DSP56374 MOTOROLA | Alldatasheet
Document overview
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Technical content
© Freescale Semiconductor, Inc., 2004. All rights reserved. The DSP56374 is a high density CMOS device with 3.3 V inputs and outputs. This document contains information on a new product. qualifications are completed. Figure 1. Significant architectural enhancements include a barrel shifter, 24-bit addressing, (MIPS) using an internal 150 MHz clock. Note: *Values for VIL, VOL, VIH, and VOH are defined by individual product specifications.
11 Reset, Stop, Mode Select, and
12 Serial Host Interface SPI Protocol
13 Serial Host Interface (SHI) I2C
15 Enhanced Serial Audio Interface
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Features
Figure 1. DSP56374 Block Diagram
1.1 DSP56300 M odular Chassis
150 Million Instructions Per Second (MIPS) with a 150 MHz clock at an internal logic supply (QVDDL) of 1.25 V. Object Code Compatible with the 56K core. Data ALU with a 24 x 24 bit multiplier-accumulator and a 56-bit barrel shifter;16 bit arithmatic support. Program Control with position independent code support. Six-channel DMA controller. Internal address tracing support and OnCE for Hardware/Software debugging. JTAG port, supporting boundary scan, compliant to IEEE 1149.1. Very low-power CMOS design, fully static design with operating frequencies down to DC. STOP and WAIT low-power standby modes.
- ESAI_1 and dedicated GPIO pins are not available in the 52-pin package.
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1.2 On-chip Memory Configuration
6Kx24 Bit Y -Data RAM and 4Kx24 Bit Y -Data ROM. 6Kx24 Bit X-Data RAM and 4Kx24 Bit X-Data ROM. 20Kx24 Bit Program and Bootstrap ROM including a PROM patching mechanism. 6Kx24 Bit Program RAM. Various memory switches are available. See memory table below.
1.3 Peripheral modules
Enhanced Serial Audio Interface (ESAI): up to 4 receiver pins and up to 6 transmitter pins, master or slave. I2S, Sony, AC97, network and other programmable protocols. Enhanced Serial Audio Interface I (ESAI_1) : up to 4 receiver pins and up to 6 transmitter pins, master or slave. I2S, Sony, AC97, network and other programmable protocols. Note: Available in the 80 pin package only Serial Host Interface (SHI): SPI and I 2C protocols, 10-word receive FIFO, support for 8, 16 and 24-bit words. Three noise reduction filter modes. Triple Timer module (TEC). Most pins of unused peripherals may be programmed as GPIO pins. Up to 47 pins can be configured as GPIO on the 80 pin package and 20 pins on the 52 pin package. Hardware Watchdog Timer
1.4 Packages
80-pin and 52-pin plastic LQFP packages. Table 1. DSP56374 Memory Switch Configurations
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2 Documentation
Table 2 lists the documents that provide a complete description of the DSP56374 and are required to design properly with the part. Documentation is available from a local Freescale Semiconductor, Inc. (formerly Motorola) distributor, semiconductor sales office, Literature Distribution Center, or through the Freescale DSP home page on the Internet (the source for the latest information).
3 Signal Groupings
The input and output signals of the DSP56374 are organized into functional groups, which are listed in Table 3.. The DSP56374 is operated from a 1.25 V and 3.3 V supply; however, some of the inputs can tolerate 5.0 V. A special notice for this feature is added to the signal descriptions of those inputs. Table 2. DSP56374 Documentation Table 3. DSP56374 Functional Signal Groupings
Description
Power (VDD) 11 Table 15. Ground (GND) 9 Table 5. Scan Pins 1 Table 6. Clock and PLL 3 Table 7. Interrupt and mode control Port H2 5 Table 8. SHI Port H2 5 Table 9. ESAI Port C4 12 Table 10. ESAI_1 Port E5 12 Table 11. Dedicated GPIO Port G3 15 Table 12. Timer 3 Table 13. JTAG/OnCE Port 4 Table 14. Note: 1. Pins are not 5 V. tolerant unless noted. 2. Port H signals are the GPIO port signals wh ich are multiplexed with the MOD and HREQ signals. 3. Port G signals are the dedicated GPIO port signals. 4. Port C signals are the GPIO port signals which are multiplexed with the ESAI signals. 5. Port E signals are the GPIO port signals which are multiplexed with the ESAI_1 signals.
3.1 Power
3.2 Ground
Table 4. Power Inputs external decoupling capacitors between PLLP_VDD and PLLP_GND. adequate external decoupling capacitors between PLLD_VDD and PLLD_GND. adequate external decoupling capacitors. provide adequate external decoupling capacitors. Table 5. Grounds must provide adequate external decoupling capacitors between PLLA_VDD and PLLA_GND. must provide adequate external decoupling capacitors between PLLP_VDD and PLLP_GND. must provide adequate external decoupling capacitors between PLLD_VDD and PLLD_GND. must provide adequate external decoupling capacitors. connections. The user must provide adequate external decoupling capacitors.
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3.3 SCAN
3.4 Clock and PLL
3.5 Interrupt and Mode Control
asserted, these inputs are hardware interrupt request lines. Table 6. SCAN signals SCAN Input Input SCAN—Manufacturing test pin. This pin must be connected to ground. Table 7. Clock and PLL Signals to EXTAL in order to supply the clock to the internal clock generator and PLL. external crystal. If an external clock is used, leave XTAL unconnected. (NMI) request internally synchronized to the internal system clock. This pin has an internal pull up resistor. Table 8. Interrupt and Mode Control to GND, the processor will exit the stop state. This pin has an internal pull up resistor.
individually programmable as input, output, or internally disconnected. RESET signal is de-asserted. This pin has an internal pull up resistor. individually programmable as input, output, or internally disconnected. RESET signal is de-asserted. This pin has an internal pull up resistor. individually programmable as input, output, or internally disconnected. RESET signal is de-asserted. This pin has an internal pull up resistor. individually programmable as input, output, or internally disconnected. Table 8. Interrupt and Mode Control (Continued)
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3.6 Serial Host Interface
The SHI has five I/O signals that can be configured to allow the SHI to operate in either SPI or I2C mode. while RESET is being asserted. This pin has an internal pull up resistor. Table 9. Serial Host Interface Signals stable. Edge polarity is determined by the SPI transfer protocol. This signal is tri-stated during hardware, software, and individual reset. This pin has an internal pull up resistor.
is a unique situation defined as the stop event. This signal is tri-stated during hardware, software, and individual reset. Thus, there is no need for an external pull-up in this state. This pin has an internal pull up resistor. Schmitt-trigger input when configured for the SPI Slave mode. This signal is tri-stated during hardware, software, and individual reset. Thus, there is no need for an external pull-up in this state. This pin has an internal pull up resistor. MISO output signal in the high-impedance state. This pin has an internal pull up resistor. Table 9. Serial Host Interface Signals (Continued)
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3.7 Enhanced Serial Audio Interface
proceed to the next transfer. This pin can also be programmed as GPIO. programmable as input, output, or internally disconnected. This pin has an internal pull up resistor. Table 10. Enhanced Serial Audio Interface Signals The default state after reset is GPIO disconnected. This pin has an internal pull up resistor.
external DACs) or as an additional system clock. The default state after reset is GPIO disconnected. This pin has an internal pull up resistor. frame sync in normal mode or the slot in network mode. The default state after reset is GPIO disconnected. Internal Pull down resistor. Table 10. Enhanced Serial Audio Interface Signals (Continued)
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transmit clock control register (TCCR). The default state after reset is GPIO disconnected. Internal Pull down resistor. frame sync in normal mode or the slot in network mode. The default state after reset is GPIO disconnected. Internal Pull down resistor. The default state after reset is GPIO disconnected. Internal Pull down resistor.
serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor.
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The default state after reset is GPIO disconnected. Internal Pull down resistor. the TX1 serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. the TX0 serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor.
3.8 Enhanced Serial Audio Interface_1
Table 11. Enhanced Serial Audio Interface_1 Signals The default state after reset is GPIO disconnected. Internal Pull down resistor. external DACs) or as an additional system clock. The default state after reset is GPIO disconnected. Internal Pull down resistor.
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buffer enable control (TEBE=1, RFSD=1). frame sync in normal mode or the slot in network mode. The default state after reset is GPIO disconnected. Internal Pull down resistor. signal is the frame sync for both transmitters and receivers. transmit clock control register (TCCR_1). The default state after reset is GPIO disconnected. Internal Pull down resistor. Table 11. Enhanced Serial Audio Interface_1 Signals (Continued)
the synchronous mode (SYN=1). frame sync in normal mode or the slot in network mode. The default state after reset is GPIO disconnected. Internal Pull down resistor. The default state after reset is GPIO disconnected. Internal Pull down resistor.
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serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor.
3.9 Dedicated GPIO - Port G
The default state after reset is GPIO disconnected. Internal Pull down resistor. from the TX1 serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. from the TX0 serial transmit shift register. The default state after reset is GPIO disconnected. Internal Pull down resistor. Table 12. Dedicated GPIO - Port G Signals output, or internally disconnected. Internal Pull down resistor.
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output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. Table 12. Dedicated GPIO - Port G Signals (Continued)
output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor. output, or internally disconnected. Internal Pull down resistor.
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3.10 Timer
Table 13. Timer Signal external event counter or in measurement mode, TIO0 is used as input. beginning of operation or leave it defined as GPIO input. Internal Pull down resistor. external event counter or in measurement mode, TIO1 is used as input. beginning of operation or leave it defined as GPIO input. Internal Pull down resistor. external event counter or in measurement mode, TIO2 is used as input. beginning of operation or leave it defined as GPIO input .
3.11 JTAG/OnCE Interface
asserted high when the PLL is disabled. Internal Pull down resistor. Table 14. JTAG/OnCE Interface instructions and data. TDI is sampled on the rising edge of TCK. and shift-DR controller states. TDO changes on the falling edge of TCK. controller’s state machine. TMS is sampled on the rising edge of TCK. Table 13. Timer Signal (Continued)
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4 Maximum Ratings
a maximum to a minimum represents a condition that can never exist. Table 15. Maximum Ratings
52 LQFP = 95
- Absolute maximum ratings are stress ratings only, and f unctional operation at the maximum is not guaranteed. Stress
beyond the maximum rating may affect device reliability or cause permanent damage to the device.
- Operating temperature qualifi ed for consumer applications. TJ = TA + θJA x Power.
- If the power supply ramp to full supply time is longer than 10 ms, the POR circuitry will not operate correctly, causing
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5 Power Requirements
To prevent high current conditions due to possible improper sequencing of the power supplies, the connection shown below is recommended to be made between the DSP56374 IO_VDD and Core_VDD power pins. To prevent a high current condition upon power up, the IO_VDD must be applied ahead of the Core_VDD as shown below if the external Schottky is not used. For correct operation of the internal power on reset logic, the Core_VDD ramp rate (Tr) to full supply must be less than 10 ms. This is shown below. IO_VDD Core_VDD External Schottky Diode Core_VDD IO_VDD Core_VDD Tr 0 V 1.25V
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6 Thermal Characteristics
Table 16. Thermal Characteristics
- Per SEMI G38-87 and JEDEC JESD51-2 wi th the single layer board horizontal.
- Thermal resistance between the die and the case top surface as measured by the cold plate method
Table 17. DC Electrical Characteristics Note: All 3.3 volt supplies must rise prior to the rise of the 1.25 volt supplies to avoid a high current condition and possible system damage.
test machine VOL and VOH reference levels set at 1.0V and 1.8V, respectively.
9 Internal Clocks
DSP benchmarks. The power consumption numbers in this specification are 90% of the measured results of this benchmark. TJ = 25°C. Maximum internal supply current is measured with VCORE_VDD = 1.30V, VIO_VDD) = 3.46V at TJ = 115°C.
- In order to obtain these results, all i nputs, which are not disconnected at Stop mode, must be terminated (i.e., not allowed to
Table 18. INTERNAL CLOCKS2
1 Comparison Frequency Fref 5 — 20 MHz Fref = FIN/NR
2 Input Clock Frequency FIN Fref*NR NR is input divider value
3 Output clock Frequency (with
150 MHz FOUT=FVCO/NO where
4 Output clock Frequency (with
5 Duty Cycle — 40 50 60 % FVCO=300MHz~600MHz
Table 17. DC Electrical Characteristics (Continued)
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- For details of internal clock
Table 18. INTERNAL CLOCKS2 (Continued)
10 External Clock Operation
a crystal and associated resistor/capacitor components to EXTAL and XTAL; an example is shown below. the external square wave source connects to EXTAL, the XTAL pin is not used. Figure 2. External Clock Timing Table 19. Clock Operation
6 EXTAL input high 1
7 EXTAL input low 1
8 EXTAL cycle time
Note: The midpoint is 0.5 (V IH + VIL).
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11 Reset, Stop, Mode Select, and Interrupt Timing
9 Instruction cycle time= I CYC = TC
Note: 1. Measured at 50% of the input transition.
- The indicated duty cycle is for the spec ified maximum frequency for which a part is
as the minimum high time and low time requirements are met. Table 20. Reset, Stop, Mode Select, and Interrupt Timing
10 Delay from RESET assertion to all pins at reset
11 Required RESET duration4
13 Syn reset deassert delay time
16 Minimum edge-triggered interrupt request assertion
17 Minimum edge-triggered interrupt request
18 Delay from interrupt trigger to interrupt code
Table 19. Clock Operation (Continued)
19 Duration of level sensitive IRQA assertion to ensure
21 Interrupt Requests Rate 1
22 DMA Requests Rate
using fast interrupts. Long interrupts are recommended when using Level-sensitive mode.
- For PLL disable, using external clock (PCTL Bit 16 = 1) , no stabilization delay is required and recovery time will be
defined by the OMR Bit 6 settings. PLL to get locked. The PLL lock procedure duration, PLL Lock Cycles (PLC), may be in the range of 0.5 ms.
- Periodically sampled and not 100% tested.
yet met, the device circuitry will be in an uninitialized state that can result in significant power consumption and heat-up. Designs should minimize this state to the shortest possible duration. Table 20. Reset, Stop, Mode Select, and Interrupt Timing (Continued)
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Figure 3. Reset Timing Figure 4. External Fast Interrupt Timing Figure 5. External Interrupt Timing (Negative Edge-Triggered)
Figure 6. Recovery from Stop State Using IRQA Interrupt Service
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12 Serial Host Interface SPI Protocol Timing
Table 21. Serial Host Interface SPI Protocol Timing
26 Serial clock rise/fall time Master
27 SS assertion to first SCK edge
28 Last SCK edge to SS not asserted Slave Bypassed 12 — ns
29 Data input valid to SCK edge (data input
30 SCK last sampling edge to data input not
31 SS assertion to data out active Slave — 5 — ns
32 SS deassertion to data high impedance2 Slave — — 9 ns
33 SCK edge to data out valid
34 SCK edge to data out not valid
35 SS assertion to data out valid
Table 21. Serial Host Interface SPI Protocol Timing (Continued)
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36 First SCK sampling edge to HREQ output
37 Last SCK sampling edge to HREQ output
38 SS deassertion to HREQ output not
41 HREQ in deassertion to last SCK
42 First SCK edge to HREQ in not asserted
43 HREQ assertion width Master — 20 — ns
- Periodically sampled, not 100% tested
- All times assume noise free inputs.
- All times assume internal clock frequency of 150 MHz.
Figure 7. SPI Master Timing (CPHA = 0)
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Figure 8. SPI Master Timing (CPHA = 1)
Figure 9. SPI Slave Timing (CPHA = 0)
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Figure 10. SPI Slave Timing (CPHA = 1)
13 Serial Host Interface (SHI) I 2C Protocol Timing
Table 22. SHI I2C Protocol Timing
44 SCL clock frequency F
52 Data set-up time T SU;DAT 250 — 100 — ns
54 DSP clock frequency
57 HREQ in deassertion to last SCL edge
58 First SCL sampling edge to HREQ output
59 Last SCL edge to HREQ output not
60 HREQ
61 First SCL edge to HREQ is not asserted
- Pull-up resistor: R P (min) = 1.5 kOhm
- Capacitive load: C b (max) = 50 pF
- All times assume noise free inputs
- All times assume internal clock frequency of 150MHz
Table 22. SHI I2C Protocol Timing (Continued)
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14 Programming the Serial Clock
divide-by-eight prescaler is operational. When HRS is set, the prescaler is bypassed. — HDM[7:0] are the divider modulus select bits. A divide rati o from 1 to 256 (HDM[7:0] = $00 to $FF) may be selected. Figure 11. I2C Timing Table 23. SCL Serial Clock Cycle (TSCL) Generated as Master
15 Enhanced Serial Au dio Interface Timing
Table 24. Enhanced Serial Audio Interface Timing
62 Clock cycle 5 tSSICC 4 × Tc
63 Clock high period
64 Clock low period
65 SCKR rising edge to FSR out (bl) high — — —
66 SCKR rising edge to FSR out (bl) low — — —
67 SCKR rising edge to FSR out (wr) high 6 —— —
68 SCKR rising edge to FSR out (wr) low 6 —— —
69 SCKR rising edge to FSR out (wl) high — — —
70 SCKR rising edge to FSR out (wl) low — — —
71 Data in setup time before SCKR (SCK in
73 FSR input (bl, wr) high before SCKR falling
74 FSR input (wl) high before SCKR falling
77 Flags input hold time after SCKR falling
78 SCKT rising edge to FST out (bl) high — — —
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79 SCKT rising edge to FST out (bl) low — — —
80 SCKT rising edge to FST out (wr) high 6 —— —
81 SCKT rising edge to FST out (wr) low 6 —— —
82 SCKT rising edge to FST out (wl) high — — —
83 SCKT rising edge to FST out (wl) low — — —
84 SCKT rising edge to data out enable from
85 SCKT rising edge to transmitter #0 drive
86 SCKT rising edge to data out valid — — —
87 SCKT rising edge to data out high
88 SCKT rising edge to transmitter #0 drive
89 FST input (bl, wr) setup time before SCKT
90 FST input (wl) setup time before SCKT
92 FST input (wl) to data out enable from high
93 FST input (wl) to transmitter #0 drive enable
94 Flag output valid after SCKT rising edge — — —
Table 24. Enhanced Serial Audio Interface Timing (Continued)
- SCKT(SCKT pin) = transmit clock
- For the internal clock, the external clock cycle is defined by Icyc and the ESAI control register.
