CDC6C-Q1 TI | Alldatasheet
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CDC6Cx-Q1 Low Power LVCMOS Output BAW Oscillator
1 Features
- AEC Q-100 qualified: – Device temperature grade 1: –40°C to +125°C
- Functional Safety-Capable: – Documentation available to aid functional safety system design
- LVCMOS output oscillator supporting frequency range from 250kHz to 200MHz
- ±25ppm total frequency stability inclusive of all factors and including 10 years aging
- Supply voltage supports 1.8V to 3.3V ±10%.
- Very low power consumption: 4.57mA typical and 8mA maximum for 25MHz
- Standby current 2µA typical helps for battery powered applications
- Low jitter: < 1ps RMS jitter for Fout ≥ 10MHz
- Smallest industry wettable flank standard package: 1.60mm × 1.20mm (DLY), 2.00mm × 1.60mm (DLR), 2.5mm × 2.00mm (DLF), 3.20mm × 2.5mm (DLN)
- Integrated LDO for robust supply noise immunity
- Start-up time < 3ms – Contact TI for different start-up times.
- Orderable options for slow rise and fall time for EMI reduction Standard frequencies (MHz): 2.048, 4, 5.12, 8, 10, 125, 156.25, and more
- Contact TI representative for any frequency and samples needed.
2 Applications
- Crystal oscillator replacement
- FPGA, MCU, Processor and ASIC clocking
- Automotive infotainment and cluster, Head Units, Digital cockpit controllers, telematics
- ADAS, Automotive Camera, Sensor fusion, automotive radar, ECU
- Automotive Gateway, Body Control Modules
3 Description
Texas Instruments' high-precision Bulk-Acoustic Wave (BAW) micro-resonator technology is integrated directly into a package allowing for low jitter clock circuitry. BAW is fully designed and manufactured at TI factories like other silicon-based fabrication processes. The CDC6Cx-Q1 device is a low jitter, low power, fixed-frequency oscillator which incorporates the BAW as the resonator source. The device is factory- programmed per specific frequency and function pin. With a frequency control logic and output frequency divider, the CDC6Cx-Q1 is capable of producing any frequency within the specified range providing a single device family for all frequency needs. The high-performance clocking, mechanical stability, lower power consumption, flexibility, and small package options for this device are designed for reference clock and core clocks in automotive applications. Packaging Information PART NUMBER OUTPUT TYPE PACKAGE(1) PACKAGE SIZE(2) CDC6Cx-Q1 LVCMOS VSON (DLN-4)(3) 3.20mm × 2.50mm VSON (DLF-4)(3) 2.50mm × 2.00mm VSON (DLR-4) 2.00mm × 1.60mm VSON (DLY-4)(3) 1.60mm × 1.20mm (1) For more information, see Section 12. (2) The package size (length × width) is a nominal value and includes pins, where applicable. (3) Preview, contact TI for these package options. BAWVDD CLKFrequency Divider OE / ST / NC GND Power Conditioning CMOS driver Temp Sensor Frequency Control Logic Output/Chip Control Logic CDC6Cx-Q1 Simplified Block Diagram ADVANCE INFORMATION CDC6C-Q1 SNAS935 – MARCH 2025 An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications, intellectual property matters and other important disclaimers. ADVANCE INFORMATION for preproduction products; subject to change without notice.
10.2 Receiving Notification of Documentation Updates..29
12 Mechanical, Packaging, and Orderable
SNAS935 – MARCH 2025 www.ti.com
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4 Device Comparison
Use the CDC6C OPN Decoder to understand the device nomenclature of the CDC6Cx-Q1 orderable options. The CDC6C OPN Decoder provides a quick summary of how to decode the frequency, package information and a list of the CDC6Cx-Q1 orderable part numbers (OPNs) with associated configurations, packaging information, and device top marking. CCDC6 025000 Output Type C: LVCMOS Frequency Options 125000 = 125.000 MHz 024576 = 24.576 MHz 033333 = 33.333 MHz 008192 = 8.192 MHz 03333A = 33.333333 MHz XXX.XXX = Custom Frequency Code Note: Contact TI for custom number of digits after decimal point A Rise and Fall time / Sub-Family Options A: Normal mode, Pin 1 set as output enable (active high or NC) B: Normal mode, Pin 1 set as stand by (active low) C: Slow mode 1, Pin 1 set as output enable (active high or NC) D: Slow mode 1, Pin 1 set as stand by (active low) E: Slow mode 2, Pin 1 set as output enable (active high or NC) F: Slow mode 2, Pin 1 set as stand by (active low) G: Slow mode 3, Pin 1 set as output enable (active high or NC) H: Slow mode 3, Pin 1 set as stand by (active low) I: Slow mode 4, Pin 1 set as output enable (active high or NC) J: Slow mode 4, Pin 1 set as stand by (active low) Note: Contact TI for other options DLY Package Size DLN: 3.2 mm x 2.5 mm DLF: 2.5 mm x 2.0 mm DLR: 2.0 mm x 1.6 mm DLY: 1.6 mm x 1.2 mm Product Family Device Code Q1: Automotive (-40°C to 125°C and Wettable Flank Package) *Note: Contact TI for more start-up times R Packaging Method R: Large Reel Figure 4-1. Part Number Guide: CDC6Cx-Q1 Note: Contact a TI representative to pre-order specific devices. Email: ti_osc_customer_requirement@list.ti.com www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 3 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
5 Pin Configuration and Functions
Figure 5-1. CDC6Cx-Q1 4-Pin VSON (Top View) Legend Input Power Ground Output Table 5-1. CDC6Cx-Q1 Pin Functions PIN Type(1) DESCRIPTION NAME NO. OE / ST / NC 1 I / NC Output Enable (OE) or Stand By (ST) pin on No Connect (NC). See Table 8-1 for more details. GND 2 G Device ground CLK 3 O LVCMOS output clock VDD 4 P Device power supply (1) I = Input, O = Output, I/O = Input or Output, G = Ground, P = Power, NC = No Connect (can be left floating). CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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6 Specifications
6.1 Absolute Maximum Ratings
over operating free-air temperature range (unless otherwise noted)(1) MIN MAX UNIT VDD Device supply voltage(2) –0.3 3.63 V EN Logic input voltage –0.3 3.63 V CLK Clock output voltage –0.3 3.63 V TJ Junction temperature 130 ℃ TSTG Storage temperature 150 ℃ (1) Operation outside the Absolute Maximum Ratings may cause permanent device damage. Absolute Maximum Ratings do not imply functional operation of the device at these or any other conditions beyond those listed under Recommended Operating Conditions. If used outside the Recommended Operating Conditions but within the Absolute Maximum Ratings, the device may not be fully functional, and this may affect device reliability, functionality, performance, and shorten the device lifetime. (2) For all devices with the recommended operating voltage of 1.8V ±10%, 2.5V ±10% and 3.3V ±10%
6.2 ESD Ratings
V(ESD) Electrostatic discharge Human-body model (HBM), per AEC Q100-002, HBM ESD Classification Level 2(1) ±2000 V V(ESD) Electrostatic discharge Charged-device model (CDM), per AEC Q100-011 CDM ESD Classification Level C4A(1) ±750 V (1) For Automotive Grade device
6.3 Environmental Compliance
Mechanical Vibration Resistance MIL-STD-883F, Method 2026, Condition C 10 g Mechanical Vibration Resistance MIL-STD-883F, Method 2007, Condition A 20 g Mechanical Shock Resistance MIL-STD-883F, Method 2002, Condition A 1500 g Moisture Sensitivity Level (MSL) MSL1
6.4 Recommended Operating Conditions
over operating free-air temperature range (unless otherwise noted) MIN NOM MAX UNIT VDD Device supply voltage(1) 1.62 1.8, 2.5, 3.3 3.63 V TA Ambient temperature –40 125 °C TJ Junction temperature 130 °C tRAMP VDD power-up ramp time(2) 0.1 100 ms (1) For all devices with the recommended operating voltage of 1.8V ±10%, 2.5V ±10% and 3.3V ±10% (2) VDD power-up ramp time is defined as minimum time taken for power supply to exceed 95% of nominal VDD. Monotonic power supply ramp is assumed. www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 5 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
6.5 Thermal Information
THERMAL METRIC(1) DEVICE UNITDLN (VSON) DLF (VSON) DLR (VSON) DLY (VSON) 4-PIN 4-PIN 4-PIN 4-PIN Junction-to-ambient thermal resistance 151 151.7 178.3 189.1 °C/W Junction-to-case (top) thermal resistance 88.6 99.3 114.6 137.3 °C/W Junction-to-board thermal resistance 71.2 64.4 82.7 85 °C/W Junction-to-top characterization parameter 11.1 9.2 8.5 6.2 °C/W Junction-to-board characterization parameter 70.2 63.5 81.1 83.2 °C/W (1) For more information about traditional and new thermal metrics, see the Semiconductor and IC Package Thermal Metrics application note.
