MN3111H PANASONIC | Alldatasheet
Document overview
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- PDF pages: 11
Technical content
Features
Single 5 volt power supply
Applications
(TOP VIEW) OV EE C3+ GND C2– C3 – C2+ C1+ C1– V CC1 C4+ OV DD HD V EE V HH OSUB V L2 V L1 OV1 V M13 OV3 OV2 V M24 OV4 V H V DD V CC2 IV2 IV4 SENSE1 V OUT+ N.C. V IN+ CAP3 CAP2 CAP1 TEST ISUB CH1 IV1 IV3 CH2 SENSE2 V OUT– V IN – GND N.C. N.C. C4 –
MN3111H For Video Equipment Block Diagram V OUT– OV EE VL2 V EE ISUB IV1 GND CH1 IV3 CH2 SENSE2 V IN – GND C1– C1+ C2– C2+ C3 – C3+ C4 – C4+ 9V CC1 11OV DD V HH OSUB V L1 OV1 V M13 OV3 OV2 V M24 OV4 V H CAP2 CAP1 V OUT+ V IN+ V DD V CC2 IV2 IV4 HD SENSE1 CAP3 TEST13 Negative and positive boosting voltage generator Negative voltage monitor Positive voltage monitor Tristate driver Tristate driver
For Video Equipment MN3111H Pin Descriptions Pin No. Symbol Pin Name I/O Function Description 9V CC1 "H" level power supply I "H" level input for 5 volt circuits
23 V CC2 for input block
3 GND "L" level power supply I "L" level input for 5 volt circuits
H "H" level power supply I "H" level input for high-voltage circuits for vertical driver
35 V HH "H" level power supply I "H" level input for high-voltage circuits
30 V M13 "M" level power supply I "M" level input for high-voltage circuits
27 V M24 for vertical driver
32 V L1 "L" level power supply I "L" level input for high-voltage circuits
33 V L2 "L" level power supply I "L" level input for high-voltage circuits
24 V DD Driver power supply 1 I "H" level for high-voltage circuits
36 V EE Driver power supply 2 I "L" level for high-voltage circuits
17 V IN+ Voltage input for positive I Voltage input pin for positive voltage
44 V IN – Voltage input for negative I Voltage input pin for negative voltage
13 TEST Test input I Test pin (Keep this pin at "H" level.)
12 HD HD pulse input I HD pulse input pin
22 IV2 Transfer pulse input I Charge transfer pulse input pin
21 IV4 Transfer pulse input I Charge transfer pulse input pin
39 IV1 Transfer pulse input I Charge transfer pulse input pin
40 IV3 Transfer pulse input I Charge transfer pulse input pin
38 CH1 Charge pulse input I Charge readout pulse input pin
41 CH2 Charge pulse input I Charge readout pulse input pin
37 ISUB SUB pulse input I Unwanted charge rejection pulse input pin
20 SENSE1 Positive voltage monitor I Positive voltage monitor control sensing
sensing input pin (Leave this pin open.)
42 SENSE2 Negative voltage monitor I Negative voltage monitor control sensing
sensing input pin (Leave this pin open.)
7 C1+ C1 connection O Booster block voltage charging capacitor
8 C1– connection pins
6 C2+ C2 connection O Booster block voltage charging capacitor
4 C2– connection pins
2 C3+ C3 connection O Booster block voltage charging capacitor
5 C3 – connection pins
10 C4+ C4 connection O Booster block voltage charging capacitor
48 C4 – connection pins
MN3111H For Video Equipment Pin Descriptions (continued) Pin No. Symbol Pin Name I/O Function Description
11 OV DD Booster block positive O Booster block positive voltage
1O V EE Booster block negative O Booster block negative voltage voltage output output pin
19 V OUT+ Positive regulated voltage O Positive voltage monitor output pin
output (Leave this pin open.)
43 V OUT- Negative regulated voltage O Negative voltage monitor output pin
output (Leave this pin open.)
