DATASHEET CD4060BMS. Pinout. Features. Functional Diagram. Oscillator Features. Applications. Description
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1 DATASHEET CDBMS CMOS 1 Stage Ripple-Carry Binary Counter/Divider and Oscillator FN3317 Rev. Features Pinout High Voltage Type (V Rating) Common Reset 1MHz Clock Rate at 15V Fully Static Operation Q1 Q13 Q1 Q VDD Q1 Q Q Buffered Inputs and Outputs Q5 5 1 RESET Schmitt Trigger Input Pulse Line Standardized, Symmetrical Output Characteristics 1% Tested for Quiescent Current at V Q7 Q VSS I 5V, 1V and 15V Parametric Ratings Meets All Requirements of JEDEC Tentative Standard No. 13B, Standard Specifications for Description of B Series CMOS Devices Functional Diagram Oscillator Features All Active Components on Chip RC or Crystal Oscillator Configuration RC Oscillator Frequency of khz Min. at 15V Applications Control counters Timers Frequency Dividers Time Delay Circuits Description CDBMS consists of an oscillator section and 1 ripple carry binary counter stages. The oscillator configuration allows design of either RC or crystal oscillator circuits. A RESET input is provided which resets the counter to the all O s state and disables the oscillator. A high level on the RESET line accomplishes the reset function. All counter stages are master slave flip-flops. The state of the counter is advanced one step in binary order on the negative transition of I (and ). All inputs and outputs are fully buffered. Schmitt trigger action on the input pulse line permits unlimited input pulse rise and fall times. R I 1 11 VSS = VDD = STAGE RIPPLE COUNTER AND OSCILLATOR Q Q5 Q Q7 Q Q Q1 Q1 Q13 Q The CDBMS is supplied in these 1 lead outline packages: Braze Seal DIP Frit Seal DIP Ceramic Flatpack HW H1F HW FN3317 Rev. Page 1 of
2 CDBMS Absolute Maximum Ratings DC Supply Voltage Range, (VDD) V to +V (Voltage Referenced to VSS Terminals) Input Voltage Range, All Inputs V to VDD +.5V DC Input Current, Any One Input 1mA Operating Temperature Range to +15 o C Package Types D, F, K, H Storage Temperature Range (TSTG) o C to +15 o C Lead Temperature (During Soldering) o C At Distance 1/1 1/3 Inch (1.5mm.7mm) from case for 1s Maximum Reliability Information Thermal Resistance ja jc Ceramic DIP and FRIT Package..... o C/W o C/W Flatpack Package o C/W o C/W Maximum Package Power Dissipation (PD) at +15 o C For TA = to +1 o C (Package Type D, F, K) mW For TA = +1 o C to +15 o C (Package Type D, F, K)..... Derate Linearity at 1mW/ o C to mw Device Dissipation per Output Transistor mW For TA = Full Package Temperature Range (All Package Types) Junction Temperature o C TABLE 1. DC ELECTRICAL PERFORMANCE CHARACTERISTICS GROUP A PARAMETER SYMBOL CONDITIONS (NOTE 1) SUBGROUPS TEMPERATURE MIN MAX UNITS Supply Current IDD VDD = V, VIN = VDD or GND 1 +5 o C - 1 A +15 o C - 1 A VDD = 1V, VIN = VDD or GND 3-1 A Input Leakage Current IIL VIN = VDD or