6.6 Electrical Characteristics
over the recommended operating conditions (VDD = 1.8V ± 10%, 2.5V ± 10%, 3.3V ± 10%; typical values are at 25°C unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Current Consumption Characteristics IDD Device current consumption (excluding load current) -40℃ to 125℃, Fout = 20MHz, Vdd = 1.8V±10% 4.22 7.8 mA -40℃ to 125℃, Fout = 20MHz, Vdd = 3.3V±10% 4.41 7.9 mA IDD Device current consumption (excluding load current) -40℃ to 125℃, Fout = 25MHz, Vdd = 1.8V±10% 4.32 7.9 mA -40℃ to 125℃, Fout = 25MHz, Vdd = 3.3V±10% 4.57 8 mA IDD Device current consumption (excluding load current) -40℃ to 125℃, Fout = 50MHz, Vdd = 1.8V±10% 4.84 8.2 mA -40℃ to 125℃, Fout = 50MHz, Vdd = 3.3V±10% 5.33 8.3 mA IDD Device current consumption (excluding load current) -40℃ to 125℃, Fout = 100MHz, Vdd = 1.8V±10% 5.86 8.7 mA -40℃ to 125℃, Fout = 100MHz, Vdd = 3.3V±10% 6.77 8.9 mA IDD Device current consumption (excluding load current) -40℃ to 125℃, Fout = 150MHz, Vdd = 1.8V±10% 7.14 10.0 mA -40℃ to 125℃, Fout = 150MHz, Vdd = 3.3V±10% 8.72 11.5 mA IDD_stdby Device standby current -40℃ to 125℃, ST = GND, Vdd=1.8V±10% 1.5 µA -40℃ to 125℃, ST = GND, Vdd=2.5V±10% 2 µA -40℃ to 125℃, ST = GND, Vdd=3.3V±10% 2.7 µA IDD-OD Device current with output disabled -40℃ to 125℃, Fout = 25MHz, Vdd = 1.8V±10% 3.75 7.5 mA -40℃ to 125℃, Fout = 25MHz, Vdd = 3.3V±10% 3.76 7.6 mA Output Characteristics Fout Output frequency 0.25 200 MHz VOL Output low voltage IOL = 3.6mA, VDD = 1.8V 0.36 V IOL = 5.0mA, VDD = 2.5V 0.5 V IOL = 6.6mA, VDD = 3.3V 0.66 V VOH Output high voltage IOH = 3.6mA, VDD = 1.8V VDD × 0.88 V IOH = 5.0mA, VDD = 2.5V VDD × 0.85 V IOH = 6.6mA, VDD = 3.3V VDD × 0.85 V tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 2pF, normal mode, 25MHz output 0.28 0.65 ns tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 2pF, slow mode 1, 25MHz output 0.42 0.75 ns CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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6.6 Electrical Characteristics (continued)
over the recommended operating conditions (VDD = 1.8V ± 10%, 2.5V ± 10%, 3.3V ± 10%; typical values are at 25°C unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 5pF, normal mode, 25MHz output 0.33 0.8 ns tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 5pF, slow mode 2, 25MHz output 1.11 2.0 ns tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 10pF, normal mode, 25MHz output 0.44 1.7 ns tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 10pF, slow mode 3, 25MHz output 1.85 3.1 ns tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 15pF, normal mode, 25MHz output 0.87 2.2 ns tR/tF Output rise/fall time 20% to 80% of VOH-VOL, CL = 15pF, slow mode 4, 25MHz output 2.7 4.0 ns ODC Output duty cycle 45 50 55 % PN-Floor Output phase noise floor (fOFFSET > 10MHz) Fout = 50MHz –155 dBc/Hz CL Maximum capacitive load Fout < 50MHz 30 pF CL Fout > 50MHz 15 pF Rout-high Output impedance 37.5 50 62.5 Ω Function Pin Characteristics (OE/ST) VIL Input low voltage 0.6 V VIH Input high voltage 1.3 V IIL Input low current EN = GND –40 µA IIH Input high current EN = VDD 40 µA CIN Input capacitance(1) 2 pF Frequency Tolerance FT Total frequency stability Inclusive of: solder shift, initial tolerance, variation over –40℃ to 125℃, variation over supply voltage range, and 10 years aging at 25℃. ±25 ppm FT Total frequency stability Inclusive of: solder shift, initial tolerance, variation over –40℃ to 125℃, variation over supply voltage range, and 1st year aging at 25℃. ±20 ppm PSRR Characteristics PSRR Spur induced by 50mV power supply ripple at 50MHz output, VDD = 2.5V/ 3.3V, no power supply decoupling capacitor Sine wave at 50kHz –80 dBc Sine wave at 100kHz –75 dBc Sine wave at 500kHz –63 dBc Sine wave at 1MHz –59 dBc Power-On Characteristics tSTART_UP Start-up time Time elapsed from 0.95 × VDD until output is enabled and output is within specification. OE / ST = High; Tested with a power supply ramp time of 200µs 1.5 3 ms tRESUME Chip resume time Time elapsed from ST = VIH until output is enabled and output is within specification 3 ms tST-DIS Chip disable time Time elapsed from ST = VIL until chip is in standby mode; for Fout > 100 MHz 250 ns tOE-EN Output enable time Time elapsed from OE = VIH until output is enabled and output is within specification; for Fout > 100MHz 250 ns tOE-DIS Output disable Time Time elapsed from OE = VIL until output is disabled; for Fout > 100 MHz 250 ns www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 7 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
over the recommended operating conditions (VDD = 1.8V ± 10%, 2.5V ± 10%, 3.3V ± 10%; typical values are at 25°C unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Clock Output Jitter RJ Random phase jitter 10MHz ≤ Fout ≤ 25MHz, integration BW: 12kHz to 5MHz, maximum temperature = 125°C 400 1000 fs RJ Random phase jitter 25MHz < Fout ≤ 200MHz, integration BW: 12kHz to 20MHz, maximum temperature = 125°C 400 1000 fs SPN100k Spot phase noise at 1kHz offset Fout = 100MHz –86 dBc/Hz SPN100k Spot phase noise at 10kHz offset Fout = 100MHz –120 dBc/Hz SPN100k Spot phase noise at 100kHz offset Fout = 100MHz –138 dBc/Hz SPN1M Spot phase noise at 1MHz offset Fout = 100MHz –143 dBc/Hz RJITT,RMS RMS period jitter Fout ≥ 25MHz 3 ps RJITT,PK Peak-peak period jitter Fout ≥ 25MHz 26 ps (1) Proven by Design. Not characterised
