Description
IceRiver AE1 Lite Description
IceRiver AE1 Lite is an ASIC miner running on the newly established zkSNARK algorithm, specifically targeting ALEO (Aleo). It delivers a maximum hash rate of 300Mh/s while consuming 500W of power, resulting in an energy efficiency of 1.67J/m.
This model is suitable for both home users and professional miners looking to mine zkSNARK-based cryptocurrencies with stable performance and low energy use.
Its compact design and efficient output make it a practical choice for those interested in Aleo mining and exploring new directions in crypto mining.
Technical Specifications
| Product Glance | Value |
|---|---|
| Model | AE1 LITE |
| Crypto algorithm/coins | zkSNARK|ALEO |
| Typical hashrate | 300.00 MH/s |
| Power on wall @35℃, Watt | 500W±10% |
| Detailed Characteristics | Value |
|---|---|
| Power Supply | |
| Input voltage, Volt | 100V-240V AC |
| Hardware Configuration | |
| Networking connection mode | Ethernet |
| Server size(length*width*height, w/o package), mm | 205×110×202 |
| Server size(length*width*height, with package), mm | 298*208*304 |
| Net weight, kg | 4.02 |
| Gross weight, kg | 4.69 |
| Noise@30℃, dBA | 60db |
| Environment Requirements | Value |
|---|---|
| Storage temperature, °C | -20~70 |
| Operation humidity(non-condensing), RH | 10~90% |
| Operation temperature,°C | -20~45 |
| Operation altitude, m | ≤2000 |
| What's in the Box | Value |
|---|---|
| Original factory mining machinery | ✓ |
| Power supply | ✓ |
| Shockproof packaging | ✓ |
Notes
(1) The hashrate value, power on wall, and power efficiency on wall are all typical values. The actual hashrate value fluctuates by ±3%, and the actual power on wall and power efficiency on wall fluctuate by ±5%.
(2) Caution: Wrong input voltage may cause server damaged.
(3) The noise is loudest when the fan is under maximum RPM(rotation per minute).
(4) When the server is used at an altitude from 900m to 2000m, the highest operating temperature decreases by 1℃ for every increase of 300m.







IceRiver AE1 LITE Description