是否Rohs认证: | 不符合 | 生命周期: | Obsolete |
零件包装代码: | TSSOP | 包装说明: | 4.40 MM, 0.65 MM PITCH, TSSOP-20 |
针数: | 20 | Reach Compliance Code: | not_compliant |
ECCN代码: | EAR99 | HTS代码: | 8542.39.00.01 |
Factory Lead Time: | 1 week | 风险等级: | 5.75 |
Is Samacsys: | N | 其他特性: | -3V TO -3.8V SUPPLY FOR DIFFERENTIAL LVECL OPERATION |
差分输出: | YES | 驱动器位数: | 5 |
输入特性: | STANDARD | 接口集成电路类型: | LINE DRIVER |
接口标准: | GENERAL PURPOSE | JESD-30 代码: | R-PDSO-G20 |
JESD-609代码: | e0 | 长度: | 6.5 mm |
湿度敏感等级: | 1 | 功能数量: | 1 |
端子数量: | 20 | 最高工作温度: | 85 °C |
最低工作温度: | -40 °C | 封装主体材料: | PLASTIC/EPOXY |
封装代码: | TSSOP | 封装形状: | RECTANGULAR |
封装形式: | SMALL OUTLINE, THIN PROFILE, SHRINK PITCH | 峰值回流温度(摄氏度): | 245 |
认证状态: | Not Qualified | 最大接收延迟: | |
座面最大高度: | 1.1 mm | 最大供电电压: | 3.8 V |
最小供电电压: | 3 V | 标称供电电压: | 3.3 V |
表面贴装: | YES | 技术: | BIPOLAR |
温度等级: | INDUSTRIAL | 端子面层: | Tin/Lead (Sn/Pb) |
端子形式: | GULL WING | 端子节距: | 0.65 mm |
端子位置: | DUAL | 处于峰值回流温度下的最长时间: | NOT SPECIFIED |
最大传输延迟: | 0.44 ns | 宽度: | 4.4 mm |
Base Number Matches: | 1 |
型号 | 品牌 | 获取价格 | 描述 | 数据表 |
MAX9316EUP+ | MAXIM |
获取价格 |
Line Driver, 1 Func, 5 Driver, BIPolar, PDSO20, 4.40 MM, 0.65 MM PITCH, TSSOP-20 | |
MAX9316EUP-T | MAXIM |
获取价格 |
暂无描述 | |
MAX9316EWP | MAXIM |
获取价格 |
FIVE DISTRIBUTED-OUTPUT CLOCK DRIVER|BIPOLAR|SOP|20PIN|PLASTIC | |
MAX9316EWP+T | MAXIM |
获取价格 |
Line Driver, 1 Func, 5 Driver, BIPolar, PDSO20, 0.300 INCH, MS-013AC, SOIC-20 | |
MAX9317 | MAXIM |
获取价格 |
Dual 1:5 Differential Clock Drivers with LVPECL Inputs and LVDS Outputs | |
MAX9317A | MAXIM |
获取价格 |
Dual 1:5 Differential Clock Drivers with LVPECL Inputs and LVDS Outputs | |
MAX9317AECJ | MAXIM |
获取价格 |
Dual 1:5 Differential Clock Drivers with LVPECL Inputs and LVDS Outputs | |
MAX9317AECJ+T | MAXIM |
获取价格 |
Clock Driver, 5 True Output(s), 0 Inverted Output(s), Bipolar, PQFP32, 7 X 7 MM, 1.40 MM H | |
MAX9317AECJ-T | MAXIM |
获取价格 |
Low Skew Clock Driver, 5 True Output(s), 0 Inverted Output(s), Bipolar, PQFP32, 7 X 7 MM, | |
MAX9317AETJ | MAXIM |
获取价格 |
Dual 1:5 Differential Clock Drivers with LVPECL Inputs and LVDS Outputs |