- The word-relative frame sync signal waveform relative to the clock operates in the same manner as the bit-length frame sync signal
clock of the first word in frame.
- Periodically sampled and not 100% tested.
- ESAI_1 specs match those of ESAI.
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Figure 12. ESAI Transmitter Timing Note: In network mode, output flag transitions can occur at the start of each time slot within the frame. In normal mode, the output flag state is asserted for the entire frame period.
Figure 13. ESAI Receiver Timing
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Figure 14. ESAI HCKT Timing Figure 15. ESAI HCKR Timing
16 Timer Timing
Figure 16. TIO Timer Event Input Restrictions
17 GPIO Timing
Table 25. Timer Timing
150 MHz
Figure 17. GPIO Timing Table 26. GPIO Timing
100 FOSC edge to GPIO out valid (GPIO out delay time)2 —7 n s
101 FOSC edge to GPIO out not valid (GPIO out hold time) 2 —7 n s
102 FOSC In valid to EXTAL edge (GPIO in set-up time)2 2— n s
103 FOSC edge to GPIO in not valid (GPIO in hold time) 2 0— n s
- Simulation numbers-subject to change.
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18 JTAG Timing
Figure 18. Test Clock Input Timing Diagram Table 27. JTAG Timing
- All timings apply to OnCE module data transfers because it uses the JTAG port as an interface.
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19 Watchdog Timer Timing
Table 28. Watchdog Timer Timing
Figure 21. 80-pin Vdd Connections
60 SDO5_1_PE6
59 SDO4_1_PE7
58 SDO3_PC8
57 SDO2_PC9
56 SDO1_PC10
55 SDO0_PC11
54 SDO3_1_PE8
53 SDO2_1_PE9
52 Core_Vdd
51 Core_Gnd
50 SDO1_1_PE10
49 SDO0_1_PE11
48 PINIT_NMI
47 IO_Vdd
46 XTAL
45 EXTAL
44 PLLD_Vdd
43 PLLD_Gnd
42 PLLP_Gnd
41 PLLP_Vdd
80 IO_Gnd
79 SDO5_PC6
78 SDO4_PC7
77 FSR_1_PE1
76 FSR_PC1
75 FST_PC4
74 FST_1_PE4
73 GPIO_PG14
72 Core_Vdd
71 Core_Gnd
70 SCKR_1_PE0
69 SCKR_PC0
68 SCKT_PC3
67 SCKT_1_PE3
66 HCKR_1_PE2
65 HCKR_PC2
64 HCKT_PC5
63 HCKT_1_PE5
62 SCAN
61 IO_Vdd
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Figure 22. 52-pin Vdd Connections
19.1 Signal Identifi cation by Pin Number
39 SDO3_PC8
38 SDO2_PC9
37 SDO1_PC10
36 SDO0_PC11
35 Core_Vdd
34 Core_Gnd
33 PINIT_NMI
32 XTAL
31 EXTAL
30 PLLD_Vdd
29 PLLD_Gnd
28 PLLP_Gnd
27 PLLP_Vdd
52 IO_Gnd
51 SDO5_PC6
50 SDO4_PC7
49 FSR_PC1
48 FST_PC4
47 Core_Vdd
46 Core_Gnd
45 SCKR_PC0
44 SCKT_PC3
43 HCKR_PC2
42 HCKT_PC5
41 SCAN
40 IO_Vdd
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19.2 Package Information
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Appendix A Package Information
Appendix A Package Information Freescale Semiconductor PRELIMINARY 57
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Appendix A Package Information
Appendix A Package Information Freescale Semiconductor PRELIMINARY 59 52 pin package
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Appendix A Package Information
Appendix A Package Information Freescale Semiconductor PRELIMINARY 61
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Appendix A Package Information
Freescale Semiconductor PRELIMINARY 63 Appendix B IBIS Model [IBIS ver] 2.1 [File name] tpz013g3.ibs [File Rev] 1.0 [Date] 07/30/2002 [Source] Made By 0.13uu HSPICE model. [Disclaimer] This information is for modeling purposes only and is not guaranteed. [Copyright] Copyright 2002, Design Service, tsmc, All Rights Reserved. | Component tpz013g3 (Pin) signal_name model_name
1 IO_VDD PVDD2DGZ/PVDD2POC
2 MODA_IRQA_PH0 PDU12SDGZ
3 MODB_IRQB_PH1 PDU12SDGZ
4 GPIO_PG13 PRD12DGZ
5 GPIO_PG12 PRD12DGZ
6 MODC_IRQC_PH2 PDU12SDGZ
7 MODD_IRQD_PH3 PDU12SDGZ
8 GPIO_PG11 PRD12DGZ
9 CORE_VDD PVDD1DGZ
10 CORE_GND PVSS3DGZ
11 GPIO_PG10 PRD12DGZ
12 GPIO_PG9 PRD12DGZ
13 HREQ_PH4 PDU12SDGZ
14 SS_HA2 PDUSDGZ
15 SCK_SCL PDU12SDGZ
16 MISO_SDA PDU16SDGZ
17 MOSI_HA0 PDU12SDGZ
18 GPIO_PG8 PRD12DGZ
19 GPIO_PG7 PRD12DGZ
20 IO_GND PVSS3DGZ
21 IO_VDD PVDD2DGZ
22 GPIO_PG6 PRD12DGZ
23 GPIO_PG5 PRD12DGZ
24 TDO PRT24DGZ
25 TDI PDUDGZ
26 TCK PDUDGZ
27 TMS PDUDGZ
28 GPIO_PG4 PRD12DGZ
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29 TIO0_PB0 PRD12DGZ
30 WDT_TIO1_PB1 PRD12DGZ
31 PLOCK_TIO1_PB2 PRD12DGZ
32 CORE_VDD PVDD1DGZ
33 CORE_GND PVSS3DGZ
34 GPIO_PG3 PRD12DGZ
35 RESET_B PDUSDGZ
36 GPIO_PG2 PRD12DGZ
37 GPIO_PG1 PRD12DGZ
38 GPIO_PG0 PRD12DGZ
39 PLLA_VDD PVDD1P
40 PLLA_GND PVSS1P
41 PLLP_VDD PVDD2DGZ
42 PLLP_GND PVSS2P
43 PLLD_GND PVSS1P
44 PLLD_VDD PVDD1PC
45 EXTAL 1/2 PDX03DGZ
46 XTAL 1/2 PDX03DGZ
47 IO_VDD PVDD2DGZ
48 PINIT_NMI PDUSDGZ
49 SDO0_1_PE11 PRD12DGZ
50 SDO1_1_PE10 PRD12DGZ
51 CORE_GND PVSS3DGZ
52 CORE_VDD PVDD1DGZ
53 SDO2_1_PE9 PRD12DGZ
54 SDO3_1_PE8 PRD12DGZ
55 SDO0_PC11 PRD12DGZ
56 SDO1_PC10 PRD12DGZ
57 SDO2_SDI3_PC9 PRD12DGZ
58 SDO3_SDI2_PC8 PRD12DGZ
59 SDO4_1_PE7 PRD12DGZ
60 SDO5_1_PC6 PRD12DGZ
61 IO_VDD PVDD2DGZ
62 SCAN PDDDGZ
63 HCKT_1_PE5 PRD12DGZ
64 HCKT_PC5 PRD12DGZ
65 HCKR_PC2 PRD12DGZ
66 HCKR_1_PE2 PRD12DGZ
67 SCKT_1_PE3 PRD12DGZ
68 SCKT_PC3 PRD12DGZ
69 SCKR_PC0 PRD12DGZ
70 SCKR_1_PE0 PRD12DGZ
71 CORE_GND PVSS3DGZ
72 CORE_VDD PVDD1DGZ
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73 GPIO_PG14 PRD12DGZ
74 FST_1_PE4 PRD12DGZ
75 FST_PC4 PRD12DGZ
76 FSR_PC1 PRD12DGZ
77 FSR_1_PE1 PRD12DGZ
78 SDO4_SDI1_PC7 PRD12DGZ
| Model prd12dgz [Model] prd12dgz Model_type I/O Polarity Non-Inverting Enable Active-Low Vinl = 0.80V Vinh = 2.00V Vmeas = 1.50V Cref = 50.00pF Rref = 1.00M Vref = 0.000V C_comp 4.17pF 3.75pF 4.58pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [Pulldown] | voltage I(typ) I(min) I(max) -3.30 0.000A 0.000A 0.000A -3.10 0.000A 0.000A -10.00mA -2.90 0.000A 0.000A 0.000A -2.70 0.000A 0.000A 0.000A -2.50 0.000A -10.00mA 0.000A -2.30 -10.00mA 0.000A -10.00mA -2.10 0.000A -10.00mA 0.000A -1.90 0.000A 0.000A -10.00mA -1.70 0.000A 0.000A -10.00mA -1.50 -10.00mA 0.000A -10.00mA
66 PRELIMINARY Freescale Semiconductor
-0.60 -26.47mA -13.80mA -29.35mA -0.50 -22.61mA -14.54mA -25.54mA -0.40 -18.32mA -12.17mA -20.93mA -0.00 2.86nA 7.25nA 11.72nA 0.10 4.61mA 2.94mA 5.36mA 0.20 8.96mA 5.69mA 10.49mA 0.30 13.07mA 8.26mA 15.36mA 0.40 16.92mA 10.65mA 20.00mA 0.50 20.53mA 12.86mA 24.40mA 0.60 23.91mA 14.90mA 28.55mA 0.70 27.04mA 16.76mA 32.48mA 0.80 29.95mA 18.46mA 36.18mA 0.90 32.61mA 19.99mA 39.64mA 1.00 35.06mA 21.37mA 42.87mA 1.10 37.27mA 22.58mA 45.87mA 1.20 39.27mA 23.64mA 48.64mA 1.30 41.04mA 24.55mA 51.19mA 1.40 42.60mA 25.32mA 53.50mA 1.50 43.95mA 25.95mA 55.60mA 1.60 45.08mA 26.44mA 57.46mA 1.70 46.00mA 26.80mA 59.11mA 1.80 46.70mA 27.07mA 60.53mA 1.90 47.20mA 27.26mA 61.71mA 2.00 47.55mA 27.41mA 62.63mA 2.10 47.81mA 27.53mA 63.31mA 2.20 48.01mA 27.63mA 63.79mA 2.30 48.17mA 27.71mA 64.15mA 2.40 48.31mA 27.78mA 64.43mA 2.50 48.42mA 27.85mA 64.65mA 2.60 48.53mA 27.90mA 64.84mA 2.70 48.62mA 27.96mA 65.00mA 2.80 48.70mA 28.01mA 65.14mA 2.90 48.78mA 28.05mA 65.27mA 3.00 48.85mA 28.09mA 65.38mA 3.10 48.92mA 28.14mA 65.49mA 3.20 48.99mA 28.18mA 65.59mA 3.30 49.05mA 28.23mA 65.68mA 3.40 49.12mA 28.42mA 65.77mA 3.50 49.20mA 28.97mA 65.86mA 3.60 49.24mA 29.74mA 65.95mA
Freescale Semiconductor PRELIMINARY 67 3.70 49.31mA 30.57mA 66.04mA 3.80 49.40mA 31.13mA 66.12mA 3.90 49.61mA 28.60mA 66.22mA 4.00 50.41mA 28.66mA 66.33mA 4.10 51.65mA 28.72mA 66.49mA 4.20 52.87mA 28.80mA 66.72mA 4.30 50.78mA 28.89mA 67.28mA 4.50 50.67mA 29.12mA 70.40mA 4.70 51.17mA 29.42mA 73.03mA 4.90 51.85mA 29.83mA 69.12mA 5.10 52.75mA 30.37mA 70.18mA 5.30 53.86mA 31.02mA 71.45mA 5.50 55.21mA 31.82mA 73.05mA 5.70 56.82mA 32.77mA 74.98mA 5.90 58.68mA 33.86mA 77.25mA 6.10 60.78mA 35.10mA 79.83mA 6.60 66.91mA 38.73mA 87.50mA [Pullup] | voltage I(typ) I(min) I(max) -3.30 0.11A 82.01mA 0.13A -3.10 0.11A 79.25mA 0.13A -2.90 0.10A 76.07mA 0.12A -2.70 97.60mA 72.55mA 0.11A -2.50 92.41mA 68.70mA 0.11A -2.30 87.04mA 64.55mA 0.10A -2.10 81.44mA 60.13mA 94.69mA -1.90 75.56mA 55.45mA 87.72mA -1.70 69.36mA 50.52mA 80.48mA -1.50 62.83mA 45.36mA 73.03mA -1.00 48.46mA 31.37mA 56.75mA -0.90 43.82mA 28.63mA 50.74mA -0.80 38.59mA 28.69mA 44.61mA -0.70 33.28mA 24.97mA 38.60mA -0.60 28.26mA 21.04mA 33.20mA -0.50 23.64mA 17.11mA 27.91mA -0.40 19.01mA 13.34mA 22.52mA -0.30 14.32mA 9.87mA 17.03mA -0.20 9.58mA 6.53mA 11.45mA -0.10 4.80mA 3.23mA 5.78mA 0.00 34.08uA 11.20uA 71.92uA 0.10 -4.58mA -3.08mA -5.50mA 0.20 -8.94mA -5.98mA -10.80mA
68 PRELIMINARY Freescale Semiconductor
0.30 -13.04mA -8.72mA -15.82mA 0.40 -16.89mA -11.27mA -20.56mA 0.50 -20.50mA -13.66mA -25.04mA 0.60 -23.86mA -15.87mA -29.25mA 0.70 -26.98mA -17.92mA -33.21mA 0.80 -29.87mA -19.80mA -36.91mA 0.90 -32.53mA -21.51mA -40.36mA 1.00 -34.96mA -23.06mA -43.56mA 1.10 -37.16mA -24.45mA -46.52mA 1.20 -39.15mA -25.68mA -49.24mA 1.30 -40.92mA -26.75mA -51.73mA 1.40 -42.48mA -27.66mA -53.98mA 1.50 -43.83mA -28.43mA -56.01mA 1.60 -44.98mA -29.05mA -57.81mA 1.70 -45.94mA -29.53mA -59.40mA 1.80 -46.72mA -29.90mA -60.77mA 1.90 -47.35mA -30.20mA -61.93mA 2.00 -47.86mA -30.45mA -62.90mA 2.10 -48.29mA -30.66mA -63.70mA 2.20 -48.65mA -30.85mA -64.37mA 2.30 -48.97mA -31.02mA -64.93mA 2.40 -49.25mA -31.17mA -65.40mA 2.50 -49.50mA -31.31mA -65.82mA 2.60 -49.72mA -31.44mA -66.18mA 2.70 -49.92mA -31.56mA -66.50mA 2.80 -50.11mA -31.67mA -66.79mA 2.90 -50.28mA -31.78mA -67.05mA 3.00 -50.44mA -31.88mA -67.29mA 3.10 -50.59mA -31.98mA -67.51mA 3.20 -50.74mA -32.08mA -67.72mA 3.30 -50.88mA -32.20mA -67.92mA 3.40 -51.01mA -32.75mA -68.11mA 3.50 -51.14mA -40.35mA -68.29mA 3.60 -51.27mA -0.14A -68.47mA 3.70 -51.42mA -0.94A -68.64mA 3.80 -51.84mA -2.69A -68.80mA 3.90 -53.78mA -4.48A -68.97mA 4.00 -64.80mA -6.27A -69.30mA 4.30 -3.90A -11.63A -83.12mA