26 OV4 Binary transfer pulse O Binary (V M24 , VL1) transfer pulse
28 OV2 Binary transfer pulse O Binary (V M24 , VL1 ) transfer pulse
29 OV3 Tristate transfer pulse O Tristate (V H , VM13 , VL1) transfer pulse
31 OV1 Tristate transfer pulse O Tristate (V H , VM13 , VL1) transfer pulse
34 OSUB SUB pulse output O Unwanted charge (V HH , VL2 ) rejection
14 CAP1 Stabilizing capacitor O Pins for connecting capacitors for internal
15 CAP2 connection voltage stabilization circuits
16 CAP3
18 N.C. No connection —
For Video Equipment MN3111H Functional Description Binary transfer pulses (vertical driver block) IV2 OV2 IV4 OV4 HL LM Tristate transfer pulses (vertical driver block) CH1 IV1 OV1 CH2 IV3 OV3 H HL LM L HL LH *1 IV1, IV2, IV3, IV4, CH1, CH2 H: VCC L: GND OV1, OV2, OV3, OV4 H: VH M: V M13 , or VM24 L: VL1 Unwanted charge rejection pulses (SUB driver block) ISUB OSUB HL LH *1 ISUB H: VCC L: GND OSUB H: VHH L: VL2
MN3111H For Video Equipment
Electrical Characteristics
(1) DC characteristics V HH =V H =15.0V, VM13 =V M24 =1.0V, GND=0.0V, V CC1 =V CC2 =5.0V (=VCC ), VL1 =–7.0V, VL2 =–10.0V, Ta=+25˚C Parameter Symbol Test conditions min typ max Unit Quiescent supply current I DDST V I=GND, V CC 4 mA Operating supply current I DDDYN V I=GND, V CC 11 mA Power supply output pins OV DD , OVEE Positive voltage stabilization VREG+ V I=GND, V CC , IO =7mA 14.5 15.0 15.5 V circuit output voltage Negative voltage stabilization VREG- V I=GND, V CC , IO =–2mA –10.5 –10.0 –9.5 V circuit output voltage Input pins IV1, IV2, IV3, IV4, CH1, CH2, ISUB, HD "H" level voltage V IH 3.5 V CC V "L" level voltage V IL GND 1.5 V Input leak current I LI V I=0 to 5V ±1 µA Output pins 1 (Binary output)OV2, OV4 Output voltage "M" level V OM1 V I=GND, V CC , IOM1 =–1mA 0.9 V M24 V Output voltage "L" level V OL1 V I=GND, V CC , IOL1 =1mA V L1 –6.9 V Output on resistance "M" level RONM1 IOM1 =–50mA 40 Ω Output on resistance "L" level RONL1 IOL1 =50mA 40 Ω Output pins 2 (Tristate output)OV1, OV3 Output voltage "H" level V OH2 V I=GND, V CC , IOH2 = –1mA 14.9 V H V Output voltage "M" level V OM2 V I=GND, V CC , IOM2 =–1mA 0.9 V M13 V Output voltage "L" level V OL2 V I=GND, V CC , IOL2 =1mA V L1 –6.9 V Output on resistance "H" level RONH2 IOH2 =–50mA 50 Ω Output on resistance "M" level RONM2 IOM2 =±50mA 40 Ω Output on resistance "L" level RONL2 IOL2 =50mA 40 Ω Output pin 3 (SUB output) OSUB Output voltage "H" level V OHH3 V I=GND, V CC , IOHH3 =–1mA 14.9 V HH V Output voltage "L" level V OL3 V I=GND, V CC , IOL3 =1mA V L2 –9.9 V Output on resistance "H" level RONHH3 IONHH3 =–50mA 50 Ω Output on resistance "L" level RONL3 IONL3 =50mA 40 Ω
For Video Equipment MN3111H (2) AC characteristics V HH =V H =15.0V, VM13 =V M24 =1.0V, GND=0.0V, V CC1 =V CC2 =5.0V (=VCC ), VL1 =–7.0V, VL2 =–10.0V, Ta=+25˚C Parameter Symbol Test conditions min typ max Unit Output pins 1 (Binary output)OV2, OV4 Transmission delay t PLM No load 100 200 nstPML From "L" level to "M" level Rise time t TLM 200 300 nsFall time t TML Output pins 2 (Tristate output)OV1, OV3 Transmission delay t PLM No load 100 200 nstPML From "L" level to "M" level Transmission delay t PMH No load 200 400 nstPHM From "M" level to "H" level Rise time t TLM 200 300 nsFall time t TML Rise time t TMH 200 300 nsFall time t THM Output pin 3 (SUB output) OSUB Transmission delay t PLHH No load 100 200 nstPHHL From "L" level to "H" level Rise time t TLHH 200 300 nsFall time t THHL
