
2004 California Micro Devices Corp. All rights reserved.
09/10/04
430 N. McCarthy Blvd., Milpitas, CA 95035-5112
●
Tel: 408.263.3214
●
Fax: 408.263.7846
●
www.calmicro.com
3
CM2010
PRELIMINARY
Specifications
Note 1: All parameters specified over standard operating conditions unless otherwise noted.
Note 2: These parameters apply only to the SYNC drivers.
Note 3: Per the IEC-61000-4-2 International ESD Standard, Level 4 contact discharge method. BYP, V
CC
must be bypassed to
GND via a low impedance ground plane with a 0.22
μ
F, low inductance, chip ceramic capacitor at each supply pin. ESD
pulse is applied between the applicable pins and GND. ESD pulses can be positive or negative with respect to GND. Appli-
cable pins are: VIDEO_1, VIDEO_2 and VIDEO_3. All other pins are ESD protected to the industry standard
±
2kV Human
Body Model (MIL-STD-883, Method 3015).
Note 4: This parameter is guaranteed by design and characterization.
Note 5: Rise and fall times measured between 0.5V and 2.4V.
ABSOLUTE MAXIMUM RATINGS
PARAMETER
V
CC_VIDEO
and
V
CC_SYNC
Supply Voltage Inputs
ESD Clamp Diode Forward DC Current (applies only to SYNC drivers)
DC Voltage at any channel Input
Operating Temperature Range
Storage Temperature Range
RATING
6.0
UNITS
V
8
mA
V
°C
°C
[GND - 0.5] to [V
CC
+ 0.5]
-40 to +85
-40 to +150
ELECTRICAL OPERATING CHARACTERISTICS
(SEE NOTE 1)
SYM-
BOL
I
CC
PARAMETER
CONDITIONS
MIN
TYP
MAX UNITS
V
CC
Supply Current
V
CC_SYNC
= 5V; SYNC inputs at GND or V
CC_SYNC
; SYNC
outputs unloaded
V
CC_SYNC
= 5V; SYNC inputs at 3.0V;
SYNC outputs unloaded
I
F
= 10mA
V
CC_SYNC
= 5.0V; Note 2
V
CC_SYNC
= 5.0V; Note 2
I
OH
= 8mA, V
CC_SYNC
= 3.0V; Note 2
I
OH
= 12mA, V
CC_SYNC
= 5.0V; Note 2
I
OH
= 24mA, V
CC_SYNC
= 5.0V; Note 2
I
OL
= 8mA, V
CC_SYNC
= 3.3V; Note 2
I
OL
= 12mA, V
CC_SYNC
= 5.0V; Note 2
I
OL
= 24mA, V
CC_SYNC
= 5.0V; Note 2
V
CC_SYNC
= 5.0V; SYNC Inputs at GND or 3.0V
50
μ
A
2.0
mA
V
F
V
IH
V
IL
V
OH
Diode Forward Voltage
1.0
V
Logic High Input Voltage
1.5
V
Logic Low Input Voltage
0.5
V
Logic High Output Voltage
2.0
V
2.0
V
2.0
V
V
OL
Logic Low Output Voltage
0.8
V
0.8
V
0.8
V
R
OUT
I
IN
SYNC Driver Output Resistance
15
Input Current
VIDEO Inputs
SYNC_IN1, SYNC_IN2 Inputs
V
CC_VIDEO
= 5.0V; V
IN
= V
CC_VIDEO
or GND; T
A
=25°C
V
CC_SYNC
= 5.0V; V
IN
= V
CC_SYNC
or GND; T
A
=25°C
V
CC_VIDEO
= 5.0V; V
IN
= 2.5V;
= 1MHz; Note 4
V
CC_VIDEO
= 2.5V; V
IN
= 1.25V;
= 1MHz; Note 4
C
L
= 10pF; V
CC
= 5.0V; Input t
R
and t
F
≤
5ns
C
L
= 10pF; V
CC
= 5.0V; Input t
R
and t
F
≤
5ns
C
L
= 10pF; V
CC
= 5.0V; Input t
R
and t
F
≤
5ns;
Notes 2, 4 & 5
V
CC_VIDEO
= V
CC_SYNC
= 5V; Notes 3, 4
Notes 3 and 4
±
1
±
1
4.0
μ
A
μ
A
pF
C
IN_VID
VIDEO Input Capacitance
4.5
pF
t
PLH
t
PHL
t
R,
t
F
SYNC Driver L => H Propagation Delay
12
ns
SYNC Driver H => L Propagation Delay
12
ns
SYNC Driver Output Rise & Fall Times
3
ns
V
ESD
V
CL
ESD Withstand Voltage
±
8
kV
Clamping Voltage during ESD Discharge
MIL-STD-883 (Method 3015), 8kV
Positive Transients
Negative Transients
+13
-13
V
V