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 HCC/HCF4035B
4-STAGE PARALLEL IN/PARALLEL OUT SHIFT REGISTER
.4.SYNCHRONOUSPARALLELENTRYONALL4 .JKI .ASYNCHRONOUSTRUE/ .STATI .BUFFEREDI .HI .QUI .STANDARDI .5V,10V,AND15VPARAMETRI .I .100%TESTEDFORQUI .MEETSALLREQUI
STAGE CLOCKED SHIFT OPERATION
STAGES NPUTS ON FIRST STAGE COMPLEMENT CONTROL ON ALL OUTPUTS C FLIP-FLOP OPERATION ; MASTERSLAVE CONFIGURATION NPUTS AND OUTPUTS GH SPEED 12MHz (typ.) AT VDD = 10V ESCENT CURRENT SPECIFIED TO 20V FOR HCC DEVICE ZED SYMMETRICAL OUTPUT CHARACTERISTICS C RATINGS NPUT CURR 100nA AT 18V AND 25C FOR HCC DEVICE ESCENT CURRENT REMENTS OF JEDEC TENTATIVE STANDARD N. 13A, "STANDARD SPECIFICATIONS FOR DESCRIPTION OF "B" SERIES CMOS DEVICES"
Whith JK inputs connected together, the first stage becomes a D flip-flop. An asynchronous common RESET is also provided.
EY (Plastic Package)
F (Ceramic Frit Seal Package)
M1 (Micro Package)
C1 (Plastic Chip Carrier)
ORDER CODES : HCC4035BF HCF4035BM1 HCF4035BEY HCF4035BC1
DESCRIPTION The HCC4035B (extended temperature range) and HCF4035B (intermediate temperature range) are monolithic integrated circuit, available in 16-lead dual in-line plastic or ceramic package and plastic micro package. The HCC/HCF4035B is a fourstage clocked signal serial register with provision for synchronous PARALLEL inputs to each stage and SERIAL inputs to the first stage via JK logic. Register stages 2, 3, and 4 are coupled in a serial D flipflop configuration when the register is in the serial mode (PARALLEL/SERIAL control low). Parallel entry into each register stage is permitted when the PARALLEL/SERIAL control is high. In the parallel or serial mode information is transferred on positive clock transitions. When the TRUE/COMPLEMENT control is high, the true contents of the register are available at the output terminals. When the TRUE/COMPLEMENT control is low, the outputs are the complements of the data in the register. The TRUE/COMPLEMENT control functions asynchronously with respect to the CLOCK signal. JK input logic is provided on the first stage SERIAL input to minimize logic requirements particularly in counting and sequence-generation applications.
July 1989
PIN CONNECTIONS
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HCC/HCF4035B
FUNCTIONAL DIAGRAM
ABSOLUTE MAXIMUM RATINGS
Symbol V DD* Vi II Pt ot Parameter Supply Voltage : HC C Types H C F Types Input Voltage DC Input Current (any one input) Total Power Dissipation (per package) Dissipation per Output Transistor for T o p = Full Package-temperature Range Operating Temperature : HCC Types H CF Types Storage Temperature Value - 0.5 to + 20 - 0.5 to + 18 - 0.5 to V DD + 0.5 10 200 100 - 55 to + 125 - 40 to + 85 - 65 to + 150 Unit V V V mA mW mW C C C
Top Tstg
Stresses above those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for external periods may affect device reliability. * All voltage values are referred to VSS pin voltage.