6.7 Timing Diagrams
VOUT,SE tR tF OUT_REFx/2 20% 80% Figure 6-1. Single-Ended Output Voltage and Rise/Fall Time
6.8 Typical Characteristics
Figure 6-2. Current Consumption vs Frequency and Temperature at 1.8V Supply F r e q u e n c y ( M H z ) Current Consumption (mA) 5 3 5 6 5 9 5 1 2 5 1 5 5 1 8 5 2 0 0 4 . 5 5 . 7 5 8 . 2 5 9 . 5 1 0 . 7 5 1 2 - 4 0 ° C 2 5 ° C 8 5 ° C 1 0 5 ° C 1 2 5 ° C Figure 6-3. Current Consumption vs. Frequency and Temperature at 2.5V Supply CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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6.8 Typical Characteristics (continued)
F r e q u e n c y ( M H z ) Current Consumption (mA) 5 3 5 6 5 9 5 1 2 5 1 5 5 1 8 5 2 0 0 4 . 5 5 . 7 5 8 . 2 5 9 . 5 1 0 . 7 5 1 2 - 4 0 ° C 2 5 ° C 8 5 ° C 1 0 5 ° C 1 2 5 ° C Figure 6-4. Current Consumption vs Frequency and Temperature at 3.3V Supply F r e q u e n c y ( M H z ) Current Consumption (mA) 5 3 5 6 5 9 5 1 2 5 1 5 5 1 8 5 2 0 0 4 . 5 5 . 7 5 8 . 2 5 9 . 5 1 0 . 7 5 1 2 1 . 8 V 2 . 5 V 3 . 3 V Figure 6-5. Current Consumption vs Frequency and Supply Voltage at 25°C T e m p e r a t u r e ( ° C ) Maximum Standby Current (uA) - 4 0 - 1 5 1 0 3 5 6 0 8 5 1 1 0 1 2 5 1 . 8 V 2 . 5 V 3 . 3 V Figure 6-6. Maximum Standby Current vs Temperature and Supply Voltage F r e q u e n c y ( M H z ) RMS Jitter (fs) 1 5 2 0 2 5 3 0 3 5 4 0 2 6 5 2 7 5 2 8 5 2 9 5 3 0 5 3 1 5 3 2 5 3 3 5 3 4 5 3 5 5 3 6 5 Figure 6-7. Typical RMS Jitter vs Frequency at 3.3V Supply and 25°C (BW 12kHz to 5MHz) F r e q u e n c y ( M H z ) RMS Jitter (fs) 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 6 0 1 8 0 2 0 0 2 6 5 2 7 5 2 8 5 2 9 5 3 0 5 3 1 5 3 2 5 3 3 5 3 4 5 3 5 5 3 6 5 Figure 6-8. Typical RMS Jitter vs Frequency at 3.3V Supply and 25°C (BW 12kHz to 20MHz) F r e q u e n c y O f f s e t ( M H z ) Phase Noise (dBc/Hz) 0 . 0 0 1 0 . 0 1 0 . 1 1 55 - 1 7 0 - 1 6 0 - 1 5 0 - 1 4 0 - 1 3 0 - 1 2 0 - 1 1 0 - 1 0 0 - 9 0 - 8 0 Figure 6-9. Phase Noise Curve at 25MHz, 25°C, and 3.3V Supply www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 9 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
F r e q u e n c y ( M H z ) Duty Cycle (%) 5 3 0 5 5 8 0 1 0 5 1 3 0 1 5 5 4 5 4 7 . 5 5 0 5 2 . 5 5 5 - 4 0 ° C 2 5 ° C 8 5 ° C 1 0 5 ° C 1 2 5 ° C Figure 6-10. Duty Cycle vs Frequency and Temperature at 3.3V Supply, No Capacitative Load, Normal Mode Device Figure 6-11. Duty Cycle vs Frequency and Temperature at 2.5V Supply, No Capacitative Load, Normal Mode Device Figure 6-12. Duty Cycle vs Frequency and Temperature at 1.8V Supply, No Capacitative Load, Normal Mode Device T e m p e r a t u r e ( ° C ) Frequency Change (ppm) - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 - 2 5 - 2 0 - 1 5 - 1 0 - 5 1 0 1 5 2 0 2 5 Figure 6-13. Frequency Change vs Temperature at 24.5MHz and 3.3V Supply, 15 Devices CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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7 Parameter Measurement Information
7.1 Device Output Configurations
Load capacitor modified based on measurement condition. Figure 7-1. CDC6Cx-Q1 Output Test Configuration CDC6C Device Phase Noise Analyzer Figure 7-2. CDC6Cx-Q1 Output Phase Noise Test Configuration www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 11 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
8 Detailed Description
8.1 Overview
The CDC6Cx-Q1 is a fixed-frequency, BAW based oscillator that supports a CMOS output format within the range of 250kHz to 200MHz.
8.2 Functional Block Diagram
8.3 Feature Description
8.3.1 Bulk Acoustic Wave (BAW)
TI’s BAW resonator technology uses piezoelectric transduction to generate high-Q resonance at 2.5GHz. The resonator is defined by the quadrilateral area overlaid by top and bottom electrodes. Alternating high-acoustic and low-acoustic impedance layers form acoustic mirrors beneath the resonant body to prevent acoustic energy leakage into the substrate. Furthermore, these acoustic mirrors are also placed on top of the resonator stack to protect the device from contamination and minimize energy leakage into the package materials. This unique dual-Bragg acoustic resonator (DBAR) allows efficient excitation without the need of costly vacuum cavities around the resonator. As a result, TI’s BAW resonator is immune to frequency drift caused by absorption of surface contaminants and can be directly placed in a non-hermetic plastic package with the oscillator IC in small standard oscillator footprints.
8.3.2 Device Block-Level Description
The device contains a BAW oscillator, frequency divider and CMOS driver which together generates a pre- programmed output frequency. Temperature variations of oscillation frequency are continuously monitored by internal precision temperature sensor and provided as input to the frequency control logic block. Using this Frequency Control Logic block, frequency corrections are performed internally for maintaining the output frequency within ± 25ppm across temperature range and aging. The device contains an internal LDO which reduces the power supply noise, resulting in low noise clock output.