Freescale Semiconductor PRELIMINARY 69 5.10 -20.30A -25.94A -13.89A 5.30 -24.40A -29.51A -18.15A 5.50 -28.50A -33.09A -22.41A 5.70 -32.60A -36.67A -26.66A 5.90 -36.70A -40.24A -30.92A 6.10 -40.80A -43.82A -35.17A 6.60 -51.05A -52.76A -45.81A [GND_clamp] | voltage I(typ) I(min) I(max) -0.20 -27.92uA -14.70uA -42.92uA 0.20 18.71uA 7.31uA 32.27uA 0.40 29.19uA 10.25uA 54.12uA 0.60 32.49uA 10.67uA 65.78uA 0.80 33.07uA 10.78uA 69.33uA 1.00 33.30uA 10.86uA 70.17uA 1.20 33.45uA 10.92uA 70.55uA 1.40 33.57uA 10.97uA 70.80uA
70 PRELIMINARY Freescale Semiconductor
1.60 33.68uA 11.02uA 70.99uA 1.80 33.77uA 11.07uA 71.16uA 2.00 33.87uA 11.11uA 71.32uA 2.20 33.96uA 11.14uA 71.46uA 2.40 34.01uA 11.15uA 71.61uA 2.60 34.03uA 11.16uA 71.76uA 2.80 34.05uA 11.17uA 71.84uA 3.00 34.06uA 11.19uA 71.86uA 3.20 34.07uA 11.51uA 71.88uA 3.40 34.07uA 10.95uA 71.90uA 3.60 34.07uA 10.39uA 71.92uA 3.80 34.07uA 9.83uA 71.94uA 4.00 34.07uA 9.27uA 71.96uA 4.20 34.07uA 8.71uA 71.98uA 4.40 34.07uA 8.15uA 72.00uA 4.60 34.07uA 7.59uA 72.02uA 4.80 34.07uA 7.03uA 72.04uA 5.00 34.07uA 6.47uA 72.06uA [POWER_clamp] | voltage I(typ) I(min) I(max) -5.00 48.57uA 16.33uA 95.57uA -4.90 48.24uA 16.21uA 95.07uA -4.80 47.91uA 16.09uA 94.57uA -4.70 47.58uA 15.97uA 94.07uA -4.60 47.25uA 15.85uA 93.57uA -4.50 46.92uA 15.73uA 93.07uA -4.40 46.59uA 15.61uA 92.57uA -4.30 46.26uA 15.49uA 92.07uA -4.20 45.93uA 15.37uA 91.57uA -4.10 45.60uA 15.25uA 91.07uA -4.00 45.27uA 15.13uA 90.57uA -3.90 44.94uA 15.01uA 90.07uA -3.80 44.61uA 14.89uA 89.57uA -3.70 44.28uA 14.77uA 89.07uA -3.60 43.95uA 14.65uA 88.57uA -3.50 43.62uA 14.53uA 88.07uA -3.40 43.29uA 14.41uA 87.57uA -3.30 42.96uA 14.29uA 87.07uA -3.20 42.63uA 14.17uA 86.57uA -3.10 42.30uA 14.05uA 86.07uA -3.00 41.97uA 13.93uA 85.57uA -2.90 41.64uA 13.81uA 85.07uA
Freescale Semiconductor PRELIMINARY 71 -2.80 41.31uA 13.69uA 84.57uA -2.70 40.98uA 13.57uA 84.07uA -2.60 40.65uA 13.45uA 83.57uA -2.50 40.32uA 13.33uA 83.07uA -2.40 39.99uA 13.21uA 82.57uA -2.30 39.66uA 13.09uA 82.07uA -2.20 39.33uA 12.97uA 81.57uA -2.10 39.00uA 12.85uA 81.07uA -2.00 38.67uA 12.73uA 80.57uA -1.90 38.34uA 12.61uA 80.07uA -1.80 38.01uA 12.49uA 79.57uA -1.70 37.68uA 12.37uA 79.07uA -1.60 37.35uA 12.25uA 78.57uA -1.50 37.02uA 12.15uA 78.07uA -1.40 36.71uA 12.05uA 77.57uA -1.30 36.42uA 11.95uA 77.07uA -1.20 36.15uA 11.87uA 76.57uA -1.10 35.89uA 11.79uA 76.07uA -1.00 35.66uA 11.72uA 75.57uA -0.90 35.45uA 11.66uA 75.10uA -0.80 35.26uA 11.60uA 74.67uA -0.70 35.09uA 11.55uA 74.28uA -0.60 34.93uA 11.51uA 73.93uA -0.50 34.80uA 11.47uA 73.61uA -0.40 34.68uA 11.43uA 73.34uA -0.30 34.59uA 11.41uA 73.10uA -0.20 34.50uA 11.38uA 72.89uA -0.10 34.43uA 11.36uA 72.72uA 0.00 34.37uA 11.34uA 72.57uA [Ramp] | variable typ min max R_load = 50.00 [Rising Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max)
72 PRELIMINARY Freescale Semiconductor
0.000S 1.26uV 1.62uV 1.22uV 0.20nS 1.04uV 1.45uV 0.74uV 0.40nS -5.64uV -1.36uV 11.59uV 0.60nS -0.29mV -5.13uV -3.27mV 0.80nS -3.54mV 25.94uV -9.17mV 1.00nS -3.50mV -4.79uV 56.24mV 1.20nS 33.86mV -0.86mV 0.13V 1.40nS 79.34mV -3.75mV 0.19V 1.60nS 0.14V -8.09mV 0.27V 1.80nS 0.20V 3.52mV 0.36V 2.00nS 0.28V 38.97mV 0.47V 2.20nS 0.36V 82.84mV 0.59V 2.40nS 0.47V 0.13V 0.74V 2.60nS 0.60V 0.18V 0.90V 2.80nS 0.77V 0.27V 1.12V 3.00nS 0.92V 0.34V 1.32V 3.20nS 1.03V 0.40V 1.46V 3.40nS 1.16V 0.50V 1.63V 3.60nS 1.29V 0.59V 1.78V 3.80nS 1.39V 0.67V 1.91V 4.00nS 1.49V 0.75V 2.01V 4.20nS 1.58V 0.84V 2.11V 4.40nS 1.65V 0.91V 2.18V 4.60nS 1.69V 0.95V 2.21V 4.80nS 1.72V 0.99V 2.23V 5.00nS 1.76V 1.03V 2.27V 5.20nS 1.80V 1.07V 2.29V 5.40nS 1.83V 1.12V 2.31V 5.60nS 1.86V 1.16V 2.33V 5.80nS 1.88V 1.18V 2.34V 6.00nS 1.89V 1.20V 2.34V 6.20nS 1.91V 1.23V 2.35V 6.40nS 1.92V 1.25V 2.36V 6.60nS 1.93V 1.27V 2.37V 6.80nS 1.94V 1.28V 2.38V 7.00nS 1.95V 1.30V 2.38V 7.20nS 1.96V 1.31V 2.39V 7.40nS 1.97V 1.33V 2.39V 7.60nS 1.98V 1.34V 2.39V 7.80nS 1.98V 1.35V 2.40V 8.00nS 1.98V 1.36V 2.40V 8.20nS 1.99V 1.37V 2.40V 8.40nS 1.99V 1.37V 2.40V
Freescale Semiconductor PRELIMINARY 73 8.60nS 1.99V 1.38V 2.41V 8.80nS 2.00V 1.39V 2.41V 9.00nS 2.00V 1.39V 2.41V 9.20nS 2.00V 1.40V 2.41V 9.40nS 2.01V 1.40V 2.41V 9.60nS 2.01V 1.41V 2.42V 9.80nS 2.01V 1.41V 2.42V 10.00nS 2.01V 1.41V 2.42V [Rising Waveform] R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 1.27V 1.66V 1.18V 0.20nS 1.27V 1.66V 1.18V 0.40nS 1.27V 1.66V 1.18V 0.60nS 1.27V 1.66V 1.19V 0.80nS 1.28V 1.66V 1.24V 1.00nS 1.40V 1.66V 1.47V 1.20nS 1.60V 1.67V 1.71V 1.40nS 1.77V 1.69V 1.88V 1.60nS 1.99V 1.80V 2.12V 1.80nS 2.24V 1.95V 2.41V 2.00nS 2.50V 2.13V 2.70V 2.20nS 2.74V 2.32V 2.99V 2.40nS 2.94V 2.49V 3.21V 2.60nS 3.09V 2.63V 3.34V 2.80nS 3.18V 2.79V 3.44V 3.00nS 3.24V 2.87V 3.49V 3.20nS 3.26V 2.91V 3.52V 3.40nS 3.27V 2.96V 3.55V 3.60nS 3.29V 2.98V 3.57V 3.80nS 3.29V 2.99V 3.59V 4.00nS 3.30V 2.99V 3.59V 4.20nS 3.30V 3.00V 3.60V 4.40nS 3.30V 3.00V 3.60V 4.60nS 3.30V 3.00V 3.60V 4.80nS 3.30V 3.00V 3.60V 5.00nS 3.30V 3.00V 3.60V
74 PRELIMINARY Freescale Semiconductor
5.20nS 3.30V 3.00V 3.60V 5.40nS 3.30V 3.00V 3.60V 5.60nS 3.30V 3.00V 3.60V 5.80nS 3.30V 3.00V 3.60V 6.00nS 3.30V 3.00V 3.60V 6.20nS 3.30V 3.00V 3.60V 6.40nS 3.30V 3.00V 3.60V 6.60nS 3.30V 3.00V 3.60V 6.80nS 3.30V 3.00V 3.60V 7.00nS 3.30V 3.00V 3.60V 7.20nS 3.30V 3.00V 3.60V 7.40nS 3.30V 3.00V 3.60V 7.60nS 3.30V 3.00V 3.60V 7.80nS 3.30V 3.00V 3.60V 8.00nS 3.30V 3.00V 3.60V 8.20nS 3.30V 3.00V 3.60V 8.40nS 3.30V 3.00V 3.60V 8.60nS 3.30V 3.00V 3.60V 8.80nS 3.30V 3.00V 3.60V 9.00nS 3.30V 3.00V 3.60V 9.20nS 3.30V 3.00V 3.60V 9.40nS 3.30V 3.00V 3.60V 9.60nS 3.30V 3.00V 3.60V 9.80nS 3.30V 3.00V 3.60V 10.00nS 3.30V 3.00V 3.60V [Falling Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 2.02V 1.44V 2.43V 0.20nS 2.02V 1.44V 2.43V 0.40nS 2.02V 1.44V 2.43V 0.60nS 2.02V 1.44V 2.38V 0.80nS 1.97V 1.44V 2.13V 1.00nS 1.73V 1.44V 1.82V 1.20nS 1.45V 1.42V 1.49V 1.40nS 1.24V 1.38V 1.24V 1.60nS 0.96V 1.29V 0.92V
Freescale Semiconductor PRELIMINARY 75 1.80nS 0.70V 1.12V 0.67V 2.00nS 0.50V 0.92V 0.50V 2.20nS 0.36V 0.73V 0.38V 2.40nS 0.27V 0.55V 0.30V 2.60nS 0.20V 0.40V 0.24V 2.80nS 0.14V 0.27V 0.17V 3.00nS 99.16mV 0.20V 0.13V 3.20nS 79.41mV 0.16V 0.11V 3.40nS 53.08mV 0.11V 78.74mV 3.60nS 36.21mV 75.26mV 59.16mV 3.80nS 23.36mV 51.00mV 39.59mV 4.00nS 12.42mV 31.87mV 27.31mV 4.20nS 6.73mV 18.57mV 15.01mV 4.40nS 2.10mV 8.15mV 7.54mV 4.60nS 1.57mV 5.93mV 4.99mV 4.80nS 1.14mV 3.71mV 2.45mV 5.00nS 0.68mV 1.71mV 1.29mV 5.20nS 0.62mV 1.31mV 0.88mV 5.40nS 0.54mV 0.89mV 0.54mV 5.60nS 0.46mV 0.73mV 0.46mV 5.80nS 0.41mV 0.65mV 0.42mV 6.00nS 0.37mV 0.59mV 0.38mV 6.20nS 0.34mV 0.53mV 0.34mV 6.40nS 0.32mV 0.48mV 0.29mV 6.60nS 0.27mV 0.43mV 0.26mV 6.80nS 0.22mV 0.38mV 0.22mV 7.00nS 0.18mV 0.34mV 0.20mV 7.20nS 0.18mV 0.30mV 0.18mV 7.40nS 0.18mV 0.26mV 0.15mV 7.60nS 0.15mV 0.23mV 0.13mV 7.80nS 0.12mV 0.22mV 0.12mV 8.00nS 0.11mV 0.20mV 0.11mV 8.20nS 0.11mV 0.18mV 0.10mV 8.40nS 0.12mV 0.17mV 92.36uV 8.60nS 97.87uV 0.16mV 78.53uV 8.80nS 59.73uV 0.15mV 64.71uV 9.00nS 36.18uV 0.14mV 61.02uV 9.20nS 61.23uV 0.12mV 60.74uV 9.40nS 87.87uV 0.10mV 58.12uV 9.60nS 67.13uV 0.10mV 46.02uV 9.80nS 29.42uV 0.10mV 39.81uV 10.00nS 71.42uV 84.83uV 50.29uV [Falling Waveform]
76 PRELIMINARY Freescale Semiconductor
R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 3.30V 3.00V 3.60V 0.20nS 3.30V 3.00V 3.60V 0.40nS 3.30V 3.00V 3.60V 0.60nS 3.30V 3.00V 3.59V 0.80nS 3.30V 3.00V 3.48V 1.00nS 3.22V 3.00V 3.36V 1.20nS 3.12V 3.00V 3.25V 1.40nS 3.06V 3.00V 3.16V 1.60nS 2.96V 3.00V 3.04V 1.80nS 2.86V 2.95V 2.90V 2.00nS 2.75V 2.89V 2.76V 2.20nS 2.64V 2.83V 2.61V 2.40nS 2.52V 2.77V 2.48V 2.60nS 2.40V 2.70V 2.34V 2.80nS 2.26V 2.61V 2.18V 3.00nS 2.16V 2.54V 2.04V 3.20nS 2.10V 2.48V 1.93V 3.40nS 2.01V 2.41V 1.79V 3.60nS 1.93V 2.35V 1.68V 3.80nS 1.86V 2.30V 1.57V 4.00nS 1.78V 2.25V 1.49V 4.20nS 1.68V 2.19V 1.41V 4.40nS 1.58V 2.13V 1.34V 4.60nS 1.53V 2.10V 1.31V 4.80nS 1.49V 2.08V 1.29V 5.00nS 1.43V 2.04V 1.26V 5.20nS 1.39V 2.01V 1.24V 5.40nS 1.35V 1.98V 1.22V 5.60nS 1.32V 1.95V 1.21V 5.80nS 1.31V 1.94V 1.20V 6.00nS 1.30V 1.93V 1.20V 6.20nS 1.29V 1.91V 1.19V 6.40nS 1.29V 1.90V 1.19V 6.60nS 1.29V 1.88V 1.19V 6.80nS 1.28V 1.87V 1.19V 7.00nS 1.28V 1.85V 1.19V
Freescale Semiconductor PRELIMINARY 77 7.20nS 1.28V 1.84V 1.19V 7.40nS 1.28V 1.83V 1.19V 7.60nS 1.28V 1.82V 1.19V 7.80nS 1.28V 1.81V 1.19V 8.00nS 1.28V 1.81V 1.19V 8.20nS 1.28V 1.80V 1.19V 8.40nS 1.27V 1.79V 1.19V 8.60nS 1.27V 1.79V 1.19V 8.80nS 1.27V 1.78V 1.19V 9.00nS 1.27V 1.77V 1.19V 9.20nS 1.27V 1.76V 1.19V 9.40nS 1.27V 1.75V 1.19V 9.60nS 1.27V 1.73V 1.18V 9.80nS 1.27V 1.72V 1.18V 10.00nS 1.27V 1.71V 1.18V | End [Model] prd12dgz | Model prd16dgz [Model] prd16dgz Model_type I/O Polarity Non-Inverting Enable Active-Low Vinl = 0.80V Vinh = 2.00V Vmeas = 1.50V Cref = 50.00pF Rref = 1.00M Vref = 0.000V C_comp 3.86pF 3.48pF 4.25pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [Pulldown] | voltage I(typ) I(min) I(max) -3.30 -10.00mA 0.000A 0.000A
78 PRELIMINARY Freescale Semiconductor
