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MC100E196 Datasheet (PDF) - ON Semiconductor

MC100E196 Datasheet PDF - ON Semiconductor
Part # MC100E196
Download  MC100E196 Download

File Size   148.6 Kbytes
Page   7 Pages
Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor
Description PROGRAMMABLE DELAY CHIP

MC100E196 Datasheet (PDF)

Go To PDF Page Download Datasheet
MC100E196 Datasheet PDF - ON Semiconductor

Part # MC100E196
Download  MC100E196 Click to download

File Size   148.6 Kbytes
Page   7 Pages
Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor
Description PROGRAMMABLE DELAY CHIP

MC100E196 Datasheet (HTML) - ON Semiconductor

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MC100E196 Product details

Description
The MC10E/100E196 is a programmable delay chip (PDC) designed primarily for very accurate differential ECL input edge placement applications.
The delay section consists of a chain of gates and a linear ramp delay adjust organized as shown in the logic symbol. The first two delay elements feature gates that have been modified to have delays 1.25 and 1.5 times the basic gate delay of approximately 80 ps.
These two elements provide the E196 with a digitally-selectable resolution of approximately 20 ps. The required device delay is selected by the seven address inputs D[0:6], which are latched on chip by a high signal on the latch enable (LEN) control.
The FTUNE input takes an analog voltage and applies it to an internal linear ramp for reducing the 20 ps Least Significant Bit (LSB) minimum resolution still further. The FTUNE input is what differentiates the E196 from the E195.
An eighth latched input, D7, is provided for cascading multiple PDC’s for increased programmable range. The cascade logic allows full control of multiple PDC’s, at the expense of only a single added line to the data bus for each additional PDC, without the need for any external gating.
The VBB pin, an internally generated voltage supply, is available to this device only. For single-ended input conditions, the unused differential input is connected to VBB as a switching reference voltage.
VBB may also rebias AC coupled inputs. When used, decouple VBB and VCC via a 0.01 μF capacitor and limit current sourcing or sinking to 0.5 mA. When not used, VBB should be left open.
The 100 Series contains temperature compensation.

Features
• 2.0 ns Worst Case Delay Range
• ≈20 ps/Delay Step Resolution
• Linear Input for Tighter Resolution
• >1.0 GHz Bandwidth
• On Chip Cascade Circuitry
• PECL Mode Operating Range: VCC = 4.2 V to 5.7 V with VEE = 0 V
• NECL Mode Operating Range: VCC = 0 V with VEE = −4.2 V to −5.7 V
• Internal Input 50 kΩ Pulldown Resistors
• ESD Protection:
   Human Body Model; > 1 kV,
   Machine Model; > 75 V
• Meets or Exceeds JEDEC Spec EIA/JESD78 IC Latchup Test
• Moisture Sensitivity Level: Pb = 1; Pb−Free = 3
   For Additional Information, see Application Note AND8003/D
• Flammability Rating: UL 94 V−0 @ 1.125 in, Oxygen Index: 28 to 34
• Transistor Count = 425 devices
• Pb−Free Packages are Available*




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About ON Semiconductor


ON Semiconductor is a publicly traded company that designs, develops, and manufactures a wide range of semiconductor products for various applications, including automotive, computing, consumer, industrial, and communications markets.
The company was founded in 1999 and is headquartered in Phoenix, Arizona.
ON Semiconductor offers a broad portfolio of power management, analog, and discrete semiconductors, including power MOSFETs, diodes, rectifiers, and voltage regulators, among others.
The company's products are designed to be energy efficient, reliable, and cost-effective, and are used in a variety of applications, including portable electronics, industrial automation systems, renewable energy systems, and automotive electronics.
ON Semiconductor is dedicated to innovation and customer satisfaction, and is committed to providing its customers with the best semiconductor solutions to meet their needs.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.




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