8.3.3 Function Pin
Pin 1 on the CDC6Cx-Q1 is the function pin which have multiple functions based on the orderable part number. The function can be used as Output Enable (OE), Stand By (ST) or No Connect (NC). Options for both Active High and Active Low are available for OE and ST. Contact TI for Active Low options. Table 8-1 lists the functions of pin 1. Table 8-1. Function Pin Descriptions for CDC6Cx-Q1 ORDERABLE OPTION PIN DESCRIPTION OUTPUT FUNCTION E (Pin 1) Output Enable (Active High / NC) HIGH or No Connect : Output active at Specified Frequency LOW : Output disabled, high impedance; current consumption is given by IDD-PD CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Table 8-1. Function Pin Descriptions for CDC6Cx-Q1 (continued) ORDERABLE OPTION PIN DESCRIPTION OUTPUT FUNCTION A (Pin 1) Standby (Active Low) LOW : High Impedance; standby mode; current consumption is given by standby current IDD-STBY HIGH or No Connect: Output active at Specified Frequency In standby mode, all blocks are powered down to provide a maximum current consumption savings equivalent to the standby current provided in the Current Consumption Characteristics portion of the Electrical Characteristics table. The return to the output clock active time corresponds to the same as the initial start-up time. The function pin is driven internally with resistance >100 kΩ.
8.3.4 Clock Output Interfacing and Termination
The following figure shows the recommended output interfacing and termination circuits. CDC6C Device LVCMOS Receiver Figure 8-1. CDC6Cx-Q1 Output to LVCMOS Receiver
8.3.5 Temperature Stability
Figure 8-2 shows the CDC6Cx-Q1 frequency change across temperature. The figure illustrates the frequency change of 15 different devices at different temperatures across the temperature range of –40°C to 125°C. This demonstrates the typical temperature stability of the device, remaining below ±10ppm. T e m p e r a t u r e ( ° C ) Frequency Change (ppm) - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 - 2 5 - 2 0 - 1 5 - 1 0 - 5 1 0 1 5 2 0 2 5 Figure 8-2. Frequency Change vs Temperature at 24.5MHz and 3.3V Supply, 15 Devices
8.3.6 Mechanical Robustness
For reference oscillators, vibration and shock are common causes for increased phase noise and jitter, frequency shift and spikes, or even physical damages to the resonator and package. Compared to quartz www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 13 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
crystals, the BAW resonator is more immune to vibration and shock due to the orders of magnitude smaller mass and higher frequency—that is force applied to the device from acceleration is much smaller due to smaller mass. Figure 8-3 shows the CDC6Cx-Q1 BAW oscillator vibration performance. TI followed MIL-STD-883 Method 2026 Conditions C (10g) and Method 2007 Condition A (20g) for testing. In this test, the CDC6Cx-Q1 oscillator is mounted on an EVM and subjected to a 10g acceleration force, ranging from 50Hz to 2kHz in the x, y, and z-axis. Phase noise trace with spur due to vibration is captured using Keysight E5052B and frequency deviation is calculated from the spur power. Then the frequency deviation is converted to ppb by noting the carrier frequency and normalized to ppb/g. Finally, the RMS sum of ppb/g along all three axes is reported as the Vibration sensitivity in ppb/g. CDC6Cx-Q1 performance under vibration is approximately 2ppb/g while most quartz oscillators best case is 3ppb/g and worse can be above 10ppb/g. V i b r a t i o n F r e q u e n c y ( H z ) RMS Vibration Resilience (RMS ppb/g) 5 0 1 0 0 1 0 0 0 5 0 0 0 0 . 0 0 0 2 0 . 0 0 1 0 . 0 1 0 . 1 1 0 D L E D L Y Figure 8-3. Vibration Resilience vs. Vibration Frequency at 25MHz, 25°C, Supply 1.8V - X-Axis V i b r a t i o n F r e q u e n c y ( H z ) RMS Vibration Resilience (RMS ppb/g) 5 0 1 0 0 1 0 0 0 5 0 0 0 0 . 0 0 0 2 0 . 0 0 1 0 . 0 1 0 . 1 1 0 D L E D L Y Figure 8-4. Vibration Resilience vs. Vibration Frequency at 25MHz, 25°C, Supply 1.8V - Y-Axis V i b r a t i o n F r e q u e n c y ( H z ) RMS Vibration Resilience (RMS ppb/g) 5 0 1 0 0 1 0 0 0 5 0 0 0 0 . 0 0 0 2 0 . 0 0 1 0 . 0 1 0 . 1 1 0 D L E D L Y Figure 8-5. Vibration Resilience vs. Vibration Frequency at 25MHz, 25°C, Supply 1.8V - Z-Axis For the mechanical shock test, TI followed MIL-STD-883F Method 2002 Condition A (1500g) for testing. For more information on BAW technology mechanical robustness, see the Standalone BAW Oscillators Advantages Over Quartz Oscillators application note. CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Figure 8-10. Pre and Post 1500g Mechanical Shock at 25MHz and 25°C, Z-Axis Figure 8-11. During 1500g Mechanical Shock at 25MHz and 25°C, Z-Axis
8.4 Device Functional Modes
The CDC6Cx-Q1 BAW Oscillator is a fixed-frequency device and does not require any programming. The device pin 1 has different functions. See the Function Pin section for more information on the function pins. CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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9 Application and Implementation
Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes, as well as validating and testing their design implementation to confirm system functionality.
9.1 Application Information
The CDC6Cx-Q1 is a low power, fixed frequency oscillator that can be used as a reference clock. The device supports any output frequency between 250kHz to 200MHz, single-ended output type, and 1.8V to 3.3V supply rails.
9.1.1 Driving Multiple Loads With a Single CDC6Cx-Q1
The CDC6Cx-Q1 oscillator can be used to drive multiple loads to achieve cost reduction and BOM simplification. Be aware that using this technique degrades signal integrity and decreases performance. A good set of guidelines to follow when driving multiple loads include aiming to drive only two loads, maximizing common trace lengths across loads, and limiting total receiver capacitance to maximize fast rise and fall times. For more information on the effects of this technique and an implementation guide, see the Driving Multiple Loads With a Single LVCMOS Oscillator application note.
9.1.2 CDC6Cx-Q1 CISPR25 Radiated Emission Performance
The CDC6Cx-Q1 radiated EMI emissions performance passed up to CISPR-25 Class 5. The test observed 1.8V and 3.3V, 25MHz CDC6Cx-Q1 oscillators in a DLY package. The CDC6Cx-Q1 was configured for slow mode 2 with a 5pF termination and slow mode 4 with a 15pF termination. The boards used had 50mil trace lengths or immediate termination, and the boards were tested in Texas Instruments’ pre-compliant EMI chamber set up for CISPR-25 with antennas operating up to 1GHz. See also CDC6Cx-Q1 CISPR25 Radiated Emission Performance Report.
9.2 Typical Application
For a reference schematic implementation for CDC6Cx-Q1 oscillator, see the Layout Examples for bypass capacitor and AC-coupling capacitor value recommendations. See the Clock Output Interfacing and Termination section for output clock required termination and biasing. Figure 9-1 shows a typical application example. The CDC6Cx-Q1 oscillator is used as a reference clock for a microcontroller or an FPGA in this example. CDC6C Oscillator - 50 MHz MCU / FPGA VDD Power Conditioning Output/Chip Control Logic 1 μF OE Output driver GND CLK CLOCK IN Figure 9-1. CDC6Cx-Q1 Application Example
9.2.1 Design Requirements
The CDC6Cx-Q1 is a fixed-frequency oscillator with no programming needed. Make sure to follow the recommended termination options as described in the Clock Output Interfacing and Termination section closely. www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 17 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
See the Function Pin section to understand the pin 1 function, and order the part number as per your requirements for Output Enable (OE), Standby (ST) options.
