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8A/S6

Part # 8A/S6
Description Incandescent S Light Lamp
Category LAMP
Availability In Stock
Qty 2
Qty Price
1 + $2.43518
Manufacturer Available Qty
General Electric
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

Clock Generator Module (CGM)
I/O Signals
MC68HC908AZ60A — Rev 2.0 Technical Data
MOTOROLA Clock Generator Module (CGM) 181
Figure 10-3. CGM External Connections
10.5 I/O Signals
The following paragraphs describe the CGM input/output (I/O) signals.
10.5.1 Crystal Amplifier Input Pin (OSC1)
The OSC1 pin is an input to the crystal oscillator amplifier.
10.5.2 Crystal Amplifier Output Pin (OSC2)
The OSC2 pin is the output of the crystal oscillator inverting amplifier.
10.5.3 External Filter Capacitor Pin (CGMXFC)
The CGMXFC pin is required by the loop filter to filter out phase
corrections. A small external capacitor is connected to this pin.
NOTE: To prevent noise problems, C
F
should be placed as close to the
CGMXFC pin as possible with minimum routing distances and no routing
of other signals across the C
F
connection.
C
1
C
2
C
F
SIMOSCEN
CGMXCLK
R
B
X
1
R
S
*
C
BYP
*R
S
can be 0 (shorted) when used with higher-frequency crystals. Refer to manufacturer’s data.
OSC1
OSC2
V
SS
CGMXFC
V
DD
V
DDA
Clock Generator Module (CGM)
Technical Data MC68HC908AZ60A — Rev 2.0
182 Clock Generator Module (CGM) MOTOROLA
10.5.4 Analog Power Pin (V
DDA
)
V
DDA
is a power pin used by the analog portions of the PLL. Connect the
V
DDA
pin to the same voltage potential as the V
DD
pin.
NOTE: Route V
DDA
carefully for maximum noise immunity and place bypass
capacitors as close as possible to the package.
10.5.5 Oscillator Enable Signal (SIMOSCEN)
The SIMOSCEN signal enables the oscillator and PLL.
10.5.6 Crystal Output Frequency Signal (CGMXCLK)
CGMXCLK is the crystal oscillator output signal. It runs at the full speed
of the crystal (f
CGMXCLK
) and comes directly from the crystal oscillator
circuit. Figure 10-3 shows only the logical relation of CGMXCLK to
OSC1 and OSC2 and may not represent the actual circuitry. The duty
cycle of CGMXCLK is unknown and may depend on the crystal and other
external factors. Also, the frequency and amplitude of CGMXCLK can be
unstable at startup.
10.5.7 CGM Base Clock Output (CGMOUT)
CGMOUT is the clock output of the CGM. This signal is used to generate
the MCU clocks. CGMOUT is a 50% duty cycle clock running at twice the
bus frequency. CGMOUT is software programmable to be either the
oscillator output, CGMXCLK, divided by two or the VCO clock,
CGMVCLK, divided by two.
10.5.8 CGM CPU Interrupt (CGMINT)
CGMINT is the CPU interrupt signal generated by the PLL lock detector.
Clock Generator Module (CGM)
CGM Registers
MC68HC908AZ60A — Rev 2.0 Technical Data
MOTOROLA Clock Generator Module (CGM) 183
10.6 CGM Registers
Three registers control and monitor operation of the CGM:
PLL control register (PCTL)
PLL bandwidth control register (PBWC)
PLL programming register (PPG)
10.6.1 PLL Control Register
The PLL control register contains the interrupt enable and flag bits, the
on/off switch, and the base clock selector bit.
PLLIE — PLL Interrupt Enable Bit
This read/write bit enables the PLL to generate a CPU interrupt
request when the LOCK bit toggles, setting the PLL flag, PLLF. When
the AUTO bit in the PLL bandwidth control register (PBWC) is clear,
PLLIE cannot be written and reads as logic 0. Reset clears the PLLIE
bit.
1 = PLL CPU interrupt requests enabled
0 = PLL CPU interrupt requests disabled
Address: $001C
Bit 7654321Bit 0
Read:
PLLIE
PLLF
PLLON BCS
1111
Write:
Reset:00101111
= Unimplemented
Figure 10-4. PLL Control Register (PCTL)
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