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PEM010 데이터시트(PDF) 9 Page - Pasternack Enterprises, Inc.

부품명 PEM010
상세설명  60 GHz Transmitter (Tx) Waveguide Module
PDF  18 Pages
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제조업체  PASTERNACK [Pasternack Enterprises, Inc.]
홈페이지  http://www.pasternack.com/
Logo PASTERNACK - Pasternack Enterprises, Inc.

PEM010 데이터시트(HTML) 9 Page - Pasternack Enterprises, Inc.

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TECHNICAL DATA SHEET
PEM010
60 GHz Transmitter (Tx) Waveguide Module
Click the following link (or enter part number in “SEARCH” on website) to obtain additional part information including price,
inventory and certifications: 60 GHz Transmitter (Tx) Waveguide Module PEM010
9
Digital Control Registers and Serial Interface Protocol - Write Operation
The PEM010 is configured via the serial control port which transfers data synchronously to or from (write or read operation)
a register location. Register locations are organized into 16, byte-wide (8-bit) locations. The register locations are written to
or read from one byte at a time as shown in Figures 5 and 6 respectively. Figure 5 shows the sequence of the digital control
signals for the ENABLE, CLOCK and DATA input pins (ST4 connector, pins 39, 36 and 38 respectively) to write a single byte
into the control register. After the ENABLE signal goes low, the first of 18 data bits (bit 0) is placed on the data pin, and 2
ns or more after the DATA signal stabilizes, the CLOCK signal goes high which clocks in data bit 0. The DATA signal must
remain stable for at least 2 ns after the rising edge of the CLOCK. The signal levels are 1.5V CMOS, 50 kΩ impedance, with
a maximum clock rate of 100 MHz.
A write operation requires an 18 bit field associated with 18 clock pulses as shown in Figure 5. The 18 bit field contains the
8-bit data (LSB is clocked in first), followed by the byte address (BYTE 0 through BYTE 15, 000000 to 001111, LSB first,
only 4 of the 6 bits are used with the two MSBs set to 0), the read/write (R/W) bit (write = 1), and the module address which
distinguishes between a transmitter module and receiver module (for the V60RXWG3 receiver, RX module = 111).
After clock pulse 17 (18 total pulses), the ENABLE signal is returned to a high state to load the register byte into the module.
The CLOCK signal must be stable in the low state at least 2 ns prior to the rising edge of the ENABLE signal.
ENABLE
CLOCK
0 1 2
17
DATA
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17
Data
Byte Address
R/W TX/RX Module
Figure 5 Write Operation Timing Diagram



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