-3.10 0.000A 0.000A 0.000A -2.90 0.000A 0.000A 0.000A -2.70 0.000A 0.000A 0.000A -2.50 0.000A 0.000A 0.000A -2.30 0.000A 0.000A 0.000A -2.10 -10.00mA 0.000A 0.000A -1.90 0.000A 0.000A -10.00mA -1.70 -10.00mA 0.000A -10.00mA -1.50 -10.00mA 0.000A -20.00mA -0.70 -38.86mA -10.60mA -43.13mA -0.60 -35.29mA -18.40mA -39.13mA -0.50 -30.14mA -19.39mA -34.05mA -0.40 -24.42mA -16.22mA -27.89mA -0.30 -18.49mA -12.22mA -21.21mA -0.00 4.09nA 6.98nA 10.67nA 0.10 6.14mA 3.92mA 7.15mA 0.20 11.95mA 7.59mA 13.98mA 0.30 17.42mA 11.01mA 20.48mA 0.40 22.56mA 14.20mA 26.67mA 0.50 27.38mA 17.14mA 32.53mA 0.60 31.88mA 19.86mA 38.07mA 0.70 36.06mA 22.35mA 43.31mA 0.80 39.93mA 24.61mA 48.24mA 0.90 43.49mA 26.66mA 52.85mA 1.00 46.74mA 28.49mA 57.16mA 1.10 49.69mA 30.11mA 61.16mA 1.20 52.35mA 31.52mA 64.86mA 1.30 54.72mA 32.74mA 68.25mA 1.40 56.80mA 33.76mA 71.34mA 1.50 58.59mA 34.59mA 74.13mA 1.60 60.11mA 35.25mA 76.62mA 1.70 61.33mA 35.74mA 78.81mA 1.80 62.26mA 36.09mA 80.70mA 1.90 62.93mA 36.35mA 82.27mA 2.00 63.40mA 36.55mA 83.51mA 2.10 63.75mA 36.71mA 84.41mA 2.20 64.01mA 36.84mA 85.06mA 2.30 64.23mA 36.95mA 85.54mA 2.40 64.41mA 37.04mA 85.91mA
Freescale Semiconductor PRELIMINARY 79 2.50 64.56mA 37.13mA 86.20mA 2.60 64.70mA 37.21mA 86.45mA 2.70 64.82mA 37.28mA 86.66mA 2.80 64.94mA 37.34mA 86.85mA 2.90 65.04mA 37.40mA 87.02mA 3.00 65.14mA 37.46mA 87.17mA 3.10 65.23mA 37.51mA 87.32mA 3.20 65.32mA 37.57mA 87.45mA 3.30 65.40mA 37.63mA 87.58mA 3.40 65.49mA 37.81mA 87.70mA 3.50 65.59mA 38.34mA 87.82mA 3.60 65.66mA 39.10mA 87.93mA 3.70 65.75mA 39.94mA 88.05mA 3.80 65.86mA 40.42mA 88.16mA 3.90 66.08mA 38.09mA 88.29mA 4.00 66.86mA 38.16mA 88.44mA 4.10 68.11mA 38.25mA 88.63mA 4.20 69.36mA 38.35mA 88.90mA 4.30 67.34mA 38.47mA 89.46mA 4.50 67.43mA 38.78mA 92.67mA 4.70 68.10mA 39.19mA 95.47mA 4.90 69.00mA 39.73mA 91.91mA 5.10 70.20mA 40.44mA 93.29mA 5.30 71.67mA 41.32mA 95.00mA 5.50 73.47mA 42.38mA 97.12mA 5.70 75.61mA 43.64mA 99.69mA 5.90 78.09mA 45.10mA 0.10A 6.10 80.89mA 46.75mA 0.11A 6.60 89.06mA 51.59mA 0.12A [Pullup] | voltage I(typ) I(min) I(max) -3.30 0.16A 0.12A 0.19A -3.10 0.16A 0.12A 0.18A -2.90 0.15A 0.11A 0.17A -2.70 0.14A 0.11A 0.16A -2.50 0.14A 0.10A 0.16A -2.30 0.13A 96.26mA 0.15A -2.10 0.12A 89.72mA 0.14A -1.90 0.11A 82.79mA 0.13A -1.70 0.10A 75.47mA 0.12A -1.50 93.76mA 67.80mA 0.11A -1.00 70.54mA 46.98mA 82.43mA
80 PRELIMINARY Freescale Semiconductor
-0.90 63.97mA 42.83mA 74.23mA -0.80 56.74mA 41.47mA 65.83mA -0.70 49.39mA 36.27mA 57.50mA -0.60 42.27mA 30.78mA 49.67mA -0.50 35.43mA 25.27mA 41.79mA -0.40 28.50mA 19.90mA 33.74mA -0.30 21.47mA 14.79mA 25.52mA -0.20 14.35mA 9.79mA 17.14mA -0.10 7.19mA 4.85mA 8.64mA 0.00 34.08uA 11.19uA 71.92uA 0.10 -6.89mA -4.62mA -8.29mA 0.20 -13.43mA -8.98mA -16.24mA 0.30 -19.58mA -13.08mA -23.77mA 0.40 -25.36mA -16.92mA -30.88mA 0.50 -30.77mA -20.50mA -37.60mA 0.60 -35.81mA -23.82mA -43.93mA 0.70 -40.49mA -26.89mA -49.86mA 0.80 -44.83mA -29.70mA -55.41mA 0.90 -48.81mA -32.27mA -60.59mA 1.00 -52.46mA -34.60mA -65.39mA 1.10 -55.77mA -36.68mA -69.83mA 1.20 -58.75mA -38.52mA -73.91mA 1.30 -61.41mA -40.13mA -77.64mA 1.40 -63.75mA -41.50mA -81.02mA 1.50 -65.77mA -42.65mA -84.06mA 1.60 -67.50mA -43.58mA -86.77mA 1.70 -68.93mA -44.31mA -89.14mA 1.80 -70.10mA -44.87mA -91.20mA 1.90 -71.04mA -45.31mA -92.94mA 2.00 -71.82mA -45.68mA -94.40mA 2.10 -72.46mA -46.00mA -95.60mA 2.20 -73.01mA -46.28mA -96.60mA 2.30 -73.48mA -46.53mA -97.44mA 2.40 -73.90mA -46.76mA -98.15mA 2.50 -74.27mA -46.97mA -98.77mA 2.60 -74.60mA -47.17mA -99.31mA 2.70 -74.91mA -47.35mA -99.80mA 2.80 -75.18mA -47.52mA -0.10A 2.90 -75.44mA -47.68mA -0.10A 3.00 -75.68mA -47.83mA -0.10A 3.10 -75.90mA -47.97mA -0.10A 3.20 -76.12mA -48.11mA -0.10A 3.30 -76.32mA -48.27mA -0.10A 3.40 -76.52mA -48.87mA -0.10A
Freescale Semiconductor PRELIMINARY 81 3.50 -76.71mA -56.48mA -0.10A 5.10 -20.36A -25.99A -13.95A 5.30 -24.46A -29.57A -18.21A 5.50 -28.57A -33.15A -22.48A 5.70 -32.68A -36.73A -26.74A 5.90 -36.78A -40.31A -31.00A 6.10 -40.89A -43.89A -35.27A 6.60 -51.16A -52.84A -45.93A [GND_clamp] | voltage I(typ) I(min) I(max)
82 PRELIMINARY Freescale Semiconductor
-0.20 -27.89uA -14.67uA -42.88uA -0.00 -62.88nA -63.80nA -74.38nA 0.20 18.73uA 7.33uA 32.30uA 0.40 29.21uA 10.27uA 54.14uA 0.60 32.51uA 10.69uA 65.81uA 0.80 33.09uA 10.80uA 69.35uA 1.00 33.31uA 10.87uA 70.19uA 1.20 33.46uA 10.93uA 70.56uA 1.40 33.58uA 10.98uA 70.81uA 1.60 33.69uA 11.03uA 71.00uA 1.80 33.78uA 11.08uA 71.17uA 2.00 33.87uA 11.12uA 71.33uA 2.20 33.96uA 11.14uA 71.47uA 2.40 34.01uA 11.15uA 71.62uA 2.60 34.03uA 11.16uA 71.76uA 2.80 34.04uA 11.17uA 71.84uA 3.00 34.05uA 11.18uA 71.86uA 3.20 34.06uA 11.57uA 71.88uA 3.40 34.08uA 10.87uA 71.90uA 3.60 34.10uA 10.17uA 71.92uA 3.80 34.12uA 9.47uA 71.94uA 4.00 34.14uA 8.77uA 71.96uA 4.20 34.16uA 8.07uA 71.98uA 4.40 34.18uA 7.37uA 72.00uA 4.60 34.20uA 6.67uA 72.02uA 4.80 34.22uA 5.97uA 72.04uA 5.00 34.24uA 5.27uA 72.06uA [POWER_clamp] | voltage I(typ) I(min) I(max) -5.00 48.54uA 16.29uA 95.93uA -4.90 48.21uA 16.17uA 95.42uA -4.80 47.88uA 16.05uA 94.91uA -4.70 47.55uA 15.93uA 94.40uA -4.60 47.22uA 15.81uA 93.89uA -4.50 46.89uA 15.69uA 93.38uA -4.40 46.56uA 15.57uA 92.87uA -4.30 46.23uA 15.45uA 92.36uA -4.20 45.90uA 15.33uA 91.85uA -4.10 45.57uA 15.21uA 91.34uA
Freescale Semiconductor PRELIMINARY 83 -4.00 45.24uA 15.09uA 90.83uA -3.90 44.91uA 14.97uA 90.32uA -3.80 44.58uA 14.85uA 89.81uA -3.70 44.25uA 14.73uA 89.30uA -3.60 43.92uA 14.61uA 88.79uA -3.50 43.59uA 14.49uA 88.28uA -3.40 43.26uA 14.37uA 87.77uA -3.30 42.93uA 14.25uA 87.26uA -3.20 42.60uA 14.13uA 86.75uA -3.10 42.27uA 14.01uA 86.24uA -3.00 41.94uA 13.89uA 85.73uA -2.90 41.61uA 13.77uA 85.22uA -2.80 41.28uA 13.65uA 84.71uA -2.70 40.95uA 13.53uA 84.20uA -2.60 40.62uA 13.41uA 83.69uA -2.50 40.29uA 13.29uA 83.18uA -2.40 39.96uA 13.17uA 82.67uA -2.30 39.63uA 13.05uA 82.16uA -2.20 39.30uA 12.93uA 81.65uA -2.10 38.97uA 12.81uA 81.14uA -2.00 38.64uA 12.69uA 80.63uA -1.90 38.31uA 12.57uA 80.12uA -1.80 37.98uA 12.45uA 79.61uA -1.70 37.65uA 12.33uA 79.10uA -1.60 37.32uA 12.22uA 78.59uA -1.50 36.99uA 12.11uA 78.08uA -1.40 36.68uA 12.02uA 77.57uA -1.30 36.39uA 11.92uA 77.06uA -1.20 36.12uA 11.84uA 76.55uA -1.10 35.87uA 11.76uA 76.04uA -1.00 35.63uA 11.69uA 75.53uA -0.90 35.42uA 11.63uA 75.06uA -0.80 35.23uA 11.58uA 74.64uA -0.70 35.06uA 11.53uA 74.25uA -0.60 34.91uA 11.48uA 73.90uA -0.50 34.78uA 11.44uA 73.58uA -0.40 34.66uA 11.41uA 73.31uA -0.30 34.56uA 11.38uA 73.07uA -0.20 34.48uA 11.36uA 72.87uA -0.10 34.41uA 11.34uA 72.69uA 0.00 34.35uA 11.32uA 72.55uA [Ramp] | variable typ min max
84 PRELIMINARY Freescale Semiconductor
R_load = 50.00 [Rising Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 0.71uV 0.94uV 0.68uV 0.20nS 0.48uV 0.81uV 0.000V 0.40nS -6.07uV -1.89uV 12.38uV 0.60nS -0.29mV -5.66uV -3.13mV 0.80nS -3.39mV 26.90uV -6.39mV 1.00nS -4.34mV -5.17uV 43.34mV 1.20nS 25.79mV -0.87mV 0.11V 1.40nS 62.40mV -3.65mV 0.15V 1.60nS 0.11V -7.89mV 0.21V 1.80nS 0.16V 0.71mV 0.28V 2.00nS 0.22V 29.71mV 0.37V 2.20nS 0.28V 65.63mV 0.46V 2.40nS 0.37V 0.10V 0.59V 2.60nS 0.48V 0.15V 0.71V 2.80nS 0.63V 0.22V 0.92V 3.00nS 0.79V 0.28V 1.12V 3.20nS 0.90V 0.34V 1.28V 3.40nS 1.07V 0.43V 1.49V 3.60nS 1.24V 0.53V 1.70V 3.80nS 1.39V 0.63V 1.89V 4.00nS 1.55V 0.74V 2.07V 4.20nS 1.71V 0.86V 2.24V 4.40nS 1.84V 0.97V 2.37V 4.60nS 1.90V 1.03V 2.44V 4.80nS 1.96V 1.09V 2.50V 5.00nS 2.03V 1.16V 2.54V 5.20nS 2.08V 1.22V 2.59V 5.40nS 2.13V 1.29V 2.62V 5.60nS 2.18V 1.36V 2.65V 5.80nS 2.20V 1.39V 2.66V 6.00nS 2.22V 1.43V 2.67V
Freescale Semiconductor PRELIMINARY 85 6.20nS 2.24V 1.47V 2.68V 6.40nS 2.26V 1.51V 2.69V 6.60nS 2.27V 1.54V 2.70V 6.80nS 2.29V 1.57V 2.71V 7.00nS 2.30V 1.60V 2.72V 7.20nS 2.31V 1.63V 2.72V 7.40nS 2.32V 1.66V 2.73V 7.60nS 2.33V 1.68V 2.74V 7.80nS 2.34V 1.69V 2.74V 8.00nS 2.34V 1.70V 2.74V 8.20nS 2.35V 1.72V 2.75V 8.40nS 2.35V 1.73V 2.75V 8.60nS 2.36V 1.74V 2.75V 8.80nS 2.36V 1.75V 2.76V 9.00nS 2.36V 1.76V 2.76V 9.20nS 2.37V 1.77V 2.76V 9.40nS 2.37V 1.78V 2.76V 9.60nS 2.38V 1.79V 2.77V 9.80nS 2.38V 1.80V 2.77V 10.00nS 2.38V 1.80V 2.77V [Rising Waveform] R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 0.98V 1.34V 0.92V 0.20nS 0.98V 1.34V 0.92V 0.40nS 0.98V 1.34V 0.92V 0.60nS 0.98V 1.34V 0.92V 0.80nS 0.99V 1.34V 0.94V 1.00nS 1.05V 1.34V 1.07V 1.20nS 1.18V 1.34V 1.24V 1.40nS 1.31V 1.36V 1.37V 1.60nS 1.49V 1.44V 1.55V 1.80nS 1.69V 1.57V 1.76V 2.00nS 1.92V 1.73V 2.02V 2.20nS 2.18V 1.92V 2.33V 2.40nS 2.46V 2.11V 2.62V 2.60nS 2.73V 2.32V 2.91V
86 PRELIMINARY Freescale Semiconductor
2.80nS 2.97V 2.55V 3.20V 3.00nS 3.09V 2.69V 3.33V 3.20nS 3.15V 2.76V 3.39V 3.40nS 3.20V 2.86V 3.44V 3.60nS 3.24V 2.92V 3.50V 3.80nS 3.26V 2.95V 3.53V 4.00nS 3.28V 2.98V 3.55V 4.20nS 3.29V 2.99V 3.57V 4.40nS 3.29V 2.99V 3.59V 4.60nS 3.30V 3.00V 3.59V 4.80nS 3.30V 3.00V 3.59V 5.00nS 3.30V 3.00V 3.60V 5.20nS 3.30V 3.00V 3.60V 5.40nS 3.30V 3.00V 3.60V 5.60nS 3.30V 3.00V 3.60V 5.80nS 3.30V 3.00V 3.60V 6.00nS 3.30V 3.00V 3.60V 6.20nS 3.30V 3.00V 3.60V 6.40nS 3.30V 3.00V 3.60V 6.60nS 3.30V 3.00V 3.60V 6.80nS 3.30V 3.00V 3.60V 7.00nS 3.30V 3.00V 3.60V 7.20nS 3.30V 3.00V 3.60V 7.40nS 3.30V 3.00V 3.60V 7.60nS 3.30V 3.00V 3.60V 7.80nS 3.30V 3.00V 3.60V 8.00nS 3.30V 3.00V 3.60V 8.20nS 3.30V 3.00V 3.60V 8.40nS 3.30V 3.00V 3.60V 8.60nS 3.30V 3.00V 3.60V 8.80nS 3.30V 3.00V 3.60V 9.00nS 3.30V 3.00V 3.60V 9.20nS 3.30V 3.00V 3.60V 9.40nS 3.30V 3.00V 3.60V 9.60nS 3.30V 3.00V 3.60V 9.80nS 3.30V 3.00V 3.60V 10.00nS 3.30V 3.00V 3.60V [Falling Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H