RECOMMENDED OPERATING CONDITIONS
Symbol VDD VI Top Parameter Supply Voltage: HCC Types HCF Types Input Voltage Operating Temperature: HCC Types HCF Types Value 3 to 18 3 to 15 0 to VDD -55 to +125 -40 to +85 Unit V V V C o C
o
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HCC/HCF4035B
LOGIC DIAGRAM
TRUTH TABLE FIRST STAGE
Clock (o ) __ __/ __ __/ __ __/ __ __/ __ __/ __ \__ X t n - 1 (inputs) J O I X I X X X K X X O O I X X R O O O O O O I Qn -1 O O I Q n -1 I Q n -1 X ____ Qn-1 I Qn -1 O t n (outputs) Qn O I O Toggle Mode
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HCC/HCF4035B
STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions)
Test Conditions Symbol Parameter VI (V) 0/ 5 HCC Types 0/15 0/20 0/ 5 HCF 0/10 Types 0/15 V OH Output High Voltage 0/ 5 0/10 0/15 V OL Output Low Voltage 5/0 10/0 15/0 V IH Input High Voltage 0.5/4.5 1/9 4.5/0.5 9/1 0/ 5 HCC Types 0/10 0/15 0/ 5 0/ 5 HCF Types 0/10 0/15 IOL Output Sink Current 0/ 5 HCC 0/10 Types 0/15 0/ 5 HCF 0/10 Types 0/15 I IH, I IL Input leakage Curent HCC 0/18 Types HCF 0/15 Types Any Input 0/ 5 2.5 4.6 9.5 13.5 2.5 4.6 9.5 13.5 0.4 0.5 1.5 0.4 0.5 1.5 <1 <1 <1 <1 <1 <1 <1 <1 <1 <1 0/10 VO (V) Value Unit |I O | V D D T L o w* 25 C T Hi g h * (A) (V) Min. Max. Min. Typ. Max. Min. Max. 5 10 15 20 5 10 15 5 10 15 5 10 15 5 10 15 5 10 15 5 5 10 15 5 5 10 15 5 10 15 5 10 15 18 Any Input 15 0.3 10- 5 0.3 5 7.5 1 pF -2 - 0.64 - 1.6 - 4.2 - 1.53 - 0.52 - 1.3 - 3.6 0.64 1.6 4.2 0.52 1.3 3.6 0.1 3.5 7 11 1.5 3 4 - 1.6 - 3.2 - 0.51 - 1 - 1.3 - 2.6 - 3.4 - 6.8 - 1.36 - 3.2 - 0.44 - 1 - 1.1 - 2.6 - 3.0 - 6.8 0.51 1.3 3.4 0.44 1.1 3.0 1 2.6 6.8 1 2.6 6.8 10- 5 0.1 4.95 9.95 14.95 0.05 0.05 0.05 3.5 7 11 1.5 3 4 - 1.15 - 0.36 - 0.9 - 2.4 - 1.1 - 0.36 - 0.9 - 2.4 0.36 0.9 2.4 0.36 0.9 2.4 1 A mA mA 5 10 20 100 20 40 80 4.95 9.95 14.95 0.05 0.05 0.05 3.5 7 11 1.5 3 4 V V 0.04 0.04 0.04 0.08 0.04 0.04 0.4 5 10 20 100 20 40 80 4.95 9.95 14.95 0.05 0.05 0.05 V V 150 300 600 3000 150 300 600 A
IL
Quiescent Current
1.5/13.5 < 1 V IL Input Low Voltage
13.5/1.5 < 1 I OH Output Drive Current
CI
Input Capacitance
* TLow = - 55C for HCC device : - 40C for HCF device. * THigh = + 125C for HCC device : + 85C for HCF device. The Noise Margin for both "1" and "0" level is : 1V min. with VDD = 5 V, 2V min. with VDD = 10V, 2.5V min. with VDD = 15V.
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HCC/HCF4035B
DYNAMIC ELECTRICAL CHARACTERISTICS (T amb = 25C, C L = 50pF, R L = 200k, typical temperature coefficient for all V DD = 0.3%/C, all input rise and fall time = 20ns)
Symbol Parameter Test Conditions V D D (V) Min. 5 10 15 t T HL , t TL H Transition Time 5 10 15 f CL Maximum Clock Input Frequency 5 10 15 tW Clock Pulse Width 5 10 15 t r, t f Clock Input Rise or Fall Time 5 10 15 tsetup Data Setup Time J/K Lines 5 10 15 tsetup Data Setup Time Parallel-In-Lines 5 10 15 RESET OPERATION t PL H, t PHL Propagation Delay Time 5 10 15 tW Reset Pulse Width 5 10 15 230 100 80 125 55 40 460 200 160 250 110 40 ns ns 2 6 8 Value Typ. 250 100 75 100 50 40 4 12 16 100 45 30 15 15 15 110 40 30 70 25 20 220 80 60 140 50 40 ns ns s 200 90 60 ns MHz Max. 500 200 150 200 100 80 ns ns Unit
CLOCKED OPERATION t PL H, t PHL Propagation Delay Time
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HCC/HCF4035B
Typical Output Low (sink) Current Characteristics. Minimum Output Low (sink) Current Characteristics.
Typical Output High (source) Current Characteristics.
Minimum Output High (source) Current Characteristics.
