Parameters |
Mounting Type |
Through Hole |
Package / Case |
16-CDIP (0.300, 7.62mm) |
Surface Mount |
NO |
Operating Temperature |
0°C~75°C TA |
Packaging |
Tube |
Series |
10H |
JESD-609 Code |
e0 |
Pbfree Code |
no |
Part Status |
Obsolete |
Moisture Sensitivity Level (MSL) |
3 (168 Hours) |
Number of Terminations |
16 |
Type |
D-Type |
Terminal Finish |
TIN LEAD |
Technology |
ECL |
Voltage - Supply |
-4.9V~-5.46V |
Terminal Position |
DUAL |
Peak Reflow Temperature (Cel) |
235 |
Terminal Pitch |
2.54mm |
Reach Compliance Code |
unknown |
Time@Peak Reflow Temperature-Max (s) |
NOT SPECIFIED |
Function |
Reset |
Qualification Status |
COMMERCIAL |
Output Type |
Non-Inverted |
Number of Elements |
1 |
Clock Frequency |
250MHz |
Family |
10H |
Current - Quiescent (Iq) |
110mA |
Output Characteristics |
OPEN-EMITTER |
Output Polarity |
TRUE |
Number of Bits per Element |
6 |
Trigger Type |
Positive Edge |
Propagation Delay (tpd) |
3 ns |
fmax-Min |
250 MHz |
Height Seated (Max) |
5.08mm |
RoHS Status |
Non-RoHS Compliant |
MC10H186L Overview
The item is packaged in 16-CDIP (0.300, 7.62mm)cases. It is contained within the Tubepackage. Non-Invertedis the output configured for it. It is configured with a trigger that uses a value of Positive Edge. Through Holeis in the way of this electric part. A -4.9V~-5.46Vsupply voltage is required for it to operate. In this case, the operating temperature is 0°C~75°C TA. Logic flip flops of this type are classified as D-Type. In terms of FPGAs, it belongs to the 10H series. A frequency of 250MHzshould not be exceeded by its output. A total of 1 elements are present. It consumes 110mA of quiescent A total of 16terminations have been recorded. The electronic device belongs to the 10Hfamily.
MC10H186L Features
Tube package
10H series
MC10H186L Applications
There are a lot of Rochester Electronics, LLC MC10H186L Flip Flops applications.
- ESCC
- Matched Rise and Fall
- Shift Registers
- Bus hold
- Patented noise
- Pattern generators
- Latch-up performance
- Safety Clamp
- Digital electronics systems
- Differential Individual