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MXD1005 Datasheet(PDF) 2 Page - Maxim Integrated Products |
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MXD1005 Datasheet(HTML) 2 Page - Maxim Integrated Products |
2 / 8 page 5-Tap Silicon Delay Line 2 _______________________________________________________________________________________ ABSOLUTE MAXIMUM RATINGS ELECTRICAL CHARACTERISTICS (VCC = +5.0V ±5%, TA = -40°C to +85°C, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) TIMING CHARACTERISTICS (VCC = +5.0V ±5%, TA = +25°C, unless otherwise noted.) Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Note 1: Specifications to -40°C are guaranteed by design, not production tested. Note 2: All voltages referenced to GND. Note 3: Measured with outputs open. Note 4: ICC is a function of frequency and TAP5 delay. Only an MXD1005_ _60 operating with a 40ns period and VCC = +5.25V will have a maximum ICC of 70mA. For example, an MXD1005_ _100 will not exceed 30mA. See Supply Current vs. Input Frequency graph in Typical Operating Characteristics. Note 5: Guaranteed by design. Note 6: Pulse width and/or period specifications may be exceeded, but accuracy is application sensitive (i.e., layout, decoupling, etc.). Note 7: VCC = +5V at +25°C. Typical delays are accurate on both rising and falling edges within ±2ns or ±3%. Note 8: See Test Conditions section. Note 9: The combination of temperature variations from +25°C to 0°C or +25°C to +70°C and voltage variation from 5.0V to 4.75V or 5.0V to 5.25V may produce an additional typical input-to-tap delay shift of ±1.5ns or ±4%, whichever is greater. Note 10: All taps and outputs delays tend to vary unilaterally with temperature or supply variations. For example, if TAP1 slows down, all other taps will also slow down; TAP3 cannot be faster than TAP2. VCC to GND ..............................................................-0.5V to +6V All Other Pins..............................................-0.5V to (VCC + 0.5V) Short-Circuit Output Current (1sec) ....................................50mA Continuous Power Dissipation (TA = +70°C) 8-Pin Plastic DIP (derate 9.1mW/°C above +70°C) ......727mW 14-Pin Plastic DIP (derate 10.0mW/°C above +70°C) ..800mW 8-Pin SO (derate 5.9mW/°C above +70°C)..................471mW 16-Pin Narrow SO (derate 8.7mW/°C above +70°C) ....696mW 8-Pin µMAX (derate 4.1mW/°C above +70°C) .............330mW Operating Temperature Range ...........................-40°C to +85°C Storage Temperature Range .............................-65°C to +160°C Lead Temperature (soldering, 10sec) .............................+300°C (Note 2) (Note 2) (Note 2) TA = +25°C (Note 5) 0V ≤ VIN ≤ VCC VCC = 5.25V, period = minimum (Notes 3, 4) VCC = 4.75V, VOH = 4.0V VCC = 4.75V, VOL = 0.5V CONDITIONS V 0.8 VIL Input Voltage Low V 2.2 VIH V 4.75 5.00 5.25 VCC Supply Voltage Input Voltage High pF 5 10 CIN Input Capacitance µA -1 1 IL Input Leakage Current mA 17 70 ICC Active Current mA -1 IOH Output Current High mA 12 IOL Output Current Low UNITS MIN TYP MAX SYMBOL PARAMETER (Notes 7–10) (Notes 7–10) (Note 6) (Note 6) CONDITIONS ns See Part Number and Delay Times table tPHL Input-to-Tap Delay (trailing edge) ns See Part Number and Delay Times table tPLH ns 40% of TAP5 tPLH tWI Input Pulse Width Input-to-Tap Delay (leading edge) ms 100 tPU Power-Up Time ns 4(tWI) Period UNITS MIN TYP MAX SYMBOL PARAMETER |
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