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HCC/HCF4035B
TYPICAL APPLICATIONS BINARY-TO-BCD CONVERTER
EXAMPLE OF BINARY-TO-BCD CONVERSION
Units Register 1 MSB LSB 2 4 8 1 Tens Register 2 4 8
58 = 0 Shift Shift
1
0
1
1
1
0 Shift
1 0
0 1 0
1 0 1 0
1 1 1 0 1 1 0
1 1 1 0 0 1 0 8 1 1 0 0 0 1 1 1 0 1 1 0 5 1 0
Add * 3 to Unit Decade & Shift Shift Add * 3 Units Decade & Shift
* From Left to Right
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HCC/HCF4035B
TYPICAL APPLICATIONS BIDEC LOGIC
DOUBLE SEQUENCE GENERATOR
STATE SEQUENCES Using a control line (E) two different state sequences can be generated. For example, suppose the following two sequences are desired on command (control line E).
Control = E = 0 Q1 A 0 1 0 1 0 0 1 1 0 1 1 1 0 0 0 Q2 B 0 0 1 0 1 0 0 1 1 0 1 1 1 0 0 Q3 C 0 0 0 1 0 1 0 0 1 1 0 1 1 1 0 Q4 D 0 0 0 0 1 0 1 0 0 1 1 0 1 1 1 Q1 A 1 0 1 0 1 1 0 0 1 0 0 0 1 1 1 1 Q2 B 1 0 0 1 0 1 1 0 0 1 0 0 0 1 1 Q3 C 1 1 1 0 1 0 1 1 0 0 1 0 0 0 1 Q4 D 1 1 1 1 0 1 0 1 1 0 0 1 0 0 0
0 1 2 5 10 4 9 3 6 13 11 7 14 12 8
15 14 13 10 5 11 6 12 9 2 4 8 1 3 7
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HCC/HCF4035B
TYPICAL APPLICATIONS SHIFT LEFT/SHIFT RIGHT REGISTER
TEST CIRCUITS Quiescent Device Current. Input Voltage.
Input Current.
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HCC/HCF4035B
Plastic DIP16 (0.25) MECHANICAL DATA
mm MIN. a1 B b b1 D E e e3 F I L Z 3.3 1.27 8.5 2.54 17.78 7.1 5.1 0.130 0.050 0.51 0.77 0.5 0.25 20 0.335 0.100 0.700 0.280 0.201 1.65 TYP. MAX. MIN. 0.020 0.030 0.020 0.010 0.787 0.065 inch TYP. MAX.
DIM.
P001C
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HCC/HCF4035B
Ceramic DIP16/1 MECHANICAL DATA
mm MIN. A B D E e3 F G H L M N P Q 7.8 2.29 0.4 1.17 0.22 0.51 0.38 17.78 2.79 0.55 1.52 0.31 1.27 10.3 8.05 5.08 0.307 0.090 0.016 0.046 0.009 0.020 3.3 0.015 0.700 0.110 0.022 0.060 0.012 0.050 0.406 0.317 0.200 TYP. MAX. 20 7 0.130 MIN. inch TYP. MAX. 0.787 0.276
DIM.
P053D
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HCC/HCF4035B
SO16 (Narrow) MECHANICAL DATA
DIM. MIN. A a1 a2 b b1 C c1 D E e e3 F G L M S 3.8 4.6 0.5 9.8 5.8 1.27 8.89 4.0 5.3 1.27 0.62 8 (max.) 0.149 0.181 0.019 10 6.2 0.35 0.19 0.5 45 (typ.) 0.385 0.228 0.050 0.350 0.157 0.208 0.050 0.024 0.393 0.244 0.1 mm TYP. MAX. 1.75 0.2 1.65 0.46 0.25 0.013 0.007 0.019 0.004 MIN. inch TYP. MAX. 0.068 0.007 0.064 0.018 0.010
P013H
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HCC/HCF4035B
PLCC20 MECHANICAL DATA
mm MIN. A B D d1 d2 E e e3 F G M M1 1.27 1.14 7.37 1.27 5.08 0.38 0.101 0.050 0.045 9.78 8.89 4.2 2.54 0.56 8.38 0.290 0.050 0.200 0.015 0.004 TYP. MAX. 10.03 9.04 4.57 MIN. 0.385 0.350 0.165 0.100 0.022 0.330 inch TYP. MAX. 0.395 0.356 0.180
DIM.
P027A
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HCC/HCF4035B
Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsability for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may results from its use. No license is granted by implication or otherwise under any patent or patent rights of SGS-THOMSON Microelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. SGS-THOMSON Microelectronics products are not authorized for use ascritical components in life support devices or systems without express written approval of SGS-THOMSON Microelectonics. (c) 1994 SGS-THOMSON Microelectronics - All Rights Reserved SGS-THOMSON Microelectronics GROUP OF COMPANIES Australia - Brazil - France - Germany - Hong Kong - Italy - Japan - Korea - Malaysia - Malta - Morocco - The Netherlands Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A
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