Freescale Semiconductor PRELIMINARY 87 C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 2.41V 1.87V 2.79V 0.20nS 2.41V 1.87V 2.79V 0.40nS 2.41V 1.87V 2.79V 0.60nS 2.41V 1.87V 2.76V 0.80nS 2.37V 1.87V 2.62V 1.00nS 2.24V 1.86V 2.44V 1.20nS 2.07V 1.85V 2.25V 1.40nS 1.94V 1.82V 2.10V 1.60nS 1.76V 1.75V 1.85V 1.80nS 1.54V 1.65V 1.55V 2.00nS 1.28V 1.51V 1.23V 2.20nS 1.01V 1.36V 0.96V 2.40nS 0.78V 1.18V 0.77V 2.60nS 0.61V 0.99V 0.63V 2.80nS 0.46V 0.76V 0.51V 3.00nS 0.37V 0.59V 0.43V 3.20nS 0.33V 0.49V 0.37V 3.40nS 0.26V 0.39V 0.32V 3.60nS 0.21V 0.31V 0.27V 3.80nS 0.17V 0.25V 0.22V 4.00nS 0.14V 0.19V 0.19V 4.20nS 0.10V 0.15V 0.14V 4.40nS 73.29mV 0.10V 0.11V 4.60nS 60.19mV 87.46mV 93.57mV 4.80nS 48.89mV 70.67mV 78.29mV 5.00nS 34.23mV 50.83mV 61.98mV 5.20nS 24.65mV 38.23mV 46.06mV 5.40nS 14.47mV 23.57mV 32.51mV 5.60nS 8.10mV 14.65mV 20.47mV 5.80nS 5.49mV 9.93mV 15.65mV 6.00nS 3.06mV 6.30mV 11.70mV 6.20nS 1.82mV 4.27mV 6.64mV 6.40nS 1.09mV 2.24mV 4.15mV 6.60nS 0.61mV 1.46mV 2.31mV 6.80nS 0.54mV 1.08mV 1.05mV 7.00nS 0.47mV 0.78mV 0.76mV 7.20nS 0.42mV 0.69mV 0.48mV 7.40nS 0.35mV 0.59mV 0.37mV 7.60nS 0.31mV 0.52mV 0.31mV 7.80nS 0.29mV 0.48mV 0.29mV 8.00nS 0.27mV 0.45mV 0.26mV
88 PRELIMINARY Freescale Semiconductor
8.20nS 0.24mV 0.40mV 0.24mV 8.40nS 0.20mV 0.35mV 0.21mV 8.60nS 0.18mV 0.32mV 0.18mV 8.80nS 0.18mV 0.31mV 0.16mV 9.00nS 0.17mV 0.28mV 0.16mV 9.20nS 0.15mV 0.24mV 0.15mV 9.40nS 0.12mV 0.20mV 0.12mV 9.60nS 0.10mV 0.19mV 93.74uV 9.80nS 0.11mV 0.20mV 90.71uV 10.00nS 0.11mV 0.17mV 97.83uV [Falling Waveform] R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 3.30V 3.00V 3.60V 0.20nS 3.30V 3.00V 3.60V 0.40nS 3.30V 3.00V 3.60V 0.60nS 3.30V 3.00V 3.59V 0.80nS 3.30V 3.00V 3.52V 1.00nS 3.25V 3.00V 3.43V 1.20nS 3.17V 3.00V 3.34V 1.40nS 3.12V 3.00V 3.27V 1.60nS 3.05V 3.00V 3.17V 1.80nS 2.97V 2.97V 3.06V 2.00nS 2.87V 2.92V 2.95V 2.20nS 2.78V 2.87V 2.83V 2.40nS 2.68V 2.82V 2.70V 2.60nS 2.58V 2.76V 2.58V 2.80nS 2.45V 2.69V 2.43V 3.00nS 2.34V 2.62V 2.30V 3.20nS 2.26V 2.57V 2.21V 3.40nS 2.17V 2.50V 2.07V 3.60nS 2.07V 2.44V 1.91V 3.80nS 1.98V 2.38V 1.76V 4.00nS 1.89V 2.32V 1.62V 4.20nS 1.76V 2.25V 1.49V 4.40nS 1.63V 2.18V 1.37V 4.60nS 1.55V 2.15V 1.32V
Freescale Semiconductor PRELIMINARY 89 4.80nS 1.48V 2.11V 1.27V 5.00nS 1.40V 2.06V 1.21V 5.20nS 1.32V 2.01V 1.16V 5.40nS 1.25V 1.96V 1.10V 5.60nS 1.19V 1.92V 1.06V 5.80nS 1.15V 1.89V 1.04V 6.00nS 1.13V 1.87V 1.02V 6.20nS 1.10V 1.84V 1.00V 6.40nS 1.07V 1.81V 0.98V 6.60nS 1.05V 1.78V 0.96V 6.80nS 1.03V 1.75V 0.95V 7.00nS 1.02V 1.72V 0.94V 7.20nS 1.01V 1.70V 0.93V 7.40nS 1.00V 1.67V 0.93V 7.60nS 1.00V 1.64V 0.92V 7.80nS 1.00V 1.62V 0.92V 8.00nS 1.00V 1.60V 0.92V 8.20nS 0.99V 1.57V 0.92V 8.40nS 0.99V 1.53V 0.92V 8.60nS 0.99V 1.50V 0.92V 8.80nS 0.99V 1.47V 0.92V 9.00nS 0.99V 1.44V 0.92V 9.20nS 0.99V 1.42V 0.92V 9.40nS 0.99V 1.40V 0.92V 9.60nS 0.99V 1.38V 0.92V 9.80nS 0.99V 1.37V 0.92V 10.00nS 0.99V 1.36V 0.92V | End [Model] prd16dgz | Model prd24dgz [Model] prd24dgz Model_type I/O Polarity Non-Inverting Enable Active-Low Vinl = 0.80V Vinh = 2.00V Vmeas = 1.50V Cref = 50.00pF Rref = 1.00M Vref = 0.000V
90 PRELIMINARY Freescale Semiconductor
C_comp 4.15pF 3.73pF 4.56pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [Pulldown] | voltage I(typ) I(min) I(max) -3.30 -10.00mA 0.000A 0.000A -3.10 0.000A 0.000A -10.00mA -2.90 0.000A 0.000A 0.000A -2.70 0.000A 0.000A 0.000A -2.50 0.000A 0.000A 0.000A -2.30 0.000A 0.000A -10.00mA -2.10 -10.00mA 0.000A -10.00mA -1.90 -10.00mA 0.000A -10.00mA -1.70 -10.00mA -10.00mA -10.00mA -1.50 -10.00mA -10.00mA -20.00mA -1.00 -19.00mA -10.00mA -23.00mA -0.90 -21.00mA -10.00mA -26.00mA -0.80 -41.70mA -11.00mA -55.33mA -0.70 -50.61mA -14.60mA -55.12mA -0.60 -46.07mA -25.10mA -50.21mA -0.50 -39.45mA -26.37mA -43.90mA -0.40 -32.03mA -22.06mA -36.08mA -0.30 -24.29mA -16.63mA -27.48mA -0.20 -16.36mA -11.11mA -18.57mA -0.00 3.80nA 7.33nA 12.06nA 0.10 8.11mA 5.36mA 9.30mA 0.20 15.76mA 10.37mA 18.18mA 0.30 22.98mA 15.05mA 26.64mA 0.40 29.76mA 19.40mA 34.69mA 0.50 36.11mA 23.42mA 42.32mA 0.60 42.04mA 27.12mA 49.54mA 0.70 47.55mA 30.50mA 56.36mA 0.80 52.66mA 33.58mA 62.78mA 0.90 57.35mA 36.36mA 68.80mA 1.00 61.65mA 38.84mA 74.42mA 1.10 65.55mA 41.04mA 79.65mA 1.20 69.06mA 42.96mA 84.48mA
Freescale Semiconductor PRELIMINARY 91 1.30 72.19mA 44.61mA 88.92mA 1.40 74.94mA 45.99mA 92.97mA 1.50 77.32mA 47.12mA 96.63mA 1.60 79.33mA 48.01mA 99.91mA 1.70 80.95mA 48.68mA 0.10A 1.80 82.19mA 49.17mA 0.11A 1.90 83.09mA 49.54mA 0.11A 2.00 83.74mA 49.83mA 0.11A 2.10 84.23mA 50.06mA 0.11A 2.20 84.62mA 50.25mA 0.11A 2.30 84.93mA 50.42mA 0.11A 2.40 85.20mA 50.57mA 0.11A 2.50 85.44mA 50.70mA 0.11A 2.60 85.65mA 50.82mA 0.11A 2.70 85.84mA 50.93mA 0.11A 2.80 86.01mA 51.03mA 0.11A 2.90 86.18mA 51.13mA 0.11A 3.00 86.33mA 51.22mA 0.11A 3.10 86.48mA 51.31mA 0.11A 3.20 86.62mA 51.40mA 0.11A 3.30 86.75mA 51.50mA 0.11A 3.40 86.89mA 51.73mA 0.12A 3.50 87.06mA 52.32mA 0.12A 3.60 87.16mA 53.14mA 0.12A 3.70 87.30mA 54.02mA 0.12A 3.80 87.47mA 54.48mA 0.12A 3.90 87.77mA 52.16mA 0.12A 4.00 88.66mA 52.28mA 0.12A 4.10 90.00mA 52.42mA 0.12A 4.20 91.34mA 52.58mA 0.12A 4.30 89.39mA 52.77mA 0.12A 4.50 89.66mA 53.24mA 0.12A 4.70 90.64mA 53.86mA 0.12A 4.90 91.94mA 54.68mA 0.12A 5.10 93.66mA 55.73mA 0.12A 5.30 95.77mA 57.03mA 0.13A 5.50 98.33mA 58.59mA 0.13A 5.70 0.10A 60.44mA 0.13A 5.90 0.10A 62.55mA 0.14A 6.10 0.11A 64.93mA 0.14A 6.60 0.12A 71.83mA 0.15A [Pullup] | voltage I(typ) I(min) I(max)
92 PRELIMINARY Freescale Semiconductor
-3.30 0.22A 0.16A 0.25A -3.10 0.21A 0.16A 0.24A -2.90 0.20A 0.15A 0.23A -2.70 0.19A 0.14A 0.22A -2.50 0.18A 0.14A 0.21A -2.30 0.17A 0.13A 0.20A -2.10 0.16A 0.12A 0.19A -1.90 0.15A 0.11A 0.17A -1.70 0.14A 0.10A 0.16A -1.50 0.12A 90.15mA 0.14A -1.00 92.80mA 62.50mA 0.11A -0.90 84.30mA 57.02mA 97.94mA -0.80 75.06mA 54.41mA 87.24mA -0.70 65.63mA 47.70mA 76.50mA -0.60 56.31mA 40.65mA 66.14mA -0.50 47.22mA 33.53mA 55.68mA -0.40 38.00mA 26.51mA 44.96mA -0.30 28.62mA 19.71mA 34.00mA -0.20 19.12mA 13.04mA 22.83mA -0.10 9.57mA 6.46mA 11.50mA 0.00 34.08uA 11.19uA 71.92uA 0.10 -9.20mA -6.16mA -11.08mA 0.20 -17.92mA -11.98mA -21.68mA 0.30 -26.12mA -17.45mA -31.71mA 0.40 -33.83mA -22.56mA -41.21mA 0.50 -41.04mA -27.33mA -50.17mA 0.60 -47.76mA -31.76mA -58.60mA 0.70 -54.01mA -35.85mA -66.51mA 0.80 -59.78mA -39.61mA -73.91mA 0.90 -65.10mA -43.04mA -80.81mA 1.00 -69.96mA -46.14mA -87.22mA 1.10 -74.37mA -48.91mA -93.14mA 1.20 -78.35mA -51.37mA -98.58mA 1.30 -81.89mA -53.51mA -0.10A 1.40 -85.01mA -55.34mA -0.11A 1.50 -87.72mA -56.87mA -0.11A 1.60 -90.01mA -58.11mA -0.12A 1.70 -91.93mA -59.08mA -0.12A 1.80 -93.48mA -59.83mA -0.12A 1.90 -94.74mA -60.42mA -0.12A 2.00 -95.77mA -60.91mA -0.13A 2.10 -96.63mA -61.34mA -0.13A 2.20 -97.36mA -61.71mA -0.13A
Freescale Semiconductor PRELIMINARY 93 2.30 -97.99mA -62.05mA -0.13A 2.40 -98.55mA -62.36mA -0.13A 2.50 -99.04mA -62.64mA -0.13A 2.60 -99.49mA -62.90mA -0.13A 2.70 -99.89mA -63.14mA -0.13A 5.10 -20.27A -25.88A -13.90A 5.30 -24.35A -29.44A -18.14A 5.50 -28.43A -33.00A -22.38A 5.70 -32.51A -36.56A -26.62A 5.90 -36.60A -40.13A -30.86A 6.10 -40.68A -43.69A -35.09A 6.60 -50.89A -52.59A -45.69A [GND_clamp] | voltage I(typ) I(min) I(max)
94 PRELIMINARY Freescale Semiconductor
-0.20 -27.91uA -14.70uA -42.94uA -0.00 -75.80nA -77.03nA -90.19nA 0.20 18.72uA 7.32uA 32.29uA 0.40 29.20uA 10.26uA 54.13uA 0.60 32.50uA 10.68uA 65.79uA 0.80 33.08uA 10.79uA 69.34uA 1.00 33.30uA 10.86uA 70.18uA 1.20 33.45uA 10.92uA 70.55uA 1.40 33.57uA 10.98uA 70.80uA 1.60 33.68uA 11.03uA 71.00uA 1.80 33.78uA 11.07uA 71.16uA 2.00 33.87uA 11.11uA 71.32uA 2.20 33.96uA 11.14uA 71.47uA 2.40 34.01uA 11.15uA 71.61uA 2.60 34.03uA 11.16uA 71.76uA 2.80 34.04uA 11.17uA 71.84uA 3.00 34.05uA 11.18uA 71.86uA 3.20 34.06uA 11.75uA 71.88uA 3.40 34.08uA 10.69uA 71.90uA 3.60 34.10uA 9.63uA 71.92uA 3.80 34.12uA 8.57uA 71.94uA 4.00 34.14uA 7.51uA 71.96uA 4.20 34.16uA 6.45uA 71.98uA 4.40 34.18uA 5.39uA 72.00uA 4.60 34.20uA 4.33uA 72.02uA 4.80 34.22uA 3.27uA 72.04uA 5.00 34.24uA 2.21uA 72.06uA [POWER_clamp]
Freescale Semiconductor PRELIMINARY 95 | voltage I(typ) I(min) I(max) -5.00 48.55uA 16.31uA 95.55uA -4.90 48.22uA 16.19uA 95.05uA -4.80 47.89uA 16.07uA 94.55uA -4.70 47.56uA 15.95uA 94.05uA -4.60 47.23uA 15.83uA 93.55uA -4.50 46.90uA 15.71uA 93.05uA -4.40 46.57uA 15.59uA 92.55uA -4.30 46.24uA 15.47uA 92.05uA -4.20 45.91uA 15.35uA 91.55uA -4.10 45.58uA 15.23uA 91.05uA -4.00 45.25uA 15.11uA 90.55uA -3.90 44.92uA 14.99uA 90.05uA -3.80 44.59uA 14.87uA 89.55uA -3.70 44.26uA 14.75uA 89.05uA -3.60 43.93uA 14.63uA 88.55uA -3.50 43.60uA 14.51uA 88.05uA -3.40 43.27uA 14.39uA 87.55uA -3.30 42.94uA 14.27uA 87.05uA -3.20 42.61uA 14.15uA 86.55uA -3.10 42.28uA 14.03uA 86.05uA -3.00 41.95uA 13.91uA 85.55uA -2.90 41.62uA 13.79uA 85.05uA -2.80 41.29uA 13.67uA 84.55uA -2.70 40.96uA 13.55uA 84.05uA -2.60 40.63uA 13.43uA 83.55uA -2.50 40.30uA 13.31uA 83.05uA -2.40 39.97uA 13.19uA 82.55uA -2.30 39.64uA 13.07uA 82.05uA -2.20 39.31uA 12.95uA 81.55uA -2.10 38.98uA 12.83uA 81.05uA -2.00 38.65uA 12.71uA 80.55uA -1.90 38.32uA 12.59uA 80.05uA -1.80 37.99uA 12.47uA 79.55uA -1.70 37.66uA 12.35uA 79.05uA -1.60 37.33uA 12.23uA 78.55uA -1.50 37.00uA 12.13uA 78.05uA -1.40 36.69uA 12.03uA 77.55uA -1.30 36.40uA 11.94uA 77.05uA -1.20 36.13uA 11.85uA 76.55uA -1.10 35.88uA 11.78uA 76.05uA -1.00 35.64uA 11.71uA 75.55uA -0.90 35.43uA 11.64uA 75.08uA
96 PRELIMINARY Freescale Semiconductor
-0.80 35.24uA 11.59uA 74.65uA -0.70 35.07uA 11.54uA 74.26uA -0.60 34.92uA 11.49uA 73.91uA -0.50 34.79uA 11.45uA 73.60uA -0.40 34.67uA 11.42uA 73.32uA -0.30 34.57uA 11.39uA 73.08uA -0.20 34.49uA 11.37uA 72.88uA -0.10 34.42uA 11.35uA 72.70uA 0.00 34.36uA 11.33uA 72.56uA [Ramp] | variable typ min max R_load = 50.00 [Rising Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 0.70uV 0.92uV 0.68uV 0.20nS 0.45uV 0.77uV 0.000V 0.40nS -5.49uV -1.76uV 16.07uV 0.60nS -0.25mV -4.97uV -2.66mV 0.80nS -2.88mV 24.27uV -5.55mV 1.00nS -3.85mV -5.54uV 32.40mV 1.20nS 18.80mV -0.76mV 80.52mV 1.40nS 45.63mV -3.09mV 0.11V 1.60nS 80.05mV -6.58mV 0.16V 1.80nS 0.11V -0.18mV 0.21V 2.00nS 0.16V 21.52mV 0.27V 2.20nS 0.20V 48.21mV 0.33V 2.40nS 0.26V 76.15mV 0.41V 2.60nS 0.32V 0.11V 0.48V 2.80nS 0.41V 0.16V 0.61V 3.00nS 0.51V 0.19V 0.73V 3.20nS 0.58V 0.24V 0.82V 3.40nS 0.71V 0.30V 0.97V 3.60nS 0.85V 0.36V 1.16V