GND VDD = 1 +5 o C -1 - na +15 o C -1 - na VDD = 1V na Input Leakage Current IIH VIN = VDD or GND VDD = 1 +5 o C - 1 na +15 o C - 1 na VDD = 1V 3-1 na Output Voltage VOL15 VDD = 15V, No Load 1,, 3 +5 o C, +15 o C, - 5 mv Output Voltage VOH15 VDD = 15V, No Load (Note 3) 1,, 3 +5 o C, +15 o C, V Output Current (Sink) IOL5 VDD = 5V, VOUT =.V 1 +5 o C.53 - ma IOL1 VDD = 1V, VOUT =.5V 1 +5 o C 1. - ma IOL15 VDD = 15V, VOUT = 1.5V 1 +5 o C ma Output Current (Source) IOH5A VDD = 5V, VOUT =.V 1 +5 o C ma IOH5B VDD = 5V, VOUT =.5V 1 +5 o C ma IOH1 VDD = 1V, VOUT =.5V 1 +5 o C ma IOH15 VDD = 15V, VOUT = 13.5V 1 +5 o C ma N Threshold Voltage VNTH VDD = 1V, ISS = -1 A 1 +5 o C V P Threshold Voltage VPTH VSS = V, IDD = 1 A 1 +5 o C.7. V Functional F VDD =.V, VIN = VDD or GND 7 +5 o C VOH > VOL < V VDD = V, VIN = VDD or GND 7 +5 o C VDD/ VDD/ VDD = 1V, VIN = VDD or GND A +15 o C VDD = 3V, VIN = VDD or GND B Input Voltage Low (Note ) VIL VDD = 5V, VOH >.5V, VOL <.5V 1,, 3 +5 o C, +15 o C, V Input Voltage High (Note ) Input Voltage Low (Note ) Input Voltage High (Note ) VIH VDD = 5V, VOH >.5V, VOL <.5V 1,, 3 +5 o C, +15 o C, V VIL VIH VDD = 15V, VOH > 13.5V, VOL < 1.5V VDD = 15V, VOH > 13.5V, VOL < 1.5V 1. All voltages referenced to device GND, 1% testing being implemented.. Go/No Go test with limits applied to inputs. 1,, 3 +5 o C, +15 o C, - V 1,, 3 +5 o C, +15 o C, 11 - V 3. For accuracy, voltage is measured differentially to VDD. Limit is.5v max. FN3317 Rev. Page of
3 CDBMS TABLE. AC ELECTRICAL PERFORMANCE CHARACTERISTICS PARAMETER SYMBOL CONDITIONS (NOTES 1, ) Input Pulse Operation I to Q QN to QN + 1 RESET Transition Time Maximum Input Pulse Frequency TPHL1 TPLH1 TPHL TPLH GROUP A SUBGROUPS TEMPERATURE MIN MAX UNITS VDD = 5V, VIN = VDD or GND +5 o C - 7 ns 1, o C, - ns VDD = 5V, VIN = VDD or GND +5 o C - ns 1, o C, - 7 ns TPHL3 VDD = 5V, VIN = VDD or GND +5 o C - 3 ns 1, o C, - ns TTHL VDD = 5V, VIN = VDD or GND +5 o C - ns TTLH 1, o C, - 7 ns FØI VDD = 5V VIN = VDD or GND 1. VDD = 5V, = 5pF, RL = K. and +15 o C limits guaranteed, 1% testing being implemented. TABLE 3. ELECTRICAL PERFORMANCE CHARACTERISTICS +5 o C MHz 1, o C,.5 - MHz PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE MIN MAX UNITS Supply Current IDD VDD = 5V, VIN = VDD or GND 1,, +5 o C - 5 A +15 o C - 15 A VDD = 1V, VIN = VDD or GND 1,, +5 o C - 1 A +15 o C - 3 A VDD = 15V, VIN = VDD or GND 1,, +5 o C - 1 A +15 o C - A Output Voltage VOL VDD = 5V, No Load 1, +5 o C, +15 o C, - 5 mv Output Voltage VOL VDD = 1V, No Load 1, +5 o C, +15 o C, Output Voltage VOH VDD = 5V, No Load 1, +5 o C, +15 o C, Output Voltage VOH VDD = 1V, No Load 1, +5 o C, +15 o C, Output Current (Sink) Output Current (Sink) Output Current (Sink) Output Current (Source) Output Current (Source) Output Current (Source) - 5 mv.5 - V.5 - V IOL5 VDD = 5V, VOUT =.V 1, +15 o C.3 - ma. - ma IOL1 VDD = 1V, VOUT =.5V 1, +15 o C. - ma 1. - ma IOL15 VDD = 15V, VOUT = 1.5V 1, +15 o C. - ma. - ma IOH5A VDD = 5V, VOUT =.V 1, +15 o C ma - -. ma IOH5B VDD = 5V, VOUT =.5V 1, +15 o C ma - -. ma IOH1 VDD = 1V, VOUT =.5V 1, +15 o C - -. ma ma FN3317 Rev. Page 3 of