9.2.2 Detailed Design Procedure
The CDC6Cx-Q1 has an integrated LDO and has excellent PSRR performance as shown in the Electrical Characteristics table. See the CDC6CEVM User's Guide for the reference layout recommendation while designing with the CDC6Cx-Q1 BAW oscillator. To set the pin 1 function for the CDC6Cx-Q1, connect typical 10kΩ or smaller resistor to VDD for driving the OE pin High. The device has an internal pullup resistor > 100k Ω, therefore this pin can be left open if an external pullup resistor is not desired. For driving the OE pin to Low, use the typical 10k Ω or smaller resistor as a pulldown resistor. For EMI reduction, the CDC6Cx-Q1 has orderable options to reduce rise and fall times. For applications requiring lesser EMI, select the appropriate rise and fall time options and see the CDC6Cx-Q1 CISPR25 Radiated Emission Performance Report for more EMI reduction strategies. The CDC6Cx-Q1 has four slow mode options other than the normal mode. Based on the desired rise and fall times, select the right slow mode option and load capacitance value between 2pF, 5pF, 10pF and 15pF. Table 9-1 has recommended slow mode options for various load capacitance. For example, with load capacitance 15pF, Slow Mode 4 option results in the slowest rise and fall times. You can also select Slow Mode 1, Slow Mode 2, or Slow Mode 3 with 15pF but the rise and fall times are faster. These values are obtained with a 25MHz output. Table 9-1. Rise / Fall Time Options (25MHz Output) SLOW MODE OPTION LOAD CAPACITANCE RISE / FALL TIME (ns) WITH SLOW MODE (TYP / MAX) RISE / FALL TIME (ns) WITH NORMAL MODE (TYP / MAX) Slow Mode 1 2pF 0.37 / 0.75 0.28 / 0.65 Slow Mode 2 5pF 0.9 / 2.0 0.3 / 0.8 Slow Mode 3 10pF 1.2 / 2.95 0.3 / 1.0 Slow Mode 4 15pF 1.95 / 4.0 0.57 / 2.2
9.2.3 Application Curves
F r e q u e n c y O f f s e t ( M H z ) Phase Noise (dBc/Hz) 0 . 0 0 1 0 . 0 1 0 . 1 1 55 - 1 7 0 - 1 6 0 - 1 5 0 - 1 4 0 - 1 3 0 - 1 2 0 - 1 1 0 - 1 0 0 - 9 0 - 8 0 Figure 9-2. 19.2MHz LVCMOS, 25°C, 3.3V Supply CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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F r e q u e n c y O f f s e t ( M H z ) Phase Noise (dBc/Hz) 0 . 0 0 1 0 . 0 1 0 . 1 1 1 0 2 02 0 - 1 7 0 - 1 6 0 - 1 5 0 - 1 4 0 - 1 3 0 - 1 2 0 - 1 1 0 - 1 0 0 - 9 0 - 8 0 Figure 9-5. 50MHz LVCMOS, 25°C, 3.3V Supply F r e q u e n c y O f f s e t ( M H z ) Phase Noise (dBc/Hz) 0 . 0 0 1 0 . 0 1 0 . 1 1 1 0 2 02 0 - 1 7 0 - 1 6 0 - 1 5 0 - 1 4 0 - 1 3 0 - 1 2 0 - 1 1 0 - 1 0 0 - 9 0 - 8 0 Figure 9-6. 100MHz LVCMOS, 25°C, 3.3V Supply CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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F r e q u e n c y O f f s e t ( M H z ) Phase Noise (dBc/Hz) 0 . 0 0 1 0 . 0 1 0 . 1 1 1 0 4 0 - 1 6 0 - 1 5 0 - 1 4 0 - 1 3 0 - 1 2 0 - 1 1 0 - 1 0 0 - 9 0 - 8 0 - 7 0 Figure 9-9. 200MHz LVCMOS, 25°C, 3.3V Supply
9.3 Power Supply Recommendations
For the best electrical performance of the CDC6Cx-Q1, TI recommends using a single 1µF power supply bypass capacitor. TI also recommends using component side mounting of the power supply bypass capacitors. 0201 or 0402 body size capacitors facilitate best signal routing. Keep the connections between the bypass capacitors and the power supply on the device as short as possible. Ground the other side of the capacitor using a low impedance connection to the ground plane. VDD power-up ramp time is defined as minimum time taken for power supply to exceed 95% of nominal V DD. Monotonic power supply ramp is assumed. In case the power supply falls between 1V to 1.5V after the power supply already reached >1.5V, the output is muted after power supply ramps back to >1.5V. The output clock recovers, when VDD is lowered below 1V and ramped back to >1.5V. CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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9.4 Layout
9.4.1 Layout Guidelines
The following sections provides recommendations for board layout, solder reflow profile and power-supply bypassing when using the CDC6Cx-Q1 to provide good thermal and electrical performance and signal integrity of the entire system.
9.4.1.1 Providing Thermal Reliability
The CDC6Cx-Q1 is a low power, high performance device. Therefore, pay careful attention to device configuration and printed circuit board (PCB) layout with respect to power consumption. The ground pin must be connected to the ground plane of the PCB through three vias or more to maximize thermal dissipation out of the package. The equation below describes the relationship between the PCB temperature around the CDC6Cx-Q1 and the junction temperature. TB = TJ – ΨJB × P (1) where
- TB: PCB temperature around the CDC6Cx-Q1
- TJ: Junction temperature of CDC6Cx-Q1
- ΨJB: Junction-to-board thermal resistance parameter of CDC6Cx-Q1 (refer to the Thermal Information tables in the Specifications section for this information)
- P: On-chip power dissipation of CDC6Cx-Q1
9.4.1.2 Recommended Solder Reflow Profile
TI recommends following the recommendations from the solder paste supplier to optimize flux activity and to achieve proper melting temperatures of the alloy within the guidelines of J-STD-020E. Processing the CDC6Cx-Q1 with the lowest peak temperature possible while also remaining below the components peak temperature rating as listed on the MSL label is preferable. The exact temperature profile depends on several factors including maximum peak temperature for the component as rated on the MSL label, Board thickness, PCB material type, PCB geometries, component locations, sizes, densities within PCB, solder manufactures recommended profile, and capability of the reflow equipment as confirmed by the SMT assembly operation. www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 23 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
9.4.2 Layout Examples
Figure 9-10 shows the printed circuit board (PCB) layout examples as done on the evaluation module (EVM) for the CDC6Cx-Q1. Figure 9-10. PCB Layout Example From CDC6 EVM CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Figure 9-11. PCB Layout Example From CDC6 EVM - Top Layer www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 25 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Figure 9-12. PCB Layout Example From CDC6 EVM - GND Layer CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Figure 9-13. PCB Layout Example From CDC6 EVM - Power Layer www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 27 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Figure 9-14. PCB Layout Example From CDC6 EVM - Bottom Layer CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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10 Device and Documentation Support
TI offers an extensive line of development tools. Tools and software to evaluate the performance of the device, generate code, and develop designs are listed below.