MN3111H For Video Equipment Timing Chart 1. Binary transfer pulses 2. Binary transfer pulses 3. Tristate transfer pulses 4. Tristate transfer pulses 5. SUB pulses H L L M H M L L H H H L L M L H H H H H M L L L L L 63.5µs254µs 2µs IV2 OV2 IV4 OV4 IV1 CH1 IV3 ISUB CH2 OV1 OV3 OSUB 3µs 63.5µs
For Video Equipment MN3111H Application Circuit Example ISUB CH1 IV1 IV3 CH2 SENSE2 V OUT– V IN – GND NC NC C4 – OV EE C3+ GND C2– C3 – C2+ C1+ C1– V CC1 C4+ OV DD HD V EE V HH OSUB V L2 V L1 OV1 V M13 OV3 OV2 V M24 OV4 V H 24V DD V CC2 IV2 IV4 SENSE1 V OUT+ NC V IN+ CAP3 CAP2 CAP1 TEST C9 D9 C12 D15 C19 C20 D11 D12 D13 C17 D14 C18 < +15.0V > < –7.9V > < –7V > < –10.0V > C14 C16 to CCD’s source follower power supply for OD, RD, and IS pins to CCD’s øV pin to CCD’s PT pin C15 R5 R4C10 C11 5 volt input D10 C13 from clock generator Zener diode Schottky barrier diode Diode with VF=0.7V + + from clock generator MN3111H The booster circuit's electrolytic capacitors must have little impedance fluctuation at low temperatures. Note *1: These diodes must have a VF of 0.7 V. All other diodes, except the Zener diodes, must be Schottky barrier diodes (MA723).
MN3111H For Video Equipment Package Dimensions (Unit: mm) QFH048-P-0707 0.5 0.2±0.1 0.5±0.2 (0.75) (0.75) 1 12 1348 7.0±0.2 7.0±0.22.9 max. 2.5±0.20.1±0.1 9.0±0.2 9.0±0.2 36 25 SEATING PLANE 0 to 10° (1.0) 0.1 0.15 +0.10-0.05
For Video Equipment MN3111H Usage Notes External components 1. This product requires eight Schottky barrier diodes and two Zener diodes. We recommend the following components. Schottky barrier diodes: MA723 or equivalents Zener diodes: MA1150-M, MA8150-M (for positive regulated voltage) or equivalents MA1100-M, MA8100-M (for negative regulated voltage) or equivalents Ta=25˚C Component Model number Typical characteristics Notes Schottky barrier diodes MA723 I F =200mA, VF ≤ 0.55V MA1150-M IZ=5mA, 14.6V ≤ VZ ≤ 15.35V for positive Zener diodes MA8150-M regulated voltage MA1100-M IZ=5mA, 9.75V ≤ VZ ≤ 10.25V for negative MA8100-M regulated voltage The MN3111H will not operate properly if the components do not satisfy the above specifications. 2. Always use the specified components for peripheral circuits so as to ensure that OVEE and VL do not reverse potentials when the power is turned off. As the above sketch illustrates, allowing OVEE to exceed VL1 and VL2 by more than 0.7 V produces the risk of applying a forward bias to the PN junction, turning on the parasitic transistor, and generating an overcurrent that produces latch-up. If this phenomenon arises, increase the size of capacitor C7 or decrease the size of capacitor C13 to increase the OV EE time constant. (See the sample application circuit for the locations of C7 and C13.) Normal operation GND OFF V L1/VL2 OV EE Faulty operation 0.7V or higher Reversal GND OFF V L1/VL2 OV EE