptionWh": {
"description": "Daily energy consumption in watt-hours (from calculate_power_budget)",
"type": "number"
},
"peakSunHours": {
"description": "Average daily peak sun hours for the location. Examples: Northern Europe winter 1-2h, summer 4-6h. Southern US 5-6h. Equatorial regions 5-7h.",
"type": "number"
},
"systemEfficiency": {
"default": 0.85,
"description": "Overall system efficiency factor (default: 0.85). Accounts for MPPT losses, wiring losses, temperature derating, and panel soiling.",
"type": "number"
}
},
"required": [
"dailyConsumptionWh",
"peakSunHours"
],
"type": "object"
},
"name": "calculate_solar_size",
"outputSchema": null
},
{
"description": "Calculate the recommended wire gauge / cable cross-section for a DC circuit. Considers both ampacity (current carrying capacity) and voltage drop to recommend the optimal cable size. Also returns total resistance, power loss, and a fuse recommendation. Supports copper conductors from 0.75 mm² (18 AWG) to 240 mm² (300 MCM).",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"cableLengthM": {
"description": "One-way cable length in meters",
"type": "number"
},
"current": {
"description": "Load current in amps. Provide either current or power.",
"type": "number"
},
"isRoundTrip": {
"default": true,
"description": "Account for both positive and negative conductor (default: true). Set to false for chassis-ground returns.",
"type": "boolean"
},
"maxVoltageDropPercent": {
"default": 3,
"description": "Maximum acceptable voltage drop in percent (default: 3%)",
"type": "number"
},
"power": {
"description": "Load power in watts. Will be converted to current using the voltage. Provide either current or power.",
"type": "number"
},
"temperatureCelsius": {
"default": 20,
"description": "Ambient temperature in °C (default: 20°C). Affects copper resistance.",
"type": "number"
},
"voltage": {
"description": "System voltage in volts (e.g. 12, 24, 48)",
"type": "number"
}
},
"required": [
"voltage",
"cableLengthM"
],
"type": "object"
},
"name": "calculate_wire_gauge",
"outputSchema": null
},
{
"description": "Generate an electrical wiring diagram for campers, boats, or off-grid setups. Returns a complete schematic with batteries, chargers, protection components, and loads. Protection components (shunt, main switch, low-voltage cutoff) are auto-generated when both batteries and loads are provided.",
"inputSchema": {
"$schema": "http://json-schema.org/draft-07/schema#",
"additionalProperties": false,
"properties": {
"batteries": {
"description": "Batteries in the system",
"items": {
"additionalProperties": false,
"properties": {
"capacityAh": {
"description": "Capacity in amp-hours",
"type": "number"
},
"energyWh": {
"description": "Energy in watt-hours",
"type": "number"
},
"name": {
"description": "Battery name (e.g. \"LiFePO4 100Ah\")",
"type": "string"
},
"voltage": {
"description": "Nominal voltage (e.g. 12)",
"type": "number"
}
},
"required": [
"name",
"voltage",
"capacityAh",
"energyWh"
],
"type": "object"
},
"type": "array"
},
"chargers": {
"description": "Chargers with their power sources",
"items": {
"additionalProperties": false,
"properties": {
"inputVoltage": {
"description": "Input voltage. For shore/generator (AC) chargers use the regional mains voltage: 230 V in Europe, UK, Australia, most of Asia and Africa; 120 V in North America and Japan. For solar/wind use the panel or turbine output voltage. For alternator use the vehicle system voltage (typically 14 V).",
"type": "number"
},
"name": {
"description": "Charger name (e.g. \"MPPT Solar Charger\")",
"type": "string"
},
"outputVoltage": {
"description": "Output voltage",
"type": "number"
},
"power": {
"description": "Power rating in watts",
"type": "number"
},
"sourceType": {
"description": "Type of power source feeding this charger",
"enum": [
"shore",
"solar",
"wind",
"generator",
"alternator"
],
"type": "string"
}
},
"required": [
"name",
"inputVoltage",
"outputVoltage",
"power"
],
"type": "object"
},
"type": "array"
},
"format": {
"default": "svg",
"description": "Output format: svg (recommended, renders inline) or png (base64-encoded image, may not display in all clients)",
"enum": [
"svg",
"png"
],
"type": "string"
},
"loads": {
"description": "Electrical loads / consumers",
"items": {
"additionalProperties": false,
"properties": {
"current": {
"description": "Current draw in amps",
"type": "number"
},
"name": {
"description": "Load name (e.g. \"LED Lights\")",
"type": "string"
},
"power": {
"description": "Power consumption in watts",
"type": "number"
},
"voltage": {
"description": "Operating voltage",
"type": "number"
}
},
"required": [
"name",
"power",
"voltage",
"current"
],
"type": "object"
},
"type": "array"
},
"systemName": {
"description": "Name of the electrical system (e.g. \"My Camper Van\")",
"type": "string"
}
},
"required": [
"systemName"
],
"type": "object"
},
"name": "generate_wiring_diagram",
"outputSchema": null
},
{
"description": "List all available component types and example configurations for building wiring diagrams. Use this to understand what parameters are needed before calling generate_wiring_diagram.",
"inputSchema": {
"properties": {},
"type": "object"
},
"name": "list_component_types",
"outputSchema": null
}
]
}Verify it yourself
curl -s https://api.teppi.xyz/v1/evidence/sha256:e89151b44a5644f0cb5bb4b891c2d3dbbfc5a0b757ff92ac37b194d73cc2eb17 | sha256sum