Dataset Viewer
id
stringclasses 7
values | name
stringclasses 7
values | circuit_type
stringclasses 7
values | category
stringclasses 3
values | difficulty
class label 3
classes | description
stringclasses 7
values | specifications
stringclasses 7
values | constraints
stringclasses 7
values | scoring_weights
stringclasses 7
values | reference_solution
stringclasses 4
values |
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analog_001
|
RC Low-Pass Filter 1kHz
|
rc_filter
|
analog
| 0easy
|
Design an RC low-pass filter with 1kHz cutoff frequency
|
{"cutoff_frequency": 1000, "input_impedance_min": 10000, "attenuation_at_10khz": -20, "phase_at_cutoff": -45}
|
{"max_components": 2, "resistor_range": [100, 1000000], "capacitor_range": [1e-12, 1e-06]}
|
{"cutoff_accuracy": 0.4, "impedance": 0.2, "attenuation": 0.2, "phase": 0.2}
|
{"R": 15915, "C": 1e-08}
|
analog_002
|
Operational Amplifier Non-Inverting 20dB
|
op_amp
|
analog
| 1medium
|
Design a non-inverting op-amp with 20dB gain
|
{"voltage_gain": 10, "bandwidth": 100000, "input_impedance_min": 1000000, "output_impedance_max": 100, "slew_rate_min": 500000.0}
|
{"op_amp_model": "LM741", "resistor_range": [100, 1000000], "supply_voltage": [12, -12]}
|
{"gain_accuracy": 0.35, "bandwidth": 0.25, "impedances": 0.2, "slew_rate": 0.2}
|
{"R_feedback": 90000, "R_ground": 10000}
|
analog_003
|
Precision Voltage Reference 2.5V
|
voltage_reference
|
analog
| 2hard
|
Design a precision 2.5V voltage reference
|
{"output_voltage": 2.5, "tolerance": 0.01, "temperature_coefficient": 50, "load_regulation": 0.001, "line_regulation": 0.001}
|
{"input_voltage_range": [5, 15], "load_current_range": [0, 0.01], "temperature_range": [-40, 85]}
|
{"voltage_accuracy": 0.3, "temperature_stability": 0.25, "load_regulation": 0.25, "line_regulation": 0.2}
|
{}
|
digital_001
|
4-bit Binary Counter
|
counter
|
digital
| 1medium
|
Design a 4-bit synchronous binary counter
|
{"bit_width": 4, "max_frequency": 100000000.0, "propagation_delay": 1e-08, "power_consumption_max": 0.1}
|
{"logic_family": "CMOS", "supply_voltage": 3.3, "fan_out": 10}
|
{"functionality": 0.4, "speed": 0.3, "power": 0.3}
|
{}
|
digital_002
|
8-to-1 Multiplexer
|
multiplexer
|
digital
| 0easy
|
Design an 8-to-1 digital multiplexer
|
{"inputs": 8, "select_lines": 3, "propagation_delay_max": 2e-08, "output_drive_current": 0.004}
|
{"gate_types": ["AND", "OR", "NOT"], "max_gate_count": 30}
|
{"functionality": 0.5, "delay": 0.25, "gate_count": 0.25}
|
{}
|
power_001
|
Buck Converter 12V to 5V @ 2A
|
buck_converter
|
power
| 1medium
|
Design a buck converter for 12V to 5V conversion at 2A
|
{"input_voltage": 12, "output_voltage": 5, "output_current": 2, "efficiency_min": 85, "ripple_voltage_max": 0.05, "switching_frequency": 100000}
|
{"inductor_range": [1e-05, 0.001], "capacitor_range": [0.0001, 0.01], "mosfet_rds_on_max": 0.05}
|
{"efficiency": 0.35, "ripple": 0.25, "regulation": 0.2, "transient_response": 0.2}
|
{"L": 4.7e-05, "C": 0.00047, "switching_frequency": 100000}
|
power_002
|
Linear Voltage Regulator 3.3V
|
ldo
|
power
| 0easy
|
Design a 3.3V linear voltage regulator
|
{"output_voltage": 3.3, "dropout_voltage_max": 0.5, "load_current_max": 0.5, "line_regulation": 0.01, "load_regulation": 0.02}
|
{"input_voltage_range": [4, 12], "quiescent_current_max": 0.01}
|
{"voltage_accuracy": 0.3, "dropout": 0.25, "regulation": 0.25, "efficiency": 0.2}
|
{}
|
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