Freescale Semiconductor PRELIMINARY 97 3.80nS 1.00V 0.45V 1.35V 4.00nS 1.17V 0.54V 1.55V 4.20nS 1.38V 0.67V 1.80V 4.40nS 1.57V 0.80V 2.03V 4.60nS 1.68V 0.88V 2.15V 4.80nS 1.78V 0.96V 2.26V 5.00nS 1.91V 1.06V 2.39V 5.20nS 2.01V 1.15V 2.51V 5.40nS 2.13V 1.25V 2.61V 5.60nS 2.22V 1.34V 2.70V 5.80nS 2.27V 1.40V 2.74V 6.00nS 2.31V 1.44V 2.77V 6.20nS 2.35V 1.50V 2.80V 6.40nS 2.38V 1.56V 2.82V 6.60nS 2.41V 1.61V 2.84V 6.80nS 2.43V 1.66V 2.86V 7.00nS 2.45V 1.70V 2.87V 7.20nS 2.46V 1.74V 2.88V 7.40nS 2.48V 1.78V 2.89V 7.60nS 2.49V 1.82V 2.90V 7.80nS 2.50V 1.84V 2.91V 8.00nS 2.51V 1.86V 2.91V 8.20nS 2.52V 1.88V 2.92V 8.40nS 2.52V 1.90V 2.92V 8.60nS 2.53V 1.92V 2.92V 8.80nS 2.54V 1.93V 2.93V 9.00nS 2.54V 1.95V 2.93V 9.20nS 2.55V 1.96V 2.94V 9.40nS 2.55V 1.97V 2.94V 9.60nS 2.56V 1.98V 2.94V 9.80nS 2.56V 2.00V 2.95V 10.00nS 2.57V 2.00V 2.95V [Rising Waveform] R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 0.76V 1.03V 0.72V 0.20nS 0.76V 1.03V 0.72V
98 PRELIMINARY Freescale Semiconductor
0.40nS 0.76V 1.03V 0.72V 0.60nS 0.76V 1.03V 0.72V 0.80nS 0.77V 1.03V 0.73V 1.00nS 0.81V 1.03V 0.82V 1.20nS 0.90V 1.03V 0.93V 1.40nS 0.98V 1.04V 1.01V 1.60nS 1.09V 1.11V 1.13V 1.80nS 1.22V 1.20V 1.26V 2.00nS 1.35V 1.32V 1.42V 2.20nS 1.51V 1.45V 1.58V 2.40nS 1.69V 1.59V 1.78V 2.60nS 1.91V 1.74V 2.02V 2.80nS 2.22V 1.96V 2.36V 3.00nS 2.47V 2.16V 2.63V 3.20nS 2.65V 2.31V 2.82V 3.40nS 2.85V 2.49V 3.03V 3.60nS 2.97V 2.62V 3.17V 3.80nS 3.08V 2.73V 3.30V 4.00nS 3.14V 2.83V 3.36V 4.20nS 3.19V 2.89V 3.42V 4.40nS 3.23V 2.94V 3.47V 4.60nS 3.25V 2.95V 3.50V 4.80nS 3.27V 2.97V 3.52V 5.00nS 3.28V 2.98V 3.54V 5.20nS 3.29V 2.99V 3.56V 5.40nS 3.29V 2.99V 3.57V 5.60nS 3.30V 3.00V 3.58V 5.80nS 3.30V 3.00V 3.59V 6.00nS 3.30V 3.00V 3.59V 6.20nS 3.30V 3.00V 3.59V 6.40nS 3.30V 3.00V 3.60V 6.60nS 3.30V 3.00V 3.60V 6.80nS 3.30V 3.00V 3.60V 7.00nS 3.30V 3.00V 3.60V 7.20nS 3.30V 3.00V 3.60V 7.40nS 3.30V 3.00V 3.60V 7.60nS 3.30V 3.00V 3.60V 7.80nS 3.30V 3.00V 3.60V 8.00nS 3.30V 3.00V 3.60V 8.20nS 3.30V 3.00V 3.60V 8.40nS 3.30V 3.00V 3.60V 8.60nS 3.30V 3.00V 3.60V 8.80nS 3.30V 3.00V 3.60V 9.00nS 3.30V 3.00V 3.60V
Freescale Semiconductor PRELIMINARY 99 9.20nS 3.30V 3.00V 3.60V 9.40nS 3.30V 3.00V 3.60V 9.60nS 3.30V 3.00V 3.60V 9.80nS 3.30V 3.00V 3.60V 10.00nS 3.30V 3.00V 3.60V [Falling Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 2.62V 2.12V 2.99V 0.20nS 2.62V 2.12V 2.99V 0.40nS 2.62V 2.12V 2.99V 0.60nS 2.62V 2.12V 2.96V 0.80nS 2.60V 2.12V 2.85V 1.00nS 2.50V 2.12V 2.72V 1.20nS 2.38V 2.11V 2.59V 1.40nS 2.29V 2.09V 2.50V 1.60nS 2.17V 2.04V 2.36V 1.80nS 2.04V 1.96V 2.20V 2.00nS 1.89V 1.85V 2.00V 2.20nS 1.71V 1.74V 1.76V 2.40nS 1.51V 1.63V 1.49V 2.60nS 1.27V 1.50V 1.23V 2.80nS 0.99V 1.33V 0.98V 3.00nS 0.81V 1.17V 0.83V 3.20nS 0.71V 1.04V 0.75V 3.40nS 0.59V 0.87V 0.66V 3.60nS 0.51V 0.72V 0.57V 3.80nS 0.44V 0.59V 0.50V 4.00nS 0.37V 0.49V 0.45V 4.20nS 0.31V 0.40V 0.38V 4.40nS 0.26V 0.33V 0.32V 4.60nS 0.23V 0.28V 0.29V 4.80nS 0.20V 0.25V 0.26V 5.00nS 0.17V 0.21V 0.23V 5.20nS 0.15V 0.18V 0.20V 5.40nS 0.12V 0.14V 0.17V 5.60nS 92.71mV 0.11V 0.14V
100 PRELIMINARY Freescale Semiconductor
5.80nS 79.46mV 96.17mV 0.12V 6.00nS 67.17mV 83.01mV 0.11V 6.20nS 54.74mV 65.86mV 89.82mV 6.40nS 42.77mV 53.06mV 75.55mV 6.60nS 33.26mV 41.31mV 61.63mV 6.80nS 25.46mV 31.29mV 50.25mV 7.00nS 18.21mV 23.99mV 40.51mV 7.20nS 13.43mV 16.92mV 31.37mV 7.40nS 8.06mV 11.32mV 23.11mV 7.60nS 4.81mV 6.46mV 15.54mV 7.80nS 3.27mV 4.82mV 12.49mV 8.00nS 1.98mV 3.62mV 9.63mV 8.20nS 1.32mV 2.10mV 6.17mV 8.40nS 0.78mV 1.45mV 4.24mV 8.60nS 0.50mV 1.01mV 2.46mV 8.80nS 0.42mV 0.70mV 1.45mV 9.00nS 0.34mV 0.61mV 0.94mV 9.20nS 0.30mV 0.51mV 0.50mV 9.40nS 0.27mV 0.45mV 0.38mV 9.60nS 0.24mV 0.40mV 0.28mV 9.80nS 0.21mV 0.35mV 0.23mV 10.00nS 0.22mV 0.32mV 0.21mV [Falling Waveform] R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 3.30V 3.00V 3.60V 0.20nS 3.30V 3.00V 3.60V 0.40nS 3.30V 3.00V 3.60V 0.60nS 3.30V 3.00V 3.59V 0.80nS 3.30V 3.00V 3.52V 1.00nS 3.25V 3.00V 3.44V 1.20nS 3.18V 3.00V 3.37V 1.40nS 3.14V 3.00V 3.32V 1.60nS 3.09V 3.00V 3.24V 1.80nS 3.03V 2.97V 3.16V 2.00nS 2.96V 2.92V 3.07V 2.20nS 2.88V 2.88V 2.98V
Freescale Semiconductor PRELIMINARY 101 2.40nS 2.80V 2.84V 2.88V 2.60nS 2.72V 2.80V 2.78V 2.80nS 2.61V 2.74V 2.65V 3.00nS 2.51V 2.68V 2.55V 3.20nS 2.44V 2.64V 2.47V 3.40nS 2.34V 2.58V 2.35V 3.60nS 2.25V 2.52V 2.23V 3.80nS 2.15V 2.46V 2.09V 4.00nS 2.06V 2.39V 1.93V 4.20nS 1.93V 2.32V 1.75V 4.40nS 1.81V 2.24V 1.58V 4.60nS 1.73V 2.20V 1.50V 4.80nS 1.65V 2.15V 1.43V 5.00nS 1.54V 2.09V 1.34V 5.20nS 1.44V 2.04V 1.26V 5.40nS 1.32V 1.97V 1.18V 5.60nS 1.23V 1.91V 1.11V 5.80nS 1.18V 1.87V 1.07V 6.00nS 1.13V 1.84V 1.04V 6.20nS 1.08V 1.79V 1.00V 6.40nS 1.04V 1.75V 0.96V 6.60nS 1.00V 1.71V 0.92V 6.80nS 0.96V 1.67V 0.89V 7.00nS 0.93V 1.63V 0.87V 7.20nS 0.90V 1.59V 0.84V 7.40nS 0.87V 1.54V 0.82V 7.60nS 0.85V 1.48V 0.80V 7.80nS 0.83V 1.44V 0.78V 8.00nS 0.82V 1.40V 0.78V 8.20nS 0.81V 1.35V 0.76V 8.40nS 0.80V 1.31V 0.75V 8.60nS 0.79V 1.27V 0.75V 8.80nS 0.78V 1.23V 0.74V 9.00nS 0.78V 1.20V 0.73V 9.20nS 0.78V 1.17V 0.73V 9.40nS 0.77V 1.15V 0.73V 9.60nS 0.77V 1.12V 0.72V 9.80nS 0.77V 1.10V 0.72V 10.00nS 0.77V 1.09V 0.72V | End [Model] prd24dgz | Model prt24dgz
102 PRELIMINARY Freescale Semiconductor
[Model] prt24dgz Model_type 3-state Polarity Non-Inverting Enable Active-Low Vmeas = 1.50V Cref = 50.00pF Rref = 1.00M Vref = 0.000V C_comp 4.09pF 3.68pF 4.50pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [Pulldown] | voltage I(typ) I(min) I(max) -3.30 -10.00mA 0.000A 0.000A -3.10 0.000A 0.000A -10.00mA -2.90 0.000A 0.000A 0.000A -2.70 0.000A 0.000A 0.000A -2.50 0.000A 0.000A 0.000A -2.30 0.000A 0.000A -10.00mA -2.10 -10.00mA 0.000A -10.00mA -1.90 -10.00mA 0.000A -10.00mA -1.70 -10.00mA -10.00mA -10.00mA -1.50 -10.00mA -10.00mA -20.00mA -1.00 -20.00mA -10.00mA -23.00mA -0.90 -21.00mA -10.00mA -26.00mA -0.80 -41.70mA -12.00mA -55.37mA -0.70 -50.60mA -14.60mA -55.11mA -0.60 -46.07mA -25.10mA -50.21mA -0.50 -39.45mA -26.38mA -43.90mA -0.40 -32.03mA -22.06mA -36.09mA -0.30 -24.30mA -16.63mA -27.49mA -0.20 -16.36mA -11.10mA -18.57mA -0.00 3.97nA 7.41nA 12.45nA 0.10 8.11mA 5.36mA 9.30mA 0.20 15.76mA 10.38mA 18.18mA
Freescale Semiconductor PRELIMINARY 103 0.30 22.98mA 15.05mA 26.64mA 0.40 29.76mA 19.40mA 34.68mA 0.50 36.11mA 23.42mA 42.32mA 0.60 42.04mA 27.11mA 49.54mA 0.70 47.55mA 30.50mA 56.36mA 0.80 52.65mA 33.58mA 62.78mA 0.90 57.35mA 36.36mA 68.80mA 1.00 61.64mA 38.84mA 74.42mA 1.10 65.54mA 41.04mA 79.65mA 1.20 69.06mA 42.96mA 84.48mA 1.30 72.18mA 44.61mA 88.92mA 1.40 74.93mA 45.99mA 92.97mA 1.50 77.31mA 47.12mA 96.63mA 1.60 79.32mA 48.01mA 99.91mA 1.70 80.95mA 48.68mA 0.10A 1.80 82.19mA 49.17mA 0.11A 1.90 83.08mA 49.54mA 0.11A 2.00 83.74mA 49.82mA 0.11A 2.10 84.23mA 50.06mA 0.11A 2.20 84.61mA 50.25mA 0.11A 2.30 84.93mA 50.42mA 0.11A 2.40 85.20mA 50.57mA 0.11A 2.50 85.43mA 50.70mA 0.11A 2.60 85.64mA 50.82mA 0.11A 2.70 85.83mA 50.93mA 0.11A 2.80 86.01mA 51.03mA 0.11A 2.90 86.17mA 51.13mA 0.11A 3.00 86.32mA 51.22mA 0.11A 3.10 86.47mA 51.31mA 0.11A 3.20 86.61mA 51.40mA 0.11A 3.30 86.75mA 51.50mA 0.11A 3.40 86.88mA 51.73mA 0.12A 3.50 87.01mA 52.32mA 0.12A 3.60 87.15mA 53.14mA 0.12A 3.70 87.30mA 54.01mA 0.12A 3.80 87.47mA 54.42mA 0.12A 3.90 87.77mA 52.16mA 0.12A 4.00 88.66mA 52.28mA 0.12A 4.10 90.00mA 52.42mA 0.12A 4.20 91.29mA 52.58mA 0.12A 4.30 89.03mA 52.77mA 0.12A 4.50 89.65mA 53.24mA 0.12A 4.70 90.63mA 53.86mA 0.12A 4.90 91.94mA 54.68mA 0.12A
104 PRELIMINARY Freescale Semiconductor
5.10 93.62mA 55.72mA 0.12A 5.30 95.73mA 57.02mA 0.13A 5.50 98.29mA 58.58mA 0.13A 5.70 0.10A 60.42mA 0.13A 5.90 0.10A 62.54mA 0.14A 6.10 0.11A 64.92mA 0.14A 6.60 0.12A 71.81mA 0.15A [Pullup] | voltage I(typ) I(min) I(max) -3.30 0.22A 0.16A 0.25A -3.10 0.21A 0.16A 0.24A -2.90 0.20A 0.15A 0.23A -2.70 0.19A 0.14A 0.22A -2.50 0.18A 0.14A 0.21A -2.30 0.17A 0.13A 0.20A -2.10 0.16A 0.12A 0.18A -1.90 0.15A 0.11A 0.17A -1.70 0.14A 0.10A 0.16A -1.50 0.12A 90.13mA 0.14A -1.00 92.59mA 62.48mA 0.11A -0.90 84.26mA 56.95mA 97.88mA -0.80 75.03mA 54.36mA 87.19mA -0.70 65.60mA 47.69mA 76.45mA -0.60 56.28mA 40.63mA 66.08mA -0.50 47.19mA 33.52mA 55.62mA -0.40 37.96mA 26.49mA 44.89mA -0.30 28.58mA 19.70mA 33.93mA -0.20 19.09mA 13.03mA 22.76mA -0.10 9.54mA 6.45mA 11.43mA 0.00 0.17uA 0.16uA 0.19uA 0.10 -9.23mA -6.17mA -11.15mA 0.20 -17.95mA -11.99mA -21.75mA 0.30 -26.16mA -17.46mA -31.79mA 0.40 -33.86mA -22.57mA -41.28mA 0.50 -41.07mA -27.35mA -50.24mA 0.60 -47.79mA -31.77mA -58.67mA 0.70 -54.04mA -35.86mA -66.58mA 0.80 -59.82mA -39.62mA -73.98mA 0.90 -65.13mA -43.05mA -80.88mA 1.00 -69.99mA -46.15mA -87.29mA 1.10 -74.41mA -48.92mA -93.21mA 1.20 -78.38mA -51.38mA -98.65mA
Freescale Semiconductor PRELIMINARY 105 1.30 -81.93mA -53.52mA -0.10A 1.40 -85.05mA -55.36mA -0.11A 1.50 -87.75mA -56.88mA -0.11A 1.60 -90.05mA -58.12mA -0.12A 1.70 -91.96mA -59.09mA -0.12A 1.80 -93.52mA -59.84mA -0.12A 1.90 -94.78mA -60.43mA -0.12A 2.00 -95.80mA -60.92mA -0.13A 2.10 -96.66mA -61.35mA -0.13A 2.20 -97.39mA -61.72mA -0.13A 2.30 -98.03mA -62.06mA -0.13A 2.40 -98.58mA -62.37mA -0.13A 2.50 -99.08mA -62.65mA -0.13A 2.60 -99.52mA -62.91mA -0.13A 2.70 -99.92mA -63.15mA -0.13A 5.10 -20.27A -25.88A -13.90A 5.30 -24.35A -29.44A -18.14A 5.50 -28.43A -33.00A -22.38A 5.70 -32.51A -36.56A -26.62A 5.90 -36.60A -40.13A -30.86A 6.10 -40.68A -43.69A -35.09A 6.60 -50.89A -52.59A -45.69A [GND_clamp] | voltage I(typ) I(min) I(max)