4 CDBMS IOH15 VDD =15V, VOUT = 13.5V 1, +15 o C - -. ma - -. ma Output Current (Source) Input Voltage Low VIL VDD = 1V, VOH > V, VOL < 1V Input Voltage High VIH VDD = 1V, VOH > V, VOL < 1V Drive Current at Pin Oscillator Design Drive Current at Pin Oscillator Design Input Pulse I to Q QN to QN + 1 RESET Transition Time Maximum Input Pulse Frequency Minimum RESET Pulse Width 1, +5 o C, +15 o C, 1, +5 o C, +15 o C, - 3 V +7 - V IOL VDD = 5V, VO =.V 3 +5 o C.1 - ma VDD = 1V, VO =.5V 3 +5 o C. - ma VDD = 15V, VO = 1.5V 3 +5 o C ma IOH VDD = 5V 1,, 3 +5 o C ma VDD = 1V 1,, 3 +5 o C - -. ma VDD = 15V 1,, 3 +5 o C - 1. ma TPHL1 TPLH1 TPHL TPLH VDD = 1V 1,, 3 +5 o C - 3 ns VDD = 15V 1,, 3 +5 o C - ns VDD = 1V 1,, 3 +5 o C - 1 ns VDD = 15V 1,, 3 +5 o C - ns TPHL3 VDD = 1V 1,, 3 +5 o C - 1 ns VDD = 15V 1,, 3 +5 o C - 1 ns TTHL VDD = 1V 1,, 3 +5 o C - 1 ns TTLH VDD = 15V 1,, 3 +5 o C - ns FØI VDD = 1V 1,, 3 +5 o C - MHz VDD = 15V 1,, 3 +5 o C 1 - MHz TW VDD = 5V 1,, 3 +5 o C - 1 ns VDD = 1V 1,, 3 +5 o C - ns VDD = 15V 1,, 3 +5 o C - ns Minimum Input Pulse TW VDD = 5V 1,, 3 +5 o C - 1 ns Width F = 1kHz VDD = 1V 1,, 3 +5 o C - ns VDD = 15V 1,, 3 +5 o C - 3 ns RC Operation RX Max RX VDD = 5V, CX = 1 F, 3 +5 o C - M VDD = 1V, CX = 5 F, 3 +5 o C - M VDD = 15V, CX = 1 F, 3 +5 o C - 1 M RC Operation CX Max CX VDD = 5V, RX = 5k, 3 +5 o C - 1 F VDD = 1V, RX = 3k, 3 +5 o C - 5 F VDD = 15V, RX = 3k, 3 +5 o C - 5 F Maximum Oscillator Frequency (Note ) RC Operation Variation of Frequency (Unit-to-Unit) Variation of Frequency with Voltage Change (Same Unit) TABLE 3. ELECTRICAL PERFORMANCE CHARACTERISTICS (Continued) PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE RX = 5k CX = 15pF CX = pf RS = 5K RX = 5k CX = pf RS = 5K RX = 5k VDD = 1V, 3 +5 o C 53 1 ns VDD = 15V, 3 +5 o C ns VDD = 5V, 3 +5 o C 1 5 khz VDD = 1V, 3 +5 o C khz VDD = 15V, 3 +5 o C khz 5V to 1V, 3 +5 o C - khz 1V to 15V, 3 +5 o C - 1 khz MIN MAX UNITS FN3317 Rev. Page of
5 CDBMS Input Capacitance CIN Any Input 1, +5 o C pf 1. All voltages referenced to device GND.. The parameters listed on Table 3 are controlled via design or process and are not directly tested. These parameters are characterized on initial design release and upon design changes which would affect these characteristics. 