10.1 Documentation Support
10.1.1 Related Documentation
For related documentation, see the following:
- Texas Instruments, CDC6CEVM User's Guide
- Texas Instruments, CDC6C OPN Decoder application note
- Texas Instruments, CDC6C-Q1 Functional Safety FIT Rate, FMD and Pin FMA
- Texas Instruments, Standalone BAW Oscillators Advantages Over Quartz Oscillators application note
- Texas Instruments, Driving Multiple Loads With a Single LVCMOS Oscillator application note
- Texas Instruments, CDC6Cx-Q1 CISPR25 Radiated Emission Performance Report
- Texas Instruments, BAW Oscillator Designs for Building Automation application note
- Texas Instruments, BAW Oscillator Designs for Factory Automation application note
- Texas Instruments, BAW Oscillator Designs for Grid Infrastructure application note
- Texas Instruments, BAW Oscillator Designs for Optical Modules application note
10.2 Receiving Notification of Documentation Updates
To receive notification of documentation updates, navigate to the device product folder on ti.com. Click on Notifications to register and receive a weekly digest of any product information that has changed. For change details, review the revision history included in any revised document.
10.3 Support Resources
TI E2E™ support forums are an engineer's go-to source for fast, verified answers and design help — straight from the experts. Search existing answers or ask your own question to get the quick design help you need. Linked content is provided "AS IS" by the respective contributors. They do not constitute TI specifications and do not necessarily reflect TI's views; see TI's Terms of Use.
10.4 Trademarks
TI E2E™ is a trademark of Texas Instruments. All trademarks are the property of their respective owners.
10.5 Electrostatic Discharge Caution
This integrated circuit can be damaged by ESD. Texas Instruments recommends that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage. ESD damage can range from subtle performance degradation to complete device failure. Precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications.
10.6 Glossary
TI Glossary This glossary lists and explains terms, acronyms, and definitions. NOTE: Page numbers for previous revisions may differ from page numbers in the current version. DATE REVISION NOTES March 2025 * Initial Release www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 29 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
12 Mechanical, Packaging, and Orderable Information
The following pages include mechanical, packaging, and orderable information. This information is the most current data available for the designated devices. This data is subject to change without notice and revision of this document. For browser-based versions of this data sheet, refer to the left-hand navigation. CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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www.ti.com PACKAGE OUTLINE C 2.62.4 3.33.1 1.00.80.050.00 2X 2.1 4X 0.80.7
0.1 MIN
4X 0.750.65 (0.2) TYP(0.5) TYP (0.13) VSON - 1 mm max heightDLN0004APLASTIC SMALL OUTLINE - NO LEAD 4230545/A 02/2024 0.08C PIN 1 INDEX AREA SEATING PLANE PIN 1 ID(45X 0.2) SYMM SYMM 2 3 40.1CAB0.05C SCALE 4.000 A-A35.000 SECTION A-ATYPICAL AB www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 31 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
www.ti.com EXAMPLE BOARD LAYOUT (R0.05) TYP 0.07 MAXALL AROUND0.07 MINALL AROUND 4X (0.95) 4X (0.7) (1.95) 2X (2.1) VSON - 1 mm max heightDLN0004APLASTIC SMALL OUTLINE - NO LEAD 4230545/A 02/2024NOTES: (continued) 4. For more information, see Texas Instruments literature number SLUA271 (www.ti.com/lit/slua271). SYMM SYMM LAND PATTERN EXAMPLEEXPOSED METAL SHOWNSCALE: 30X SEE SOLDER MASKDETAIL1 2 3 METAL EDGESOLDER MASKOPENINGEXPOSED METAL METAL UNDERSOLDER MASKSOLDER MASKOPENINGEXPOSEDMETALNON SOLDER MASKDEFINED(PREFERRED)SOLDER MASK DEFINEDSOLDER MASK DETAILS CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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www.ti.com EXAMPLE STENCIL DESIGN 4X (0.95)4X (0.7) (1.95)(R0.05) TYP 2X (2.1) VSON - 1 mm max heightDLN0004APLASTIC SMALL OUTLINE - NO LEAD 4230545/A 02/2024NOTES: (continued) 6. Laser cutting apertures with trapezoidal walls and rounded corners may offer better paste release. IPC-7525 may have alternate design recommendations. SOLDER PASTE EXAMPLEBASED ON 0.125 MM THICK STENCILSCALE: 30X SYMM SYMM 2 3 www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 33 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
www.ti.com PACKAGE OUTLINE C 1.71.5 2.11.9 1.00.80.050.00 2X 1.4 4X 0.6250.525 4X 0.450.35 (0.2) TYP(0.2) TYP (0.13) VSON - 1 mm max heightDLR0004APLASTIC SMALL OUTLINE - NO LEAD 4230546/A 02/2024 0.08C PIN 1 INDEX AREA SEATING PLANE PIN 1 ID(45X 0.2) SYMM SYMM1 2 3 40.1CAB0.05C SCALE 6.000 A-A35.000 SECTION A-ATYPICAL AB CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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www.ti.com EXAMPLE BOARD LAYOUT (R0.05) TYP 0.07 MAXALL AROUND0.07 MINALL AROUND 4X (0.775)4X (0.4) (1.225) 2X (1.4) VSON - 1 mm max heightDLR0004APLASTIC SMALL OUTLINE - NO LEAD 4230546/A 02/2024NOTES: (continued) 4. For more information, see Texas Instruments literature number SLUA271 (www.ti.com/lit/slua271). SYMM SYMM LAND PATTERN EXAMPLEEXPOSED METAL SHOWNSCALE: 30X SEE SOLDER MASKDETAIL1 2 3 METAL EDGESOLDER MASKOPENINGEXPOSED METAL METAL UNDERSOLDER MASKSOLDER MASKOPENINGEXPOSEDMETALNON SOLDER MASKDEFINED(PREFERRED)SOLDER MASK DEFINEDSOLDER MASK DETAILS www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 35 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
www.ti.com EXAMPLE STENCIL DESIGN 4X (0.775)4X (0.4) (1.225)(R0.05) TYP 2X (1.4) VSON - 1 mm max heightDLR0004APLASTIC SMALL OUTLINE - NO LEAD 4230546/A 02/2024NOTES: (continued) 6. Laser cutting apertures with trapezoidal walls and rounded corners may offer better paste release. IPC-7525 may have alternate design recommendations. SOLDER PASTE EXAMPLEBASED ON 0.125 MM THICK STENCILSCALE: 30X SYMM SYMM1 2 3 CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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www.ti.com PACKAGE OUTLINE C 1.31.1 1.71.5 1.00.80.050.00 2X 1.05 4X 0.450.354X 0.40.3 (0.2) TYP(0.16) TYP (0.13) VSON - 1 mm max heightDLY0004DPLASTIC SMALL OUTLINE - NO LEAD 4230544/A 02/2024 0.08C PIN 1 INDEX AREA SEATING PLANE PIN 1 ID(45X 0.125) SYMM SYMM1 2 3 SCALE 6.000 A-A40.000 SECTION A-ATYPICAL AB www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 37 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
www.ti.com EXAMPLE BOARD LAYOUT (R0.05) TYP 0.07 MAXALL AROUND0.07 MINALL AROUND 4X (0.6)4X (0.35) (1) 2X (1.05) VSON - 1 mm max heightDLY0004DPLASTIC SMALL OUTLINE - NO LEAD 4230544/A 02/2024NOTES: (continued) 4. For more information, see Texas Instruments literature number SLUA271 (www.ti.com/lit/slua271). SYMM SYMM LAND PATTERN EXAMPLEEXPOSED METAL SHOWNSCALE: 30X SEE SOLDER MASKDETAIL1 2 3 METAL EDGESOLDER MASKOPENINGEXPOSED METAL METAL UNDERSOLDER MASKSOLDER MASKOPENINGEXPOSEDMETALNON SOLDER MASKDEFINED(PREFERRED)SOLDER MASK DEFINEDSOLDER MASK DETAILS CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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www.ti.com EXAMPLE STENCIL DESIGN 4X (0.6)4X (0.35) (1)(R0.05) TYP 2X (1.05) VSON - 1 mm max heightDLY0004DPLASTIC SMALL OUTLINE - NO LEAD 4230544/A 02/2024NOTES: (continued) 6. Laser cutting apertures with trapezoidal walls and rounded corners may offer better paste release. IPC-7525 may have alternate design recommendations. SOLDER PASTE EXAMPLEBASED ON 0.125 MM THICK STENCILSCALE: 30X SYMM SYMM1 2 3 www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 39 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
www.ti.com VSON - 1 mm max heightPLASTIC QUAD FLAT PACK-NO LEADDLF0004B A 0.08C 0.1CAB0.05C B SYMM SYMM 2.11.9 2.62.4PIN 1 INDEX AREA 1.650.825 2 3 (1.3)0.1 MINSECTION A-ATYPICAL AA(0.45) TYP CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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NOTES: (continued)3.For more information, see Texas Instruments literature number SLUA271 (www.ti.com/lit/slua271). EXAMPLE BOARD LAYOUT 4230534/A 02/2024 www.ti.com VSON - 1 mm max heightDLF0004BPLASTIC QUAD FLAT PACK-NO LEAD SYMM SYMM LAND PATTERN EXAMPLEEXPOSED METAL SHOWNSCALE: 20X SOLDER MASK DETAILSNON- SOLDER MASKDEFINED(PREFERRED)SOLDER MASKDEFINEDEXPOSED METAL
0.07 MAXALL AROUNDMETALSOLDER MASKOPENING
0.07 MINALL AROUNDEXPOSED METALMETAL UNDERSOLDER MASKSOLDER MASKOPENING
(1.5) 4X(0.825)(1.65) 2 3 www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 41 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
NOTES: (continued)4.Laser cutting apertures with trapezoidal walls and rounded corners may offer better paste release. IPC-7525 may have alternatedesign recommendations. EXAMPLE STENCIL DESIGN 4230534/A 02/2024 www.ti.com VSON - 1 mm max heightDLF0004BPLASTIC QUAD FLAT PACK-NO LEAD SOLDER PASTE EXAMPLEBASED ON 0.125 mm THICK STENCILPRINTED SOLDER COVERAGE BY AREA UNDER PACKAGEPADS 1,3,4 & 6: 92%SCALE: 20X SYMM SYMM(1.5) 4X(0.825)(1.65) 2 3 CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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12.1 Tape and Reel Information
Reel Width (W1) REEL DIMENSIONS W Dimension designed to accommodate the component length Dimension designed to accommodate the component thickness Overall width of the carrier tape Pitch between successive cavity centers Dimension designed to accommodate the component width TAPE DIMENSIONS B0 W A0Cavity QUADRANT ASSIGNMENTS FOR PIN 1 ORIENTATION IN TAPE Pocket Quadrants Sprocket Holes Q1 Q1Q2 Q2 Q3 Q3Q4 Q4 Reel Diameter User Direction of Feed Device Package Type Package Drawing Pins SPQ Reel Diamet er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C15625 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00204 8BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 43 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C00400 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00400 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00512 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C00800 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C01000 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01000 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01200 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01228 8BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01600 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 45 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C01920 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C01920 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02000 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02350 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C02400 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02400 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02457 6BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02500 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 47 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C02600 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02600 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02621 4BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02700 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C02812 5BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02812 5BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C02999 2BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03000 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03276 8BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 49 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C03333 3ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03333 3BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C03840 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04000 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C04800 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04800 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C04915 2BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C05000 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 51 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C06666 6BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C06666 6BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C07680 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C10000 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