106 PRELIMINARY Freescale Semiconductor
-0.00 -76.61nA -77.36nA -91.73nA 0.10 -68.52nA -64.82nA -83.30nA 0.20 -60.47nA -56.49nA -75.01nA 0.30 -52.43nA -48.39nA -66.73nA 0.40 -44.39nA -40.30nA -58.46nA 0.50 -36.35nA -32.21nA -50.19nA 0.60 -28.31nA -24.12nA -41.93nA 0.70 -20.27nA -16.03nA -33.68nA 0.80 -12.24nA -7.94nA -25.42nA 0.90 -4.20nA 0.15nA -17.17nA
Freescale Semiconductor PRELIMINARY 107 1.00 3.83nA 8.23nA -8.92nA 1.10 11.86nA 16.32nA -0.67nA 1.20 19.89nA 24.41nA 7.58nA 1.30 27.92nA 32.50nA 15.84nA 1.40 35.95nA 40.59nA 24.10nA 1.50 43.98nA 48.68nA 32.36nA 1.60 52.00nA 56.77nA 40.64nA 1.70 60.02nA 64.85nA 48.92nA 1.80 68.04nA 72.94nA 57.21nA 1.90 76.05nA 81.03nA 65.52nA 2.00 84.05nA 89.12nA 73.85nA 2.10 92.04nA 97.20nA 82.20nA 2.20 100.00nA 0.11uA 90.59nA 2.30 0.11uA 0.11uA 99.01nA 2.40 0.12uA 0.12uA 0.11uA 2.50 0.12uA 0.12uA 0.12uA 2.60 0.13uA 0.13uA 0.12uA 2.70 0.13uA 0.13uA 0.13uA 2.80 0.14uA 0.13uA 0.14uA 2.90 0.14uA 0.14uA 0.15uA 3.00 0.15uA 0.15uA 0.15uA 3.10 0.15uA 0.17uA 0.16uA 3.20 0.15uA 0.56uA 0.16uA 3.30 0.16uA 0.19uA 0.17uA [POWER_clamp] | voltage I(typ) I(min) I(max) -3.30 0.37uA 0.37uA 0.40uA -3.20 0.37uA 0.36uA 0.39uA -3.10 0.36uA 0.36uA 0.39uA -3.00 0.35uA 0.35uA 0.38uA -2.90 0.35uA 0.34uA 0.37uA -2.80 0.34uA 0.34uA 0.37uA -2.70 0.33uA 0.33uA 0.36uA -2.60 0.33uA 0.33uA 0.36uA -2.50 0.32uA 0.32uA 0.35uA -2.40 0.32uA 0.31uA 0.34uA -2.30 0.31uA 0.31uA 0.34uA -2.20 0.30uA 0.30uA 0.33uA -2.10 0.30uA 0.29uA 0.32uA -2.00 0.29uA 0.29uA 0.32uA -1.90 0.28uA 0.28uA 0.31uA -1.80 0.28uA 0.28uA 0.30uA
108 PRELIMINARY Freescale Semiconductor
-1.70 0.27uA 0.27uA 0.30uA -1.60 0.27uA 0.26uA 0.29uA -1.50 0.26uA 0.26uA 0.29uA -1.40 0.25uA 0.25uA 0.28uA -1.30 0.25uA 0.25uA 0.27uA -1.20 0.24uA 0.24uA 0.27uA -1.10 0.24uA 0.23uA 0.26uA -1.00 0.23uA 0.23uA 0.25uA -0.90 0.22uA 0.22uA 0.25uA -0.80 0.22uA 0.22uA 0.24uA -0.70 0.21uA 0.21uA 0.24uA -0.60 0.21uA 0.20uA 0.23uA -0.50 0.20uA 0.20uA 0.22uA -0.40 0.20uA 0.19uA 0.22uA -0.30 0.19uA 0.19uA 0.21uA -0.20 0.48mA 0.56uA 0.72uA -0.10 0.16uA 0.17uA 0.18uA 0.00 0.16uA 0.15uA 0.18uA [Ramp] | variable typ min max R_load = 50.00 [Rising Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 0.70uV 0.93uV 0.69uV 0.20nS 0.46uV 0.77uV 0.000V 0.40nS -5.77uV -1.75uV 11.67uV 0.60nS -0.27mV -5.10uV -2.79mV 0.80nS -2.96mV 26.03uV -6.12mV 1.00nS -3.62mV -5.61uV 32.64mV 1.20nS 19.35mV -0.80mV 81.12mV 1.40nS 46.31mV -3.19mV 0.11V 1.60nS 79.98mV -6.88mV 0.16V
Freescale Semiconductor PRELIMINARY 109 1.80nS 0.12V -0.22mV 0.21V 2.00nS 0.16V 21.89mV 0.27V 2.20nS 0.20V 48.68mV 0.33V 2.40nS 0.26V 76.62mV 0.41V 2.60nS 0.32V 0.11V 0.49V 2.80nS 0.42V 0.16V 0.61V 3.00nS 0.51V 0.20V 0.73V 3.20nS 0.58V 0.24V 0.82V 3.40nS 0.71V 0.30V 0.99V 3.60nS 0.85V 0.36V 1.17V 3.80nS 1.01V 0.45V 1.36V 4.00nS 1.18V 0.54V 1.56V 4.20nS 1.38V 0.67V 1.81V 4.40nS 1.57V 0.81V 2.03V 4.60nS 1.69V 0.89V 2.16V 4.80nS 1.79V 0.96V 2.27V 5.00nS 1.91V 1.06V 2.40V 5.20nS 2.03V 1.15V 2.52V 5.40nS 2.14V 1.26V 2.61V 5.60nS 2.24V 1.35V 2.70V 5.80nS 2.28V 1.40V 2.74V 6.00nS 2.31V 1.45V 2.77V 6.20nS 2.36V 1.51V 2.80V 6.40nS 2.39V 1.56V 2.83V 6.60nS 2.41V 1.61V 2.85V 6.80nS 2.43V 1.66V 2.86V 7.00nS 2.45V 1.70V 2.87V 7.20nS 2.46V 1.74V 2.88V 7.40nS 2.48V 1.78V 2.89V 7.60nS 2.49V 1.82V 2.90V 7.80nS 2.50V 1.84V 2.91V 8.00nS 2.51V 1.86V 2.91V 8.20nS 2.52V 1.88V 2.92V 8.40nS 2.52V 1.90V 2.92V 8.60nS 2.53V 1.92V 2.93V 8.80nS 2.54V 1.93V 2.93V 9.00nS 2.54V 1.95V 2.93V 9.20nS 2.55V 1.96V 2.94V 9.40nS 2.55V 1.97V 2.94V 9.60nS 2.56V 1.99V 2.94V 9.80nS 2.56V 2.00V 2.95V 10.00nS 2.57V 2.00V 2.95V [Rising Waveform]
110 PRELIMINARY Freescale Semiconductor
R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 0.76V 1.03V 0.72V 0.20nS 0.76V 1.03V 0.72V 0.40nS 0.76V 1.03V 0.72V 0.60nS 0.76V 1.03V 0.72V 0.80nS 0.77V 1.03V 0.73V 1.00nS 0.81V 1.03V 0.82V 1.20nS 0.90V 1.03V 0.93V 1.40nS 0.98V 1.04V 1.02V 1.60nS 1.10V 1.11V 1.13V 1.80nS 1.22V 1.21V 1.26V 2.00nS 1.36V 1.33V 1.42V 2.20nS 1.53V 1.46V 1.58V 2.40nS 1.72V 1.60V 1.80V 2.60nS 1.93V 1.75V 2.04V 2.80nS 2.23V 1.97V 2.36V 3.00nS 2.48V 2.16V 2.62V 3.20nS 2.66V 2.30V 2.82V 3.40nS 2.85V 2.49V 3.04V 3.60nS 2.97V 2.63V 3.19V 3.80nS 3.09V 2.73V 3.29V 4.00nS 3.14V 2.83V 3.36V 4.20nS 3.19V 2.89V 3.42V 4.40nS 3.23V 2.94V 3.47V 4.60nS 3.25V 2.96V 3.50V 4.80nS 3.27V 2.97V 3.52V 5.00nS 3.28V 2.98V 3.54V 5.20nS 3.29V 2.99V 3.56V 5.40nS 3.29V 2.99V 3.57V 5.60nS 3.30V 3.00V 3.58V 5.80nS 3.30V 3.00V 3.59V 6.00nS 3.30V 3.00V 3.59V 6.20nS 3.30V 3.00V 3.60V 6.40nS 3.30V 3.00V 3.60V 6.60nS 3.30V 3.00V 3.60V 6.80nS 3.30V 3.00V 3.60V 7.00nS 3.30V 3.00V 3.60V
Freescale Semiconductor PRELIMINARY 111 7.20nS 3.30V 3.00V 3.60V 7.40nS 3.30V 3.00V 3.60V 7.60nS 3.30V 3.00V 3.60V 7.80nS 3.30V 3.00V 3.60V 8.00nS 3.30V 3.00V 3.60V 8.20nS 3.30V 3.00V 3.60V 8.40nS 3.30V 3.00V 3.60V 8.60nS 3.30V 3.00V 3.60V 8.80nS 3.30V 3.00V 3.60V 9.00nS 3.30V 3.00V 3.60V 9.20nS 3.30V 3.00V 3.60V 9.40nS 3.30V 3.00V 3.60V 9.60nS 3.30V 3.00V 3.60V 9.80nS 3.30V 3.00V 3.60V 10.00nS 3.30V 3.00V 3.60V [Falling Waveform] R_fixture = 50.00 V_fixture = 0.000 V_fixture_min = 0.000 V_fixture_max = 0.000 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 2.62V 2.12V 2.99V 0.20nS 2.62V 2.12V 2.99V 0.40nS 2.62V 2.12V 2.99V 0.60nS 2.62V 2.12V 2.96V 0.80nS 2.60V 2.12V 2.85V 1.00nS 2.50V 2.12V 2.72V 1.20nS 2.37V 2.11V 2.59V 1.40nS 2.29V 2.09V 2.50V 1.60nS 2.17V 2.04V 2.36V 1.80nS 2.04V 1.96V 2.20V 2.00nS 1.89V 1.85V 2.00V 2.20nS 1.71V 1.74V 1.75V 2.40nS 1.50V 1.63V 1.48V 2.60nS 1.28V 1.50V 1.24V 2.80nS 1.01V 1.33V 1.01V 3.00nS 0.82V 1.17V 0.82V 3.20nS 0.72V 1.04V 0.75V 3.40nS 0.61V 0.87V 0.65V 3.60nS 0.51V 0.72V 0.57V
112 PRELIMINARY Freescale Semiconductor
3.80nS 0.44V 0.60V 0.50V 4.00nS 0.38V 0.49V 0.44V 4.20nS 0.32V 0.40V 0.38V 4.40nS 0.26V 0.32V 0.32V 4.60nS 0.23V 0.28V 0.29V 4.80nS 0.21V 0.25V 0.26V 5.00nS 0.17V 0.21V 0.23V 5.20nS 0.15V 0.18V 0.20V 5.40nS 0.12V 0.14V 0.17V 5.60nS 93.14mV 0.11V 0.14V 5.80nS 80.86mV 94.78mV 0.12V 6.00nS 68.57mV 80.67mV 0.11V 6.20nS 55.24mV 65.96mV 90.13mV 6.40nS 43.92mV 51.39mV 74.96mV 6.60nS 33.33mV 40.71mV 61.03mV 6.80nS 25.91mV 31.19mV 50.31mV 7.00nS 18.81mV 22.83mV 39.65mV 7.20nS 13.52mV 17.13mV 31.61mV 7.40nS 8.40mV 10.61mV 22.62mV 7.60nS 4.73mV 6.73mV 15.75mV 7.80nS 3.46mV 4.67mV 12.43mV 8.00nS 2.19mV 3.16mV 9.14mV 8.20nS 1.26mV 2.23mV 6.37mV 8.40nS 0.84mV 1.32mV 4.12mV 8.60nS 0.49mV 0.95mV 2.29mV 8.80nS 0.41mV 0.74mV 1.55mV 9.00nS 0.35mV 0.58mV 0.81mV 9.20nS 0.31mV 0.51mV 0.53mV 9.40nS 0.28mV 0.45mV 0.39mV 9.60nS 0.24mV 0.40mV 0.27mV 9.80nS 0.22mV 0.36mV 0.24mV 10.00nS 0.20mV 0.32mV 0.21mV [Falling Waveform] R_fixture = 50.00 V_fixture = 3.30 V_fixture_min = 3.00 V_fixture_max = 3.60 L_fixture = 0.000H C_fixture = 0.000F | time V(typ) V(min) V(max) 0.000S 3.30V 3.00V 3.60V 0.20nS 3.30V 3.00V 3.60V
Freescale Semiconductor PRELIMINARY 113 0.40nS 3.30V 3.00V 3.60V 0.60nS 3.30V 3.00V 3.59V 0.80nS 3.30V 3.00V 3.52V 1.00nS 3.25V 3.00V 3.44V 1.20nS 3.18V 3.00V 3.37V 1.40nS 3.14V 3.00V 3.32V 1.60nS 3.09V 3.00V 3.24V 1.80nS 3.03V 2.97V 3.16V 2.00nS 2.96V 2.92V 3.07V 2.20nS 2.88V 2.88V 2.98V 2.40nS 2.80V 2.84V 2.88V 2.60nS 2.72V 2.80V 2.77V 2.80nS 2.60V 2.74V 2.64V 3.00nS 2.51V 2.68V 2.54V 3.20nS 2.44V 2.64V 2.46V 3.40nS 2.34V 2.58V 2.34V 3.60nS 2.25V 2.52V 2.22V 3.80nS 2.15V 2.46V 2.08V 4.00nS 2.05V 2.39V 1.92V 4.20nS 1.93V 2.32V 1.74V 4.40nS 1.81V 2.24V 1.58V 4.60nS 1.73V 2.19V 1.50V 4.80nS 1.65V 2.15V 1.42V 5.00nS 1.53V 2.09V 1.34V 5.20nS 1.43V 2.04V 1.26V 5.40nS 1.32V 1.97V 1.18V 5.60nS 1.22V 1.91V 1.11V 5.80nS 1.18V 1.87V 1.07V 6.00nS 1.13V 1.84V 1.03V 6.20nS 1.08V 1.79V 0.99V 6.40nS 1.03V 1.75V 0.95V 6.60nS 0.99V 1.70V 0.92V 6.80nS 0.96V 1.66V 0.89V 7.00nS 0.93V 1.63V 0.87V 7.20nS 0.90V 1.59V 0.84V 7.40nS 0.87V 1.53V 0.82V 7.60nS 0.84V 1.47V 0.80V 7.80nS 0.83V 1.44V 0.78V 8.00nS 0.82V 1.40V 0.78V 8.20nS 0.81V 1.35V 0.76V 8.40nS 0.80V 1.30V 0.75V 8.60nS 0.79V 1.26V 0.75V 8.80nS 0.78V 1.23V 0.74V 9.00nS 0.78V 1.19V 0.73V
114 PRELIMINARY Freescale Semiconductor
9.20nS 0.78V 1.17V 0.73V 9.40nS 0.77V 1.14V 0.73V 9.60nS 0.77V 1.12V 0.72V 9.80nS 0.77V 1.10V 0.72V 10.00nS 0.77V 1.08V 0.72V | End [Model] prt24dgz | Model pdusdgz [Model] pdusdgz Model_type Input Polarity Non-Inverting Vinl = 0.000V Vinh = 3.30V C_comp 5.00pF 5.00pF 5.00pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [GND_clamp] | voltage I(typ) I(min) I(max)
Freescale Semiconductor PRELIMINARY 115 -0.20 -60.52uA -36.82uA -86.29uA -0.00 -60.40uA -35.33uA -85.95uA 0.20 -60.32uA -35.27uA -85.85uA 0.40 -60.23uA -35.20uA -85.73uA 0.60 -60.11uA -35.13uA -85.57uA 0.80 -59.96uA -35.03uA -85.37uA 1.00 -59.74uA -34.91uA -85.08uA 1.20 -59.32uA -34.50uA -84.56uA 1.40 -58.35uA -33.59uA -83.44uA 1.60 -56.47uA -31.92uA -81.36uA 1.80 -53.57uA -29.25uA -78.20uA 2.00 -49.55uA -7.60uA -73.89uA 2.20 -43.70uA -16.78nA -68.43uA 2.40 -3.73uA 0.10uA -61.70uA 2.60 0.10uA 0.11uA -51.99uA 2.80 0.12uA 0.12uA -2.43uA 3.00 0.13uA 0.13uA 0.13uA 3.20 0.14uA 0.20uA 0.14uA 3.40 0.15uA 0.15uA 0.15uA 3.60 0.16uA 96.30nA 0.16uA 3.80 0.17uA 43.50nA 0.17uA 4.00 0.18uA -9.30nA 0.18uA 4.20 0.18uA -62.10nA 0.19uA 4.40 0.19uA -0.11uA 0.20uA 4.60 0.20uA -0.17uA 0.21uA 4.80 0.21uA -0.22uA 0.22uA 5.00 0.22uA -0.27uA 0.23uA [POWER_clamp] | voltage I(typ) I(min) I(max) -5.00 0.61uA 0.59uA 0.65uA -4.90 0.60uA 0.58uA 0.65uA -4.80 0.59uA 0.58uA 0.64uA -4.70 0.59uA 0.57uA 0.63uA -4.60 0.58uA 0.56uA 0.63uA