3. = 5pF, RL = K, Input TR, TF < ns.. RC Oscillator applications are not recommended at supply voltages below 7V for RX < 5k. TABLE. POST IRRADIATION ELECTRICAL PERFORMANCE CHARACTERISTICS PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE MIN MAX UNITS Supply Current IDD VDD = V, VIN = VDD or GND 1, +5 o C - 5 A N Threshold Voltage VNTH VDD = 1V, ISS = -1 A 1, +5 o C V N Threshold Voltage VTN VDD = 1V, ISS = -1 A 1, +5 o C - 1 V Delta P Threshold Voltage VPTH VSS = V, IDD = 1 A 1, +5 o C.. V P Threshold Voltage VTP VSS = V, IDD = 1 A 1, +5 o C - 1 V Delta Functional F VDD = 1V, VIN = VDD or GND VDD = 3V, VIN = VDD or GND 1 +5 o C VOH > VDD/ Time TPHL TPLH TABLE 3. ELECTRICAL PERFORMANCE CHARACTERISTICS (Continued) PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE 1. All voltages referenced to device GND.. = 5pF, RL = K, Input TR, TF < ns. VOL < VDD/ VDD = 5V 1,, 3, +5 o C x +5 o C Limit 3. See Table for +5 o C limit.. Read and Record TABLE 5. BURN-IN AND LIFE TEST DELTA PARAMETERS +5 O C PARAMETER SYMBOL DELTA LIMIT Supply Current - MSI- IDD 1. A Output Current (Sink) IOL5 % x Pre-Test Reading Output Current (Source) IOH5A % x Pre-Test Reading MIN MAX UNITS V ns TABLE. APPLICABLE SUBGROUPS CONFORMANCE GROUP MIL-STD-3 METHOD GROUP A SUBGROUPS READ AND RECORD Initial Test (Pre Burn-In) 1% 5 1, 7, IDD, IOL5, IOH5A Interim Test 1 (Post Burn-In) 1% 5 1, 7, IDD, IOL5, IOH5A Interim Test (Post Burn-In) 1% 5 1, 7, IDD, IOL5, IOH5A PDA (Note 1) 1% 5 1, 7,, Deltas Interim Test 3 (Post Burn-In) 1% 5 1, 7, IDD, IOL5, IOH5A PDA (Note 1) 1% 5 1, 7,, Deltas Final Test 1% 5, 3, A, B, 1, 11 Group A Sample 55 1,, 3, 7, A, B,, 1, 11 Group B Subgroup B-5 Sample 55 1,, 3, 7, A, B,, 1, 11, Deltas Subgroups 1,, 3,, 1, 11 Subgroup B- Sample 55 1, 7, Group D Sample 55 1,, 3, A, B, Subgroups 1, 3 NOTE: 1. 5% Parameteric, 3% Functional; Cumulative for Static 1 and. FN3317 Rev. Page 5 of
6 CDBMS TABLE 7. TOTAL DOSE IRRADIATION CONFORMANCE GROUPS MIL-STD-3 METHOD TEST READ AND RECORD PRE-IRRAD POST-IRRAD PRE-IRRAD POST-IRRAD Group E Subgroup 55 1, 7, Table 1, Table Logic Diagram TABLE. BURN-IN AND IRRADIATION TEST CONNECTIONS OSCILLATOR FUNCTION OPEN GROUND VDD V -.5V 5kHz 5kHz Static Burn-In 1 Note 1 1-7,, 1, 13-15, 11, 1 1 Static Burn-In Note 1 1-7,, 1, , 1, 1 Dynamic Burn-In Note 1 -, ,, 1, Irradiation Note 1-7,, 1, , 1, 1 1. Each pin except VDD and GND will have a series resistor of 1K 5%, VDD = 1V.5V. Each pin except VDD and GND will have a series resistor of 7K 5%; Group E, Subgroup, sample size is dice/wafer, failures, VDD = 1V.5V *** I 1 11 * * * 1 FF1 Q1 FF-FF13 Q13 1 Q1 Q13 1 Q1 FF1 1 Q1 Q1 ** RESET 1 * **R = HIGH DOMINATES (RESETS ALL STAGES) ***COUNTER ADVANCES ONE BINARY COUNT ON EACH NEGATIVE - GOING TRANSITION OF I (AND O) VDD Q - Q1 Q1, Q13 *ALL INPUTS ARE PROTECTED BY CMOS PROTECTION NETWORK VSS DETAIL OF TYPICAL FLIP-FLOP STAGE p p n R n R Q p n p n Q FN3317 Rev. Page of
