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ML12202-5P ๋ฐ์ดํ„ฐ์‹œํŠธ(HTML) 1 Page - LANSDALE Semiconductor Inc.

๋ถ€ํ’ˆ๋ช… ML12202-5P
์ƒ์„ธ๋‚ด์šฉ  MECL PLL Components Serial Input PLL Frequency Synthesizer
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์ œ์กฐ์‚ฌ  LANSDALE [LANSDALE Semiconductor Inc.]
ํ™ˆํŽ˜์ด์ง€  http://www.lansdale.com
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Issue A
ML12202
MECL PLL Components Serial
Input PLL Frequency Synthesizer
Legacy Device: Motorola MC12202
The ML12202 is a 1.1 GHz Bipolar monolithic serial input
phase locked loop (PLL) synthesizer with pulseโ€“swallow func-
tion. It is designed to provide the high frequency local oscillator
signal of an RF transceiver in handheld communication applica-
tions.
The technology is utilized allows for low power operation at a
minimum supply voltage of 2.7 V. The device is designed for
operation over 2.7 to 5.5 V supply range for input frequencies up
to 1.1 GHz with a typical current drain of 6.5 mA. The low
power consumption makes the ML12202 ideal for handheld bat-
tery operated applications such as cellular or cordless tele-
phones, wireless LAN or personal communication services. A
dual modulus prescaler is integrated to provide either a 64/65 or
128/129 divide ratio.
โ€ข Low Power Supply Current of 5.8 mA Typical for ICC and
0.7 mA Typical for IP
โ€ข Supply Voltage of 2.7 to 5.5 V
โ€ข Dual Modulus Prescaler With Selectable Divide Ratios of
64/65 or128/129
โ€ข Onโ€“Chip Reference Oscillator/Buffer
โ€ข Programmable Reference Divider Consisting of a Binary
14โ€“Bit Programmable Reference Counter
โ€ข Programmable Divider Consisting of a Binary 7โ€“Bit
Swallow Counter and an 11โ€“Bit Programmable Counter
โ€ข Phase/Frequency Detector With Phase Conversion Function
โ€ข Balanced Charge Pump Outputs
โ€ข Dual Internal Charge Pumps for Bypassing the First Stage of
the Loop Filter to Decrease Lock Time
โ€ข Outputs for External Charge Pump
โ€ข Operating Temperature Range of TA = โ€“40 to 85ยฐC
NOTE: Also available is the ML12210, a 2.5 GHz version of
this function.
Note: Lansdale lead free (Pb) product, as it
becomes available, will be identified by a part
number prefix change from ML to MLE.


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