Electrical Characteristics: (TA = +25°C, VCC = V16 = 12V, ICC = I22 = 10mA unless otherwise
specified)
Parameter
Symbol
Test Conditions
Min Typ Max Unit
Circuit Current
Deflection Block
I16 Quiescent
40 53 75 mA
Horizontal Supply Voltage
Sync Separation Input DC Level
Vertical Free–Running Frequency
Vertical Blanking Pulse Width
Vertical Output Pulse Width
Vertical Drive Stage Voltage Gain
Vertical Output Pulse Start Voltage
Vertical Pull–In Start Voltage
Vertical Blanking Pulse Peak Value
VZ22
VS.S
fV1
fV2
PW V.blk
PW V.out
GV
Vcds
Vvps
VV.blk
8.2 8.7 9.2 V
9.0 9.3 9.6 V
fH/296.5
Hz
fH/224.5
Hz
19.25/fH
sec
10.25/fH
sec
13.0 16.2 19.0 dB
– – 4.0 V
– – 4.0 V
– 10 –
V
Horizontal Free–Running Frequency
fH Diff bet. 15.734kHz and hor. output freq. –70 30 130 Hz
Horizontal OSC Frequency Change
with Line Frequency
∆fH (V) fH (8V) – fH (7V)
–10 0 +10 Hz
Horizontal OSC Frequency Change
with Ambient Temperature
∆fH/∆T TA = –10° to +60°C
–1.5 – +1.5 Hz/°C
Horizontal Output Pulse Width
PW H.out
23.5 24.5 25.5 µs
Horizontal Sync Pull–In Range
Horizontal Output Pulse Start Voltage
Horizontal Free–Running Frequency
Secular Drift
fH pull
VH pos
∆fHT
Deviation from 15.734kHz
5 sec to 30 min after power ON
±400 – – Hz
– – 5.5 V
–50 –10 +30 Hz
Horizontal Blanking Threshold Level
Horizontal Output Drive Current
Horizontal OSC Control Sensitivity
Hold–Down Start Input Voltage
Video Block
VH blk
IH.O
BfH
VHD
Reference Value
11 – –
V
2.0 – 4.5 mA
– 236 – Hz/µs
0.55 0.65 0.75 V
Video Tone Voltage Gain
G tone f = 2MHz, video tone VR: 12V
7.0 9.6 12.0 dB
Video Voltage Gain
Contrast Control Center
Contrast Variable Range
Bright Control Characteristic
AV
eo
∆eo
BR1
f = 100kHz, video tone VR: 12V
f = 100kHz, input: 100mVP–P
f = 100kHz
Quiescent, bright VR: 3V
12 15 18 dB
0.2 0.3 0.4 VP–P
16 18 20 dB
8––
V
BR2 Quiescent, bright VR: 6V
5.8 6.3 6.8 V
BR3 Quiescent, bright VR: 9V
– – 4.5 V
Frequency Characteristic
f
– 10 – MHz
DC Transmission
RDC Stair step signal
– 100 –
%