7 CDBMS Typical Performance Curves OUTPUT LOW (SINK) CURRENT (IOL) (ma) GATE-TO-SOURCE VOLTAGE (VGS) = 15V 1V 5V OUTPUT LOW (SINK) CURRENT (IOL) (ma) GATE-TO-SOURCE VOLTAGE (VGS) = 15V 1V 5V DRAIN-TO-SOURCE VOLTAGE (VDS) (V) FIGURE 1. TYPICAL N-CHANNEL OUTPUT LOW SINK CURRENT CHARACTERISTICS DRAIN-TO-SOURCE VOLTAGE (VDS) (V) FIGURE. MINIMUM N-CHANNEL OUTPUT LOW (SINK) CURRENT CHARACTERISTICS DRAIN-TO-SOURCE VOLTAGE (VDS) (V) GATE-TO-SOURCE VOLTAGE (VGS) = -5V -1V -15V OUTPUT HIGH (SOURCE) CURRENT (IOH) (ma) DRAIN-TO-SOURCE VOLTAGE (VDS) (V) GATE-TO-SOURCE VOLTAGE (VGS) = -5V -1V -15V OUTPUT HIGH (SOURCE) CURRENT (IOH) (ma) FIGURE 3. TYPICAL P-CHANNEL OUTPUT HIGH (SOURCE) CURRENT CHARACTERISTICS FIGURE. MINIMUM P-CHANNEL OUTPUT HIGH (SOURCE) CURRENT CHARACTERISTICS PROPAGATION DELAY TIME (tplh, tphl) (ns) SUPPLY VOLTAGE (VDD) = 5V 1V 15V 1 PROPAGATION DELAY TIME (tplh, tphl) (ns) SUPPLY VOLTAGE (VDD) = 5V 1V 15V 1 LOAD CAPACITANCE () (pf) LOAD CAPACITANCE () (pf) FIGURE 5. TYPICAL PROPAGATION DELAY TIME (QN TO QN+1) AS A FUNCTION OF LOAD CAPACITANCE FIGURE. TYPICAL PROPAGATION DELAY TIME (Ø1 TO Q OUTPUT) AS A FUNCTION OF LOAD CAPACITANCE FN3317 Rev. Page 7 of
8 CDBMS Typical Performance Curves (Continued) TRANSITION TIME (tthl, ttlh) (ns) 15 SUPPLY VOLTAGE (VDD) = 5V 1 1V 15V 5 1 LOAD CAPACITANCE () (pf) DYNAMIC POWER DISSIPATION (PD) ( W) SUPPLY VOLTAGE (VDD) = 15V 1V 1V INPUT FREQUENCY (fi) (khz) 5V LOAD CAPACITANCE = 5pF = 15pF FIGURE 7. TYPICAL TRANSITION TIME AS A FUNCTION OF LOAD CAPACITANCE FIGURE. TYPICAL DYNAMIC POWER DISSIPATION AS A FUNCTION OF INPUT FREQUENCY Test Circuits VDD 5 F ID PULSE GENERATOR RS RX CX 11 1 NOTE: RS IS RX TO 1RX T =. RXCX 1 FIGURE. DYNAMIC POWER DISSIPATION TEST CIRCUIT FIGURE 1. TYPICAL RC CIRCUIT FN3317 Rev. Page of
9 CDBMS Test Circuits (Continued) 11 1 C1 RC RS C NOTE: CXTAL = C1 + C + CSTRAY RC = Broader frequency response RS = Current limiting Chip Dimensions and Pad Layout FIGURE 11. TYPICAL CRYSTAL CIRCUIT Dimension in parenthesis are in millimeters and are derived from the basic inch dimensions as indicated. Grid graduations are in mils (1-3 inch). METALLIZATION: Thickness: 11kÅ 1kÅ, AL. PASSIVATION: 1.kÅ - 15.kÅ, Silane BOND PADS:. inches X. inches MIN DIE THICKNESS:.1 inches -.1 inches Copyright Intersil Americas LLC 1. All Rights Reserved. All trademarks and registered trademarks are the property of their respective owners. For additional products, see Intersil products are manufactured, assembled and tested utilizing ISO1 quality systems as noted in the quality certifications found at Intersil products are sold by description only. Intersil may modify the circuit design and/or specifications of products at any time without notice, provided that such modification does not, in Intersil's sole judgment, affect the form, fit or function of the product. Accordingly, the reader is cautioned to verify that datasheets are current before placing orders. Information furnished by Intersil is believed to be accurate and reliable. However, no responsibility is assumed by Intersil or its subsidiaries for its use; nor for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Intersil or its subsidiaries. For information regarding Intersil Corporation and its products, see FN3317 Rev. Page of
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