er (mm) Reel Width W1 (mm) A0 (mm) B0 (mm) (mm) (mm) W (mm) Pin 1 Quandrant CDC6C12500 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C12500 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI CDC6C15625 0BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI Call TI Call TI Call TI Call TI Call TI TAPE AND REEL BOX DIMENSIONS Width (mm) W L H Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C156250BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C002048ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C002048ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C002048ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 53 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C002048ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C002048BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C002048BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C002048BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C002048BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C004000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C004000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C004000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C004000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C004000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C004000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C004000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C004000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C005120ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C005120ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C005120ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C005120ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C005120BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C005120BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C005120BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C005120BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C008000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C008000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C008000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C008000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C008000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C008000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C008000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C008000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C010000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C010000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C010000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C010000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C010000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C010000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C010000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C010000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C012000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C012000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C012000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C012000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C012000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C012000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C012000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C012000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C012288ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C012288ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C012288ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C012288ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C012288BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C012288BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C012288BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C012288BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C016000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C016000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C016000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C016000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C016000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C016000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C016000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C016000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C019200ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C019200ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C019200ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C019200ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C019200BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C019200BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C019200BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C019200BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C020000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C020000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C020000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C020000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C020000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C020000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C020000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C020000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C023500ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C023500ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C023500ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C023500ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C023500BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C023500BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C023500BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C023500BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C024000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C024000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C024000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C024000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C024000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C024000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C024000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 55 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C024000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C024576ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C024576ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C024576ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C024576ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C024576BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C024576BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C024576BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C024576BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C025000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C025000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C025000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C025000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C025000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C025000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C025000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C025000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C026000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C026000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C026000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C026000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C026000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C026000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C026000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C026000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C026214ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C026214ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C026214ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C026214ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C026214BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C026214BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C026214BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C026214BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C027000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C027000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C027000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C027000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C027000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C027000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C027000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C027000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C028125ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C028125ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C028125ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C028125ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C028125BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C028125BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C028125BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C028125BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C029992ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C029992ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C029992ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C029992ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C029992BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C029992BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C029992BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C029992BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C030000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C030000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C030000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C030000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C030000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C030000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C030000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C030000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C032768ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C032768ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C032768ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C032768ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C032768BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C032768BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C032768BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C032768BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C033333ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C033333ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C033333ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C033333ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C033333BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C033333BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C033333BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C033333BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C038400ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C038400ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C038400ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C038400ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C038400BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C038400BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C038400BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C038400BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C040000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C040000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C040000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 