可訂購部件
型號 | 可訂購的器件編號 | 訂購代碼(12NC) | 封裝 | 從經銷商處購買 |
---|---|---|---|---|
74HCT4060BQ-Q100 | 74HCT4060BQ-Q100,1 | 935298894115 | SOT763-1 | 訂單產品 |
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Click here for more information14-stage binary ripple counter with oscillator
The 74HC4060-Q100; 74HCT4060-Q100 is a 14-stage ripple-carry counter/divider and oscillator with three oscillator terminals (RS, RTC and CTC), ten buffered parallel outputs (Q3 to Q9 and Q11 to Q13) and an overriding asynchronous master reset (MR). The oscillator configuration allows design of either RC or crystal oscillator circuits. The oscillator may be replaced by an external clock signal at input RS. In this case, keep the oscillator pins (RTC and CTC) floating. The counter advances on the HIGH-to-LOW transition of RS. A HIGH level on MR clears all counter stages and forces all outputs LOW, independent of the other input conditions. Inputs include clamp diodes. This enables the use of current limiting resistors to interface inputs to voltages in excess of VCC.
This product has been qualified to the Automotive Electronics Council (AEC) standard Q100 (Grade 1) and is suitable for use in automotive applications.
Automotive product qualification in accordance with AEC-Q100 (Grade 1)
Specified from -40 °C to +85 °C and from -40 °C to +125 °C
Wide supply voltage range from 2.0 to 6.0 V
CMOS low power dissipation
High noise immunity
Latch-up performance exceeds 100 mA per JESD 78 Class II Level B
All active components on chip
RC or crystal oscillator configuration
Input levels:
For 74HC4060-Q100: CMOS level
For 74HCT4060-Q100: TTL level
Complies with JEDEC standards:
JESD8C (2.7 V to 3.6 V)
JESD7A (2.0 V to 6.0 V)
ESD protection:
HBM: ANSI/ESDA/JEDEC JS-001 class 2 exceeds 2000 V
CDM: ANSI/ESDA/JEDEC JS-002 class C3 exceeds 1000 V
Multiple package options
DHVQFN package with Side-Wettable Flanks enabling Automatic Optical Inspection (AOI) of solder joints
Control counters
Timers
Frequency dividers
Time-delay circuits
型號 | VCC (V) | Output drive capability (mA) | Logic switching levels | tpd (ns) | fmax (MHz) | Power dissipation considerations | Tamb (°C) | Package name |
---|---|---|---|---|---|---|---|---|
74HCT4060BQ-Q100 | 4.5?-?5.5 | ± 4 | TTL | 31 | 88 | low | -40~125 | DHVQFN16 |
Model Name | 描述 |
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型號 | 可訂購的器件編號,(訂購碼(12NC)) | 狀態(tài) | 標示 | 封裝 | 外形圖 | 回流焊/波峰焊 | 包裝 |
---|---|---|---|---|---|---|---|
74HCT4060BQ-Q100 | 74HCT4060BQ-Q100,1 (935298894115) |
Active | HT4060 |
DHVQFN16 (SOT763-1) |
SOT763-1 | SOT763-1_115 |
型號 | 可訂購的器件編號 | 化學成分 | RoHS | RHF指示符 |
---|---|---|---|---|
74HCT4060BQ-Q100 | 74HCT4060BQ-Q100,1 | 74HCT4060BQ-Q100 |
文件名稱 | 標題 | 類型 | 日期 |
---|---|---|---|
74HC_HCT4060_Q100 | 14-stage binary ripple counter with oscillator | Data sheet | 2024-03-27 |
AN11044 | Pin FMEA 74HC/74HCT family | Application note | 2019-01-09 |
SOT763-1 | 3D model for products with SOT763-1 package | Design support | 2019-10-03 |
Nexperia_package_poster | Nexperia package poster | Leaflet | 2020-05-15 |
DHVQFN16_SOT763-1_mk | plastic, dual in-line compatible thermal enhanced very thin quad flat package; 16 terminals; 0.5 mm pitch; 3.5 mm x 2.5 mm x 0.85 mm body | Marcom graphics | 2017-01-28 |
SOT763-1 | plastic, leadless dual in-line compatible thermal enhanced very thin quad flat package; 16 terminals; 0.5 mm pitch; 3.5 mm x 2.5 mm x 1 mm body | Package information | 2023-05-11 |
SOT763-1_115 | DHVQFN16; Reel pack, SMD, 7" Q1/T1 product orientation | Packing information | 2020-04-21 |
74HCT4060BQ-Q100_Nexperia_Product_Reliability | 74HCT4060BQ-Q100 Nexperia Product Reliability | Quality document | 2024-06-16 |
hc | HC/HCT Spice model | SPICE model | 2022-02-17 |
HCT_USER_GUIDE | HC/T User Guide | User manual | 1997-10-31 |
型號 | Orderable part number | Ordering code (12NC) | 狀態(tài) | 包裝 | Packing Quantity | 在線購買 |
---|---|---|---|---|---|---|
74HCT4060BQ-Q100 | 74HCT4060BQ-Q100,1 | 935298894115 | Active | SOT763-1_115 | 3,000 | 訂單產品 |
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The interactive datasheets are based on the Nexperia MOSFET precision electrothermal models. With our interactive datasheets you can simply specify your own conditions interactively. Start by changing the values of the conditions. You can do this by using the sliders in the condition fields. By dragging the sliders you will see how the MOSFET will perform at the new conditions set.