Transaction 66d45b8a8603e419d368fe1c1e849d2a57d32434ace2621bb91034b96b5cfd4d

1 Input
  • 0deb321c8d3c7e0b0e689d086754d8ed910129d73b0492c4e482765f3b8e76e2:0
    OP_DATA_32(32) 4e3eb41ac19b23eebb47e371be8f65035cd23aef07d5acb42907b2d17682b067
    OP_CHECKSIG(172)
    OP_0(0)
    OP_IF(99)
    OP_DATA_3(3) ord
    OP_DATA_1(1) 
    OP_DATA_24(24) text/plain;charset=utf-8
    OP_0(0)
    OP_PUSHDATA2(77) {"p":"can-20","op":"mint","tick":"can","amt":"1000","rows":[{"df":"qa","content":[{"q":"What kind of three-layer architecture does TRON adopt?","a":"TRON adopts the following three-layer architecture:\\n\\n1. Data Access Layer (Data Access Layer, DAL): This layer is mainly responsible for interacting with the underlying blockchain network, acquiring and processing blockchain data. DAL implements functions such as query, analysis, and operation of blockchain data, providing convenient data access interfaces for the
    OP_PUSHDATA2(77) upper layer.\\n\\n2. Business Logic Layer (Business Logic Layer, BLL): This layer is mainly responsible for processing the business logic of the application, including execution of smart contracts, transaction validation, and consensus algorithms. The BLL layer implements logical processing of various business functions based on the data provided by the DAL layer.\\n\\n3. ..."}]}],"pr":"d42f2f3f8af85cdbc17bb5eb24d76f96df08d5707f88be300d11e64ccb3bc4e1"}
    OP_ENDIF(104)
1 Outputs
  • 66d45b8a8603e419d368fe1c1e849d2a57d32434ace2621bb91034b96b5cfd4d:0
  • value  546
    address  bc1p5ax92fsh7ruun8y9m52f8df6q8w2mhhl2ukcjz2cplyulpgpe6pqx6h9sh