57 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C040000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C040000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C040000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C040000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C040000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C048000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C048000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C048000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C048000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C048000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C048000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C048000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C048000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C049152ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C049152ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C049152ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C049152ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C049152BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C049152BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C049152BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C049152BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C050000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C050000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C050000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C050000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C050000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C050000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C050000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C050000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C066666ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C066666ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C066666ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C066666ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C066666BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C066666BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C066666BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C066666BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C076800ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C076800ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C076800ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C076800ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C076800BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C076800BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C076800BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C076800BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C100000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) CDC6C100000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C100000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C100000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C100000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C100000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C100000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C100000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C125000ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C125000ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C125000ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C125000ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C125000BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C125000BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C125000BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C125000BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C156250ADLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C156250ADLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C156250ADLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C156250ADLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI CDC6C156250BDLNRQ1 VSON DLN 4 3000 Call TI Call TI Call TI CDC6C156250BDLFRQ1 VSON DLF 4 3000 Call TI Call TI Call TI CDC6C156250BDLRRQ1 VSON DLR 4 3000 Call TI Call TI Call TI CDC6C156250BDLYRQ1 VSON DLY 4 3000 Call TI Call TI Call TI
12.2 Orderable Part Number Decoder
Device Pin 1 Functionality Output Frequency (MHz) Rise and Fall Time Options Package Size Packaging Method CDC6C012288ADLYRQ1 Output Enable 12.288 Normal Mode DLY Large Reel CDC6C012288ADLRRQ1 Output Enable 12.288 Normal Mode DLR Large Reel CDC6C012288ADLFRQ1 Output Enable 12.288 Normal Mode DLF Large Reel CDC6C012288ADLNRQ1 Output Enable 12.288 Normal Mode DLN Large Reel CDC6C019200ADLYRQ1 Output Enable 19.2 Normal Mode DLY Large Reel CDC6C019200ADLRRQ1 Output Enable 19.2 Normal Mode DLR Large Reel CDC6C019200ADLFRQ1 Output Enable 19.2 Normal Mode DLF Large Reel CDC6C019200ADLNRQ1 Output Enable 19.2 Normal Mode DLN Large Reel CDC6C020000ADLYRQ1 Output Enable 20 Normal Mode DLY Large Reel CDC6C020000ADLRRQ1 Output Enable 20 Normal Mode DLR Large Reel CDC6C020000ADLFRQ1 Output Enable 20 Normal Mode DLF Large Reel CDC6C020000ADLNRQ1 Output Enable 20 Normal Mode DLN Large Reel CDC6C024000ADLYRQ1 Output Enable 24 Normal Mode DLY Large Reel CDC6C024000ADLRRQ1 Output Enable 24 Normal Mode DLR Large Reel CDC6C024000ADLFRQ1 Output Enable 24 Normal Mode DLF Large Reel CDC6C024000ADLNRQ1 Output Enable 24 Normal Mode DLN Large Reel CDC6C025000ADLYRQ1 Output Enable 25 Normal Mode DLY Large Reel CDC6C025000ADLRRQ1 Output Enable 25 Normal Mode DLR Large Reel CDC6C025000ADLFRQ1 Output Enable 25 Normal Mode DLF Large Reel www.ti.com CDC6C-Q1 SNAS935 – MARCH 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 59 Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
Device Pin 1 Functionality Output Frequency (MHz) Rise and Fall Time Options Package Size Packaging Method CDC6C025000ADLNRQ1 Output Enable 25 Normal Mode DLN Large Reel CDC6C026000ADLYRQ1 Output Enable 26 Normal Mode DLY Large Reel CDC6C026000ADLRRQ1 Output Enable 26 Normal Mode DLR Large Reel CDC6C026000ADLFRQ1 Output Enable 26 Normal Mode DLF Large Reel CDC6C026000ADLNRQ1 Output Enable 26 Normal Mode DLN Large Reel CDC6C027000ADLYRQ1 Output Enable 27 Normal Mode DLY Large Reel CDC6C027000ADLRRQ1 Output Enable 27 Normal Mode DLR Large Reel CDC6C027000ADLFRQ1 Output Enable 27 Normal Mode DLF Large Reel CDC6C027000ADLNRQ1 Output Enable 27 Normal Mode DLN Large Reel CDC6C040000ADLYRQ1 Output Enable 40 Normal Mode DLY Large Reel CDC6C040000ADLRRQ1 Output Enable 40 Normal Mode DLR Large Reel CDC6C040000ADLFRQ1 Output Enable 40 Normal Mode DLF Large Reel CDC6C040000ADLNRQ1 Output Enable 40 Normal Mode DLN Large Reel CDC6C048000ADLYRQ1 Output Enable 48 Normal Mode DLY Large Reel CDC6C048000ADLRRQ1 Output Enable 48 Normal Mode DLR Large Reel CDC6C048000ADLFRQ1 Output Enable 48 Normal Mode DLF Large Reel CDC6C048000ADLNRQ1 Output Enable 48 Normal Mode DLN Large Reel CDC6C050000ADLYRQ1 Output Enable 50 Normal Mode DLY Large Reel CDC6C050000ADLRRQ1 Output Enable 50 Normal Mode DLR Large Reel CDC6C050000ADLFRQ1 Output Enable 50 Normal Mode DLF Large Reel CDC6C050000ADLNRQ1 Output Enable 50 Normal Mode DLN Large Reel CDC6C100000ADLYRQ1 Output Enable 100 Normal Mode DLY Large Reel CDC6C100000ADLRRQ1 Output Enable 100 Normal Mode DLR Large Reel CDC6C100000ADLFRQ1 Output Enable 100 Normal Mode DLF Large Reel CDC6C100000ADLNRQ1 Output Enable 100 Normal Mode DLN Large Reel CDC6C125000ADLYRQ1 Output Enable 125 Normal Mode DLY Large Reel CDC6C125000ADLRRQ1 Output Enable 125 Normal Mode DLR Large Reel CDC6C125000ADLFRQ1 Output Enable 125 Normal Mode DLF Large Reel CDC6C125000ADLNRQ1 Output Enable 125 Normal Mode DLN Large Reel CDC6C-Q1 SNAS935 – MARCH 2025 www.ti.com
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Product Folder Links: CDC6C-Q1 ADVANCE INFORMATION
www.ti.com 2-Apr-2025 PACKAGING INFORMATION Orderable Device Status (1) Package Type Package Drawing Pins Package Qty Eco Plan (2) Lead finish/ Ball material (6) MSL Peak Temp (3) Op Temp (°C) Device Marking (4/5) Samples PCDC6C02500ADLRTQ1 ACTIVE VSON DLR 4 3000 TBD Call TI Call TI -40 to 125 Samples PCDC6C02700ADLRTQ1 ACTIVE VSON DLR 4 3000 TBD Call TI Call TI -40 to 125 Samples (1) The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs. LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect. NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design. PREVIEW: Device has been announced but is not in production. Samples may or may not be available. OBSOLETE: TI has discontinued the production of the device. (2) RoHS: TI defines "RoHS" to mean semiconductor products that are compliant with the current EU RoHS requirements for all 10 RoHS substances, including the requirement that RoHS substance do not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, "RoHS" products are suitable for use in specified lead-free processes. TI may reference these types of products as "Pb-Free". RoHS Exempt: TI defines "RoHS Exempt" to mean products that contain lead but are compliant with EU RoHS pursuant to a specific EU RoHS exemption. Green: TI defines "Green" to mean the content of Chlorine (Cl) and Bromine (Br) based flame retardants meet JS709B low halogen requirements of <=1000ppm threshold. Antimony trioxide based flame retardants must also meet the <=1000ppm threshold requirement. (3) MSL, Peak Temp. - The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature. (4) There may be additional marking, which relates to the logo, the lot trace code information, or the environmental category on the device. (5) Multiple Device Markings will be inside parentheses. Only one Device Marking contained in parentheses and separated by a "~" will appear on a device. If a line is indented then it is a continuation of the previous line and the two combined represent the entire Device Marking for that device. (6) Lead finish/Ball material - Orderable Devices may have multiple material finish options. Finish options are separated by a vertical ruled line. Lead finish/Ball material values may wrap to two lines if the finish value exceeds the maximum column width. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. Addendum-Page 1
www.ti.com 2-Apr-2025 OTHER QUALIFIED VERSIONS OF CDC6C-Q1 :
- Catalog : CDC6C NOTE: Qualified Version Definitions:
- Catalog - TI's standard catalog product Addendum-Page 2
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