116 PRELIMINARY Freescale Semiconductor
-4.50 0.57uA 0.56uA 0.62uA -4.40 0.56uA 0.55uA 0.61uA -4.30 0.56uA 0.54uA 0.60uA -4.20 0.55uA 0.54uA 0.60uA -4.10 0.54uA 0.53uA 0.59uA -4.00 0.54uA 0.52uA 0.58uA -3.90 0.53uA 0.52uA 0.58uA -3.80 0.52uA 0.51uA 0.57uA -3.70 0.52uA 0.50uA 0.56uA -3.60 0.51uA 0.50uA 0.56uA -3.50 0.50uA 0.49uA 0.55uA -3.40 0.50uA 0.48uA 0.54uA -3.30 0.49uA 0.48uA 0.53uA -3.20 0.48uA 0.47uA 0.53uA -3.10 0.48uA 0.46uA 0.52uA -3.00 0.47uA 0.46uA 0.51uA -2.90 0.46uA 0.45uA 0.51uA -2.80 0.46uA 0.44uA 0.50uA -2.70 0.45uA 0.44uA 0.49uA -2.60 0.44uA 0.43uA 0.49uA -2.50 0.44uA 0.42uA 0.48uA -2.40 0.43uA 0.41uA 0.47uA -2.30 0.42uA 0.41uA 0.46uA -2.20 0.42uA 0.40uA 0.46uA -2.10 0.41uA 0.39uA 0.45uA -2.00 0.40uA 0.39uA 0.44uA -1.90 0.39uA 0.38uA 0.44uA -1.80 0.39uA 0.37uA 0.43uA -1.70 0.38uA 0.37uA 0.42uA -1.60 0.37uA 0.36uA 0.42uA -1.50 0.37uA 0.35uA 0.41uA -1.40 0.36uA 0.35uA 0.40uA -1.30 0.35uA 0.34uA 0.39uA -1.20 0.35uA 0.33uA 0.39uA -1.10 0.34uA 0.33uA 0.38uA -1.00 0.33uA 0.32uA 0.37uA -0.90 0.33uA 0.31uA 0.37uA -0.80 0.32uA 0.31uA 0.36uA -0.70 0.31uA 0.30uA 0.35uA -0.60 0.31uA 0.29uA 0.35uA -0.50 0.30uA 0.29uA 0.34uA -0.40 0.29uA 0.28uA 0.33uA -0.30 0.29uA 0.27uA 0.32uA -0.20 0.28uA 0.27uA 0.32uA
Freescale Semiconductor PRELIMINARY 117 -0.10 0.27uA 0.26uA 0.31uA 0.00 0.27uA 0.25uA 0.30uA | End [Model] pdusdgz | Model pdddgz [Model] pdddgz Model_type Input Polarity Non-Inverting Vinl = 0.000V Vinh = 3.30V C_comp 5.00pF 5.00pF 5.00pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [GND_clamp] | voltage I(typ) I(min) I(max)
118 PRELIMINARY Freescale Semiconductor
-0.20 -27.91uA -14.61uA -42.88uA 0.20 18.71uA 7.31uA 32.27uA 0.40 29.18uA 10.24uA 54.12uA 0.60 32.49uA 10.66uA 65.78uA 0.80 33.06uA 10.78uA 69.33uA 1.00 33.29uA 10.85uA 70.16uA 1.20 33.44uA 10.91uA 70.54uA 1.40 33.56uA 10.96uA 70.78uA 1.60 33.66uA 11.01uA 70.98uA 1.80 33.76uA 11.06uA 71.15uA 2.00 33.85uA 11.10uA 71.30uA 2.20 33.94uA 11.12uA 71.44uA 2.40 33.99uA 11.13uA 71.59uA 2.60 34.01uA 11.14uA 71.74uA 2.80 34.02uA 11.15uA 71.82uA 3.00 34.03uA 11.16uA 71.84uA 3.20 34.04uA 11.25uA 71.85uA 3.40 34.06uA 11.17uA 71.87uA 3.60 34.08uA 11.09uA 71.89uA 3.80 34.10uA 11.01uA 71.91uA 4.00 34.12uA 10.93uA 71.93uA 4.20 34.14uA 10.85uA 71.95uA 4.40 34.16uA 10.77uA 71.97uA 4.60 34.18uA 10.69uA 71.99uA 4.80 34.20uA 10.61uA 72.01uA 5.00 34.22uA 10.53uA 72.03uA [POWER_clamp] | voltage I(typ) I(min) I(max) -5.00 48.19uA 16.29uA 95.53uA -4.90 47.87uA 16.17uA 95.03uA -4.80 47.55uA 16.05uA 94.53uA -4.70 47.23uA 15.93uA 94.03uA -4.60 46.91uA 15.81uA 93.53uA -4.50 46.59uA 15.69uA 93.03uA -4.40 46.27uA 15.57uA 92.53uA -4.30 45.95uA 15.45uA 92.03uA
Freescale Semiconductor PRELIMINARY 119 -4.20 45.63uA 15.33uA 91.53uA -4.10 45.31uA 15.21uA 91.03uA -4.00 44.99uA 15.09uA 90.53uA -3.90 44.67uA 14.97uA 90.03uA -3.80 44.35uA 14.85uA 89.53uA -3.70 44.03uA 14.73uA 89.03uA -3.60 43.71uA 14.61uA 88.53uA -3.50 43.39uA 14.49uA 88.03uA -3.40 43.07uA 14.37uA 87.53uA -3.30 42.75uA 14.25uA 87.03uA -3.20 42.43uA 14.13uA 86.53uA -3.10 42.11uA 14.01uA 86.03uA -3.00 41.79uA 13.89uA 85.53uA -2.90 41.47uA 13.77uA 85.03uA -2.80 41.15uA 13.65uA 84.53uA -2.70 40.83uA 13.53uA 84.03uA -2.60 40.51uA 13.41uA 83.53uA -2.50 40.19uA 13.29uA 83.03uA -2.40 39.87uA 13.17uA 82.53uA -2.30 39.55uA 13.05uA 82.03uA -2.20 39.23uA 12.93uA 81.53uA -2.10 38.91uA 12.81uA 81.03uA -2.00 38.59uA 12.69uA 80.53uA -1.90 38.27uA 12.57uA 80.03uA -1.80 37.95uA 12.45uA 79.53uA -1.70 37.63uA 12.33uA 79.03uA -1.60 37.31uA 12.22uA 78.53uA -1.50 36.99uA 12.11uA 78.03uA -1.40 36.68uA 12.01uA 77.53uA -1.30 36.38uA 11.92uA 77.03uA -1.20 36.11uA 11.84uA 76.53uA -1.10 35.86uA 11.76uA 76.03uA -1.00 35.63uA 11.69uA 75.53uA -0.90 35.41uA 11.63uA 75.06uA -0.80 35.22uA 11.57uA 74.63uA -0.70 35.05uA 11.52uA 74.24uA -0.60 34.90uA 11.48uA 73.89uA -0.50 34.77uA 11.44uA 73.58uA -0.40 34.65uA 11.41uA 73.30uA -0.30 34.55uA 11.38uA 73.06uA -0.20 34.47uA 11.35uA 72.86uA -0.10 34.40uA 11.33uA 72.68uA 0.00 34.34uA 11.31uA 72.54uA
120 PRELIMINARY Freescale Semiconductor
| End [Model] pdddgz | Model pdudgz [Model] pdudgz Model_type Input Polarity Non-Inverting Vinl = 0.000V Vinh = 3.30V C_comp 5.00pF 5.00pF 5.00pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [GND_clamp] | voltage I(typ) I(min) I(max)
Freescale Semiconductor PRELIMINARY 121 -0.20 -60.52uA -36.82uA -86.29uA -0.00 -60.40uA -35.33uA -85.95uA 0.20 -60.32uA -35.27uA -85.85uA 0.40 -60.23uA -35.20uA -85.73uA 0.60 -60.11uA -35.13uA -85.57uA 0.80 -59.96uA -35.03uA -85.37uA 1.00 -59.74uA -34.87uA -85.08uA 1.20 -59.32uA -34.50uA -84.56uA 1.40 -58.35uA -33.59uA -83.44uA 1.60 -56.47uA -31.92uA -81.36uA 1.80 -53.57uA -29.25uA -78.20uA 2.00 -49.55uA -7.60uA -73.89uA 2.20 -43.70uA -16.78nA -68.43uA 2.40 -3.73uA 0.10uA -61.70uA 2.60 0.10uA 0.11uA -51.99uA 2.80 0.12uA 0.12uA -2.43uA 3.00 0.13uA 0.13uA 0.13uA 3.20 0.14uA 0.20uA 0.14uA 3.40 0.15uA 0.15uA 0.15uA 3.60 0.16uA 96.30nA 0.16uA 3.80 0.17uA 43.50nA 0.17uA 4.00 0.18uA -9.30nA 0.18uA 4.20 0.18uA -62.10nA 0.19uA 4.40 0.19uA -0.11uA 0.20uA 4.60 0.20uA -0.17uA 0.21uA 4.80 0.21uA -0.22uA 0.22uA 5.00 0.22uA -0.27uA 0.23uA [POWER_clamp] | voltage I(typ) I(min) I(max) -5.00 0.61uA 0.59uA 0.65uA -4.90 0.60uA 0.58uA 0.65uA -4.80 0.59uA 0.58uA 0.64uA -4.70 0.59uA 0.57uA 0.63uA -4.60 0.58uA 0.56uA 0.63uA -4.50 0.57uA 0.56uA 0.62uA -4.40 0.56uA 0.55uA 0.61uA -4.30 0.56uA 0.54uA 0.60uA -4.20 0.55uA 0.54uA 0.60uA -4.10 0.54uA 0.53uA 0.59uA -4.00 0.54uA 0.52uA 0.58uA
122 PRELIMINARY Freescale Semiconductor
-3.90 0.53uA 0.52uA 0.58uA -3.80 0.52uA 0.51uA 0.57uA -3.70 0.52uA 0.50uA 0.56uA -3.60 0.51uA 0.50uA 0.56uA -3.50 0.50uA 0.49uA 0.55uA -3.40 0.50uA 0.48uA 0.54uA -3.30 0.49uA 0.48uA 0.53uA -3.20 0.48uA 0.47uA 0.53uA -3.10 0.48uA 0.46uA 0.52uA -3.00 0.47uA 0.46uA 0.51uA -2.90 0.46uA 0.45uA 0.51uA -2.80 0.46uA 0.44uA 0.50uA -2.70 0.45uA 0.44uA 0.49uA -2.60 0.44uA 0.43uA 0.49uA -2.50 0.44uA 0.42uA 0.48uA -2.40 0.43uA 0.41uA 0.47uA -2.30 0.42uA 0.41uA 0.46uA -2.20 0.42uA 0.40uA 0.46uA -2.10 0.41uA 0.39uA 0.45uA -2.00 0.40uA 0.39uA 0.44uA -1.90 0.39uA 0.38uA 0.44uA -1.80 0.39uA 0.37uA 0.43uA -1.70 0.38uA 0.37uA 0.42uA -1.60 0.37uA 0.36uA 0.42uA -1.50 0.37uA 0.35uA 0.41uA -1.40 0.36uA 0.35uA 0.40uA -1.30 0.35uA 0.34uA 0.39uA -1.20 0.35uA 0.33uA 0.39uA -1.10 0.34uA 0.33uA 0.38uA -1.00 0.33uA 0.32uA 0.37uA -0.90 0.33uA 0.31uA 0.37uA -0.80 0.32uA 0.31uA 0.36uA -0.70 0.31uA 0.30uA 0.35uA -0.60 0.31uA 0.29uA 0.35uA -0.50 0.30uA 0.29uA 0.34uA -0.40 0.29uA 0.28uA 0.33uA -0.30 0.29uA 0.27uA 0.32uA -0.20 0.28uA 0.27uA 0.32uA -0.10 0.27uA 0.26uA 0.31uA 0.00 0.27uA 0.25uA 0.30uA | End [Model] pdudgz
Freescale Semiconductor PRELIMINARY 123 | Model pdidgz [Model] pdidgz Model_type Input Polarity Non-Inverting Vinl = 0.000V Vinh = 3.30V C_comp 5.00pF 5.00pF 5.00pF [Temperature Range] 25.00 0.12k 0.000 [Pullup Reference] 3.30V 3.00V 3.60V [Pulldown Reference] 0.000V 0.000V 0.000V [POWER Clamp Reference] 5.00V 4.50V 5.50V [GND Clamp Reference] 0.000V 0.000V 0.000V [GND_clamp] | voltage I(typ) I(min) I(max)
124 PRELIMINARY Freescale Semiconductor
0.20 -72.38nA -68.50nA -88.30nA 0.40 -56.11nA -52.12nA -71.55nA 0.60 -39.84nA -35.76nA -54.82nA 0.80 -23.57nA -19.40nA -38.12nA 1.00 -7.31nA -3.04nA -21.42nA 1.20 8.94nA 13.32nA -4.73nA 1.40 25.19nA 29.68nA 11.97nA 1.60 41.42nA 46.03nA 28.68nA 1.80 57.64nA 62.39nA 45.42nA 2.00 73.83nA 78.74nA 62.20nA 2.20 89.95nA 94.86nA 79.06nA 2.40 0.11uA 0.11uA 96.02nA 2.60 0.12uA 0.12uA 0.11uA 2.80 0.13uA 0.13uA 0.13uA 3.00 0.14uA 0.14uA 0.14uA 3.20 0.15uA 0.21uA 0.15uA 3.40 0.15uA 0.15uA 0.16uA 3.60 0.16uA 0.10uA 0.17uA 3.80 0.17uA 47.20nA 0.18uA 4.00 0.18uA -5.80nA 0.18uA 4.20 0.19uA -58.80nA 0.19uA 4.40 0.20uA -0.11uA 0.20uA 4.60 0.20uA -0.16uA 0.21uA 4.80 0.21uA -0.22uA 0.22uA 5.00 0.22uA -0.27uA 0.23uA [POWER_clamp] | voltage I(typ) I(min) I(max) -5.00 0.60uA 0.59uA 0.65uA -4.90 0.60uA 0.58uA 0.64uA -4.80 0.59uA 0.58uA 0.64uA -4.70 0.58uA 0.57uA 0.63uA -4.60 0.58uA 0.56uA 0.62uA -4.50 0.57uA 0.56uA 0.62uA -4.40 0.56uA 0.55uA 0.61uA -4.30 0.56uA 0.54uA 0.60uA -4.20 0.55uA 0.54uA 0.59uA -4.10 0.54uA 0.53uA 0.59uA -4.00 0.54uA 0.52uA 0.58uA -3.90 0.53uA 0.52uA 0.57uA -3.80 0.52uA 0.51uA 0.57uA -3.70 0.52uA 0.50uA 0.56uA
Freescale Semiconductor PRELIMINARY 125 -3.60 0.51uA 0.50uA 0.55uA -3.50 0.50uA 0.49uA 0.55uA -3.40 0.49uA 0.48uA 0.54uA -3.30 0.49uA 0.48uA 0.53uA -3.20 0.48uA 0.47uA 0.53uA -3.10 0.47uA 0.46uA 0.52uA -3.00 0.47uA 0.46uA 0.51uA -2.90 0.46uA 0.45uA 0.51uA -2.80 0.45uA 0.44uA 0.50uA -2.70 0.45uA 0.43uA 0.49uA -2.60 0.44uA 0.43uA 0.48uA -2.50 0.43uA 0.42uA 0.48uA -2.40 0.43uA 0.41uA 0.47uA -2.30 0.42uA 0.41uA 0.46uA -2.20 0.41uA 0.40uA 0.46uA -2.10 0.41uA 0.39uA 0.45uA -2.00 0.40uA 0.39uA 0.44uA -1.90 0.39uA 0.38uA 0.44uA -1.80 0.39uA 0.37uA 0.43uA -1.70 0.38uA 0.37uA 0.42uA -1.60 0.37uA 0.36uA 0.42uA -1.50 0.37uA 0.35uA 0.41uA -1.40 0.36uA 0.35uA 0.40uA -1.30 0.35uA 0.34uA 0.39uA -1.20 0.35uA 0.33uA 0.39uA -1.10 0.34uA 0.33uA 0.38uA -1.00 0.33uA 0.32uA 0.37uA -0.90 0.33uA 0.31uA 0.37uA -0.80 0.32uA 0.31uA 0.36uA -0.70 0.31uA 0.30uA 0.35uA -0.60 0.31uA 0.29uA 0.35uA -0.50 0.30uA 0.29uA 0.34uA -0.40 0.29uA 0.28uA 0.33uA -0.30 0.29uA 0.27uA 0.33uA -0.20 0.28uA 0.27uA 0.32uA -0.10 0.28uA 0.26uA 0.31uA 0.00 0.27uA 0.26uA 0.31uA | End [Model] pdidgz
126 PRELIMINARY Freescale Semiconductor
Revision History
0.0 27 April 2004 Initial release
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